回收废旧电池制备功能材料研究进展(4)

来源:金属功能材料 【在线投稿】 栏目:期刊导读 时间:2021-01-22
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摘要:从目前回收废旧电池制备功能材料的研究中发现,回收废旧电池制备功能材料的工艺过程普遍过于繁琐,将废旧电池简单处理制备成为功能材料的研究还很

从目前回收废旧电池制备功能材料的研究中发现,回收废旧电池制备功能材料的工艺过程普遍过于繁琐,将废旧电池简单处理制备成为功能材料的研究还很少,从而在一定程度上制约了回收废旧电池制备功能材料的发展。相信随着科技的不断进步,回收废旧电池制备功能材料在未来会得到更加广泛的应用和推广。

[1] 程新群.化学电源[M].北京:化学工业出版社,2008: X Q. Chemical power sources[M]. Beijing: Chemical Industry Press,2008:27-28.

[2] 温迪雅,付凌波,李薇,等.废旧电池的管理及处置研究[J].环境科学与管理,2015,40(12): D Y,FU L B,LI W,et on management and disposal of waste battery[J]. Environmental Science and Management, 2015, 40(12):37-41.

[3] 卢康. 以废旧锌锰干电池为锰源LiNi1/3Co1/3Mn1/3O2的制备及其改性研究[D].武汉:武汉科技大学,2018.LU K. Study on the preparation and modification of LiNi1/3Co1/3Mn1/3O2with spent Zn-Mn batteries as manganese source[D]. Wuhan: Wuhan University of Science and Technology,2018.

[4] QI Y P, MENG F S, YI X X, et al. A novel and efficient ammonia leaching method for recycling waste lithium ion batteries[J]. Journal of Cleaner Production,2020,251:.

[5] 蔡乐.废旧三元动力锂电池正极材料回收制备二氧化锰复合材料研究[D].上海:上海第二工业大学,2018.CAI L. Research on the preparation of manganese dioxide composite materials by recycling the cathode material of the waste ternary power lithium battery[D]. Shanghai: Shanghai Second Polytechnic University,2018.

[6] 杨理.废旧碱性锌锰电池和废旧锂离子电池资源化研究[D].新乡:河南师范大学, L. Study on the recycling of spent alkaline zinc manganese and spent lithium ion batteries[D]. Xinxiang: Henan Normal University,2016.

[7] 张笑笑.废旧锂离子电池的回收处理与资源化利用[D].北京:北京理工大学, X X. Recycling and resource utilization of spent lithium-ion batteries[D].Beijing:Beijing Institute of Technology,2016.

[8] 孙明星.中国废旧电池回收路径与管理体系研究[D].济南:山东大学,2016.SUN M X. Researches on spent battery collection pathway and management system in China[D].Jinan:Shandong University,2016.

[9] 丁杰萍. 国家实施电池限汞政策成效评估[D]. 兰州: 兰州大学, J P. Efficiency assessment of battery mercury limitation policy in China[D].Lanzhou:Lanzhou University,2016.

[10] JIANG Y J, DENG Y C, BU W G. Pyrometallurgical extraction of valuable elements in Ni-metal hydride battery electrode materials[J].Metallurgical and Materials Transactions B,2015,46(5):2153-2157.

[11] SCHMUCH R, WAGNER R, H?RPEL G, et al. Performance and cost of materials for lithium-based rechargeable automotive batteries[J].Nature Energy,2018,3(4):267-278.

[12] ZHANG X X,LI L,FAN E S,et sustainable and systematic recycling of spent rechargeable batteries[J].Chemical Society Reviews,2018,47(19):7239-7302.

[13] FU X K, BEATTY D N, GAUSTAD G G, et al. Perspectives on cobalt supply through 2030 in the face of changing demand[J].Environmental Science&Technology,2020,54(5):2985-2993.

[14] 孟大为,马帅雨,张志勇.废旧电池处理现状及对策分析[J].电池工业,2018,22(4): D W, MA S Y, ZHANG Z Y. Analysis of current situation and countermeasures to waste battery treatments[J]. Chinese Battery Industry,2018,22(4):219-223.

[15] 于明,奚子杭,王欣.浅谈废旧电池的危害及其回收利用[J].黑龙江环境通报,2014,38(1):89-90.YU M, XI Z H, WANG X. Discussion on damage and recycling of spent battery[J]. Heilongjiang Environmental Journal, 2014, 38(1):89-90.

[16] WANG X, GAUSTAD G, BABBITT C W, et al. Economic and environmental characterization of an evolving Li-ion battery waste stream[J].Journal of Environmental Management,2014,135:126-134.

[17] LIU P. Recycling waste batteries: recovery of valuable resources or reutilization as functional materials[J]. ACS Sustainable Chemistry &Engineering,2018,6(9):-.

[18] ZHAO S Q, LI G M, HE W Z, et al. Recovery methods and regulation status of waste lithium-ion batteries in China: a mini review[J]. Waste Management&Research,2019,37(11):1142-1152.

[19] HUANG B, PAN Z F, SU X Y, et al. Recycling of lithium-ion batteries: recent advances and perspectives[J]. Journal of Power Sources,2018,399:274-286.

[20] 曹玲,刘雅丽,康铎之,等.废旧锂离子电池中有价金属回收及三元正极材料的再制备[J].化工进展,2019,38(5): L, LIU Y L, KANG D Z, et al. Recovery of valuable metals from spent lithium ion battery and the resynthesis of Li(Ni1/3Co1/3Mn1/3)O2materials[J].Chemical Industry and Engineering Progress,2019,38(5):2499-2505.

[21] CHEN J P, LI Q W, SONG J S, et al. Environmentally friendly recycling and effective repairing of cathode powders from spent LiFePO4batteries[J].Green Chemistry,2016,18(8):2500-2506.

[22] POYRAZ A S, HUANG J P, CHENG S B, et al. Effective recycling of manganese oxide cathodes for lithium based batteries[J]. Green Chemistry,2016,18(11):3414-3421.

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