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A critical updated review of the hydrometallurgical routes for recycling zinc and manganese from spent zinc-based batteries

机译:从废锌基电池回收锌和锰的湿法冶金路线的关键更新综述

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摘要

This review paper aims to present and analyse data from the most recent literature (between 2007 and 2019) published on the topic of manganese (Mn) and zinc (Zn) recovery from zinc-based spent batteries through hydrometallurgical methods. In a first attempt, a detailed comparative assessment of the metals leaching performance (as well as the experimental variables that influence its performance) reported in the various studies with strong acid or bases, potentially supplemented by complexing or reducing agents, as well as the reactions involved, are reviewed and discussed. All data point out that the use of a reductant is needed to fully solubilize Mn from spent batteries during the leaching process. Comparison of the data seem to indicate that most reductants have similar performance and, therefore, the choice of a reductant should be focused on low cost or even waste materials. In a second attempt, the separative processes mostly described in the literature to recover Mn and Zn from leachates are reviewed emphasizing the strengths and weaknesses of each technique. Solvent extraction is the most widely tested process for this aim. A thorough comparison of existing data indicates that, in general, neutral extractants have higher potential for selective separation of Zn and Mn. Furthermore, although chemical precipitation is a simple process, low pure final metal hydroxide products are expected to be achieved when alkaline precipitation is implemented comparatively to the Mn oxidative precipitation where Mn can be recovered selectively as a solid of manganese (IV) oxide. (C) 2020 Published by Elsevier Ltd.
机译:本综述旨在展示和分析来自最近的文学(2007年至2019年)的数据,通过液压冶金方法从锌基的花电池中发表的锰(Mn)和锌(Zn)回收的题目。在第一次尝试中,对金属浸出性能的详细比较评估(以及影响其性能的实验变量)在各种研究中报告了强酸或碱,可能通过络合或还原剂以及反应而补充剂,以及反应涉及,经过审查和讨论。所有数据都指出,需要使用还原剂在浸出过程中完全溶解MN。数据的比较似乎表明大多数还原剂具有相似的性能,因此,还原的选择应专注于低成本甚至废料。在第二次尝试中,在文献中最多描述的分娩过程以从渗滤液中回收Mn和Zn的重点,强调每种技术的强度和弱点。溶剂萃取是该目标最广泛测试的方法。彻底比较现有数据表明,通常,中性萃取剂具有更高的选择性分离Zn和Mn的潜力。此外,虽然化学沉淀是一种简单的方法,但是当碱性沉淀相对达到Mn氧化沉淀时,预计将实现低纯最终金属氢氧化物产物,其中MN可以选择性地作为锰(IV)氧化物的固体回收Mn。 (c)2020由elestvier有限公司发布

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