Review on the Management of Rongbai Technology’s 2022 Annual Board of Directors

The operating comments of the board of directors of Rongbai Technology in 2022 are as follows:

  I. Discussion and analysis of business conditions

  During the reporting period, the global market demand for new energy vehicles still maintained a high-speed growth trend. According to the data in the White Paper on the Development of New Energy Vehicle Industry in China (2023), the global sales of new energy vehicles reached 10.824 million in 2022, up 61.6% year-on-year. According to the statistics of GGII and other institutions, in 2022, the global ternary cathode materials shipped about 980,000 tons, up 55% year-on-year, of which the global high-nickel cathode materials shipped about 328,000 tons, up 64% year-on-year. The ternary cathode materials market continued the trend of high nickel, and the product iterative upgrade was accelerating.

  Benefiting from the strong demand of downstream battery companies, the accelerated launch trend of high-energy-density models of mainstream European and American car companies, and the company’s continuous improvement of profitability through process progress and supply chain optimization, the performance in 2022 has been significantly improved. During the reporting period, the company achieved an operating income of 30.123 billion yuan, a year-on-year increase of 193.62%; The net profit attributable to listed companies was 1.353 billion yuan, a year-on-year increase of 48.54%.

  (1) The market share of Sanyuan ranked first in the world, and the product and customer structure were continuously optimized.

  In 2022, the total sales volume of the company’s high-nickel 8 series and above ternary cathode products was nearly 90,000 tons, up 70.13% year-on-year. Among them, frontier materials such as high nickel, low cobalt and ultra-high nickel have been shipped in thousands of tons. According to the statistics of Xinyi Information, in 2022, the domestic market share of the company’s high-nickel ternary cathode materials was 33%, ranking first in the industry for three consecutive years, maintaining the first market share in the world for two consecutive years, and its leading edge continued to expand. During the reporting period, the company has built a cathode production capacity of 250,000 tons/year, and has four cathode material bases in Ezhou, Hubei, Xiantao, Zunyi, Guizhou and Chungju, South Korea.

  During the reporting period, the company actively expanded its customer base, established cooperative relations with domestic new energy vehicle companies and mainstream car companies in Europe and America, and developed cutting-edge products.

  (II) Merger and acquisition and integrated layout of lithium manganese iron phosphate, with product technology, market development and production and sales scale leading in the industry.

  During the reporting period, the company formally laid out the field of lithium manganese phosphate (LMFP) through the acquisition of Schollander and its subsidiaries. The company’s existing production capacity is 6,200 tons/year, and it is the only enterprise that realizes mass production of lithium manganese iron phosphate. Its products cover 3C digital and power batteries in the sales market, and it is in a leading position in the product development of many well-known battery customers at home and abroad.

  (III) Initiated the launch of a new strategic product-sodium battery cathode material, with comprehensive development capability and mass production progress leading the industry.

  As a new battery material, the product competitiveness of sodium battery cathode material has been significantly improved compared with traditional materials, and it is expected to be widely used in low-end power battery market, energy storage market, 3C and small power market in the future. The company has comprehensively laid out three technical directions: layered oxide, Prussian blue/white and polyanion, and has completed sample submission and verification with dozens of downstream customers. The current capacity of sodium battery cathode materials is about 15,000 tons/year. During the reporting period, the company sold dozens of tons of sodium anode materials, and its comprehensive development capability and mass production progress were at the leading level in the industry.

  (D) The strategic layout of globalization has been rapidly promoted, and the production capacity and customer development in South Korea have made remarkable progress.

  The company’s Chungju base in South Korea is the first high-nickel anode production project built by China enterprises overseas, and the production capacity in South Korea is obviously scarce.

  On the one hand, China products are subject to a tariff of 25% when exported to the United States, and a tariff of about 6% when exported to Europe; Korean products exported to European and American markets enjoy zero tariff policy.

  On the other hand, according to the Inflation Reduction Act issued by the United States in August 2022, it is planned to invest about $370 billion in the fields of climate and clean energy, and products produced by countries that have signed free trade agreements (FTAs) with the United States, including more than 20 countries such as South Korea and Australia, can receive a certain percentage of subsidies. Compared with the domestic precursor material production base, the precursors produced by Chungju base in South Korea meet the requirements of the Act on qualified key minerals, and can get a tax credit of $3,750 per vehicle for qualified key minerals that meet the Act; Compared with the domestic cathode material production base, the cathode material produced by Chungju base in South Korea does not fall into the prohibitive restrictions stipulated in the bill, and it is expected to get a tax credit of $3,750 per vehicle. Therefore, the capacity layout of Chungju base in South Korea is of strategic significance.

  During the reporting period, the Chungju base in South Korea has built a capacity of 20,000 tons/year of high-nickel cathode materials, and the production line has been verified by mainstream customers in Japan, South Korea, Europe and the United States, with a heavy volume basis. At present, the penetration rate of new energy vehicles in Europe and North America is significantly lower than that in China. The company’s internationalization strategy is rapidly advancing, and its products are mainly used in overseas markets, which has huge room for future development.

  (five) the layout of cutting-edge technology, leading research and development advantages.

  The company’s high-nickel and ultra-high-nickel multi-product sequence research and development technology is leading the industry. The advanced product lithium-rich manganese-based samples have passed the customer certification, and the spinel nickel-manganese has completed the pilot evaluation, and the related products have excellent performance such as capacity, cycle and rate. The quality and energy density of cathode materials for solid-state batteries have been greatly improved, which has been recognized by domestic and foreign solid-state battery customers.

  The layered oxide cathode material for sodium battery has overcome the problems of residual alkali, too high pH value, serious gas production and poor cycle, etc., and has taken the lead in realizing the mass production and finalization of a number of sodium battery cathode materials in the industry, and all technical indicators have been evaluated by different customers and are in the forefront of the industry.

  Lithium manganese iron phosphate material has been certified by many mainstream customers at home and abroad, and it is the first in the world to realize mass production and shipment of thousands of tons. At the same time, a new generation of high ferromanganese ratio products and ferromanganese lithium and ternary blended products have made technological breakthroughs, realizing small-scale mass production, and some customers have entered the stage of batch stability testing.

  (6) The number of patent applications has reached a new high, and the intellectual property protection system is perfect.

  The company has continuously intensified scientific research and innovation, tapped innovative talents, explored new materials and technologies while deepening the advantages of high nickel, and laid out a wide network of intellectual property protection around the upstream and downstream of the industrial chain. In 2022, the company applied for a total of 235 patents, a year-on-year increase of 240%, a record high; The total number of patents granted reached 136, and the "intellectual edition" continued to upgrade. The company has laid out a large number of independent intellectual property rights around products, which can provide a strong guarantee for all products of the company to open up the market.

  (seven) fully implement the "new integration" strategy.

  The "new integration" strategy is an upgraded systematic competition strategy on the basis of traditional integrated competition, and it is an upgrade of business model. During the reporting period, the company’s "new integration" strategy was launched in an all-round way, integrating resources to the greatest extent to create a competitive new energy industry chain.

  The most important role of the "new integration" strategy is to strengthen supply chain management, ensure the stable procurement and cost advantage of upstream raw materials by investing along the industrial chain and establishing strategic partnerships with upstream and downstream, and realize a large number of centralized supply to downstream customers. In 2022, the company invested in Liqin resources through Rongbai Battery Triangle Fund, and signed a "Long Order Purchase Agreement" with Liqin resources, forming a double cooperation of long-term procurement and capital. Establish a long-term supply relationship with () and Weilan New Energy, and carry out in-depth cooperation in technology, products and supply chain in the field of batteries and materials to jointly promote the rapid development of high-nickel batteries in the terminal market.

  In 2022, the company reached a series of strategic cooperation and agreements with multi-level governments such as Hubei Province, Xiantao City and Hanyang District of Wuhan City, aiming at creating a systematic layout of Rongbai Technology in Hubei Province, including multi-dimensional in-depth cooperation such as production base, central China headquarters, new energy technology research institute and equity investment fund.

  

  II. Description of the company’s main business, business model, industry and R&D during the reporting period.

  (a) the main business, main products or services.

  The company is mainly engaged in the research, development, production and sales of ternary cathode materials and their precursors for lithium batteries. The products are mainly used in the manufacture of lithium batteries, power batteries for new energy vehicles, energy storage equipment and electronic products. The core products are ternary cathode and precursor materials of NCM811 series, NCA series, Ni90 and above ultra-high nickel series.

  As the first cathode material manufacturer in China to realize mass production of NCM811 series products and apply them to international mainstream terminal car enterprises, the company’s NCM811 series products are in a leading position in the world in technology and production scale. The company has set up several advanced production bases in East China, Central China, Southwest China and South Korea, and laid out a circular industrial chain around the recycling of cathode materials.

  In the future, cathode materials will develop in two directions: high energy density, safety and low cost. Lithium manganese phosphate and sodium anode materials will be widely used in low-end power market and energy storage market because of their high cost performance. While further strengthening the competitive advantage of high-nickel materials, the company will also accelerate the layout of lithium manganese phosphate and sodium anode materials, and continue to maintain a leading market share.

  (II) Main business models

  The company has an independent R&D, procurement, production and sales system, mainly through R&D, manufacturing and sales of ternary cathode materials and their precursors to achieve profitability.

  1. R&D mode

  The company has formed a customer-centered and market-oriented R&D system and continuously optimized it. The company has formed a three-level R&D organization of "group level-business department level-factory level", established a model of combining the R&D of the business department with the customer demand as the core and the research institute with the forward-looking new industry and high-end product research and development, and established an inter-departmental product development team through the form of integrated product development (IPD). The company’s Academia Sinica integrates the R&D resources of China, Japan and South Korea, and integrates cutting-edge research, technological innovation, evaluation and testing, resource recovery, engineering development and other resources and capabilities to establish a "horizontal+vertical" all-round R&D system to support the R&D capacity building from original innovation to mass production transformation and process improvement.

  In terms of product development and industrialization, the company has trained a large number of R&D technicians, formed a systematic training mode for new R&D personnel, continued to empower technicians through R&D system training and knowledge sharing, and provided a steady stream of reserve talents for business expansion. While providing material samples, the company will give suggestions on the use conditions according to the development of customers’ battery products, assist customers to finalize the battery system, and jointly promote the development of product application market.

  2. Purchasing mode

  The company’s procurement mode mainly includes procurement strategy and supplier management. In terms of purchasing strategy, for major raw materials such as nickel, cobalt, manganese and lithium, the company has established long-term cooperative relations with well-known raw material suppliers at home and abroad, such as Ganfeng Lithium Industry, Yabao, (), () and Liqin Resources, and formed a list of qualified suppliers with relatively stable, appropriate competition and dynamic adjustment, ensuring the continuous and stable supply of raw materials, excellent quality and reasonable price. In terms of supplier management, the company strictly controls procurement by promoting the standardization of bidding process and systematizing supplier evaluation to ensure the reliability and cost competitiveness of raw materials or equipment.

