Inorganic Chemicals Industry ›› 2024, Vol. 56 ›› Issue (12): 70-78.doi: 10.19964/j.issn.1006-4990.2024-0100
• Reviews and Special Topics • Previous Articles Next Articles
Received:
2024-02-26
Online:
2024-12-10
Published:
2024-03-29
Contact:
QIAN A′niu
E-mail:740949924@qq.com;anqian@sxu.edu.cn
CLC Number:
ZHAO Runze, QIAN A′niu. Research progress of lithium recovery for spent lithium-ion batteries and preparation in battery-grade lithium carbonate[J]. Inorganic Chemicals Industry, 2024, 56(12): 70-78.
[1] | FAN Ersha, LI Li, WANG Zhenpo,et al.Sustainable recycling technology for Li-ion batteries and beyond:Challenges and future prospects[J].Chemical Reviews,2020,120(14):7020-7063. |
[2] | ZHANG Xiaoxiao, LI Li, FAN Ersha,et al.Toward sustainable and systematic recycling of spent rechargeable batteries[J].Chemical Society Reviews,2018,47(19):7239-7302. |
[3] | GUO Xueyi, ZHANG Jingxi, TIAN Qinghua.Modeling the potential impact of future lithium recycling on lithium demand in China:A dynamic SFA approach[J].Renewable and Sustainable Energy Reviews,2021,137:110461. |
[4] | 华经产业研究院.2023-2028年中国新能源汽车行业市场发展监测及投资前景展望报告,2023-2028[R].华经产业研究院,2023.https://www.huaon.com/channel/jingpin/842338.html. |
Huajing Industry Research Institute.China new energy vehicle industry market development monitoring and investment outlook report,2023-2028 [R].HIRI,2023.https://www.huaon.com/channel/jingpin/842338.html. | |
[5] | CHEN Yaodong, DOU Aichun, ZHANG Ye.A review of recycling status of decommissioned lithium batteries[J].Frontiers in Materials,2021,8:634667. |
[6] | 吴小龙,王晨麟,陈曦,等.废旧锂离子电池市场规模及回收利用技术[J].环境科学与技术,2020,43(S2):179-183. |
WU Xiaolong, WANG Chenlin, CHEN Xi,et al.Market scale and recycling technology of waste lithium-ion batteries[J].Environmental Science & Technology,2020,43(S2):179-183. | |
[7] | CHEN Haopeng, ZHANG Tianshi, GAO Qing,et al.Assessment and management of health status in full life cycle of echelon utilization for retired power lithium batteries[J].Journal of Cleaner Production,2022,379:134583. |
[8] | 刘佩文,董鹏,孟奇,等.废旧磷酸铁锂电池正极材料固相法再生研究进展[J].无机盐工业,2020,52(9):6-8,14. |
LIU Peiwen, DONG Peng, MENG Qi,et al.Research development of solid phase regeneration of cathode material of spent lithium iron phosphate batteries[J].Inorganic Chemicals Industry,2020,52(9):6-8,14. | |
[9] | 乜贞,伍倩,丁涛,等.中国盐湖卤水提锂产业化技术研究进展[J].无机盐工业,2022,54(10):1-12. |
NIE Zhen, WU Qian, DING Tao,et al.Research progress on industrialization technology of lithium extraction from salt lake brine in China[J].Inorganic Chemicals Industry,2022,54(10):1-12. | |
[10] | ZHU Qingshan, LI Jun, LI Hongzhong.Development of typical lithium minerals roasting for high lithium extraction[J].Scientia Sinica Chimica,2017,47(11):1273-1283. |
[11] | COSTA C M, BARBOSA J C, GONÇALVES R,et al.Recycling and environmental issues of lithium-ion batteries:Advances,challenges and opportunities[J].Energy Storage Materials,2021,37:433-465. |
[12] | XIAO Jiefeng, LI Jia, XU Zhenming.Challenges to future development of spent lithium ion batteries recovery from environmental and technological perspectives[J].Environmental Science & Technology,2020,54(1):9-25. |
