[1] 朱国才, 何向明. 废旧锂离子动力电池的拆解及梯次利用[J]. 新材料业, 2017 (9):43-46. ZHU G C, HE X M. Dismantling and secondary utilization of waste lithium ion battery[J]. Advanced Materials Industry, 2017 (9):43-46.
[2] NA Jiao.Second-lifeelectricvehiclebatteries 2019-2029[R/OL].[2018-08-01]. https://www.idtechex.com/research/reports/second-life-electric-vehicle-batteries-2019-2029-000626.asp#.
[3] 王祎佳. 2017-2018年动力电池回收行业研究报告[EB/OL].[2018-08-13]. https://mp.weixin.qq.com/s/CbJEcC2OJ1GX2DnzUKEkSg. WANG Y J. Research report of power battery recycling industry from 2017 to 2018[EB/OL].[2018-08-13]. https://mp.weixin.qq.com/s/CbJEcC2OJ1GX2DnzUKEkSg.
[4] EVTank研究机构, 伊维经济研究院. 中国汽车动力电池回收拆解及梯次利用行业发展白皮书 (2018)[R/OL].[2018-03-19]. http://www.escn.com.cn/news/show-508490.html. EVTank, Evie Institute of Economic Research. White paper of China's automotive power battery recycling and secondary utilization industry development (2018)[R/OL].[2018-03-19]. http://www.escn.com.cn/news/show-508490.html.
[5] 陈俊全.解读动力电池回收利用发展现状及趋势百亿级市场待挖掘[EB/OL].[2018-01-12]. http://www.escn.com.cn/news/show-489442.html. CHEN J Q. Ten billion market to explore:Interpretation of status and development trend of power battery recycling[EB/OL].[2018-01-12]. http://www.escn.com.cn/news/show-489442.html.
[6] 贾晓峰, 冯乾隆, 陶志军, 等. 动力电池梯次利用场景与回收技术经济性研究[J]. 汽车工程师, 2018 (6):14-19. JIA X F, FENG Q L, TAO Z J, et al. Study on the echelon used scenario and technical recycling economy of power battery[J]. Auto Engineer, 2018 (6):14-19.
[7] 高工产研锂电研究所. 2017年全国梯次利用和拆解报废锂电池8.3万吨[EB/OL]. 2018-03-15. http://www.gg-lb.com/asdisp2-65b095fb-32379-.html. GAO Gong Institute of Lithium Research. There were 83,000 tons of waste lithium batteries being echelon used and dismantled in China in 2017[EB/OL]. 2018-03-15. http://www.gg-lb.com/asdisp2-65b095fb-32379-.html.
[8] 李建波, 徐政, 纪仲光, 等. 废旧锂离子动力电池回收的研究现状[J]. 稀有金属, 2018, doi.org/10.13373/j.cnki.cjrm.XY17060021. LI J B, XU Z, JI Z G, et al. An overview on the current technologies of recycling spent lithium-ion batteries[J]. Chinese Journal of Rare Metals, 2018, doi.org/10.13373/j.cnki.cjrm.XY17060021.
[9] 余海军, 张铜柱, 刘媛, 等. 车用动力电池回收拆解的安全与环境技术[J]. 工业安全与环保, 2014, 40 (3):77-79+92. YU H J, ZHANG T Z, LIU Y, et al. Safety and environmental technologies for recycling and dismantling vehicle power battery[J]. Industrial Safety and Environmental Protection, 2014, 40 (3):77-79+92.
[10] 陈江平. LiFePO4废电池回收处理设备的设计及正极废料的改性研究[D]. 天津:天津理工大学, 2016. CHEN J P. Design of recycling processing equipment for LiFePO4 spent battery and study on the modification of cathode scrap[D]. Tianjing:Tianjing University of Technology, 2016.
[11] 程蕊, 张仁柏, 陈延伟. 梯次利用动力锂电池的单体电池电化学性能[J]. 电源技术, 2017, 41 (4):548-550+622. CHENG R, ZHANG R B, CHEN Y W. Electrochemical performance of single cell from secondary use of power Li-ion battery[J]. Chinese Journal of Power Sources, 2017, 41 (4):548-550+622.