  3. Production mode

  The company mainly adopts the production mode based on sales and fixed production, establishes a perfect production process control program, and establishes a set of processes for quickly and effectively handling customer orders with customer orders and medium-and long-term demand as the core and guidance. After signing the order with the customer, the company will organize and manage the whole process of production planning, quality control and delivery according to the product technical indicators, quantity and delivery date required by the customer, so as to ensure the consistency of delivery on time and product quality. Reduce the inventory level, so as to control the cost reasonably and improve the efficiency of capital utilization.

  The company also sets a certain safety stock according to market forecast, production capacity and inventory situation, so as to improve delivery speed and maintain balanced production. In order to meet the production of some new materials, the engineering department will optimize the production line layout and equipment structure according to the special needs of new products; In terms of quality control, the production department sets up key control points according to product performance requirements and related processes, and formulates control items and target values.

  4. Sales model

  The company mainly adopts the direct selling mode, and the downstream customers are mostly large and well-known lithium battery manufacturers at home and abroad, which are sold in both domestic and foreign markets. Due to the complex material system of lithium-ion battery, the research and development cycle of the main power lithium battery is long, and the manufacturing process requires high precision control. It is required that cathode material suppliers can provide supporting technical solutions and professional and timely technical support and services under different material systems and control systems to ensure the excellent quality of lithium-ion battery products.

  In order to solve the problems of customers’ wide distribution, rapid development and large scale difference, the company adopts the parallel mode of regional management and large-scale project management in management mode, establishes four production bases in Hubei, Guizhou, Zhejiang and South Korea, and sets up offices in Ningde, Shenzhen and South Korea, so as to maximize the use of market resources, realize the rapid response of product technology, product quality and logistics transportation, and respond to customer needs quickly. In addition, for strategic customers, according to their specific requirements for product technical parameters, customized production is realized to ensure their stable supply and high performance requirements for products.

  (3) the industry situation

  1. The development stage, basic characteristics and main technical threshold of the industry.

  Benefiting from the policy of "peak carbon dioxide emissions, Carbon Neutralization", new energy has developed rapidly around the world. The company’s industry is the cathode material industry of lithium-ion batteries, which belongs to the key material industry in the field of new energy, new materials and new energy vehicles. The explosion of the new energy vehicle market has driven the rapid expansion of the lithium battery industry. As one of the key materials of lithium batteries, the cathode material industry is in a high-speed development stage, and there is a strong demand in the downstream and terminal markets at present and in the future.

  In 2022, the heat of lithium iron phosphate battery and high nickel ternary battery in the installed capacity of global power batteries increased, and lithium manganese phosphate and sodium battery cathode materials began to show their edge. With the characteristics of low cost, strong safety and the growth of energy storage market, Ferrous lithium phosphate’s loading capacity has increased significantly year-on-year; Restricted by the price of lithium and nickel, the increase speed of high nickel permeability is delayed, but the high density energy makes its position as one of the mainstream technologies in the future still stable; Lithium manganese iron phosphate has excellent comprehensive properties and is expected to replace middle and low nickel ternary materials and part of lithium iron. Sodium cathode materials have been initially applied in the fields of energy storage and low-speed power, and are expected to replace Ferrous lithium phosphate and lead-acid batteries in some fields due to their low cost, high safety and excellent low-temperature performance.

  In the long run, the development of power batteries needs to take into account the goals of cost and energy density, and the two technical paths represented by lithium manganese phosphate and high nickel ternary are the most clear. Compared with Ferrous lithium phosphate, lithium manganese phosphate has higher density and energy, and retains the safety and low cost characteristics of lithium iron phosphate batteries. The high nickel route can significantly reduce the material cost and ensure high specific capacity. Thanks to the more competitive cost per watt-hour and the continuous emergence of lithium battery structure innovation technology, as the mainstream choice of high-end models and long-life models in domestic and foreign OEMs, there is no doubt that the market application field of high nickel batteries will expand for a long time.

  At present, there is a high technical threshold in the high nickel ternary cathode material industry, which is mainly reflected in three aspects: development technical barriers, production technical barriers and quality certification barriers. A high threshold of R&D technology requires not only technical modification such as doping and coating, but also calcination in oxygen atmosphere, which puts forward higher and higher requirements for production line design ability, personalized product development ability and technical service ability, as well as more stringent requirements for humidity control of production environment, corrosion resistance of equipment and automation level.

  In addition, high-nickel ternary cathode material is one of the most important raw materials for power batteries, which has a great influence on the core performance and safety performance of power batteries. Considering the product stability and safety, the certification and testing procedures for NCM811, NCA and other products are more complicated for car companies and power battery companies, which require not only long-term product performance testing, but also detailed evaluation of manufacturers’ comprehensive supply capacity, automatic production management level, low cost and quality stability and consistency under mass production.

  2. Analysis of the industry position of the company and its changes.

  During the reporting period, based on the new integration strategy, the company transformed and upgraded to a comprehensive cathode material supplier covering the whole market. While firmly taking the high nickel route, it actively laid out lithium manganese phosphate and sodium battery materials, covering high, medium and low-end power, small power, energy storage and digital market, and became the fastest cathode material company in transformation.

  According to the statistics of Xinyi Information, in 2022, the cumulative output of ternary materials in China was 602,300 tons, up 51.3% year-on-year, and the cumulative output of high-nickel materials (8 series and above) was 269,400 tons, up 76.9% year-on-year, and the permeability reached 44.7%. At the same time, Xinyi information data shows that in 2022, the domestic market share of the company’s high-nickel ternary cathode materials was 33%, ranking first in the industry for three consecutive years, maintaining the first global market share for two consecutive years, and its leading edge continued to expand. During the reporting period, the company built a high-nickel production capacity of 250,000 tons, leading the world in production capacity, realizing the completion and commissioning of the first overseas high-nickel cathode production capacity project in China’s cathode industry, and promoting the globalization of production capacity in China’s cathode industry. The main customers of the company’s high-nickel products have covered Contemporary Amperex Technology Co., Limited, Funeng Technology, Honeycomb Energy, SKon, () and other well-known lithium-ion battery manufacturers at home and abroad. As the main suppliers of high-nickel anodes such as Contemporary Amperex Technology Co., Limited and Funeng Technology, the company’s high-nickel products have been introduced into the international mainstream customer supply system, and have taken the lead in large-scale application in new energy vehicle power batteries worldwide.

  In 2022, the company achieved rapid entry into the lithium manganese phosphate track through the acquisition of Schollander. As the only enterprise in the world that achieved large-scale mass production of lithium manganese phosphate, the company’s existing products are in a leading position in the development and certification of many mainstream customers at home and abroad. The background of high lithium price provides a strategic opportunity for the industrialization of sodium ion batteries. The company has comprehensively laid out three technical directions of layered oxide, Prussian blue/white and polyanion through self-research, and has completed sample submission verification with dozens of downstream customers. The comprehensive development capability and mass production progress are at the leading level in the industry, and the company has an absolute leading edge in the technical route of layered oxide with the fastest commercialization.

  In 2023, the company’s production capacity layout in China and South Korea gradually landed, and the strategic planning research in Europe and the United States was gradually carried out. The company will continue to promote technology iteration and new product development and application, firmly implement the new integration strategy, keep up with industry trends, and consolidate the company’s position as the world’s leading supplier of cathode materials.

  3. The development of new technologies, (), new formats and new models during the reporting period and the future development trend.

  During the reporting period, the new energy vehicle market developed at a high speed, and the performance requirements of power batteries and energy storage batteries continued to improve. As one of the cores of new energy power batteries, cathode materials directly affected the battery’s energy density, cycle, rate, internal resistance and other aspects, and it was a high-cost part of lithium/sodium batteries. The following is the development and future development trend of new technologies during the reporting period:

  1.4680 electrodeless large cylindrical battery

  The 4680 battery, a brand-new cylindrical battery with a diameter of 46 mm and a height of 80 mm, is suitable for mid-to-high-end passenger cars. The battery adopts electrodeless ear, large battery core and dry battery technology to improve work efficiency and safety, and has the advantages of high energy density, low cost, high safety and long life. According to the open market data, the capacity of a single cell of 4680 battery is increased by 5 times, and the power is increased by 6 times. At the vehicle level, the cruising range is increased by 16% and the cost is reduced by 14%. The large-scale process improvement is realized to improve the efficiency and reduce the cost. The core difficulties of this technical route are mainly reflected in welding technology, dry electrode technology and yield. In 2022, through process improvement, Tesla 4680 battery has increased the product yield from the initial 20% to 92%, and the weekly production capacity of 4680 batteries has reached 868,000, breaking through the yield bottleneck. The market expects that 2023 will become its first year of mass production.

  The high safety of 4680 large cylindrical battery adapts to high-density system, and its packaging structure has high thermal safety and mechanical properties, which greatly reduces the risk of high nickel ternary application. At present, NCM811 is the main anode of 4680 battery, and if ultra-high nickel Ni90 is used instead of NCM811 in the future, the cost can be reduced and the efficiency can be improved. With the mass production and production line expansion of 4680 battery, high nickel ternary materials will be the first to benefit. As the first cathode material manufacturer in China to realize mass production of NCM811 series products and apply them to international mainstream terminal car enterprises, the mass production application of 4680 battery will bring broad market opportunities for the company.

  2. Sodium ion battery

  Sodium ion battery is a kind of secondary battery. Compared with Ferrous lithium phosphate lithium ion battery, its cost can be reduced by 30%-40%, and its low temperature performance is excellent. In the low temperature test at -20℃, the capacity retention rate can reach more than 88%, which is much higher than that of Ferrous lithium phosphate lithium ion battery. In the future, it is expected to be widely used in energy storage, low-speed electric vehicles, electric two-wheeled vehicles, electric boats and other fields with low energy density but strong cost sensitivity. In 2022, under the background of high-priced lithium, the key scene of superimposed energy storage broke out, and sodium ion batteries with similar working principles to lithium ion batteries flourished. Demand pull+technical thrust became the key point for the industrialization of sodium ion batteries from 0 to 1.

  At present, the mainstream cathode materials of sodium ion batteries mainly include layered oxides, Prussian analogues, polyanionic compounds and so on. Layered oxide has the advantages of simple preparation method, easy mass production conversion, high energy density and high rate performance, which is the main layout direction of domestic enterprises and is expected to be the first to realize industrialization. Prussian compounds have the advantages of low cost and high specific mass energy density. The main advantages of polyanionic compounds are low cost of raw materials, stable structure and good cycle performance. At present, the cathode material of sodium battery presents the situation of coexistence of multiple routes.

  At present, the company has comprehensively laid out three technical directions in the field of sodium battery cathode materials: layered oxide, Prussian blue/white and polyanion, and has completed the sample submission verification of many downstream customers, and its comprehensive development capability and mass production progress are at the leading level in the industry.

