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首页> 外文期刊>Resources, Conservation and Recycling >Recovery of lithium and cobalt from spent lithium ion batteries (LIBs) using organic acids as leaching reagents: A review
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Recovery of lithium and cobalt from spent lithium ion batteries (LIBs) using organic acids as leaching reagents: A review

机译:使用有机酸作为浸出试剂的锂离子电池(LIBS)从锂离子电池(LIBS)中恢复锂和钴:综述

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摘要

Environmental restrictions and economic benefits have obliged countries to promote recycling processes from secondary resources like spent lithium ion batteries (LIBs) instead of using primary ones. In spite of the developments have been made on industrial scale for the technologies involved in recycling processes, most of these technologies suffer from lack of efficiency and echo-friendliness. To reduce the footprints of the recycling processes, several efforts are made. A major development area is the use of organic acids which are considered as promising agents for leaching of valuable metals from spent LIBs. In this review paper, we provided an overview of the recent status of the recycling technologies of spent LIBs using organic acids. For this purpose, necessity of green processes and advantage of organic acids in recycling of spent LIBs is discussed. To fully understand the effect of these agents, production, origin, application, and structure of organic acids that have been used in recovery of metals from spent LIBs are also addressed. Afterwards, recycling processes using organic acids, and benefits and drawbacks of using them are summarized and possible complexes formed by these agents are proposed. Eventually, development of different reducing agents, ultrasonic agitation, and evolution and future prospect of green processes in recycling of spent LIBs is reviewed.
机译:环境限制和经济效益有义务各国促进来自二级资源的回收过程,如花锂离子电池(LIBS)而不是使用主要的资源。尽管对涉及回收过程的技术的工业规模进行了发展,但这些技术的大多数都缺乏效率和回声友好。为了减少回收过程的占地面积,制造了几项努力。主要的开发领域是使用有机酸被认为是从废诵Libs浸出有价值金属的有前途的药剂。在本文中,我们概述了使用有机酸的废诵的回收技术的最新状态。为此,讨论了讨论了绿色进程和有机酸在回收利用Libs中的有机酸的优势的必要性。为了充分了解这些药物的效果,还解决了从废诵Libs回收金属的有机酸的效果。然后,总结了使用有机酸的回收过程,以及使用它们的益处和缺点,并提出了这些试剂形成的可能复合物。最终,综述了综合地发展不同的还原剂,超声波搅拌和进化和未来绿色进程的回收中的进展前景。

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