[13] | WANG Kun, ZHANG Guoquan, LUO Mingzhi,et al.Separation of metals from acetic acid leaching solution of spent lithium-ion batteries by ionic liquid system[J].Chemical Engineering Journal,2023,472:145006. |
[14] | WEI Neng, HE Yaqun, ZHANG Guangwen,et al.Recycling of valuable metals from spent lithium-ion batteries by self-supplied reductant roasting[J].Journal of Environmental Management,2023,329:117107. |
[15] | BARIK S P, PRABAHARAN G, KUMAR L.Leaching and separation of Co and Mn from electrode materials of spent lithium-ion batteries using hydrochloric acid:Laboratory and pilot scale study[J].Journal of Cleaner Production,2017,147:37-43. |
[16] | LV Weiguang, WANG Zhonghang, CAO Hongbin,et al.A critical review and analysis on the recycling of spent lithium-ion batteri-es[J].ACS Sustainable Chemistry & Engineering,2018,6(2):1504-1521. |
[17] | HARPER G, SOMMERVILLE R, KENDRICK E,et al.Recycling lithium-ion batteries from electric vehicles[J].Nature,2019,575(7781):75-86. |
[18] | 孙新华,侯雷,秦凯.锂离子电池电解质六氟磷酸锂市场分析[J].无机盐工业,2021,53(3):7-11. |
SUN Xinhua, HOU Lei, QIN Kai.Market analysis of lithium hexafluorophosphate liquid electrolytes in lithium-ion battery[J].Inorganic Chemicals Industry,2021,53(3):7-11. | |
[19] | SUN Jing, CHEN Wenxin, JIA Kexin,et al.Progress on the microwave-assisted recycling of spent lithium battery graphite[J].Processes,2023,11(5):1451. |
[20] | KIM J Y, WU Jiajia, KIM E W,et al.Recycling for recovery of critical metals from LiCoO2 cathode material through methanesulfonic acid-citric acid organic leaching system[J].Mining,Metallurgy & Exploration,2023,40(5):1455-1467. |
[21] | 于惠,王榆彬,廖折军,等.废旧三元锂离子动力电池循环再生利用工艺概述[J].无机盐工业,2023,55(7):32-37. |
YU Hui, WANG Yubin, LIAO Zhejun,et al.Overview of recycling and utilization process of waste ternary lithium-ion power batteries[J].Inorganic Chemicals Industry,2023,55(7):32-37. | |
[22] | QIU Ruijun, HUANG Zhe, ZHENG Jianyi,et al.Energy models and the process of fluid-magnetic separation for recovering cobalt micro-particles from vacuum reduction products of spent lithium ion batteries[J].Journal of Cleaner Production,2021,279:123230. |
[23] | YU Liuyang, LIU Xiaobin, FENG Shanshan,et al.Recent progress on sustainable recycling of spent lithium-ion battery:Efficient and closed-loop regeneration strategies for high-capacity layered NCM cathode materials[J].Chemical Engineering Journal,2023,476:146733. |
[24] | 程志翔,曹伟,户波,等.储能用大容量磷酸铁锂电池热失控行为及燃爆传播特性[J].储能科学与技术,2023,12(3):923- 933. |
CHENG Zhixiang, CAO Wei, HU Bo,et al.Thermal runaway and explosion propagation characteristics of large lithium iron phosphate battery for energy storage station[J].Energy Storage Science and Technology,2023,12(3):923-933. | |
[25] | ALI H, KHAN H A, PECHT M.Preprocessing of spent lithium-ion batteries for recycling:Need,methods,and trends[J].Renewable and Sustainable Energy Reviews,2022,168:112809. |
[26] | WEIGL D, YOUNG D.Impact of automated battery sorting for mineral recovery from lithium-ion battery recycling in the United States[J].Resources,Conservation and Recycling,2023,192:106936. |