  3. Lithium manganese iron phosphate battery

  Lithium ferromanganese phosphate is an upgraded version of Ferrous lithium phosphate, which is a new type of phosphate cathode material for lithium ion batteries, which is formed by doping a certain proportion of manganese on the basis of Ferrous lithium phosphate. High energy density is the core advantage of LiFePO4 compared with Ferrous lithium phosphate. The energy density is about 15% higher, and it has a higher voltage platform, while retaining the safety and low cost characteristics of LiFePO4 batteries. With the progress of modification technologies such as carbon coating, nanocrystallization and lithium supplementation, the conductivity that used to restrict the development of lithium manganese phosphate has been improved, and the industrialization process has been accelerated. According to market estimates, in 2023, domestic lithium manganese phosphate will be mass-produced stably and applied to the field of electric vehicles on a large scale. Through the acquisition of Schollander, the company achieved mass production of lithium ferromanganese, actively cooperated with downstream customer certification, and the development progress was in the forefront.

  4. Lithium-rich manganese-based cathode materials

  Lithium-rich manganese-based materials take cheap manganese as the main transition metal element, and the specific discharge capacity can reach 250mAh/g and above. Compared with LFP, NCM and NCA, lithium-rich manganese-based materials have higher mass and energy density, which is about 1.5 times of the actual capacity of commercial cathode materials at present, and can improve the endurance of power batteries. Its nickel content is only about 30% of ternary materials, and cobalt element is not needed, so the cost is low.

  At present, lithium-rich manganese-based cathode materials are in the research and development stage as a whole, and technical problems such as improving rate performance and restraining voltage attenuation during cycle and storage need to be solved. If the technical bottleneck is solved, lithium-rich manganese-based cathode materials will become the cathode materials with great potential for the next generation of lithium-ion batteries, and will be widely used in automobile, energy storage, small power, digital and other fields.

  5. Solid-state battery

  The biggest difference between solid-state lithium battery and traditional lithium battery lies in electrolyte. Traditional lithium batteries use a separator+electrolyte with a liquid substance in the middle, while solid-state batteries use solid electrolyte. Compared with traditional lithium batteries, solid-state lithium batteries have better safety and higher energy density.

  At present, the electrolytes of solid-state batteries that have been used or are close to commercial use include polymers, sulfides and oxides. Among them, oxide electrolyte has the best air stability, which is widely used in solid-liquid mixed system solid-state batteries, and its cost is low. The main defect is that the interface contact problem has not been solved perfectly. Oxide electrolyte is more suitable for power batteries. Nowadays, most domestic enterprises choose the technical route of oxide system, and its manufacturing process and modification level are also steadily improving. In addition, sulfide electrolyte shows high rate performance in all-solid-state system by virtue of its ionic conductivity comparable to that of liquid electrolyte, and major battery cells and car companies in Japan, South Korea, Europe and America are actively deploying sulfide all-solid-state battery business. The electrochemical window based on sulfide electrolyte is narrow, and the stability of the interface between electrolyte and anode and cathode is poor, so further improvement is needed to realize industrialization.

  Based on the intrinsic defects of electrolyte, the company has prepared solid electrolyte with high ionic conductivity, developed ternary cathode materials suitable for solid-state batteries, and improved the interface compatibility between ternary cathode and solid electrolyte, which has been highly recognized by downstream customers at home and abroad.

  (IV) Core technologies and R&D progress

  1. Core technologies and their advanced features and changes during the reporting period.

  Since its establishment in 2014, the company has been deeply involved in the research and development, production and manufacturing of cathode materials and precursors for lithium-ion batteries, and has successfully mastered a number of industry-leading core technologies with outstanding scientific and technological innovation capabilities and industrial M&A capabilities. By December 31st, 2022, the company had 346 registered patents (72 invention patents and 274 utility model patents) at home and abroad, which protected the core technology. The company actively carries out technical layout around the frontier of lithium/sodium battery materials. The main core technologies cover cathode materials, precursors, resource recovery and related materials of lithium/sodium batteries, including ultra-high nickel (Nimo%≥90) cathode materials production technology, NCMA quaternary cathode materials production technology, sodium layered oxide cathode materials production technology, cathode materials atmosphere sintering technology, high-voltage single crystal materials production technology, precursor coprecipitation technology, NiCoMn metal recovery technology and so on. The company has tons of experience in producing ferromanganese Prussian white sodium ion battery materials and the preparation technology of various types of solid electrolytes, and is continuously improving the high-voltage nickel-manganese cycle performance, and at the same time increasing the research on lithium-rich manganese-based cathode materials and lithium ferromanganese phosphate cathode materials. The company is committed to the cultivation, development, achievement transformation and industrialization of core technologies. The high-nickel low-cost cathode materials and ultra-high-nickel cathode materials have made breakthroughs in the large-scale stable preparation of production lines, and small quantities are supplied to domestic and foreign customers including power batteries, semi-solid batteries, 3C and other fields.

  2. R&D achievements obtained during the reporting period

  During the reporting period, the company comprehensively promoted the concept of integrated product development in Academia Sinica and related business divisions, greatly optimized the collaboration between the research institute and various departments of the company, rationalized the organizational structure, planned regional R&D centers such as Central China New Energy Technology Research Institute, and signed the Project Cooperation Agreement between Hubei New Energy Technology Research Institute and Central China Regional Headquarters with the Hanyang District People’s Government of Wuhan. In order to improve the detection and analysis ability of batteries and materials, the company carried out battery chemistry research business, and increased investment in the detection of positive electrodes and precursors and electrochemical mechanism research; In view of the rapid development of the new energy industry chain (peers, customers, industry technology status and development trend, etc.), a market analysis business department was established to collect and analyze industry information, which served as the direction basis for the promotion of R&D technology, effectively supporting the company’s material development and mass production introduction speed, and significantly improving the company’s R&D strength.

  During the reporting period, the company applied for 357 new patents. Among them, there are 136 domestic invention patents and 221 domestic utility model patents; The company added 208 authorized patents.

  3. R&D investment table

  Reasons for significant changes in total R&D investment compared with the previous year

  During the reporting period, the R&D investment of the Company was RMB486,554,300, an increase of RMB127,051,600 or 35.34% over the same period of last year. At the same time, the number of R&D personnel increased by 102, an increase of 20.52%. In addition, the company pays attention to product research and development and technological innovation, continuously increases investment in research and development, and actively conducts research on new product development and process upgrading.

  4. Research projects

  letter of presentation

  This year, the company made breakthroughs in the key materials of solid-state batteries, cathode materials of sodium ion batteries and new battery materials such as spinel lithium nickel manganate and lithium-rich manganese, which enhanced the company’s technical reserves in the cutting-edge technical fields of new energy industry from the aspects of system expansion, technical breakthrough and experimental scale enlargement, and provided strong technical support for the second step of the company’s strategy "running an industry well".

  5. R&D personnel

  6. Other explanations

  

  Iii. Analysis of core competitiveness during the reporting period

  (A) analysis of core competitiveness

  The company’s main product, Ni-Co-Mn ternary cathode material, is the core key material of power battery in new energy automobile industry, which directly determines the energy density, cycle life, safety and product cost of power battery. After years of accumulation and exploration, the company has formed comprehensive competitive advantages such as technological innovation and product research and development advantages ahead of the industry, customer collaborative service advantages, engineering equipment development and production line design, as follows:

  1, industry-leading independent innovation core technology advantages

  In terms of independent innovation, the company has formed and mastered a number of internationally advanced and mature key core technologies in the manufacturing field of ternary cathode materials and their precursors through continuous R&D investment and technical exploration, and has independent intellectual property rights with clear ownership. The ternary cathode materials with high nickel, ultra-high nickel polycrystalline and single crystal developed by the company are at the international leading level, and are used in the cutting-edge products of many well-known and leading power battery manufacturers at home and abroad.

  2. Advantages of R&D system with outstanding scientific and technological innovation capability

  The company integrates transnational R&D teams and resources of China, Japan and Korea, and actively develops new products and promotes the quality improvement of existing products through independent R&D and technical cooperation. Since its establishment, the company has continuously overcome a number of key core technologies in the field of ternary cathode materials for power batteries, and successively introduced high-end material products such as NCM523, NCM622, multi-generation high-nickel NCM811, NCA and NCMA, and cooperated with many domestic battery manufacturers to develop a variety of new power batteries with high energy density.

  3. Multi-level technical reserve advantages of continuous iteration

  Through continuous and in-depth technology research and development layout, the company promotes internal and independent product upgrading and new product development, and realizes the iteration of industry technology upgrading. The company implements the research and development strategy of "cutting-edge technology research, product development under research, and continuous optimization in production". In addition to continuous optimization and upgrading of mass-produced products, it has also implemented a number of cutting-edge new product development projects. The company has continuously made technological breakthroughs in the development of new materials suitable for solid-state batteries, such as modified high nickel/ultra-high nickel ternary cathode materials, oxide solid electrolyte and sodium ion battery cathode materials, lithium manganese phosphate cathode materials, lithium-rich manganese-based cathode materials, and spinel lithium nickel manganate cathode materials.

  4. Positioning the advantages of customer resources of first mover and in-depth cooperation.

  Cathode material is the key core material of ternary lithium battery. Lithium battery manufacturers implement strict certification mechanism for suppliers, and it usually takes several years from sample delivery to mass production. The company’s high-nickel products first passed the certification procedures of many mainstream lithium battery manufacturers at home and abroad. With the first mass production and continuous launch of multi-generation single crystal and high-nickel products, it has formed obvious first-Mover advantage and good market reputation in the industry. At the same time, the company has established long-term service and supporting development cooperation with mainstream lithium battery manufacturers at home and abroad. By entering the supply chain of international mainstream automobile enterprises, it can more accurately grasp the technical trends and commercial needs of new energy vehicle power batteries and ensure the accuracy of the company’s business direction. In the future, on the basis of further deepening the comprehensive strategic cooperation with major domestic customers, the company will actively promote the establishment of strategic cooperative relations with international customers or sign long-term supply agreements to further optimize the customer structure.

  5, continuous iterative innovation of engineering technology and ability advantages

  During the reporting period, the Company established the Engineering Division and started the construction of Xiantao Engineering Equipment Company in Xiantao, Hubei Province, improving the organizational construction, and plans to continuously upgrade the barriers in the field of engineering equipment in terms of engineering technology innovation, engineering equipment innovation, engineering management integration and supply chain development. The company’s high nickel production line is compatible with the production of ultra-high nickel materials, sodium ion cathode materials, nickel-manganese binary materials and so on. In order to enhance the advantages of production line, the company will also carry out in-depth pre-research and reserve of equipment technology, focus on independent development and manufacturing of core equipment, carry out research on new process equipment and engineering production line technology of precursor-cathode integration, and promote the industrial application of new equipment; Promote the introduction of information automation technology for new production lines and improve the overall intelligence level of production lines; Continuously strengthen the project management ability, improve the stability and qualified rate of the production line, and study the replication of project experience to realize the rapid expansion of the project and reduce the investment and operation cost of the production line.

