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报告导航:研究报告—
制造业—汽车
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2017-2020年全球和中国三元材料及电池行业研究报告 |
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字数:6.6万 |
页数:255 |
图表数:241 |
中文电子版:9000元 |
中文纸版:4500元 |
中文(电子+纸)版:9500元 |
英文电子版:2600美元 |
英文纸版:2800美元 |
英文(电子+纸)版:2900美元 |
编号:LT031
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发布日期:2017-02 |
附件:下载 |
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2016年,全球正极材料出货量同比2015年增长了26.7%。由于电动车的高速增长的需求,LFP 与NCA 呈现快速增速增长,NCA 主要是用于Panasonic 的18650 圆柱体电池,供给Tesla 电动车,LFP大幅增长主要是由于中国的电动汽车,尤其是电动客车的旺盛需求,以及储能领域的应用。
目前全球电动乘用车用正极材料基本上以三元材料和锰酸锂为主,而中国电动乘用车则是LFP和三元材料都有所使用,未来趋势是三元材料将逐渐成为主流。在商用车方面。随着2017年起,中国对商用车三元电池的解禁,将进一步释放三元材料的潜在需求。
2016年中国锂电池正极材料产量16.16万吨,同比增长43%。具体来看,磷酸铁锂产量5.7万吨,同比增长75%。磷酸铁锂大幅增长主要受动力电池及储能锂电池带动。三元材料产量5.43万吨,同比增长49%,增长主要受新能源乘用车、锂电自行车、中低端数码锂电池等市场带动。钴酸锂出货量同比去年增长9.4%,出货量3.49万吨。
在经历了2013~2015年上半年的低迷后,随着新能源汽车在 2015年下半年的快速增长,三元材料在各细分领域的渗透率的不断提升,国内三元材料均价自 2015 年下半年开始迅速上扬,2016年NCM523的价格在14-15万吨左右。
中国主要的三元材料生产商基本都已开始新建项目、扩大产能。2016年湖南杉杉、厦门钨业、宁波釐和、深圳振华以及新乡天力锂能等前十家三元材料企业总体产能在3万吨左右,市占率约60%。
目前国内仅极少数正极材料企业具备高镍型NCM622产能,当升科技目前已具备2800吨NCM622产能,是国内量产规模最大的企业,2017年其江苏二期4000吨NCM622产能也有望投产。
从技术趋势来看,新型富锂层状三元材料由于其极高的比容量和优秀的循环性能,很可能被用作未来新型高比能量锂离子电池的正极材料。目前该材料0.1C首次放电高于250mAh/g,循环30次后,容量保持率大于90%,表现出优异的电化学性能。
水清木华研究中心《2017-2020年全球和中国三元材料及电池行业研究报告》着重研究了以下内容:
全球及中国三元材料供需关系,尤其是在新能源汽车、消费电子等终端领域的份额占比;
全球及中国竞争格局,包括国内外企业市场份额占比、产能规划、市场格局等;
全球及中国三元材料技术路线及发展趋势;
三元材料上下游产业细分市场分析,包括钴金属、碳酸锂、三元前驱体和三元锂电池等产业;
三元正极材料主要应用增长点,全球及中国电动汽车产业分析;
日本、韩国、比利时、德国等国6家三元正极材料厂商经营、技术、发展规划及产销动态;
国14家三元正极材料厂商经营、技术、发展规划及产销动态;
日本、韩国、欧洲等7家三元锂电池厂商经营、技术、发展规划及产销动态;
中国9家三元锂电池厂商经营、技术、发展规划及产销动态。
In 2016, the global shipment of cathode materials grew 26.7% year on year. Thanks to brisk demand from electric vehicles, LFP and NCA show rapid growth among which NCA gets primarily used for Panasonic 18650 cylindrical batteries (to be supplied to Tesla EVs) and substantial growth of LFP benefits mainly from China’s EV demand, particularly robust demand from electric buses as well as application in energy storage field.
Globally, the cathode materials used for electric passenger cars are mostly ternary materials and lithium manganate; however, Chinese electric passenger cars adopt both of LFP and ternary materials. Ternary materials tend to be the mainstream in the future. In the aspect of commercial vehicles, the lifting of the ban on ternary batteries for commercial vehicle in 2017 will conduce to the demand growth for ternary materials.
In 2016, China produced 161,600 tons of cathode materials, a year-on-year increase of 43%. Specifically, the LiFePO4 output soared 75% year on year to 57,000 tons, under the impetus of power batteries and energy storage lithium batteries. Driven by new energy passenger cars, lithium battery bicycles, medium and low-end digital lithium batteries and other markets, the output of ternary materials swelled 49% year on year to 54,300 tons. The LiCoO2 shipment jumped 9.4% year on year to 34,900 tons.
After experiencing the downturn in 2013-H1 2015, ternary materials witnessed rising penetration rates in all sub-fields with the rapid growth of new energy vehicles in H2 2015. In China, the average price of ternary materials ascended swiftly from H2 2015, and the NCM523 price hit RMB140,000 -150,000 / ton in 2016.
Major ternary material producers in China have begun to build new projects and expand capacity. In 2016, the overall capacity of top ten ternary material enterprises including Hunan Shanshan, Xiamen Tungsten, Ningbo Jinhe, Shenzhen Zhenhua and Xinxiang Tianli Energy fetched 30,000 tons, enjoying the market share of about 60%.
At present, only a small number of domestic cathode material enterprises boast high nickel NCM622 capacity, for instance, Beijing Easpring Material Technology is the largest Chinese enterprise with the NCM622 capacity of 2,800 tons, and will put its Jiangsu project phase II (NCM622 capacity: 4,000 tons) into production in 2017.
As concerns technology trends, the novel lithium-rich laminated ternary materials are possible to be utilized as the cathode material for future high-energy-density lithium-ion battery due to exceedingly high specific capacity and excellent cycling competence. Currently, first discharge of 0.1C (C stands for capacity) such material is higher than 250mAh/g and capacity retention ratio is above 90% after the cycling of thirty times, presenting remarkable electrochemical properties.
