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Metal Recovery Using Oxalate Chemistry: A Technical Review

机译:金属回收使用草酸化学:A技术评审

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Energy-efficient metal recovery and separation processes from a mixture of valuable metals are vital to the metallurgy and recycling industries. Oxalate has been identified as a sustainable reagent that can provide both the desired selectivity and efficient leaching capabilities for a variety of mixed metals under mild reaction conditions. The oxalate process has a great potential to replace many of the existing metal recovery processes that use inorganic acids such as sulfuric, hydrochloric, and nitric acids. In this Review, the use of oxalate chemistry in four major metal recovery applications is discussed, namely, spent lithium-ion batteries, spent catalysts, valuable ores, and contaminated and unwanted waste streams. Recycling of critical and precious metals from spent lithium-ion batteries and catalysts has significant economic opportunities. For efficient metals recovery, reaction conditions (e.g., temperature, pH, time, and concentration), metal-oxalate complex formation, oxidation and reduction, and metal precipitation must all be well-understood. This Review provides an overview from articles and patents for a variety of metal recovery processes along with insights into future process development.
机译:节能金属回收和分离流程从贵重金属的混合物对冶金和回收行业至关重要。草酸已被确定为一个可持续发展的能提供所需的试剂选择性和高效浸出能力对多种混合金属在温和的反应条件。可能取代许多现有的金属复苏过程,用无机酸等硫酸、盐酸和硝酸。这篇评论,使用草酸化学四个主要讨论了金属回收应用程序,也就是说,锂离子电池,花了催化剂,有价值的矿石,和污染多余的废物流。贵金属从废锂离子电池和催化剂具有巨大的经济的机会。反应条件(如温度、pH值、时间和浓度)、metal-oxalate复杂形成、氧化、还原和金属降水都必须易于理解。从文章和评论提供了一个概述专利各种金属的恢复进程除了洞察未来的过程发展。

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