  6. Grasp the advantages of industrial layout of core technologies of green economy.

  While mastering the integrated core technology of ternary cathode materials and their precursors, the company actively laid out the business field of recycling waste lithium battery materials, formed a complete closed-loop and competitive advantage of power battery recycling, and actively promoted environmentally friendly production methods. The company has the core technologies of recycling waste materials such as "NiCoMn metal recycling technology" and "Li2CO3 recycling technology", and can recover usable nickel, cobalt, manganese and lithium materials through inorganic acid dissolution, impurity removal, coprecipitation and other methods, with high comprehensive recovery rate, which is at the leading level in the industry. TMR Co., Ltd., a joint venture subsidiary invested by the company, has realized the mature application of lithium battery waste recycling business, which is an important strategic layout for the company to expand into the field of power battery recycling. In addition, the company adopted a number of recycling technologies in the production process of ternary material precursors, which realized the eco-recycling economy of precursor production while avoiding environmental impact.

  7. Competitive advantages of multi-product layout and multi-application scenario coverage.

  The company has realized multi-product layout, not only developing different series of products in ternary cathode, but also laying out the front cathode materials such as lithium manganese phosphate, sodium battery, high-voltage lithium nickel manganate and lithium-rich manganese base, and it is one of the few cathode material manufacturers in the industry with full market coverage. The company can fully cover the two major market demands of power and energy storage through three cathode materials: high nickel ternary, lithium manganese phosphate and sodium electricity. The company’s high-nickel ternary materials are mainly used in the high-end market of new energy vehicles. The series of mixed products of high-nickel ternary and ferromanganese lithium and pure products of ferromanganese lithium will be mainly used in the low-end market and energy storage market of new energy vehicles, and the sodium battery cathode materials can be widely used in the energy storage market. The company’s multi-product layout and multi-application scenario coverage provide a strong guarantee for the company’s performance and the second growth curve.

  8. Unique advantages of M&A integration and integration of industry and finance.

  The company is jointly established by two teams, China and South Korea, which have more than 20 years of successful entrepreneurial experience in the lithium battery industry. It has formed a mature tool system for mergers and acquisitions in sub-sectors and has the ability to integrate, extend and improve the industrial chain for cross-cultural and cross-regional enterprises. In December, 2021, the company acquired Fenggu Energy Saving, the first domestic company to develop and mass-produce ceramic rotary kiln equipment, to improve the matching between process equipment and cathode technology and to raise the manufacturing barriers of cathode materials. In March 2022, the company cooperated with the platform of Xiantao City, Hubei Province, and set up an equity investment fund, focusing on the upstream industry of lithium battery cathode materials and the battery manufacturing, application and recycling industries to achieve a coordinated industrial layout. In July 2022, the company acquired Schollander, a lithium manganese iron phosphate cathode material company, which enriched the company’s product structure and enhanced the company’s comprehensive competitiveness in the field of cathode materials. In the future, under the guidance of the company’s new integration strategy, the company will continue to give play to the advantages of industrial mergers and acquisitions integration and integration of industry and finance. The company will not only focus on ternary cathode and precursor materials, but also invest in upstream, horizontal and downstream to realize business synergy, innovation synergy and strategic synergy of the whole industry chain.

  (II) Events that have seriously affected the core competitiveness of the company during the reporting period, impact analysis and countermeasures.

  

  Fourth, risk factors

  (A) Not yet profitable risk

  (2) Risk of sharp decline in performance or loss

  (C) core competitiveness risks

  The key core competitiveness of lithium battery cathode material enterprises lies in product research and development innovation ability and manufacturing technology. The technology of power lithium batteries and cathode materials is updated quickly, and the application market of cathode materials for lithium batteries has extremely strict requirements on product performance and quality. It is very important for the company’s sustainable development to continuously maintain a high-quality technical team, develop and manufacture high value-added products with industrial competitiveness.

  The company attaches great importance to the cultivation and introduction of technical personnel to ensure the effective organization and successful implementation of various R&D work, but it may still face the risk of core technology leakage and technical personnel loss brought about by industry competition in the future. The company has established corresponding confidentiality system and job isolation system for core technologies, strictly supervised proprietary technical data and information, and signed technical confidentiality agreements with relevant managers and technicians. However, if there is a loss of technical personnel, the company is at risk of technology leakage, which will adversely affect the company’s production and operation. At the same time, if there is a breakthrough in the core technology of power batteries and cathode materials in the future, and the company cannot always maintain the industry-leading level of new technology and new product development and continue to make progress, it will have an adverse impact on the company’s market position and core competitiveness.

  (4) Operational risks

  1. Risk of raw material supply and price fluctuation

  The upstream raw materials of ternary cathode materials produced by the company are nickel salt, cobalt salt and lithium salt. Because of the high price of related raw materials, the raw material cost accounts for a high proportion of the total production cost of ternary cathode materials. Although the company has established a relatively complete raw material procurement management system and strategic suppliers cooperation relationship, changes in the macroeconomic situation and unexpected events may still cause great fluctuations in raw material supply and prices, thus having a greater impact on the company’s operation.

  2. Risk of capacity expansion and underutilization

  Based on the expectation of high-speed growth of the industry and the cooperation of downstream customers, during the reporting period, the company rapidly expanded its production capacity, including Hubei Ezhou Phase V, Hubei Xiantao Phase I, Korea Cathode Project Phase I-I and Guizhou Phase I-II. Although the project has been fully and scientifically demonstrated, and the company has mastered the production technology and technology of implementing the project, and at the same time strengthened the work of talent reserve and training, there may still be risks such as changes in the external market environment, poor project construction management, delayed project progress, and insufficient utilization rate of project completion capacity in the process of project implementation, which will adversely affect the company’s operating performance.

  3. Management risks brought by rapid growth

  In recent years, with the accelerated expansion of the company’s production capacity, the transnational multi-base operation involves an increasingly huge organizational structure and a gradual extension of the management chain, and the overall management difficulty of the company is gradually increasing. If the company’s management level cannot meet the needs of the rapid expansion of the company’s scale, and the organizational model and management system are not adjusted and improved in time, the company will face the risk of losses due to improper management control.

  4. Risk of intensified market competition

  During the reporting period, the industrialization trend of high-nickel ternary power battery was obvious, attracting new entrants to invest in the research and development and mass production of high-nickel ternary cathode materials, gradually expanding the industry capacity supply and intensifying market competition. As a leading enterprise of high nickel ternary cathode materials, if the company fails to maintain its technical advantages, it may be affected by factors such as intensified market competition or changes in new technologies, which will have a great adverse impact on its operating performance. At the same time, the market competition of downstream power battery manufacturers is intensified. With the adjustment of subsidy policy for new energy vehicles, the pressure of cost reduction will be transmitted to the upstream cathode material industry of lithium batteries, and the company will face the risk of further intensified market competition.

  5. Other operational risks

  The company has the risk of market demand fluctuation in the new energy automobile industry, the risk of high balance of accounts receivable and bad debts, and the risk of substantial increase in financial expenses, which will have a certain impact on the company’s performance. Some of the company’s businesses are settled in foreign currency, and the changes in the political and economic environment at home and abroad may make the company face the risk of exchange rate fluctuations.

  (V) Financial risks

  During the reporting period, the company expanded the three cathode manufacturing bases in Hubei, Guizhou and South Korea and the high nickel precursor project in Linshan, Zhejiang, with a large investment scale. At the same time, the newly built production capacity and the management measures at the supply chain end have led to an increase in the demand for working capital. During the reporting period, the company’s asset-liability ratio increased, and the cash flow from operating activities was a net outflow. Although the company has established a relatively complete fund management system to strictly control the asset-liability ratio and liquidity risk, changes in the macroeconomic environment, changes in supply and demand in the capital market, changes in interest rates and other factors may cause the company to face liquidity risk and interest rate risk.

  (VI) Industry risks

  The company’s lithium battery ternary cathode material is mainly used in the field of power batteries for new energy vehicles. Changes in policies and technical routes related to the new energy automobile industry may have an important impact on the development of cathode materials for power batteries and lithium batteries.

  1. Risk of market demand fluctuation in the industry

  Despite the rapid growth of new energy vehicle market in recent years, the overall proportion of new energy vehicle production and sales in the automobile industry is still low, and factors such as purchase cost, charging time, endurance and supporting charging facilities will restrict the development of new energy vehicle industry. In the future, if the industrial policy to promote the development of new energy vehicles changes, the construction and promotion of supporting facilities fail to meet the growth of customer demand in time, and the customer’s recognition of new energy vehicle consumption is less than expected, the market demand for new energy vehicles may fluctuate greatly, which will affect the market demand of power lithium battery manufacturers for cathode materials, which will adversely affect the company’s production and operation.

  2. The risk of changes in the technical route of the industry

  There are technical routes such as lithium batteries and fuel batteries in the practical application of power batteries for new energy vehicles, and lithium batteries can be divided into ternary lithium batteries and lithium iron phosphate batteries. In recent years, the market share of high-nickel ternary lithium batteries in the field of power batteries for new energy vehicles (especially passenger cars) has shown a rapid upward trend. The company’s main business direction is high-nickel ternary cathode materials. However, if the mainstream technical route of power batteries for new energy vehicles changes unfavorably in the future, the market demand of ternary cathode materials will be affected to some extent. If the company fails to develop and launch new technical materials in time and effectively, it will have a significant adverse impact on the company’s competitive advantage and profitability.

  (VII) Macro-environmental risks

  Sudden public health events or force majeure such as earthquakes and typhoons may affect the continuous operation of the company’s business divisions. The company has formulated a business continuity plan to promote the recovery of key businesses, functions and technologies in a timely and organized manner before, during and after an emergency or destructive event, so as to ensure the sustainable and stable development of the company’s business. However, if the company’s business continuity plan cannot cope with the impact of related emergencies and force majeure, it may have an adverse impact on the company’s business, finance, operating performance and prospects. The company will pay close attention to the development trend of macro-environmental risks and actively reduce their impact on the company’s finances and operations.

  (8) Risks related to depositary receipts

  (9) Other major risks.

  1. Risks related to fundraising projects

  Although the company’s initial public offering and listing of funds to invest in the project has been fully demonstrated by the company, the demonstration is based on the current national industrial policy, industry development trend, changes in customer demand and other conditions. In the actual operation process, there may still be a risk that the market environment will suddenly change or the industry competition will intensify, resulting in the project’s income being less than expected.

  2. Safety production and environmental protection risks

  The company has established a relatively complete safety production management system. With the tightening of regulatory policies and the expansion of the company’s business scale, the pressure on safety and environmental protection is also increasing, and there may be the risk of safety and environmental protection accidents caused by force majeure events such as equipment failure, improper human operation and natural disasters. In addition, a small amount of waste gas, waste water and waste residue will inevitably be produced in the production process of the company’s precursor products, which may have adverse effects on the surrounding environment if it is not handled properly. In the event of a safety and environmental accident, the company will be punished by the relevant government regulatory authorities, ordered to rectify or stop production, and then the normal production and operation of the company will be affected.