[27] | HUANG Kui, XIONG Hao, DONG Haili,et al.Carbon thermal reduction of waste ternary cathode materials and wet magnetic separation based on Ni/MnO nanocomposite particles[J].Process Safety and Environmental Protection,2022,165:278-285. |
[28] | LI Jia, WANG Guangxu, XU Zhenming.Environmentally-friendly oxygen-free roasting/wet magnetic separation technology for in situ recycling cobalt,lithium carbonate and graphite from spent LiCoO2/graphite lithium batteries[J].Journal of Hazardous Materials,2016,302:97-104. |
[29] | VERDUGO L, ZHANG Lian, ETSCHMANN B,et al.Effect of lithium ion on the separation of electrode materials in spent lithium ion batteries using froth flotation[J].Separation and Purification Technology,2023,311:123241. |
[30] | YANG Cheng, ZHANG Jialiang, LIANG Guoqiang,et al.An advanced strategy of “metallurgy before sorting” for recycling spent entire ternary lithium-ion batteries[J].Journal of Cleaner Production,2022,361:132268. |
[31] | 钟雪虎,陈玲玲,韩俊伟,等.废旧锂离子电池资源现状及回收利用[J].工程科学学报,2021,43(2):161-169. |
ZHONG Xuehu, CHEN Lingling, HAN Junwei,et al.Overview of present situation and technologies for the recovery of spent lithium-ion batteries[J].Chinese Journal of Engineering,2021,43(2):161-169. | |
[32] | 李万里,欧玉静.废旧磷酸铁锂电池正极材料回收工艺与技术的研究进展[J].电池工业,2023,27(1):37-42. |
LI Wanli, Yujing OU.Research on recycling process and technology of spent lithium ion phosphate batteries[J].Chinese Battery Industry,2023,27(1):37-42. | |
[33] | WANG Lihua, LI Jian, ZHOU Hongming,et al.Regeneration cathode material mixture from spent lithium iron phosphate batteries[J].Journal of Materials Science:Materials in Electronics,2018,29(11):9283-9290. |
[34] | 赵光金,谷昆泓,夏大伟,等.废旧锂电池电极材料浮选行为及表面性质[J].工程科学学报,2024,46(1):97-108. |
ZHAO Guangjin, GU Kunhong, XIA Dawei,et al.Flotation behavior and surface properties of spent lithium-ion battery electrode materials[J].Chinese Journal of Engineering,2024,46(1):97-108. | |
[35] | MU Deying, MA Wenlu, YANG Wei,et al.Discharge of spent lithium ion battery and separation and recovery of cathode electrode[J].Environmental Protection of Chemical Industry,2020,40(1):63-67. |
[36] | 王英东,邓明强,张承龙,等.废旧磷酸铁锂电池正极活性材料与集流体的分离[J].上海第二工业大学学报,2019,36(1):12-17. |
WANG Yingdong, DENG Mingqiang, ZHANG Chenglong,et al.Separation of cathode active materials and current collector from spent lithium iron phosphate battery[J].Journal of Shanghai Polytechnic University,2019,36(1):12-17. | |
[37] | LIU Jiadong, MAK T Y, MENG Zhe,et al.Efficient recovery of lithium as Li2CO3 and cobalt as Co3O4 from spent lithium-ion batteries after leaching with p-toluene sulfonic acid[J].Hydrometallurgy,2023,216:106012. |
[38] | 张梦龙,何几文,田欢,等.废旧锂离子电池中有价金属的回收研究进展[J].化学工业与工程,2019,36(4):23-30. |
ZHANG Menglong, HE Jiwen, TIAN Huan,et al.Research progress on recovery of valuable metals from spent lithium ion batteries[J].Chemical Industry and Engineering,2019,36(4):23-30. | |
[39] | PENG Chao, LIU Fupeng, WANG Zulin,et al.Selective extraction of lithium(Li) and preparation of battery grade lithium carbonate(Li2CO3) from spent Li-ion batteries in nitrate system[J].Journal of Power Sources,2019,415:179-188. |