The report highlights the following:
Supply and demand of ternary materials in China and the world, particularly the shares of applications in such fields as new energy vehicle and consumer electronics;
Competitive landscape in China and beyond, covering domestic and overseas companies’ market share, capacity planning, market pattern, etc.;
Technology routes and development trends of ternary materials in China and the world;
Analysis on upstream and downstream market segments of ternary materials, consisting of cobalt metal, lithium carbonate, ternary precursor, ternary lithium battery, etc.;
Key application growth points of ternary cathode materials, and analysis on electric vehicle industry in China and the world;
Operation, technologies, development plans and production & sales dynamics of six manufacturers of ternary cathode materials from countries like Japan, S.Korea, Belgium and Germany;
Operation, technologies, development plans and production & sales dynamics of fourteen Chinese ternary cathode material manufacturers;
Operation, technologies, development plans and production & sales dynamics of seven producers of ternary lithium battery from nations such as Japan, S.Korea and Europe;
Operation, technologies, development plans and production & sales dynamics of nine Chinese ternary lithium battery manufacturers.
第一章 三元正极材料概述 1.1 定义 1.2 分类 1.2.1 镍钴锰三元正极材料(NCM) 1.2.2 镍钴铝三元正极材料(NCA) 1.3生产方法
第二章 全球三元正极材料行业 2.1 全球正极材料市场综述 2.2全球三元正极材料市场 2.2.1 出货量 2.2.2 价格 2.2.3市场份额 2.2.4 企业竞争格局 2.2.5 技术趋势 2.3全球主要国家或地区三元正极材料市场 2.3.1日本 2.3.2韩国
第三章 中国三元正极材料行业 3.1 中国正极材料市场综述 3.2 中国三元正极材料市场 3.2.1出货量 3.2.2价格 3.2.3市场规模 3.2.4竞争格局 3.3政策环境 3.4发展趋势
第四章 三元正极材料产业链 4.1产业链上游 4.1.1 钴 4.1.2碳酸锂 4.1.3三元前驱体 4.2 产业链下游 4.2.1 消费电子(3C)锂电池 4.2.2动力锂电池 4.2.3三元正极材料锂电池
第五章 全球及中国电动汽车市场 5.1全球电动汽车市场 5.1.1整体市场 5.1.2美国 5.1.3欧洲 5.1.4日本 5.2中国电动汽车市场 5.2.1新能源汽车产量 5.2.2新能源汽车销量
第六章 国外三元正极材料企业 6.1比利时Umicore 6.1.1公司简介 6.1.2 财务运营分析 6.1.3生产基地 6.1.4在华布局 6.1.5三元正极材料业务 6.2 日本Nichia 6.2.1公司简介 6.2.2发展历程 6.2.3财务运营分析 6.2.4产量 6.3韩国L&F 6.3.1公司简介 6.3.2财务运营分析 6.3.3产量 6.4日本Toda Kogyo 6.4.1公司简介 6.4.2财务运营分析 6.4.3 三元正极材料业务 6.5 德国BASF 6.5.1 公司简介 6.5.2 全球及中国布局 6.5.3 财务运营分析 6.5.4 三元正极材料业务 6.5.5 技术路线 6.6 日本Sumitomo Metal Mine 6.6.1 公司简介 6.6.2 财务运营分析 6.6.3全球布局
第七章 中国三元正极材料企业 7.1 湖南杉杉新材料有限公司 7.1.1公司简介 7.1.2财务运营分析 7.1.3产销量分析 7.1.4 产品分析 7.1.5核心竞争力分析 7.2北京当升材料科技股份有限公司 7.2.1公司简介 7.2.2发展历程 7.2.3财务运营分析 7.2.4产能分析 7.2.5客户分析 7.2.6三元正极材料业务 7.2.7业绩预测 7.3厦门钨业股份有限公司 7.3.1公司简介 7.3.2财务运营分析 7.3.3产能分析 7.3.4核心竞争力分析 7.3.5业绩预测 7.4格林美股份有限公司 7.4.1公司简介 7.4.2发展历程 7.4.3财务运营分析 7.4.4产能 7.4.5三元正极材料业务 7.4.6核心竞争力 7.5福建众和股份有限公司 7.5.1公司简介 7.5.2发展历程 7.5.3财务运营分析 7.5.4产能 7.5.5核心竞争力 7.5.6业绩预测 7.6金瑞新材料科技股份有限公司 7.6.1公司简介 7.6.2财务运营分析 7.6.3产能 7.6.4业绩预测 7.7宁波金和新材料股份有限公司 7.7.1公司简介 7.7.2财务运营分析 7.7.3产能 7.7.4 核心竞争力 7.8深圳市天骄科技开发有限公司 7.8.1公司简介 7.8.2财务运营分析 7.8.3产能 7.8.4业绩预测 7.9新乡天力锂能股份有限公司 7.9.1公司简介 7.9.2财务运营分析 7.9.3产能 7.9.4业绩预测 7.10河南科隆新能源有限公司 7.10.1公司简介 7.10.2财务运营分析 7.10.3产能 7.10.4业绩预测 7.11湖南长远锂科有限公司 7.11.1公司简介 7.11.2财务运营分析 7.11.3产能分析 7.12北大先行科技产业有限公司 7.12.1公司简介 7.12.2三元正极材料产品 7.13湖南瑞翔新材料股份有限公司 7.13.1公司简介 7.13.2三元正极材料业务 7.14 江西赣锋锂业股份有限公司 7.14.1公司简介
第八章 全球主要三元锂电池厂商 8.1松下(Panasonic) 8.1.1公司简介 8.1.2电池技术 8.1.3业务发展及展望 8.1.4在华布局 8.1.5客户分析 8.1.6产量产能 8.2 AESC 8.2.1公司简介 8.2.2电池技术 8.2.3业务发展及展望 8.2.4在华布局 8.2.5产能产量 8.3LEJ 8.3.1公司简介 8.3.2电池技术 8.3.3业务发展及展望 8.3.4客户分析 8.3.5在华布局 8.3.6产能产量 8.4 LG化学(LGC) 8.4.1公司简介 8.4.2电池技术 8.4.3业务发展及展望 8.4.4客户分析 8.4.5在华布局 8.4.6产能产量 8.5三星SDI 8.5.1公司简介 8.5.2电池技术 8.5.3业务发展及展望 8.5.4客户分析 8.5.5在华布局 8.5.6产能产量 8.6SK创新(SKI) 8.6.1公司简介 8.6.2电池技术 8.6.3业务发展及展望 8.6.4在华布局 8.6.5产能产量 8.7Li-Tec&Accumotive 8.7.1公司简介 8.7.2电池技术 8.7.3业务发展及展望 8.7.4客户分析
第九章 中国主要三元锂电池厂商 9.1天津力神 9.1.1 公司简介 9.1.2 电池技术 9.1.3 业务发展和展望 9.1.4客户分析 9.1.5 产能产量 9.2 东莞新能源 9.2.1公司简介 9.2.2 电池技术 9.2.3 业务发展及展望 9.2.4 产业链 9.2.5 产销和产能 9.3 比克电池 9.3.1 公司简介 9.3.2 电池技术 9.3.3 业务发展和展望 9.3.4 客户分析 9.3.5 产能产量 9.4 万向电动 9.4.1公司简介 9.4.2 电池技术 9.4.3 业务发展与展望 9.4.4 客户分析 9.5中聚电池 9.5.1 公司简介 9.5.2 电池技术 9.5.3 业务发展及展望 9.5.4 客户分析 9.5.5 产量产能 9.6 中信国安盟固利 9.6.1 公司简介 9.6.2 电池技术 9.6.3 业务发展及展望 9.7 中航锂电 9.7.1 公司简介 9.7.2 电池技术 9.7.3 R&D 9.7.4 业务发展及展望 9.7.5 客户分析 9.7.6 产量产能 9.8 国轩高科 9.8.1公司简介 9.8.2 电池技术 9.8.3业务发展及展望 9.8.4客户分析 9.8.5产销产能 9.9 沃特玛 9.9.1 公司简介 9.9.2电池技术 9.9.3业务发展和展望 9.9.4客户分析 9.9.5产销产能