  

  V. Main operations during the reporting period

  During the reporting period, faced with challenges such as high raw material prices, the company provided customers with cutting-edge high-energy-density products through comprehensive competitive advantages such as technological innovation and product research and development advantages ahead of the industry, customer collaborative service advantages, engineering equipment development and production line design, maintained the first-Mover advantage and good market reputation in the industry, and promoted the company’s sustainable development strategy.

  During the reporting period, the company achieved an operating income of 30.123 billion yuan, a year-on-year increase of 193.62%; The net profit attributable to shareholders of listed companies was 1.353 billion yuan, a year-on-year increase of 48.54%; The net profit attributable to shareholders of listed companies after deducting non-recurring gains and losses was 1.317 billion yuan, a year-on-year increase of 62.92%; The net cash outflow from operating activities was 241 million yuan.

VI. The Company’s Discussion and Analysis on the Company’s Future Development

  (A) the industry pattern and trends

  It is imperative to transform the global energy pattern into new energy sources. With the rapid development of new energy vehicles and energy storage, the market predicts that the lithium battery industry will have more than ten times the growth space in the next decade.

  The development of the industry promotes the innovation of battery structure, and the 4680 cylindrical and Kirin batteries further innovate the power battery structure, promoting the wide application of high nickel and ultra-high nickel cathode material technology. Tesla launched 4680 large cylindrical batteries, which can increase the energy of a single battery by 5 times, increase the cruising range by 16%, and reduce the cost by 14%, and the volume is just around the corner. Contemporary Amperex Technology Co., Limited publicly released Kirin battery (CTP3.0), with the highest utilization rate of volume and space reaching 72%. At the same time, the energy density of ternary battery system can be increased to 255Wh/kg, and the vehicle life can be over 1000km. It has been mass-produced, which will further drive the demand for high-nickel and ultra-high-nickel cathode materials.

  The company expects that the cathode materials will develop in two major directions: low cost and high energy density on the premise of meeting high safety. High nickel ternary batteries are mainly used in the high-end market of new energy vehicles. According to statistics of GGII and other institutions, the penetration rate of domestic high-nickel materials (8 series and above) reached 44.7% in 2022, and the ternary market continued the trend of high nickel, while the iterative upgrading of products continued to accelerate. With the maturity of high-nickel technology, the improvement of yield and the scale of material system, the advantages of high energy density are highlighted, the comprehensive cost of batteries is reduced, and the market share of high-nickel batteries will further increase. Products such as lithium manganese phosphate (LMFP) and sodium battery cathode materials have high performance-to-price ratio, and will be applied to low-end power battery market, energy storage market, 3C digital and small power market.

  China’s lithium battery and material enterprises are playing a more and more important role in the global new energy industry chain. According to SNEResearch, in 2022, the global installed capacity of power batteries for new energy vehicles reached 517.9Gwh, up 71.8% year-on-year. According to SNE’s data, in 2022, among the top ten battery suppliers in the world, six companies from China were listed, with a total market share of 60.4%, up by 12 percentage points year-on-year. According to statistics of GGII and other institutions, in 2022, the global ternary cathode materials shipped about 980,000 tons, of which 550,000 tons were shipped from China, accounting for 56% of the world. In 2022, the company’s global ternary cathode market share was about 9%, up 1 percentage point year-on-year, ranking first in the world, and the market share of China enterprises will further increase in the future.

  The overseas market demand is rapidly increasing, and the global layout has become an industry consensus. According to the data of European Automobile Manufacturers Association, in 2022, 30 European countries registered 2.589 million new energy passenger cars, up 14.6% year-on-year; According to the data of the American Automobile Innovation Alliance, in 2022, the sales volume of new energy light vehicles in the United States reached 913,000, a year-on-year increase of 41.1%. With the global emphasis on the new energy industry chain and the deepening of its cultivation, countries have also developed relevant industrial policies to cultivate local enterprises (such as the American IRA Act, etc.), and the layout of production capacity in overseas bases will help enterprises improve their ability to resist risks. The company has completed and put into production 20,000 tons/year high nickel cathode material in Korea, with a total planned production capacity of 100,000 tons/year, serving mainstream batteries and end customers such as Japan, South Korea, Europe and America.

  (II) Company development strategy

  In 2022, the company completed the transformation to a comprehensive supplier of cathode materials covering the whole market. The high-nickel ternary, lithium manganese phosphate and sodium battery series materials will achieve comprehensive coverage of the high-end, low-end power battery market, energy storage market, 3C digital and small power market. The company is positioned as the operator of the lithium battery new energy material industry, focusing on high-nickel cathode materials, and at the same time laying out lithium manganese iron phosphate and sodium battery cathode materials to build a competitive circular industrial chain around the battery triangle. The company focuses on the main business of cathode materials and carries out comprehensive innovation around the main business, including product innovation, process and equipment innovation, supply chain innovation and management innovation, so as to establish industry barriers with competitors; On the other hand, through strategic cooperation and capital cooperation, we can establish business synergy, innovation synergy and strategic synergy with upstream and downstream, so as to improve the efficiency of the whole industrial chain, reduce costs, build a competitive industrial chain and achieve a win-win situation for partners in the industrial chain.

  In 2023, the company will accelerate the strategic layout of globalization, which is not only reflected in the industrial layout, but also in the overall spatial layout. In the future, the company will explore other overseas regions except China and South Korea. From the global market, the penetration rate of domestic new energy vehicles is close to 30% in 2022, which is significantly higher than other markets. With the upgrading of domestic battery technology and consumption level, the market share of high-nickel cathode materials in the domestic middle and high-end market will be further improved. At present, the company’s high-nickel products are sold to overseas terminal markets through major battery customers. In 2022, the penetration rate of new energy vehicles in the European market will exceed 20%, and the penetration rate of new energy vehicles in the US market will be less than 10%. Overseas markets have great room for growth, and the company’s Korean production base is scarce. The company will accelerate the expansion of this base to better serve international customers.

  The company adheres to the development mission of developing new energy industry, improving the living environment of human beings, creating a bright future for the company and employees, and repaying the society, with the vision of establishing a new energy industry cluster with first-class innovation ability and high commercial civilization.

  (3) Business plan

  The new energy industry has maintained rapid growth, and it is expected that there will still be more than ten times the growth space in the future. In 2022, the installed capacity of lithium batteries for new energy vehicles in the world is 517GWh. With the increase of demand for new energy vehicles and the outbreak of energy storage market, it is estimated that the installed capacity of lithium batteries will exceed 6000GWh in 2030, which has more than 10 times the growth space compared with 2022.

  At present, the penetration rate of electrification in Europe and America is low, and there are significant structural development opportunities in overseas markets. In 2022, the penetration rate of new energy vehicles in 30 European countries was 22.9%; The penetration rate of new energy vehicles in America is 6.7%. It is an inevitable trend for European and American countries to transform their energy structure into new energy sources and improve the penetration rate of electric vehicles. At present, the overall European and American markets have greater opportunities and the installed capacity of lithium batteries has increased at a higher rate.

  The competition pattern of cathode material industry will further move towards concentration from dispersion. From 2018 to 2022, the market share of China ternary cathode CR5 increased from 48.2% to 59%. In the future, as the product technology is finalized and large-scale leading enterprises continue to deepen and expand their competitive advantages in the market and products, their share will be further concentrated.

  (1) Upgrade from a high-nickel faucet to a platform-based and group-based comprehensive supplier of cathode materials, and promote comprehensive coverage of market applications.

  In July, 2022, the company held a strategic conference to announce its transformation from a high-nickel leader to a platform and group-based comprehensive supplier of cathode materials. Its products cover high-nickel materials, lithium ferromanganese and sodium battery materials, and its application fields cover high, medium and low-end power, small power, energy storage and digital market, which is the only and fastest-growing cathode material company in the industry.

  In 2023, the company will further maintain the leading edge of 8 series high nickel products, actively expand new customers and increase market share. At the same time, the company will promote the mass production of 9 series ultra-high nickel products with higher energy density, complete the development of high-voltage high-nickel materials and NCA product lines, create a comprehensive high-nickel product sequence, and further enhance the leading edge of products.

  Lithium ferromanganese is the next generation upgraded product of Ferrous lithium phosphate, which has the advantages of higher energy density and lower cost. With the upgrading of product technology and the expansion of production capacity, lithium ferromanganese is expected to replace Ferrous lithium phosphate’s share in the power battery market in the future. Last year, the company shipped nearly 1000 tons of ferromanganese lithium, ranking first in sales. In 2023, the company will further integrate internal and external resources to promote the mass production of lithium ferromanganese products.

  In terms of sodium battery cathode materials, the company has comprehensively laid out three technical directions: layered oxide, Prussian blue/white and polyanion, and has completed sample submission verification with dozens of downstream customers. The comprehensive development capability and mass production progress are at the leading level in the industry. The company has achieved a number of technical breakthroughs, such as low residual alkali, high pressure compaction, long cycle, low gas production and low cost, which have been successfully applied to finalized products. It is expected to achieve mass production in 2023.

  (2) Strengthen the global layout, and accelerate the overseas production capacity and international customers.

  In 2022, the company built a capacity of 20,000 tons/year of high nickel cathode materials in Chungju, South Korea. The South Korean base is the first factory built and put into production by China cathode enterprises overseas, which is a crucial step in the global layout of Rongbai, and truly opens the process of capacity globalization in the anode industry of Rongbai and even China. The base will continue to expand to 100,000 tons, and the production line covers all products of high nickel, ultra-high nickel NCM, NCA and NCMA.

  The completion and commissioning of the Korean base will help Rongbai to better serve overseas customers. Rongbai will rely on the Korean base to be closer to the needs of international customers in technology research and development, manufacturing and business communication. The release of the production capacity of the Korean factory will promote the strategic interaction between Rongbai and Japanese and Korean customers, radiate to the markets of Europe, the United States and Southeast Asia, serve international customers and overseas factories of China customers, and truly embrace customers and serve the world. Overseas production capacity also helps companies reduce supply chain risks, ensure the sustainability of the supply chain, provide diversified products and supply chain solutions, and create value for customers.

  The Korean base will help the company to establish an overseas operation system and realize a comprehensive international transformation. The smooth operation of the Korean base will help Rongbai to further promote the internationalization of its operation, supply chain, platform and team. The company is preparing for the North American office and will expand in Europe in the future.

  (3) Firmly implement the new integration strategy through industrial investment.

  During the reporting period, the company formally laid out the field of ferromanganese lithium through the acquisition of Tianjin Schollander and its subsidiaries. Schollander has a number of stable customers in the electric two-wheeled vehicle market, and has conducted in-depth material research and development cooperation with many well-known battery manufacturers at home and abroad in the four-wheeled power battery market, accumulating a deep customer base. This acquisition will help the company expand the cathode material market, enrich the product structure, and achieve full coverage of "high, medium and low-end" materials. The company will also continue to consolidate the front-end resources through investment mergers and acquisitions, and do a good job in the next generation of technology and technology reserves, and promote the comprehensive competitiveness of phosphate products such as ferromanganese and lithium.