[40] | ZHENG Hongshuai, DONG Tao, SHA Yifan,et al.Selective extraction of lithium from spent lithium batteries by functional ionic liquid[J].ACS Sustainable Chemistry & Engineering,2021,9(20):7022-7029. |
[41] | 王厚然,李德念,董楠航,等.退役磷酸铁锂电池与三元锂电池正极材料直接修复研究进展[J].化工进展,2024,43(6):3336-3346. |
WANG Houran, LI Denian, DONG Nanhang,et al.Advances in direct repair of cathode materials from retired lithium iron phosphate battery and ternary lithium battery[J].Chemical Industry and Engineering Progress,2024,43(6):3336-3346. | |
[42] | JIANG Guanghui, ZHANG Yannan, MENG Qi,et al.Direct regeneration of LiNi0.5Co0.2Mn0.3O2 cathode from spent lithium-ion batteries by the molten salts method[J].ACS Sustainable Chemistry & Engineering,2020,8(49):18138-18147. |
[43] | CHEN Jiangping, LI Qingwen, SONG Jishun,et al.Environmentally friendly recycling and effective repairing of cathode powders from spent LiFePO4 batteries[J].Green Chemistry,2016,18(8):2500-2506. |
[44] | GANTER M J, LANDI B J, BABBITT C W,et al.Cathode refunctionalization as a lithium ion battery recycling alternative[J].Journal of Power Sources,2014,256:274-280. |
[45] | LI Jiapeng, ZHANG Jie, ZHAO Wei,et al.Application of roasting flotation technology to enrich valuable metals from spent LiFePO4 batteries[J].ACS Omega,2022,7(29):25590-25599. |
[46] | LIU Kang, LIU Lili, TAN Quanyin,et al.Selective extraction of lithium from a spent lithium iron phosphate battery by mechanochemical solid-phase oxidation[J].Green Chemistry,2021,23(3):1344-1352. |
[47] | YANG Liming, GAO Zhe, LIU Tian,et al.Direct electrochemical leaching method for high-purity lithium recovery from spent lithium batteries[J].Environmental Science & Technology,2023,57(11):4591-4597. |
[48] | 李伟达.电池级碳酸锂制备工艺研究解析[J].世界有色金属,2021(5):9-10. |
LI Weida.Study and analysis of preparation technology of battery grade lithium carbonate[J].World Nonferrous Metals,2021(5):9-10. | |
[49] | YI Wentao, YAN Chunyan, MA Peihua.Crystallization kinetics of Li2CO3 from LiHCO3 solutions[J].Journal of Crystal Growth,2010,312(16/17):2345-2350. |
[50] | 薛峰峰,郭琬,周苏,等.粗品碳酸锂制备高纯碳酸锂工艺研究[J].无机盐工业,2018,50(1):46-48,81. |
XUE Fengfeng, GUO Wan, ZHOU Su,et al.Study on preparation of high purity lithium carbonate from coarse lithium carbonate[J].Inorganic Chemicals Industry,2018,50(1):46-48,81. | |
[51] | LIU Dongfu, ZHAO Zhongwei, XU Wenhua,et al.A closed-loop process for selective lithium recovery from brines via electrochemical and precipitation[J].Desalination,2021,519:115302. |
[52] | 郭贤慧,王永勤,王建萍,等.碳化分解法制备电池级碳酸锂的工艺研究[J].无机盐工业,2019,51(1):50-52. |
GUO Xianhui, WANG Yongqin, WANG Jianping,et al.Study on preparation process of battery-grade lithium carbonate by carbonation-decomposition method[J].Inorganic Chemicals Industry,2019,51(1):50-52. | |
[53] | LI Pengwu, YIN Xiaogang, CHENG Hu,et al.Technology of calcium and magnesium removal during preparation of battery grade lithium carbonate by hydrogenation decomposition[J].Rare Metals & Cemented Carbides,2018,46(4):69-72,77. |
[54] | CHEN Wenlan, CHEN Chi, XIAO Hao,et al.Recovery of Li2CO3 from spent LiFePO4 by using a novel impurity elimination proce- ss[J].Molecules,2023,28(9):3902. |
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