1 Overview of Ternary Cathode Materials 1.1 Definition 1.2 Classification 1.2.1 Nickel-cobalt-manganese Ternary Cathode Material (NCM) 1.2.2 Nickel-cobalt-aluminum Ternary Cathode Material (NCA) 1.3 Production Methods
2 Global Ternary Cathode Material Industry 2.1 Overview of Global Cathode Material Market 2.2 Global Ternary Cathode Material Market 2.2.1 Shipment 2.2.2 Price 2.2.3 Market Share 2.2.4 Competition among Enterprises 2.2.5 Technology Trend 2.3 Ternary Cathode Material Market in Major Countries or Regions 2.3.1 Japan 2.3.2 South Korea
3 China Ternary Cathode Material Industry 3.1 Overview of Chinese Cathode Material Market 3.2 Chinese Ternary Cathode Material Market 3.2.1 Shipment 3.2.2 Price 3.2.3 Market Size 3.2.4 Competition among Enterprises 3.3 Policy 3.4 Development Trend
4 Ternary Cathode Material Industry Chain 4.1 Upstream 4.1.1 Cobalt 4.1.2 Lithium Carbonate 4.1.3 Ternary Precursor 4.2 Downstream 4.2.1 Lithium Battery of Consumer Electronics (3C) 4.2.2 Power Lithium-ion Battery 4.2.3 Ternary Cathode Material Lithium Battery
5 Global and Chinese Electric Vehicle Market 5.1 Global Electric Vehicle Market 5.1.1 Overall Market 5.1.2 The United States 5.1.3 Europe 5.1.4 Japan 5.2 Chinese Electric Vehicle Market 5.2.1 New Energy Vehicle Output 5.2.2 New Energy Vehicle Sales Volume
6 Foreign Ternary Cathode Materials Companies 6.1 Umicore 6.1.1 Profile 6.1.2 Financial Operation 6.1.3 Production Base 6.1.4 Layout in China 6.1.5 Ternary Cathode Material Business 6.2 Nichia 6.2.1 Profile 6.2.2 Development Course 6.2.3 Financial Operation 6.2.4 Output 6.3 L&F 6.3.1 Profile 6.3.2 Financial Operation 6.3.3 Output 6.4 Toda Kogyo 6.4.1 Profile 6.4.2 Financial Operation 6.4.3 Ternary Cathode Material Business 6.5 BASF 6.5.1 Profile 6.5.2 Layout in China and Worldwide 6.5.3 Financial Operation 6.5.4 Ternary Cathode Material Business 6.5.5 Technology Roadmap 6.6 Sumitomo Metal Mine 6.6.1 Profile 6.6.2 Financial Operation 6.6.3 Global Layout
7 Chinese Ternary Cathode Materials Enterprises 7.1 Hunan Shanshan Advanced MaterialCo., Ltd. 7.1.1 Profile 7.1.2 Financial Operation 7.1.3 Output and Sales Volume 7.1.4 Products 7.1.5 Core Competence 7.2 Beijing Easpring Material Technology Co., Ltd. 7.2.1 Profile 7.2.2 Development Course 7.2.3 Financial Operation 7.2.4 Capacity 7.2.5 Customers 7.2.6 Ternary Cathode Material Business 7.2.7 Performance Prediction 7.3 Xiamen Tungsten Co., Ltd. 7.3.1 Profile 7.3.2 Financial Operation 7.3.3 Capacity 7.3.4 Core Competence 7.3.5 Performance Prediction 7.4 GEM 7.4.1 Profile 7.4.2 Development Course 7.4.3 Financial Operation 7.4.4 Capacity 7.4.5 Ternary Cathode Material Business 7.4.6 Core Competence 7.5 Fujian Zhonghe Co., Ltd. 7.5.1 Profile 7.5.2 Development Course 7.5.3 Financial Operation 7.5.4 Capacity 7.5.5 Core Competence 7.5.6 Performance Prediction 7.6 Kingray New Materials Science & Technology Co., Ltd. 7.6.1 Profile 7.6.2 Financial Operation 7.6.3 Capacity 7.6.4 Performance Prediction 7.7 Ningbo Jinhe New Materials Co., Ltd. 7.7.1 Profile 7.7.2 Financial Operation 7.7.3 Capacity 7.7.4 Core Competence 7.8 Shenzhen TianjiaoTechnology Development Co., Ltd. 7.8.1 Profile 7.8.2 Financial Operation 7.8.3 Capacity 7.8.4 Performance Prediction 7.9 Xinxiang Tianli Energy Co., Ltd. 7.9.1 Profile 7.9.2 Financial Operation 7.9.3 Capacity 7.9.4 Performance Prediction 7.10 Henan Kelong New Energy Co., Ltd. 7.10.1 Profile 7.10.2 Financial Operation 7.10.3 Capacity 7.10.4 Performance Prediction 7.11 Hunan ChangyuanLico Co., Ltd. 7.11.1 Profile 7.11.2 Financial Operation 7.11.3 Capacity 7.12 Pulead Technology Industry Co., Ltd. 7.12.1 Profile 7.12.2 Ternary Cathode Materials 7.13 Hunan Reshine New Material Co., Ltd. 7.13.1 Profile 7.13.2 Ternary Cathode Material Business 7.14 Jiangxi Ganfeng Lithium Co., Ltd.