  During the reporting period, the company invested in Liqin resources through Hubei Rongbai Battery Triangle No.1 Equity Investment Fund Partnership (Limited Partnership), and signed a Long Order Purchase Agreement with it. The agreement stipulated that Liqin resources would be the core supplier of nickel-cobalt wet-process intermediate (MHP) and nickel sulfate, and it would steadily supply 20% of the total annual shipments of nickel-cobalt products (MHP or nickel sulfate and cobalt sulfate) to Rongbai Technology every year. At the same time, Liqin resources are preferentially supplied to Rongbai Technology when there is a surplus of 20% battery nickel-cobalt products beyond the long range. The implementation of the long-term purchase agreement will help the company improve its main business operation ability.

  The company will firmly implement the new integration strategy, analyze the best supply chain path through the in-depth grasp of the whole industrial chain, and then establish a long-term strategic cooperative relationship by investing in the upstream and downstream of the industrial chain to create the lowest-cost supply chain and realize stable operation and stable profit.

  The company will continue to focus on the global development progress of nickel, lithium and other resources, select projects with cost advantages, and cooperate in the form of equity participation to increase the acquisition of low-priced preferential resources. On the one hand, it can form effective synergy with existing industries, on the other hand, the company can further share the growth of the whole industry through industrial investment.

  (4) Continue cutting-edge R&D and mass production and improve the intellectual property protection system.

  Layout cutting-edge technology, develop high-nickel cathode materials suitable for all-solid-state batteries, and break through the higher-capacity technology of ultra-high nickel. Continue to increase R&D investment and R&D personnel recruitment to enhance comprehensive technical strength. This year, the company will start the construction of Hubei New Energy Technology Research Institute, build a Korean research institute and build a transnational R&D institution. In terms of intellectual property rights, it is planned to complete more than 200 patent applications and more than 10 PCT patents in 23 years, and promote the implementation of the intellectual property management system.

  (5) deepen the reform of organizational construction in an all-round way and promote the implementation of the "three systems" structure.

  In order to better cooperate with the implementation of the new integration strategy, the company began to carry out platform and group reform in 2022, established and strengthened the enterprise management center, and promoted the overall coordinated operation of the company through the PMO (Project Management Office) process system. In 2023, it will promote the reform of the three organizational systems and build a complete system for the development of cadres and talents. On the basis of optimizing the existing business department system, we will deepen the organizational reform of the three systems of market, R&D and delivery, and establish a professional-oriented business organization and operation mechanism. At the same time, strengthening the construction of cadres, establishing a matching four-level partner incentive mechanism, and creating a competitive talent system by attracting top talents from all over the world will promote the company to further realize the integrated operation of the whole company and achieve the market goals more agile.

Social cattle dressed as bees celebrate the awkward comedy of the ceiling of social cattle for friends.

On April 29th, an interesting video quickly became popular on social platforms. In the video, when a woman celebrated her birthday in a Haidilao in Jiangsu, her best friend appeared in a unique bee costume, showing her extraordinary social skills. The girlfriend announced her friend’s birthday loudly in the store and called on all customers to bless together. The scene suddenly became the focus. A customer with glasses next to him showed extreme embarrassment and seemed to want to find a crack in the ground.

The girlfriend then took the birthday girl, led everyone to count down, and sent birthday wishes in unison. Despite the enthusiastic response from the scene, the birthday girl herself was quite embarrassed. After thanking all around, she whispered to her best friend that she wanted to leave, bluntly saying "it was embarrassing". This scene attracted a heated discussion among netizens. Some people ridiculed their girlfriends as "social shrews" and were surprised that Haidilao employees did not intervene. It has also been pointed out that although the scene is slightly embarrassing, the happiness of the birthday girl is sincere. It is inevitable to encounter embarrassing moments in life, but as long as you remain calm, the embarrassment will shift. This best friend’s action was praised by many netizens as the "ceiling" of the social world, and they all expressed their envy of having such an aggressive friend.

Have you ever had a similar embarrassing experience in your life? Welcome to share your story in the comment area and communicate with everyone.

Good morning world | 50 tankers exploded in the Afghan capital, killing 9 people.

Today’s "Good Morning World" includes: 50 oil tankers exploded in Kabul, Afghanistan, killing 9 people for unknown reasons; The United States completed the first commercial manned mission, and the "Dragon" spacecraft carried four astronauts back to Earth; The mandatory mask order for public transportation in the United States was extended to September; India set up an open-air crematorium in an abandoned quarry to cremate the dead.

Click on the phone to see the big picture-

Global focus

Nine people were killed when 50 tankers exploded in Kabul, Afghanistan, for unknown reasons.

On May 2, 2021, local time, the scene of the explosion of a tanker was filmed in northern Kabul, Afghanistan. Afghan Interior Ministry spokesman Tariq Ali An said on the 2nd that a tanker exploded at a gas station in the north of Kabul on the 1st night, killing 9 people and injuring at least 14 others.

On May 2, 2021, local time, firefighters were putting out a burning tanker at the scene of the explosion of a tanker in Kabul, Afghanistan. According to local media Dawn TV, a tanker parked next to the gas station exploded and caused the gas station to catch fire. At that time, there were 50 tankers waiting in line on the road to enter Kabul. The explosion caused many tankers to be ignited and exploded. At present, the cause of the explosion of the first tanker is unknown.

On May 2, 2021, local time, Kabul, Afghanistan, the scene of the tanker explosion. On May 1, 2021, local time, the United States and NATO began to withdraw their troops from Afghanistan.

On May 2, 2021, local time, Kabul, Afghanistan, the scene of the tanker explosion.

A quick tour of the world

Russia ushered in Orthodox Easter, and Putin appeared in the church to attend the ceremony.

On May 2, 2021, in Moscow, Russia, Russian President Vladimir Putin attended the Orthodox Easter ceremony in the church with a candle and his back against the Madonna.

India set up an open-air crematorium in an abandoned quarry to cremate the dead.

On May 1, 2021, local time, an open-air crematorium was set up in an abandoned granite quarry on the outskirts of Bangalore to cremate COVID-19.

The athletes’ village of the Indian Commonwealth Games will become a temporary COVID-19 ward.

On May 2, 2021, in New Delhi, India, the athletes’ village of the Commonwealth Games in India will become a temporary COVID-19 ward.

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The French ushered in the "May 1" Labor Day Parade in the COVID-19 epidemic.

On May 1st, 2021, local time, the French celebrated the May 1st Labor Day Parade during the COVID-19 epidemic. French officials informed that 100,000 people from all over France participated in the parade, including 17,000 people from Paris. The picture shows people holding banners in the parade.

Belgian people gathered to demonstrate and clashed with the police.

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The United States completed the first commercial manned mission, and the "Dragon" spacecraft carried four astronauts back to Earth.

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On May 2, 2021, local time, in Florida, USA, SpaceX’s manned "Dragon" spacecraft returned to Earth from the International Space Station and landed in the Gulf of Mexico near the southeastern Florida, USA, supporting the team to start work after the spacecraft landed.

A dog show was held in Moscow, and "Wang Xingren" showed his talents.

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Rising captures a new variant of stealing Trojan virus.

  Xinhua News Agency, Beijing, October 20-Rising Threat Intelligence Center has recently captured a new variant of the stealing Trojan virus.

  This latest variant virus of AgentTesla Stealing Trojan spreads through phishing emails, inducing users to decompress and run the Trojan virus in the attachment, so as to collect user’s browser, email, FTP, VPN, instant messaging and other software account passwords, as well as screen shots, keyboard keystrokes and other information.

  According to Rising security experts, the predecessor of AgentTesla virus is a commercial keyboard recorder. In the past few years, it has changed from a keyboard recorder to an out-and-out stealing Trojan virus.

  In addition to stealing secrets, the latest variant of AgentTesla can also counter the static scanning of security protection software, that is, it tries to bypass the static scanning through code confusion, data encryption and other means, which hinders the security personnel from analyzing its samples.

  Rising security experts said that the latest variant of AgentTesla was delivered to the user’s mailbox by phishing email, hidden in the Zip attached to the email, and disguised as the default icon of the Word document, so as to entice the user to decompress and run. Once the virus is run, it will replicate itself, set the registry self-startup item, then collect the user’s browser, email client, screen shots, record keyboard keystrokes and other information, and finally send it back to the attacker’s mailbox by email.

  According to Rising Company, it is found that some domestic enterprises have been attacked by this virus. Rising reminds users not to open suspicious files; Deploy gateway security products such as network security situation awareness and early warning system; Install effective antivirus software to intercept and kill malicious documents and Trojan viruses; Install system patches and important software patches in time.

Bulletin of the Second National Pollution Source Survey in Guangyuan City

Guangyuan ecological environment bureau

Guangyuan statistics bureau

Guangyuan agriculture village bureau

Guangyuan housing and urban construction bureau

Announcement on Issuing the Bulletin of the Second National Pollution Source Survey in Guangyuan City

According to the provisions of Article 31 of the National Pollution Source Survey Regulations, with the approval of the Office of the Second National Pollution Source Survey Leading Group in Sichuan Province and the consent of the Second National Pollution Source Survey Leading Group in Guangyuan City, the Bulletin of the Second National Pollution Source Survey in Guangyuan City is hereby issued.

Guangyuan ecological environment bureau Guangyuan statistics bureau

Guangyuan agriculture village bureau Guangyuan housing and urban construction bureau

the year of 2020twelvemoon2sun

Bulletin of the Second National Pollution Source Survey in Guangyuan City

According to the Regulations on the National Pollution Source Survey and the Notice of the State Council on Launching the Second National Pollution Source Survey (Guo Fa [201659No.), the standard time for the second national pollution source survey is2017yeartwelvemoon31Date and period data are as follows2017Year. The survey targets are industrial pollution sources (hereinafter referred to as "industrial sources"), agricultural pollution sources (hereinafter referred to as "agricultural sources"), domestic pollution sources (hereinafter referred to as "living sources"), centralized pollution control facilities and mobile sources.

According to the unified deployment, all relevant departments at all levels have carefully planned and organized, and the majority of census objects have strongly supported and actively participated. At present, the second national pollution source survey task in Guangyuan City, Sichuan Province has been completed, and the basic situation of various pollution sources, the discharge amount of major pollutants, pollution control, etc. have been found out, and key pollution source files and pollution source information databases have been established. The main data are now published as follows.