[12] 白恺, 李娜, 范茂松, 等. 大容量梯次利用电池储能系统工程技术路线研究[J]. 华北电力技术, 2017 (3):39-45. BAI K, LI N, FAN M S, et al. Research on the technical roadmap for engineering application of large-scale echelon use battery energy storage system[J]. North China Electric Power, 2017 (3):39-45.
[13] 甘江华, 刘怀照, 陈世锋, 等. 梯次利用电池的中型储能系统工程方案设计[J]. 电器与能效管理技术, 2017 (13):82-87. GAN J H, LIU H Z, CHEN S F, et al. Project design of medium-sized energy storage system with echelon use batteries[J]. Electrical & Energy Management Technology, 2017 (13):82-87.
[14] 许乃强, 田智会. 动力电池梯次利用于通信基站储能供电系统[J]. 通信电源技术, 2017, 34 (5):154-155. XU N Q, TIAN Z H. The battery echelon use in communication base station energy storage power supply system[J]. Telecom Power Technologies, 2017, 34 (5):154-155.
[15] 李娜, 刘喜梅, 白恺, 等.梯次利用电池储能电站经济性评估方法研究[J]. 可再生能源, 2017, 35 (6):926-932. LI N, LIU X M, BAI K, et al. Study on economic evaluation method of echelon used battery in energy storage power station[J]. Renewable Energy Resources, 2017, 35 (6):926-932.
[16] 李晓宇, 徐佳宁, 胡泽徽, 等. 磷酸铁锂电池梯次利用健康特征参数提取方法[J]. 电工技术学报, 2018, 33 (1):9-16. LI X Y, XU J N, HU Z H, et al. The health parameter estimation method for LiFePO4 battery echelon use[J]. Transactions of China Electrotechnical Society, 2018, 33 (1):9-16.
[17] 李娜, 白恺, 董建明, 等. 梯次利用电池储能系统一致性维护方法研究[J]. 中外能源, 2017, 22 (4):89-96. LI N, BAI K, DONG J M, et al. Study on consistency maintenance method of energy storage system of echelon used battery[J]. Sino-Global Energy, 2017, 22 (4):89-96.
[18] 中国储能网新闻中心. 杨凯:梯次利用动力电池在电力储能的应用研究[EB/OL].[2018-05-31]. http://www.escn.com.cn/news/show-526599.html. Information Center of China Energy Storage Network. Yang Kai:Application research of echelon used power battery in electricity storage[EB/OL].[2018-05-31]. http://www.escn.com.cn/news/show-526599.html.
[19] 谢英豪, 余海军, 李长东. 车用动力电池梯次利用回收风险与安全性研究[J]. 电源技术, 2018, 42 (5):638-640. XIE Y H, YU H J, LI C D. Research on recycling risk and security of EV battery echelon use[J]. Chinese Journal of Power Sources, 2018, 42 (5):638-640.
[20] 黎宇科, 郭淼, 严傲. 车用动力电池回收利用经济性研究[J]. 汽车与配件, 2014 (24):48-51. LI Y K, GUO M, YAN A. Economic research on recycling and utilization of vehicle power battery[J]. Automobile&Parts Technology, 2014 (24):48-51.
[21] 吕召玉, 马洪新. 新能源电动汽车废旧电池回收体系的设计[J]. 汽车实用技术, 2016 (11):18-19. LV Z Y, MA H X. Design of waste battery recovery system of new energy electric vehicle[J]. Automobile Applied Technology, 2016 (11):18-19.
[22] 中国储能网新闻中心. 动力电池梯次利用:市场前景广阔, 机遇与挑战共存[EB/OL].[2017-09-25]. http://www.escn.com.cn/news/show-463659.html. Information Center of China Energy Storage Network. Power battery echelon use:the market has broad prospects, opportunities and challenges coexist[EB/OL].[2017-09-25]. http://www.escn.com.cn/news/show-463659.html.
[23] 中国汽车技术研究中心, 日产 (中国)投资有限公司, 东风汽车有限公司. 新能源汽车蓝皮书:中国新能源汽车产业发展报告 (2016)[M]. 北京:社会科学文献出版社, 2016. China Automotive Technology & Research Center Co. Ltd, Nissan (China) Investment Co., Ltd. Dongfeng Motor Company Limited. Blue book of new energy vehicle:Report of china's new energy automobile industry development (2016)[M]. Beijing:Social Sciences Academic Press, 2016.