8 Major Global Ternary Lithium Battery Manufacturers 8.1 Panasonic 8.1.1 Profile 8.1.2 Battery Technology 8.1.3 Business Development and Prospects 8.1.4 Layout in China 8.1.5 Customers 8.1.6 Output and Capacity 8.2AESC 8.2.1 Profile 8.2.2 Battery Technology 8.2.3 Business Development and Prospects 8.2.4 Layout in China 8.2.5 Capacity and Output 8.3LEJ 8.3.1 Profile 8.3.2 Battery Technology 8.3.3 Business Development and Prospects 8.3.4 Customers 8.3.5 Layout in China 8.3.6 Capacity and Output 8.4 LGC 8.4.1 Profile 8.4.2 Battery Technology 8.4.3 Business Development and Prospects 8.4.4 Customers 8.4.5 Layout in China 8.4.6 Capacity and Output 8.5 Samsung SDI 8.5.1 Profile 8.5.2 Battery Technology 8.5.3 Business Development and Prospects 8.5.4 Customers 8.5.5 Layout in China 8.5.6 Capacity and Output 8.6 SKI 8.6.1 Profile 8.6.2 Battery Technology 8.6.3 Business Development and Prospects 8.6.4 Layout in China 8.6.5 Capacity and Output 8.7 Li-Tec&Accumotive 8.7.1 Profile 8.7.2 Battery Technology 8.7.3 Business Development and Prospects 8.7.4 Customers
9 Major Chinese Ternary Lithium Battery Manufacturers 9.1 Tianjin LishenBattery 9.1.1 Profile 9.1.2 Battery Technology 9.1.3 Business Development and Prospects 9.1.4 Customers 9.1.5 Capacity and Output 9.2 ATL 9.2.1 Profile 9.2.2 Battery Technology 9.2.3 Business Development and Prospects 9.2.4 Industry Chain 9.2.5 Output, Sales Volume and Capacity 9.3 China BAK Battery 9.3.1 Profile 9.3.2 Battery Technology 9.3.3 Business Development and Prospects 9.3.4 Customers 9.3.5 Capacity and Output 9.4 Wanxiang EV 9.4.1 Profile 9.4.2 Battery Technology 9.4.3 Business Development and Prospects 9.4.4 Customers 9.5 Sinopoly Battery 9.5.1 Profile 9.5.2 Battery Technology 9.5.3 Business Development and Prospects 9.5.4 Customers 9.5.5 Output and Capacity 9.6 CITIC GUOAN Mengguli 9.6.1 Profile 9.6.2 Battery Technology 9.6.3 Business Development and Prospects 9.7 China Aviation Lithium Battery 9.7.1 Profile 9.7.2 Battery Technology 9.7.3 R & D 9.7.4 Business Development and Prospects 9.7.5 Customers 9.7.6 Output and Capacity 9.8 Hefei Guoxuan High-tech Power Energy 9.8.1 Profile 9.8.2 Battery Technology 9.8.3 Business Development and Prospects 9.8.4 Customers 9.8.5 Output, Sales Volume and Capacity 9.9 OptimumNano 9.9.1 Profile 9.9.2 Battery Technology 9.9.3 Business Development and Prospects 9.9.4 Customers 9.9.5 Output, Sales Volume and Capacity
图:层状LiNi1/3Co1/3Mn1/3O2的结构示意图 图:三元正极材料性能三角 表:镍钴锰三元正极材料(NCM)性能参数 表:镍钴锰三元正极材料(NCM)对应金属需求量 表:三元协同效应优缺点 表:各型号NCM三元正极材料对比 图:各型号NCM三元正极材料成本分析 图:不同配比下NCM性能对比 表:镍钴铝三元正极材料(NCA)性能参数 表:镍钴铝三元正极材料(NCA)对应金属需求量 图:NMC、NCA、LFP对比 表:镍钴锰酸锂(NCM)生产方法特点 图:镍钴锰酸锂(NCM)化学共沉淀法工艺流程图 图:2012-2020年全球正极材料(LFP/NCM/LCO/LMO/NCA)出货量 图:2016年全球锂电池正极材料消费结构 表:三元正极材料及其他正极材料性能对比 图:锂离子电池正极材料发展方向 图:全球正极材料行业五力分析 图:2011-2016年全球三元正极材料(NCA/NCM)出货量 图:2010-2020年全球三元正极材料价格趋势 图:2020年正极材料(LFP、LCO、LMO、NCM)份额占比(电动汽车) 图:2020年正极材料(LFP、LCO、LMO、NCM)份额占比(3C电子消费品) 图:2014年全球三元正极材料厂商市场份额 图:全球三元正极材料专利申请情况 图:2015-2030年三元正极材料技术发展趋势 表:日本三元正极材料配套车型 图:2012-2015年日本镍钴锰(NCM)三元正极材料出货量 图:2012-2015年日本镍钴锰(NCM)三元正极材料销售收入 表:韩国三元正极材料配套车型 图:韩国三元正极材料发展路线 图:2015-2016年中国正极材料(NCM/LCO/LFP/LMO)出货量占比 图:2015Q1-2016Q2中国正极材料(NCM/LCO/LFP/LMO)产量 表:2016年上半年中国主要正极材料生产商产品产能及营收 图:2010-2016年中国正极材料价格走势 图:2011-2015年中国三元正极材料(NCM)出货量 图:2015-2020年国内三元正极材料(NCM/NCA)出货量 表:国内主要三元正极材料厂商产能 表:2015-2017年国内主要动力电池厂商产能(GWh) 图:2011-2016年国内NCM 523、磷酸铁锂价格(万元/吨) 图:2013-2020年中国三元正极材料市场规模 图:2016年国内主要三元正极材料厂商市场份额 图:2016年三元正极材料(分类型)出货量占比 表:国家政策对锂电池的要求 表:国内富锂三元正极材料研究现状 图:国内三元正极材料发展趋势 图:钴的主要用途占比 表:不同三元正极材料对应钴消耗量 图:全球钴资源储量分布 图:中国钴资源储量分布 图:2011-2015年中国钴供需 图:全球钴需求结构 图:全球钴供需关系及价格 图:中国钴需求结构 图:2012-2020年全球碳酸锂供给量 图:2012-2020年全球碳酸锂需求量 图:2012-2020年全球碳酸锂(分行业)需求量 图:2009-2020年中国碳酸锂产量 图:2012-2020年中国碳酸锂产量占全球总量比例 图:2009-2020年中国碳酸锂供需缺口 图:2013年全球碳酸锂下游消费结构 图:2015年全球碳酸锂下游消费结构 表:世界主流电动汽车厂商正极材料选择 图:国内主要厂商三元前驱体产能情况 图:2016年中国三元前驱体月度产量 表:2015年国家对三元前驱体出口退税政策 图:三元前驱体制备方法 表:主流三元正极材料前驱体制备工艺比较 图:2012-2020年全球锂电池需求结构 图:2015年全球锂电池消耗容量(分产品) 图:2013-2020年全球消费电子锂电池需求量及增速 图:2012-2020年全球手机销量及锂电池需求量 图:2012-2020年全球平板电脑销量及锂电池需求量 表:2013-2015年全球平板电脑市场竞争格局 图:2012-2020年全球笔记本电脑销量及锂电池需求量 图:2012-2020年全球电子烟销量及占比 图:2011-2020年全球电动汽车动力锂电池需求(分类型) 图:2011-2020年全球电动乘用车单车电池容量 图:2011-2020年中国动力锂电池供需关系 图:100Ah三元正极材料锂离子电池成本构成 图:2015-2020年三元正极材料电池能量密度发展趋势 图:2015年三元动力渗透率 图:2012-2015年三元电池在各类电动汽车装机占比 表:国外三元正极材料锂电池配套车型 表:国内新建或投产三元锂电池项目 表:2020年三元正极材料电池市场规模 表:2013-2016上半年全球电动乘用车销量对比(主要国家或地区) 图:国际纯电驱动乘用车市场化进展比较 图:2014-2016年全球新能源车(EV&PHEV)月度销量 图:2016年1-9月全球新能源汽车企业销量排行 图:2011-2020年全球电动乘用车(EV&PHEV)销量 表:2014-2016美国电动汽车月度销量 