I. General situation

(A) the number of various census objects

Number of census objects in the city5661A (excluding mobile source). Include industrial sources.2020A scale farm for livestock and poultry.684A source of life2659Centralized pollution control facilities289A, and the number of census objects in administrative regions as a unit.nineA.

pictureone Figure of quantity proportion of various pollution sources

(2) Emissions of pollutants

1. Water pollutant discharge

Chemical oxygen demand38076.62Ton, ammonia nitrogen1763.47Tons, total nitrogen5518.93Ton, total phosphorus619.06Tons of animal and vegetable oil975.07Tons, petroleum3.42Ton, cyanide7.10G, heavy metals (lead, mercury, cadmium, chromium and metalloid arsenic, the same below)64.91Kilogram.

tableone Discharge of Main Water Pollutants in Guangyuan City

2. Discharge of water pollutants in river basin

Discharge of water pollutants in Guangyuan section of Jialing River Basin. Chemical oxygen demand35058.68Ton, ammonia nitrogen1616.94Tons, total nitrogen5078.14Ton, total phosphorus568.51Tons of animal and vegetable oil881.84Ton, cyanide6.35Dick. Among them, the water pollution discharge of the main stream of Jialing River and its main first-class tributaries is as follows:

The discharge of pollutants from the main stream of Jialing River is chemical oxygen demand.8864.27Ton, ammonia nitrogen332.87Tons, total nitrogen1086.90Ton, total phosphorus127.49Tons of animal and vegetable oil157.68Ton, cyanide4.37G;

The discharge amount of water pollutants in Bailong River is chemical oxygen demand.5129.02Ton, ammonia nitrogen367.25Tons, total nitrogen981.19Ton, total phosphorus101.22Tons of animal and vegetable oil175.25Ton, cyanide0.48G;

The pollutant discharge of Donghe River is chemical oxygen demand.11481.09Ton, ammonia nitrogen518.13Tons, total nitrogen1653.48Ton, total phosphorus183.99Tons of animal and vegetable oil316.03Ton, cyanide1.50G;

The pollutant discharge of Xihe River is chemical oxygen demand.5104.93Ton, ammonia nitrogen209.34Tons, total nitrogen740.32Ton, total phosphorus84.35Tons of animal and vegetable oil120.59Ton, cyanide0G;

The pollutant discharge of Nanhe River is chemical oxygen demand.2396.31Ton, ammonia nitrogen102.64Tons, total nitrogen301.31Ton, total phosphorus36.47Tons of animal and vegetable oil55.83Ton, cyanide0G;

The pollutant discharge of Wenxi River is chemical oxygen demand.686.94Ton, ammonia nitrogen28.81Tons, total nitrogen103.05Ton, total phosphorus11.81Tons of animal and vegetable oil16.35Ton, cyanide0G;

Baixihao water pollutant discharge is chemical oxygen demand.1396.11Ton, ammonia nitrogen60.90Tons, total nitrogen211.89Ton, total phosphorus23.17Tons of animal and vegetable oil40.12Ton, cyanide0Dick.

The discharge of water pollutants in Guangyuan section of Qujiang River Basin is chemical oxygen demand.3017.94Ton, ammonia nitrogen143.53Tons, total nitrogen440.79Ton, total phosphorus50.55Tons of animal and vegetable oil93.23Ton, cyanide0.75Dick. Among them, the pollutant discharge of enyang River is chemical oxygen demand.1022.48Ton, ammonia nitrogen49.29Tons, total nitrogen136.69Ton, total phosphorus16.42Tons of animal and vegetable oil28.34Ton, cyanide0Dick.

table2Discharge of Main Water Pollutants in Guangyuan Section of Jialing River and Qujiang River Basin

3. Emissions of air pollutants

sulphur dioxide0.59Ten thousand tons, nitrogen oxides1.54Ten thousand tons, particulate matter2.11Ten thousand tons, this census conducted a tentative survey of volatile organic compounds in some industries and fields. Volatile organic compounds0.90Ten thousand tons.

picture2 Map of Emission of Major Air Pollutants in Guangyuan City Unit: 10,000 tons

Second, industrial sources

(1) Basic information

Industrial enterprise or industrial activity unit2020A.

The number of industrial source census objects is in the topthreeCounty: Lizhou District418Cangxi county401Wangcang county.332A. the above-mentionedthreeThe total number of industrial source census objects accounted for by regions.56.98%.

The number of industrial source census objects is in the topthreeIndustry: non-metallic mineral products industry528Wood processing and wood, bamboo, rattan, palm and grass products industries.272Agricultural and sideline food processing industry247A. the above-mentionedthreeIndustry accounts for the total number of industrial source census objects51.83%.

(2) Water pollutants

Wastewater treatment facilities in industrial enterprises497Set, design processing capacity16.37Ten thousand cubic meters/Daily and annual actual wastewater treatment capacity1052.14Ten thousand cubic meters. Water pollutant discharge is chemical oxygen demand.365.22Ton, ammonia nitrogen7.91Tons, total nitrogen34.04Ton, total phosphorus4.08Tons, petroleum3.42Ton, cyanide7.10Gram, heavy metal61.11Kilogram.

Chemical oxygen demand (cod) emissions rank in the topthreeIndustry: agricultural and sideline food processing industry177.63Tons, wine, beverage and refined tea manufacturing industry.58.09Tons, coal mining and washing industry51.70Tons. the above-mentionedthreeThe total amount of chemical oxygen demand emissions from industrial sources accounted for by three industries78.70%.

Ammonia nitrogen emissions are in the topthreeIndustry: agricultural and sideline food processing industry5.46Tons of water production and supply industry0.94Tons, wine, beverage and refined tea manufacturing industry.0.76Tons. the above-mentionedthreeThe total amount of ammonia nitrogen emissions from industrial sources accounted for by three industries90.52%.

Total nitrogen emissions are at the top.threeIndustry: agricultural and sideline food processing industry17.79Tons of water production and supply industry10.73Tons, wine, beverage and refined tea manufacturing industry.2.24Tons. the above-mentionedthreeTotal nitrogen emissions from industrial sources accounted for by three industries90.36%.

Total phosphorus emissions are in the top position.threeIndustry: agricultural and sideline food processing industry2.6Tons of water production and supply industry0.56Tons, food manufacturing industry0.47Tons. the above-mentionedthreeTotal phosphorus emissions from industrial sources accounted for by three industries88.97%.

Oil emissions are at the top.threeIndustry: metal products industry1.97Tons, coal mining and washing industry0.59Tons, nonmetallic mineral products industry0.34Tons. the above-mentionedthreeThe total amount of oil emissions from industrial sources accounted for by three industries84.80%.

Cyanide emission industry: pharmaceutical manufacturing industry7.10G, other industries have no emissions.

Heavy metal emission industry: coal mining and washing industry61.09Kilogram, pharmaceutical manufacturing industry0.01Kilogram, automobile manufacturing industry2.00Dick. the above-mentionedthreeThe total amount of heavy metal emissions from industrial sources accounted for by three industries99.98%.

(3) Air pollutants

Desulfurization facilities in industrial enterprisesfifty-sixSet, denitrification facilitiesnineSet, dust removal facilitiesnine hundred and forty-fiveSet. The emission of air pollutants is sulfur dioxide.4186.51Tons, nitrogen oxides4748.45Tons of particulate matter13946.22Tons, volatile organic compounds584.79Tons.

Sulfur dioxide emissions are at the top.threeIndustry: non-metallic mineral products industry2444.75Tons, nonferrous metal smelting and rolling processing industry1106.98Tons, oil, coal and other fuel processing industries.148.48Tons. the above-mentionedthreeThe total amount of sulfur dioxide emissions from industrial sources accounted for by three industries88.38%.

Nitrogen oxide emissions are in the top.threeIndustry: non-metallic mineral products industry3355.57Tons, oil, coal and other fuel processing industries.347.27Tons, chemical raw materials and chemical products manufacturing industry297.08Tons. the above-mentionedthreeThe total amount of nitrogen oxide emissions from industrial sources accounted for by three industries84.24%.

Particulate matter emissions rank first.threeIndustry: non-metallic mineral products industry6906.10Tons, coal mining and washing industry4167.14Ton, non-metallic ore mining and dressing industry1133.05Tons. the above-mentionedthreeThe total amount of particulate matter emissions from industrial sources accounted for by three industries87.52%.

The emission of volatile organic compounds ranks in the top.threeIndustry: non-metallic mineral products industry258.08Tons, oil, coal and other fuel processing industries.80.85Tons, chemical raw materials and chemical products manufacturing industry52.20Tons. the above-mentionedthreeTotal emissions of volatile organic compounds from industrial sources accounted for by three industries66.88%.

(4) Industrial solid waste

1. General industrial solid waste

Output of general industrial solid waste172.07Ten thousand tons, comprehensive utilization155.78Ten thousand tons (including comprehensive utilization of previous years’ storage)3.00Tons), disposal capacity14.02Ten thousand tons, this year’s storage capacity2.27Ten thousand tons, dumped and discarded5.33Tons.

2. Hazardous waste

Hazardous waste output4077.29Tons, comprehensive utilization and disposal capacity3991.70Tons, year-end cumulative storage195.29Tons.

(5) Associated radioactive mines

Associated radioactive mines are mainly targeted at those that may be associated with natural radionuclides.15Activity units of mineral mining, smelting and processing industries. Through the whole cityeightClass key industries186The initial test and screening of 100 enterprises have determined the enterprises to be included in the detailed investigation.threeHome, mainly distributed in wangcang county, Chaotian District, are all coal mining enterprises.

Iii. Agricultural sources

(1) Basic information

Counties and districts involved in plantingeightA county of aquaculture.sevenCounties and districts of livestock and poultry breeding industryeightA household survey of livestock and poultry scale farms684A.

Discharge of pollutants from agricultural source water: chemical oxygen demand19404.09Ton, ammonia nitrogen387.06Tons, total nitrogen3212.98Ton, total phosphorus447.88Tons.

(2) Planting industry

Discharge (loss) of water pollutants: ammonia nitrogen189.32Tons, total nitrogen1911.02Ton, total phosphorus206.69Tons.

Usage of plastic film2647Ton, cumulative residue340.66Tons.

(3) Livestock and poultry breeding industry

Water pollutant discharge: chemical oxygen demand18946.88Ton, ammonia nitrogen177.14Tons, total nitrogen1242.81Ton, total phosphorus230.12Tons. Among them:

Discharge of water pollutants from livestock and poultry farms: chemical oxygen demand9263.06Ton, ammonia nitrogen81.79Tons, total nitrogen669.60Ton, total phosphorus116.71Tons.

(4) Aquaculture (excluding algae)

Water pollutant discharge: chemical oxygen demand457.21Ton, ammonia nitrogen20.60Tons, total nitrogen59.15Ton, total phosphorus11.07Tons.

Fourth, the source of life

(1) Basic information

Life source census object2659A. In which: Administrative Village2411Unit boilers of non-industrial enterprises58Oil storage depotoneGe, gas station189A. Urban residents’ living sources are based on urban areas and counties (including towns).

(2) Water pollutants

Discharge of pollutants from domestic source water: chemical oxygen demand18262.98Ton, ammonia nitrogen1358.43Tons, total nitrogen2259.70Ton, total phosphorus166.94Tons of animal and vegetable oil975.07Tons.

Discharge of pollutants from urban domestic source water: chemical oxygen demand6228.03Ton, ammonia nitrogen719.21Tons, total nitrogen1042.14Ton, total phosphorus74.50Tons of animal and vegetable oil201.94Tons.

Discharge of pollutants from rural domestic source water: chemical oxygen demand12034.95Ton, ammonia nitrogen639.22Tons, total nitrogen1217.56Ton, total phosphorus92.44Tons of animal and vegetable oil773.13Tons.

