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Recovery of cobalt from spent lithium-ion batteries using supercritical carbon dioxide extraction

机译:使用超临界二氧化碳萃取从废锂离子电池中回收钴

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摘要

Continuing technological development decreases the useful lifetime of electronic equipment resulting in the generation of waste and the need for new and more efficient recycling processes. The objective of this work is to study the effectiveness of supercritical fluids for the leaching of cobalt contained in lithium-ion batteries (LIBs). For comparative purposes, leaching tests are performed with supercritical CO_2 and co-solvents, as well as under conventional conditions. In both cases, sulfuric acid and H_2O_2 are used as reagents. The solution obtained from the supercritical leaching is processed using electrowinning in order to recover the cobalt The results show that at atmospheric pressure, cobalt leaching is favored by increasing the amount of H_2O_2 (from 0 to 8% v/v). The use of supercritical conditions enable extraction of more than 95 wt% of the cobalt, with reduction of the reaction time from 60 min (the time employed in leaching at atmospheric pressure) to 5 min, and a reduction in the concentration of H_2O_2 required from 8 to 4% (v/v). Electrowinning using a leach solution achieve a current efficiency of 96% and a deposit with cobalt concentration of 99.5 wt%.
机译:持续的技术发展减少了电子设备的使用寿命,从而导致废物的产生以及对新的和更有效的回收过程的需求。这项工作的目的是研究超临界流体对锂离子电池(LIB)中所含钴的浸出的有效性。为了比较,使用超临界CO_2和助溶剂以及在常规条件下进行浸出测试。在两种情况下,都使用硫酸和H_2O_2作为试剂。从超临界浸出中获得的溶液使用电解沉积工艺进行处理以回收钴。结果表明,在大气压下,通过增加H_2O_2的含量(从0到8%v / v)有利于钴的浸出。使用超临界条件能够提取超过95 wt%的钴,并将反应时间从60分钟(在大气压下浸出所用的时间)减少到5分钟,并将所需的H_2O_2浓度降低8至4%(v / v)。使用浸出溶液进行电沉积可实现96%的电流效率和99.5 wt%的钴浓度沉积物。

著录项

  • 来源
    《Waste Management》 |2016年第5期|245-251|共7页
  • 作者单位

    Environmental Processes Laboratory (LAPAM), Chemical Engineering Department, Universidade Federal de Santa Maria - UFSM, Avenida Roraima 1000, 97105-900 Santa Maria, RS, Brazil;

    Environmental Processes Laboratory (LAPAM), Chemical Engineering Department, Universidade Federal de Santa Maria - UFSM, Avenida Roraima 1000, 97105-900 Santa Maria, RS, Brazil;

    Environmental Processes Laboratory (LAPAM), Chemical Engineering Department, Universidade Federal de Santa Maria - UFSM, Avenida Roraima 1000, 97105-900 Santa Maria, RS, Brazil;

    Environmental Processes Laboratory (LAPAM), Chemical Engineering Department, Universidade Federal de Santa Maria - UFSM, Avenida Roraima 1000, 97105-900 Santa Maria, RS, Brazil;

    Environmental Processes Laboratory (LAPAM), Chemical Engineering Department, Universidade Federal de Santa Maria - UFSM, Avenida Roraima 1000, 97105-900 Santa Maria, RS, Brazil;

    Environmental Processes Laboratory (LAPAM), Chemical Engineering Department, Universidade Federal de Santa Maria - UFSM, Avenida Roraima 1000, 97105-900 Santa Maria, RS, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Recycling; Lithium ion batteries; Fast extraction; Supercritical fluids; Cobalt;

    机译:回收;锂离子电池;快速提取;超临界流体;钴;

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