图:2014-2016年欧洲电动汽车月度销量 图:2013-2016日本电动汽车销量(分车型) 图:2010-2016上半年中国电动汽车产销量 图:2015-2016年中国电动乘用车月度产量 图:2015-2016年中国电动汽车(分专用车、商用车)月度产量 图:2015-2016年中国电动客车产量 图:2015-2016年中国纯电动货车产量 图:2016年中国纯电动乘用车车企产量分布 图:2015年-2016年10月中国电动乘用车(EV&PHEV)销量 图:2016年1-10月中国新能源乘用车销量(分车型)排行榜 表:2016年1-10月中国新能源汽车乘用车(EV、PHEV )企业销量及市场份额 图:2011-2015H2Umicore财务情况 图:Umicore全球正极材料生产基地 图:Umicore 中国业务现状 图:Umicore 中国办事处及业务分布情况 图:Umicore 镍钴锰三元正极材料(NCM)研发路线 图:日亚化学发展进程 图:2009-2014年 Nichia营业收入 图:2012、2013年Nichia正极材料产量 图:2006-2014年L&F总营收 图:2012、2013年L&F正极材料产量 图:2012-2015年户田工业财务情况 图:户田工业锂电池正极材料产品结构 图:户田工业三元正极材料产品性能 图:BASF全球一体化网络及生产基地 图:BASF中国布局及生产基地分布 图:2011-2015年BASF财务情况 图:巴斯夫主要三元正极材料产品 图:BASF全球正极材料研究及生产基地 图:BASF三元正极材料的研究重点及方法 图:BASF镍氢电池与铅酸电池的对比 图:2012-2015年SMM财务情况 图:FY2015 SMM 收入结构 图:SMM 材料业务全球布局情况 图:杉杉股份新能源领域组织结构 图:2010-2016年上半年湖南杉杉经营业绩 图:湖南杉杉正极材料产品线 表:湖南杉杉主要产品理化指标 表:当升科技参股控股公司 表:1992-2015年当升科技发展历程 图:2010-2016年上半年当升科技经营业绩 图:2016年H1当升科技主营构成(分产品) 图:2016年H1当升科技主营构成(分地区) 图:小型正极材料产品全球主要客户 图:当升科技主要正极材料产品 图:2011-2016年当升科技三元正极材料销量 图:当升科技正极材料技术路线 图:2015-2017年当升科技业绩预测 图:2010-2016H1年厦门钨业经营业绩 图:2016年H1厦门钨业主营构成(分产品) 图:2016年厦门钨业产能规划 图:2016-2017年厦门钨业业绩预测 表:2001-2016年格林美发展路线 图:2009-2016H1格林美经营业绩 图:2016年H1 格林美主营构成(分产品) 表:格林美现有产能和未来规划 图:格林美电池材料及回收业务基地布局 表:2013-2015年格林美三元正极材料业务营收 表:2016年格林美已签订主要三元材料及三元前驱体订单 图:2016-2018年格林美业绩预测 图:众和股份锂电产业链 表:众和股份锂电产业发展历程 图:2010-2016H1 众和股份经营业绩 图:2016年H1众和股份主营构成(分产品) 表:深圳天骄主要产品产能及规划 图:2016-2017年众和股份业绩预测 图:2010-2016H1 金瑞科技经营业绩 图:2016年H1金瑞科技主营构成(分产品) 表:金瑞科技产能明细 图:2016-2017年金瑞科技业绩预测 表:宁波金和产能明细 表:2013-2016H1 深圳天骄经营业绩 图:2016-2017年深圳天骄三元正极材料产能预测 表:2016-2017年深圳天骄业绩预测 图:2013-2016H1 天力锂能经营业绩 图:2015年天力锂能主营构成(分产品) 图:2015-2017年天力锂能产量预测 图:天力锂能正极材料主要客户 图:2015-2018年天力锂能业绩预测 图:2013年科隆新能源收入结构 表:科隆新能源三元正极材料产能明细 图:2015-2017年科隆新能源业绩预测(电池材料业务) 图:PU50A 产品特性 图:PU50B 产品特性 图:2008-2015财年松下经营业绩 图:2008/09-2013/14财年松下研发支出 图:2012-2014年松下营收构成(分segment) 图:2012-2014年松下运营利润构成(分业务) 图:2014年松下营收构成(分地区) 表:松下用于Tesla的NCA 18650电芯技术参数 图:松下 PHEV Cell材料成本构成 图:2013-2019年松下Automotive Batteries发展规划 图:2013-2019年松下汽车部门发展规划 图:2013-2019年松下各业务部门发展规划 表:Panasonic动力锂电池配套电动汽车 图:2013-2020年特斯拉电动汽车交付量 图:2011-2016年松下动力和储能电池出货量 图:2015年AESC股权结构图 图:Li-Tec高容量动力电池规格 图:Li-Tec高容量动力电池性能参数 图:Li-tec 德国卡门茨县动力电池工厂 图:天津力神股权结构图 图:2011-2016H1天津力神经营业绩 图:天津力神动力电芯(Cell)技术路线图 图:天津力神动力电池组(Module)技术路线图 表:天津力神卷绕式动力电芯(Cell)性能参数 表:天津力神叠片式动力电芯(Cell)性能参数 表:天津力神聚合物动力电芯(Cell)性能参数 表:天津力神动力电芯(Cell)技术参数 图:天津力神动力电池客户 表:天津力神动力电池组性能参数 图:2000-2016年天津力神锂电池产能 表:2012-2015年天津力神动力电池投资计划 图:2008-2014年ATL经营业绩 图:ATL集团里程碑 图:ATL动力及小型电池客户配套 表:ATL动力电池供应商 图:2012-2016年ATL动力及储能电池业务营收及出货量 图:2012-2015年ATL动力电池产量及产能利用率 表:ATL动力及小型电池产能布局 图:2008-2015H1比克电池经营业绩 图:2009-2014比克电池(分区域)营收构成 图:2010-2015H1年比克电池研发投入 表:比克电池动力电芯(Cell)技术参数 图:2014-2018年比克电池产品规划 2012-2017年比克18650电池能量密度提升规划 2015-2018年比克方形动力电池产品和能量密度提升规划 图:比克国际(天津)有限公司基本信息 图:大连比克动力电池有限公司基本信息 图:2009-2014比克动力锂电池销售收入 表:2013-2015年比克电池动力电池投资计划 图:2011-2015中聚电池营收和毛利率 图:2011-2015中聚电池净利润 表:中聚电池动力电芯技术参数 图:2010-2016H1中信国安盟固利经营业绩 表:中信国安盟固利正极材料技术参数 表:中信国安盟固利动力电池模组技术参数 图:2016年中航锂电股权结构图 图:2010-2014年中航锂电经营业绩 图:中航锂电纯电动汽车BMS 图:中航锂电电池产品认证 图:中航锂电全球销售网络 图:中航锂电主要客户 图:2009-2016H1国轩高科经营业绩 图:国轩高科磷酸铁锂动力电池规格参数 表:国轩高科动力电池配套车型技术参数 图:2009-2015年国轩高科动力电池组价格 表:2009-2015年国轩高科磷酸铁锂正极材料及动力电池产能 图:2009-2015国轩高科动力电池出货量 表:2015-2017年国轩高科产能规划
Structure Diagram of Laminated LiNi1/3Co1/3Mn1/3O2 Performance Comparison of Ternary Cathode Materials Performance Parameters of Ternary Cathode Material (NCM) Metal Demand from Ternary Cathode Material (NCM) Merits and Demerits of Ternary Synergy Comparison of Different Kinds of NCM Ternary Cathode Materials Cost Analysis of Different Kinds of NCM Ternary Cathode Materials Performance Comparison of NCM under Different Proportions Performance Parameters of Ternary Cathode Material (NCA) Metal Demand from Ternary Cathode Material (NCA) Comparison between NMC, NCA and LFP Features of NCM Manufacturing Method Chemical Coprecipitation Process for NCM Global Shipment of Cathode Materials (LFP/NCM/LCO/LMO/NCA), 2012-2020E Consumption Structure of Cathode Materials for Lithium Battery Worldwide, 2016 Performance Comparison between Ternary Cathode Materials and Other Cathode Materials Development Orientation of Cathode Materials for Lithium-ion Battery Michael Porter’s Five Forces Model of Global Cathode Material Industry Shipment of Ternary Cathode Materials (NCA/NCM) Worldwide, 2011-2016 Price Trend of Ternary Cathode Materials in the World, 2010-2020E Percentages of Cathode Materials (LFP/LCO/LMO/NCM) (for Electric Vehicle), 2020E Percentages of Cathode Materials (LFP/LCO/LMO/NCM) (for 3C Consumer Electronics), 