(3) Air pollutants

Emissions of air pollutants from domestic sources: sulfur dioxide1762.58Tons, nitrogen oxides1364.84Tons of particulate matter6600.12Tons, volatile organic compounds5787.70Tons.

V. Centralized pollution control facilities

(1) Basic information

Centralized sewage treatment unit100Units for centralized treatment and disposal of domestic garbage186Units for centralized utilization and disposal (treatment) of hazardous wastesthreeA.

Pollutant discharge of waste water (leachate) from garbage disposal and hazardous waste (medical waste) disposal: chemical oxygen demand44.33Ton, ammonia nitrogen10.07Tons, total nitrogen12.21Ton, total phosphorus0.16Tons, heavy metals3.80Kilogram.

Waste incineration and hazardous waste (medical waste) incineration waste gas pollutant emission: sulfur dioxide.18.21Tons, nitrogen oxides62.56Tons of particulate matter8.01ton(Garbage incineration power plant has been included in industrial sources.).

(II) Centralized sewage treatment

Urban sewage treatment plant92A, sewage treatment6041.02Ten thousand cubic meters; Industrial sewage centralized treatment plantfiveA, sewage treatment32.53Ten thousand cubic meters; Rural centralized sewage treatment facilitiesthreeA, sewage treatment8.07Ten thousand cubic meters. Total annual sewage treatment6081.61Ten thousand cubic meters.

Reduction of water pollutants: chemical oxygen demand9606.83Ton, ammonia nitrogen1123.49Tons, total nitrogen1680.73Ton, total phosphorus119.40Tons of animal and vegetable oil148.86Tons.

Dry sludge output8636.00Ton, disposal capacity7040.20Tons.

(3) Centralized treatment and disposal of domestic garbage

Garbage disposal capacity54.36Ten thousand tons, of which: landfill.46.18Ten thousand tons, burning8.18Ten thousand tons.

(4) centralized utilization and disposal (treatment) of hazardous wastes

Hazardous waste centralized utilization and disposal plantthreeA, including hazardous waste disposal plant.2Medical waste treatment (disposal) plantoneA. Design, disposal and utilization capacity33825ton/In, the actual disposal and utilization of hazardous waste17372Tons. Among them:

Medical waste1280Tons, comprehensive utilization of hazardous waste.16092Tons.

Six, mobile source

(1) Basic information

Mobile source survey objects include motor vehicles and off-road mobile sources. Statistical summary of motor vehicle ownership386231Total diesel power of vehicles and agricultural machinery209.51Ten thousand kilowatts, civil aviation aircraft take-off and landing sorties15397Time.

Emissions of air pollutants: nitrogen oxides9237.66Tons of particulate matter590.53Tons, volatile organic compounds2640.36Tons.

(2) Motor vehicle pollution sources

Emissions of air pollutants: nitrogen oxides3410.53Tons of particulate matter56.80Tons, volatile organic compounds1853.39Tons.

(3) Non-road mobile pollution sources

Emissions of air pollutants: nitrogen oxides5827.13Tons of particulate matter533.73Tons, volatile organic compounds786.97Tons. Among them:

Nitrogen oxides emitted by construction machinery1658.81Tons of particulate matter83.56Tons, volatile organic compounds168.81Tons;

Agricultural machinery emits nitrogen oxides.4094.26Tons of particulate matter447.71Tons, volatile organic compounds612.62Tons;

Nitrogen oxides emitted by civil aviation aircraft74.06Tons of particulate matter2.46Tons, volatile organic compounds5.54Tons.

First, the scope of pollution source survey

(1) Scope of general survey of industrial sources:Including the National Economic Industry Classification (GB/T
4754
2017) mining, manufacturing, electricity, heat, gas and water production and supply industries.threeAmong the categories41All industrial enterprises or industrial activity units in each industry. May be accompanied by natural radionuclides.eightClass key industries15Activity units of mineral mining, smelting and processing industries; Industrial parks (industrial parks) in national and provincial development zones. Does not include sewage treatment and its recycling (industry code is 4620) enterprise.

(two) the scope of agricultural source survey:Including planting, livestock and poultry breeding (excluding retail investors) and aquaculture (excluding algae).

(three) the scope of life source survey:Including the production and discharge of domestic sewage in urban areas, counties, towns and administrative villages, the energy use of urban and rural residents, boilers, oil storage tanks and gas stations in non-industrial enterprises.

(four) the scope of centralized pollution control facilities:Including centralized sewage treatment units, domestic garbage centralized treatment and disposal units and hazardous waste centralized utilization and disposal (treatment) units.

(five) the scope of mobile source survey:Including motor vehicles and non-road mobile sources, the survey was published in administrative districts.

(six) operating ships accounting waters:Including inland rivers and coastal waters. Among them, the accounting scope of coastal waters is the "Implementation Plan of Ship Air Pollutant Emission Control Zone" issued by the Ministry of Transport (Shanghai [2018168Number) in the coastal control area.

(seven) accounting scope of volatile organic compounds:The energy consumption of industrial enterprises and the production technology of main products include organized emission, urban and rural residents’ living consumption, the use of building coatings and adhesives, urban asphalt road pavement, foreign oil storage and civil gas stations, motor vehicles and off-road mobile sources.

(8) Guangyuan section of Jialing River Basin:Total length of rivers in Guangyuan, Jialing River261.5km, total basin area14880km2. Entering datan town in Chaotian District, it flows through Chaotian District, Lizhou District, Economic Development Zone, Zhaohua District, Jiange County and Cangxi County, and flows out of Guangyuan City into Langzhong City in Bamiao Town of Cangxi County, and flows through Guangyuan.sixCounties,36Towns, towns and offices,150An administrative village. Its watershed area is larger than500The first-class tributaries with a square kilometer mainly include Bailong River, Donghe River, Xihe River, Nanhe River, Wenxi River and Baixihao.

(9) Bailong River:Bailong River is the largest tributary on the right bank of the upper reaches of Jialing River, and the length of Bailong River in Guangyuan is88.3km, basin area6212km2, relative gap108m, the average river bed slope is about1.2Per thousand, multi-year average flow339mthree/s, velocity1.22m/s. After entering Yaodu Town, Qingchuan County, its main stream flows through Qingchuan County, Lizhou District, Economic Development Zone and Zhaohua District in turn from northwest to southeast, and flows into Jialing River in Zhaohua Ancient Town, Zhaohua District.

(10) East River:A tributary of the left bank of Jialing River. It originates from Daijiahe Dam at the southern foot of Dongmicang Mountain in Taoyuan Township, Nanjiang County, Bazhong City, flows through Nanjiang County, wangcang county, Cangxi County and Langzhong City, and joins Jialing River in Liangshan Village, Wencheng Town, Langzhong City. Total length of main stream of Donghe River294km, basin area5181km2, of which the domestic area4143.4km2Average river gradient1.73Per thousand, the average annual precipitation depth for many years1164.6mmAverage annual runoff depth for many years.642.9mmAverage discharge of estuary for many years106mthree/s.

(eleven) Xihe:A tributary of the right bank of Jialing River. Originated in Yinjiasi Village, Yunji Township, jiangyou city, it flows through jiangyou city, Jiange County, Langzhong City, nanbu county and Peng ‘an County, and joins Jialing River in Yin He Village, Pingtou Township, Peng ‘an County. Total length of main stream300km, basin area3692km2, of which the domestic river basin area1072km2Average river gradient0.621Per thousand, the average annual precipitation depth for many years956.1mmAverage annual runoff depth for many years.316.3mmAverage discharge of estuary for many years37mthree/s.

(12) Nanhe:A tributary of the left bank of Jialing River. Originated in Yang Jiacun, Lianghekou Township, Chaotian District, Guangyuan City, it flows through Chaotian District, Zhaohua District and Lizhou District, and joins Jialing River at the lower two estuaries of Tiancheng Bridge in downtown Guangyuan City. Total length of main stream of Nanhe River79km, basin area1076km2River gradient9.38Per thousand, the average precipitation depth in the basin for many years1055.5mmAverage runoff depth for many years546.5mmAverage discharge of estuary for many years18.7mthree/s.

(13) Wenxi River:A tributary of the right bank of Jialing River. Originated in Jianshanzi, Wuzhi Village, northwest of Yandian Town, Jiange County, it flows through Yandian Town, Yaojia Township, Beimiao Township, Chengbei Town, Pu ‘an Town and Wenxi Township in Jiangkou Town, Jiange County and joins Jialing River. Total length of main stream59km, basin area534.2km2, of which the domestic river basin area534.2km2Average river gradient3.12Per thousand, the average annual precipitation depth for many years1027.6mmAverage annual runoff depth for many years.466.5mmAverage discharge of estuary for many years7.90mthree/s.

(14) Bai Xihao:A tributary of the right bank of Jialing River. Originated in Yonghong Village, Long Yuan Town, Jiange County, it flows through Hefeng Township, Bailong Town, Beiya Township, Gongxing Town, Tu Shan Township, Xiangchen Town, Helou Township, Siyi Town, Qiaolou Township, Chanlin Township, Cangxi County, Bamiao Town, Zaobi Township, Yakou Township and Jiangnan Township in Langzhong City. Total length of main stream100km, basin area803km2, of which the domestic river basin area544.3km2Average river gradient1.82Per thousand, the average annual precipitation depth for many years969.3mmAverage annual runoff depth for many years.306.0mmAverage discharge of estuary for many years7.79mthree/s.

(15) Guangyuan section of Qujiang River Basin:The part of Qujiang River Basin in Guangyuan City is mainly the upstream rivers and their sources of its tributaries: Xiaba River, Xiasha River, Siyang River and Maoxi River. Runoff is mainly replenished by precipitation, and the basin area is about.1350Square kilometers.

(16) enyang River:The first-class tributary on the right bank of Qujiang River. Originated in Qiaoban Village, Shuimo Township, wangcang county, it flows through wangcang county, Nanjiang County, Bazhou District and Enyang District of Bazhong City and joins Qujiang River in Sanjiangkou Community, sanjiang town, Bazhou District, Bazhong City. Total length of main stream142km, basin area3049km2, of which the domestic river basin area682.4km2Average river gradient2.02Per thousand, the average annual precipitation depth for many years1087.9mmAverage annual runoff depth for many years.452.2mmAverage discharge of estuary for many years43.7mthree/s.

Second, others

(1) Counties and districts:The second national census of pollution sources regards Guangyuan Economic and Technological Development Zone as an independent census at the county level to account for the generation and discharge of pollutants. Therefore, the term "county" in this bulletin generally refers to the collection of Cangxi County, wangcang county, Jiange County, Qingchuan County, Lizhou District of Guangyuan City, Zhaohua District of Guangyuan City, Chaotian District of Guangyuan City and Guangyuan Economic and Technological Development Zone, except in certain circumstances.

(2) Error:No mechanical adjustment has been made for the errors caused by the choice of decimals in the total figures and some calculated data in the bulletin.

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