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Green separation of lanthanum, cerium and nickel from waste nickel metal hydride battery

机译:废物镍金属氢化物电池的镧系元素,铈和镍的绿色分离

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摘要

In a circular economy context, there is a growing need for more sustainable waste management options to recover elements from end-of-life materials. These "secondary ores" represent a source of critical elements that are often present in higher concentration compared to their primary ore. In this work, the recovery of lanthanum (La) from waste nickel metal hydride battery (NiMH) leachate is investigated using an aqueous biphasic system (ABS) process based on a pluronic triblock copolymer (L35). An initial screening is performed to determine the influence of the ABS phase forming salt anion and alizarin red extractant on the La extraction efficiency and selectivity. From these results, a three-step ABS process is developed, varying only the nature of the salt and requiring no additional extractant. In a first step, the ABS composed of L35 + thiocyanate ammoniun + H_2O efficiently extracts iron, manganese, and cobalt leaving La, cerium, and Ni in solution. Nickel is subsequently recovered by precipitation using dimethyl-glyoxime. Finally, La is separated from cerium using the L35 + ammonium nitrate + H_2O ABS, recovering 62 g of La with 94% purity per kilogram of black mass of NiMH battery. This work highlights the applicability of ABS for the treatment of raw and complex matrices, potentially allowing for a greener hydrometallurgical treatment of wastes.
机译:在循环经济背景下,越来越需要更可持续的废物管理方案来恢复生命结束材料的因素。这些“次级矿石”表示与其主要矿石相比通常以较高浓度存在的关键元件的来源。在这项工作中,使用基于Pluronic三嵌段共聚物(L35)的水性双相系统(ABS)加工来研究来自废镍金属氢化物电池(NiMH)渗滤液的镧(La)的恢复。进行初始筛选以确定ABS相形成盐阴离子和茜素红萃取剂对LA提取效率和选择性的影响。从这些结果中,开发了三步ABS过程,只改变盐的性质,不需要额外的萃取剂。在第一步中,由L35 +硫氰酸盐Ammoniun + H_2O组成的ABS有效地提取溶液中的铁,锰和钴离开La,Cirium和Ni。随后通过使用二甲基乙醛酸沉淀回收镍。最后,使用L35 +硝酸铵+ H_2O ABS与铈分离出来,回收62g LA,每千克黑质镍氢电池纯度为94%纯度。这项工作突出了ABS的适用性为原料和复杂基质的处理,可能允许更加绿色的液压冶金治疗废物。

著录项

  • 来源
    《Waste Management》 |2021年第4期|154-162|共9页
  • 作者单位

    Group of Analysis and Education for Sustainability (CAES) Chemistry Department Centre of Exact and Technology Sciences Federal University of Vicosa (UFV) Vicosa MC 36570-900 Brazil Grupo de Quimica Verde Coloidal e Macromolecular (QUIVECOM) Chemistry Department Centre of Exact and Technology Sciences Federal University of Vicosa (UFV) Vicosa MC 36570-900 Brazil CICECO - Aveiro Institute of Materials Department of Chemistry University of Aveiro 3810-193 Aveiro Portugal;

    CICECO - Aveiro Institute of Materials Department of Chemistry University of Aveiro 3810-193 Aveiro Portugal;

    Group of Analysis and Education for Sustainability (CAES) Chemistry Department Centre of Exact and Technology Sciences Federal University of Vicosa (UFV) Vicosa MC 36570-900 Brazil;

    Grupo de Quimica Verde Coloidal e Macromolecular (QUIVECOM) Chemistry Department Centre of Exact and Technology Sciences Federal University of Vicosa (UFV) Vicosa MC 36570-900 Brazil;

    Group of Analysis and Education for Sustainability (CAES) Chemistry Department Centre of Exact and Technology Sciences Federal University of Vicosa (UFV) Vicosa MC 36570-900 Brazil;

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

    Critical metal; Circular economy; Waste battery; Aqueous biphasic system; Rare earth elements;

    机译:临界金属;循环经济;浪费电池;水性双相系统;稀土元素;

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