2020E Global Market Share of Ternary Cathode Material Manufacturers, 2014 Application for Patents about Ternary Cathode Materials Worldwide Development Tendency of Ternary Cathode Material Technologies, 2015-2030E Vehicle Models Supported by Ternary Cathode Materials in Japan Shipment of Ternary Cathode Material (NCM) in Japan, 2012-2015 Sales Revenue of Ternary Cathode Material(NCM) in Japan, 2012-2015 Vehicle Models Supported by Ternary Cathode Materials in South Korea Ternary Cathode Material Development Roadmap in South Korea Shipment Percentages of Cathode Materials (NCM/LCO/LFP/LMO) in China, 2015-2016 Output of Cathode Materials (NCM/LCO/LFP/LMO) in China, 2015Q1-2016Q2 Product Capacity and Revenue of Key Cathode Material Manufacturers in China, 2016H1 Price Trend of Cathode Materials in China, 2010-2016E Shipment of Ternary Cathode Material (NCM) in China, 2011-2015 Shipment of Ternary Cathode Materials (NCM/NCA)in China, 2015-2020E Production Capacity of Major Ternary Cathode Material Manufacturers in China Production Capacity of Major Chinese Power Battery Manufacturers, 2015-2017 Prices of NCM 523 and LiFePO4 in China, 2011-2016 Market Size of Ternary Cathode Materials in China, 2013-2020E Market Share of Leading Ternary Cathode Material Manufacturers in China, 2016 Proportions for Shipment of Ternary Cathode Materials (by Type), 2016 Requirements Posed by National Policy on Lithium Battery Current Research on Lithium-rich Ternary Cathode Materials in China Development Trend of Ternary Cathode Materials in China Percentages of Cobalt’s Key Applications Cobalt Consumption of Different Ternary Cathode Materials Distribution of Cobalt Resource Reserves in the World Distribution of Cobalt Resource Reserves in China Cobalt Supply and Demand in China, 2011-2015 Structure of Cobalt Demand in the World Supply and Demand Relations and Price of Cobalt in the World Structure of Cobalt Demand in China Global Supply of Lithium Carbonate, 2012-2020E Global Demand for Lithium Carbonate, 2012-2020E Global Demand for Lithium Carbonate (by Sector), 2012-2020E Output of Lithium Carbonate in China, 2009-2020E China’s Output of Lithium Carbonate as a Percentage of Global Total, 2012-2020E Gap between Supply and Demand of Lithium Carbonate in China, 2009-2020E Downstream Application Structure of Lithium Carbonate, 2013 Downstream Application Structure of Lithium Carbonate, 2015 Cathode Materials Selected by World’s Major EV Manufacturers Ternary Precursor Capacity of Major Chinese Manufacturers Monthly Output of Ternary Precursors in China, 2016 National Policy of Export Rebates for Ternary Precursors in 2015 Ternary Precursor Preparation Method Comparison of Mainstream Ternary Cathode Material Precursor Preparation Processes Structure of Global Demand for Lithium Battery, 2012-2020E Global Consumption of Lithium Battery (by Product), 2015 Global Demand of Consumer Electronics for Lithium Battery and Growth Rate, 2013-2020E Global Sales Volume of Mobile Phones and Demand for Lithium Battery, 2012-2020E Global Sales Volume of Tablet PCs and Demand for Lithium Battery, 2012-2020E Competitive Landscape of Global Tablet PC Market, 2013-2015 Global Sales Volume of Notebook Computers and Demand for Lithium Battery, 2012-2020E Global Sales Volume of Electronic Cigarettes and Share (%), 2012-2020E Global Demand for Power Lithium-ion Battery (by Type) from Electric Vehicles, 2011-2020 Single-vehicle Battery Capacity of Electric Passenger Vehicle Worldwide, 2011-2020E Supply and Demand of Power Lithium-ion Battery in China, 2011-2020E Cost Structure of 100Ah Ternary Cathode Material Li-ion Battery Energy Density Development Trend of Ternary Cathode Material Battery, 2015-2020E Penetration of Ternary Power Battery in 2015 Percentages of Ternary Battery Installed to Various Electric Vehicles, 2012-2015 Vehicle Models Supported by Ternary Cathode Material Lithium Battery Abroad Ternary Lithium Battery Projects Newly Built or Put into Production in China Market Size of Ternary Cathode Material Battery, 2020E Sales Volume of Electric Passenger Vehicle in Major Countries/Regions, 2013-2016H1 Progress in the International Battery Electric Passenger Vehicle Market Monthly Sales Volume of New Energy Vehicle (EV&PHEV) Worldwide, 2014-2016 Ranking of World’s NEV Makers by Sales Volume, Jan-Sept.2016 Global Sales Volume of Electric Passenger Vehicle (EV&PHEV), 2011-2020E Monthly Sales Volume of Electric Vehicle in the United