[24] 慈松. 基于全生命周期优化管理的锂电池梯次利用[J]. 新材料产业, 2015 (4):41-46. CI S. Secondary utilization of lithium battery based on life cycle optimization management[J]. Advanced Materials Industry, 2015 (4):41-46.
[25] 俞会根, 李宁, 盛军, 等. 电池梯次利用于电动叉车领域初探[J]. 叉车技术, 2014 (1):6-8. YU H G, LI N, SHENG J, et al. Secondary utilization of battery in the field of electric forklifts[J]. Forklift Truck Technology, 2014 (1):6-8.
[26] 余晓玲, 靳文涛, 韩晓娟, 等. 基于退役动力电池梯次利用的光伏充电站容量配置[J]. 电器与能效管理技术, 2017 (13):39-45+55. YU X L, JIN W T, HAN X J, et al. Optimized capacity configuration of PV-based electric vehicle station with second-use batteries energy storage system[J]. Electrical & Energy Management Technology, 2017 (13):39-45+55.
[27] 江道康, 杨占刚. 徐官屯服务区光储充电站实践及推广应用前景分析[J]. 中国能源, 2018 (5):doi:10.3969/j.issn.1003-2355.2018.05.09. JIANG D K, YANG Z G. Analysis of practice and application prospect of light energy storage charging station in Xu Guan Tun service area[J].Energy of China, 2018 (5):doi:10.3969/j.issn.1003-2355.2018.05.09.
[28] 中国储能网新闻中心. 中国铁塔梯次电池100问答[EB/OL].[2018-07-26]. http://www.escn.com.cn/news/show-546541.html. Information Center of China Energy Storage Network. One hundred Q & A of China Tower's echelon used battery[EB/OL].[2018-07-26]. http://www.escn.com.cn/news/show-546541.html.
[29] 钜大LARGE.中国铁塔梯级利用"报废"电池[EB/OL].[2018-08-08]. http://www.juda.cn/news/24697.html. JU DA LARGE. China Tower Company echelon uses "discarded" batteries[EB/OL].[2018-08-08]. http://www.juda.cn/news/24697.html.
[30] 中国新能源汽车网. 不可或缺的移动补电车成投资风口[EB/OL].[2018-03-19]. http://nev.ofweek.com/2018-03/ART-71000-8420-30211298.html. China New Energy Vehicle Network. The indispensable mobile supplement vehicle has become the investment outlet.
[31] 吴小员, 孙宝江. 中国电动物流车商业模式研究[J]. 汽车技术, 2017 (9):1-6. WU X Y, SUN B J. Research on business model of electric logistics vehicles in china[J]. Automobile Technology, 2017 (9):1-6.
[32] 中华人民共和国国家邮政局.快递专用电动三轮车技术要求 (征求意见稿)[DB/OL].[2016-04-08]. http://www.sac.gov.cn/sgybzyb/gzdt/bzzxd1/201604/P020160408633839868223.pdf. National Post Office of People's Republic of China. Technical requirements for special electric tricycle for express delivery (Draft)[DB/OL].[2016-04-08]. http://www.sac.gov.cn/sgybzyb/gzdt/bzzxd1/201604/P020160408633839868223.pdf.
[33] 中国储能网新闻中心. 2014年动力型锂离子电池行业市场分析[EB/OL].[2014-09-13]. http://www.escn.com.cn/news/show-176630.html. Information Center of China Energy Storage Network. Market analysis of lithium-ion power battery industry in 2014[EB/OL].[2014-09-13]. http://www.escn.com.cn/news/show-176630.html.
[34] 金锂科技. 浅析锂电池正极材料磷酸铁锂发展现[EB/OL]. 2012-02-17. http://www.kinglitech.com/info.asp?id=506. Golden Lithium Technology. Analysis on the development status of lithium iron phosphate as cathode material[EB/OL]. 2012-02-17. http://www.kinglitech.com/info.asp?id=506.
[35] 钟俊辉. 锂离子电池的正极材料[J]. 电源技术, 1997, 21 (4):174-177. ZHONG J H. Cathode materials of lithium ion batteries[J]. Chinese Journal of Power Sources, 1997, 21 (4):174-177.