States, 2014-2016 Monthly Sales Volume of Electric Vehicle in Europe, 2014-2016 Sales Volume of Electric Vehicle (by Model) in Japan, 2013-2016 Production and Sales Volume of Electric Vehicle in China, 2010-2016H1 Monthly Output of Electric Passenger Vehicle in China, 2015-2016 Monthly Output of Electric Vehicle (by Special Vehicle and Commercial Vehicle) in China, 2015-2016 Output of Electric Buses in China, 2015-2016 Output of Battery Electric Trucks in China, 2015-2016 Output of Battery Electric Passenger Vehicle Makers in China, 2016 Electric Passenger Vehicle (EV&PHEV) Sales Volume in China, 2015-Oct 2016 Ranking of New Energy Passenger Vehicle Models by Sales Volume, Jan-Oct 2016 Sales Volume and Market Share of New Energy Passenger Vehicle (EV & PHEV) in China, Jan-Oct 2016 Umicore’s Finance, 2011-2015H2 Cathode Material Production Bases of Umicore Worldwide Status Quo of Umicore’s Business in China Umicore’s Offices and Business Distribution in China Ternary Cathode Material (NCM) R&D Roadmap of Umicore Development Course of Nichia Revenue of Nichia, 2009-2014 Cathode Material Output of Nichia, 2012 & 2013 Total Revenue of L&F, 2006-2014 Cathode Material Output of L&F, 2012 & 2013 Finance of Toda Kogyo, 2012-2015 Lithium Battery Cathode Material Product Structure of Toda Kogyo Performance of Ternary Cathode Material Products of Toda Kogyo Global Integrated Network and Production Bases of BASF BASF’s Layout and Distribution of Production Bases in China BASF’s Finance, 2011-2015 Key Ternary Cathode Material Products of BASF Cathode Material Research and Manufacturing Bases of BASF Worldwide Focus and Method of BASF’s Research on Ternary Cathode Materials Comparison between BASF’s Ni-MH Battery and Lead-acid Battery SMM’s Finance, 2012-2015 Revenue Structure of SMM, FY2015 Global Presence of SMM’s Material Business Organization Structure of Shanshanin New Energy Field Business Performance of Hunan Shanshan, 2010-2016H1 Cathode Material Product Line of Hunan Shanshan Physical and Chemical Indexes of Major Products of Hunan Shanshan Joint-stock and Shareholding Companies of Beijing Easpring Material Technology Development History of Beijing Easpring Material Technology, 1992-2015 Business Performance of Beijing Easpring Material Technology, 2010-2016H1 Operating Revenue Structure (by Product) of Beijing Easpring Material Technology, 2016H1 Operating Revenue Structure (by Region) of Beijing Easpring Material Technology, 2016H1 Global Key Customers for Small Cathode Material Products of Beijing Easpring Material Technology Key Cathode Material Products of Beijing Easpring Material Technology Ternary Cathode Material Sales Volume of Beijing Easpring Material Technology, 2011-2016 Cathode Material Technology Roadmap of Beijing Easpring Material Technology Performance Prediction of Beijing Easpring Material Technology, 2015-2017 Business Performance of Xiamen Tungsten Corporation, 2010-2016H1 Operating Revenue Structure (by Product) of Xiamen Tungsten Corporation, 2016H1 Capacity Planning of Xiamen Tungsten Corporation, 2016 Performance Prediction of Xiamen Tungsten Corporation, 2016-2017 Development Roadmap of GEM, 2001-2016 Business Performance of GEM, 2009-2016H1 Operating Revenue Structure (by Product) of GEM, 2016H1 Existing Capacity and Future Planning of GEM Layout of GEM’s Battery Material and Recycling Business Bases GEM’s Revenue from Ternary Cathode Materials, 2013-2015 Key Ternary Materials and Ternary Precursor Contracts Signed by GEM in 2016 Performance Prediction of GEM, 2016-2018 Lithium Battery Industry Chain of Zhonghe Lithium Battery Industry Development History of Zhonghe Business Performance of Zhonghe, 2010-2016H1 Operating Revenue Structure (by Product) of Zhonghe, 2016H1 Production Capacity and Planning of Major Products of Zhonghe Performance Prediction of Zhonghe, 2016-2017 Business Performance of Kingray New Materials Science & Technology, 2010-2016H1 Operating Revenue Structure (by Product) of Kingray New Materials Science & Technology, 2016H1 Capacity Details of Kingray New Materials Science & Technology Performance Prediction of Kingray New Materials Science & Technology, 2016-2017 Capacity Details of Ningbo Jinhe New Materials Business Performance of Shenzhen Tianjiao Technology Development, 2013-2016H1 Ternary Cathode Material Production Capacity Forecast of Shenzhen Tianjiao Technology Development, 2016-2017 Performance Prediction of Shenzhen Tianjiao Technology Development, 