[36] 王玲, 高朋召, 李冬云, 等. 锂离子电池正极材料的研究进展[J]. 硅酸盐通报, 2013, 32 (1):77-84. WANG L, GAO P Z, LI D Y, et al. Research progress in cathode materials for lithium ion batteries[J]. Bulletin of The Chinese Ceramic Society, 2013, 32 (1):77-84.
[37] 刘冬生, 陈宝林. 磷酸铁锂电池特性的研究[J]. 河南科技学院学报 (自然科学版), 2012, 40 (1):65-68. LIU D S, CHEN B L. Study on performances of Lithium Iron Phosphate battery[J]. Journal of Henan Institute of Science and Technology (Natural Science Edition), 2012, 40 (1):65-68.
[38] 秦李伟, 徐爱琴, 梁荣荣, 等. 某电动车用三元材料锂离子电池低温性能研究[J]. 汽车科技, 2015 (2):33-36. QIN L W, XU A Q, LIANG R R, et al. Research on low temperature performance of NCM battery used for electric vehicle[J]. Auto Su-Tech, 2015 (2):33-36.
[39] 李丽华. 正极锰酸锂动力电池的制备和性能研究[D]. 长沙:湖南大学, 2012. LI L H. Study of preparation and electrochemical perform of LiMn2O4 power battery[D]. Changsha:Hunan University, 2012.
[40] 谢潇怡, 王莉, 何向明, 等. 锂离子动力电池安全性问题影响因素[J]. 储能科学与技术, 2017, 6 (1):43-51. XIE X Y, WANG L, HE X M, et al. The safety influencing factors of lithium batteries[J]. Energy Storage Science and Technology, 2017, 6 (1):43-51.
[41] 电子发烧友网工程师.电池行业三足鼎立的平衡状态被打破,方形电池大"发威"[EB/OL].[2018-08-05]. http://www.elecfans.com/qichedianzi/722260.html. Electronic enthusiast network engineer. The balance of the three pillars of the battery industry has been broken, and the square battery has become "powerful"[EB/OL].[2018-08-05]. http://www.elecfans.com/qichedianzi/722260.html.
[42] 李会峰, 庞静, 卢世刚. 锂离子电池滥用条件下的安全性研究[J]. 电源技术, 2013, 37 (12):2235-2238. LI H F, PANG J, LU S G. Study on safety performance of Li-ion power batteries under deviant use[J]. Chinese Journal of Power Sources, 2013, 37 (12):2235-2238
[43] 焦龙庵. 纳米CT在锂离子电池中的应用[D]. 太原:太原理工大学, 2015. JIAO L A. The application of the nano-CT technology in li-ion batteries[D]. Taiyuan:Taiyuan University of Technology, 2015.
[44] 郭向飞, 杨晨, 许海洁, 等. 锂离子电池内部性能状态无损检测方法:CN105223508A[P]. 2016-01-06. GUO X F, YANG C, XU H J, et al. Non-destructive testing method for internal performance state of lithium ion battery:CN105223508A[P]. 2016-01-06.
[45] 沈越, 邓哲, 黄云辉. 一种监测锂离子电池荷电状态和健康状态的方法及其装置:CN106772063A[P]. 2017-05-31. SHEN Y, DENG Z, HUANG Y H. A method for monitoring charging state and health state of lithium ion battery:CN106772063A[P]. 2017-05-31.
[46] 史雪飞,沈晓雅,陈浩. 一种锂电池梯次利用筛选方法:CN107330474A[P]. 2017-11-07. SHI X F, SHEN X Y, CHEN H. A screening method for echelon use of lithium battery:CN107330474A[P]. 2017-11-07.
[47] 张文亚. 一种智能分时混合均衡电池管理系统:CN102324764A[P]. 2012-01-18. ZHAO W Y. An intelligent time-sharing hybrid equalization battery-management system:CN102324764A[P]. 2012-01-18.
[48] 方谋, 赵骁, 陈敬波, 等. 从波音787电池事故分析大型动力电池组的安全性[J]. 储能科学与技术, 2014, 3 (1):42-46. FANG M, ZHAO X, CHEN J B, et al. A case study of Japan airlines B-787 battery fire[J]. Energy Storage Science and Technology, 2014, 3 (1):42-46. |