2016-2017 Business Performance of Xinxiang Tianli Energy, 2013-2016H1 Operating Revenue Structure (by Product) of Xinxiang Tianli Energy, 2015 Output Forecast of Xinxiang Tianli Energy, 2015-2017 Major Customers for Cathode Materials of Xinxiang Tianli Energy Performance Prediction of Xinxiang Tianli Energy, 2015-2018 Revenue Structure of Kelong New Energy, 2013 Ternary Cathode Material Capacity Details of Kelong New Energy Performance Prediction (Battery Material Business) of Kelong New Energy, 2015-2017 Product Features of PU50A Product Features of PU50B Business Performance of Panasonic, FY2008-FY2015 R&D Expenditure of Panasonic, FY2008/09-FY2013/14 Revenue Structure (by Segment) of Panasonic, 2012-2014 Operating Income Structure (by Business) of Panasonic, 2012-2014 Revenue Structure (by Region) of Panasonic, 2014 Technical Parameters of Panasonic’s NCA 18650 Cell for Tesla Material Cost Structure of Panasonic’s PHEV Cell Development Plan of Panasonic’s Automotive Batteries, 2013-2019E Development Plan of Panasonic’s Automotive Segment, 2013-2019E Development Plan of Panasonic by Business Unit, 2013-2019E Electric Vehicle Supported by Panasonic’s Power Lithium-ion Battery Deliveries of Tesla EVs, 2013-2020E Panasonic’s Shipment of Power and Energy Storage Battery, 2011-2016 Equity Structure of AESC, 2015 Specifications of Li-Tec’s High-capacity Power Battery Performance Parameters of Li-Tec’s High-capacity Power Battery Li-Tec’s Power Battery Plant in LandkreisKamenz, Germany Equity Structure of Tianjin Lishen Battery Business Performance of Tianjin Lishen Battery, 2011-2016H1 Power Cell Technology Roadmap of Tianjin Lishen Battery Power Battery Module Technology Roadmap of Tianjin Lishen Battery Performance Parameters of Spirally Wound Power Cell of Tianjin Lishen Battery Performance Parameters of Laminated Power Cell of Tianjin Lishen Battery Performance Parameters of Polymer Power Cell of Tianjin Lishen Battery Technical Parameters of Power Cell of Tianjin Lishen Battery Power Battery Customers of Tianjin Lishen Battery Performance Parameters of Power Battery Module of Tianjin Lishen Battery Lithium Battery Capacity of Tianjin Lishen Battery, 2000-2016 Power Battery Investment Plan of Tianjin Lishen Battery, 2012-2015 Business Performance of ATL, 2008-2014 Milestones of ATL Customers Supported by ATL’s Power and Compact Battery Power Battery Suppliers of ATL ATL’s Revenue from and Shipment of Power and Energy Storage Battery, 2012-2016 Power Battery Output and Capacity Utilization of ATL, 2012-2015 Power and Compact Battery Capacity Layout of ATL Business Performance of BAK Battery, 2008-2015H1 Revenue Structure (by Region) of BAK Battery, 2009-2014 R&D Investment of BAK Battery, 2010-2015H1 Technical Parameters of Power Cell of BAK Battery Product Planning of BAK Battery, 2014-2018 Plan for Energy Density Improvement of BAK 18650 Battery, 2012-2017 BAK’s Prismatic Power Battery and Plan for Energy Density Improvement, 2015-2018E Profile of BAK International (Tianjin) Co., Ltd Profile of Dalian BAK Power Battery Co., Ltd. BAK’s Revenue from Power Lithium-ion Battery, 2009-2014 Power Battery Investment Plan of BAK Battery, 2013-2015 Revenue and Gross Margin of Sinopoly Battery, 2011-2015 Net Income of Sinopoly Battery, 2011-2015 Technical Parameters of Power Cell of Sinopoly Battery Business Performance of CITIC GUOAN Mengguli, 2010-2016H1 Technical Parameters of Cathode Materials of CITIC GUOAN Mengguli Technical Parameters of Power Battery Modules of CITIC GUOAN Mengguli Equity Structure of China Aviation Lithium Battery, 2016 Business Performance of China Aviation Lithium Battery, 2010-2014 China Aviation Lithium Battery’s BMS for Battery Electric Vehicle Battery Certifications of China Aviation Lithium Battery Global Sales Network of China Aviation Lithium Battery Major Customers of China Aviation Lithium Battery Business Performance of Guoxuan Hi-tech Power Energy, 2009-2016H1 Specifications of LiFePO4 Power Battery of Guoxuan Hi-tech Power Energy Technical Parameters of Vehicle Models Supported by Power Battery of Guoxuan Hi-tech Power Energy Price of Power Battery Module of Guoxuan Hi-tech Power Energy, 2009-2015 LiFePO4 Cathode Materials and Power Battery Capacity of Guoxuan Hi-tech Power Energy, 2009-2015 Power Battery Shipment of Guoxuan Hi-tech Power Energy, 2009-2015 Capacity Planning of Guoxuan Hi-tech Power Energy, 2015-2017
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