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采用水作为萃取剂,通过机械化学球磨从电解锰渣中选择性回收锰:机理与动力学。

Selective recovery of manganese from electrolytic manganese residue by using water as extractant under mechanochemical ball grinding: Mechanism and kinetics.

机构信息

School of Resource and Environmental Sciences, Wuhan University, PR China; Hubei Environmental Remediation Material Engineering Technology Research Center, Wuhan 430072, PR China.

School of Resource and Environmental Sciences, Wuhan University, PR China; Hubei Environmental Remediation Material Engineering Technology Research Center, Wuhan 430072, PR China.

出版信息

J Hazard Mater. 2021 Aug 5;415:125556. doi: 10.1016/j.jhazmat.2021.125556. Epub 2021 Mar 2.

Abstract

This research aimed to address the issue of residual manganese in electrolytic manganese residue (EMR), which is difficult to recycle and can easily become an environmental hazard and resource waste. This research developed a method for the efficient and selective recovery of manganese from EMR and the removal of ammonia nitrogen (ammonium sulfate) under the combined action of ball milling and oxalic acid. The optimum process parameters of this method were obtained through single-factor experiment and response-surface model. Results showed that the recovery rate of manganese can exceed 98%, the leaching rate of iron was much lower than 2%, and the leaching rates of manganese and ammonia nitrogen after EMR ball grinding were 1.01 and 13.65 mg/L, respectively. Kinetics and mechanism studies revealed that ammonium salts were primarily removed in the form of ammonia, and that insoluble manganese (MnO) was recovered by the reduction of FeS and FeS in EMR under the action of oxalic acid. Iron was solidified in the form of FeO and Fe(SiO). The technology proposed in this research has great industrial application value for the recycling and harmless treatment of EMR.

摘要

本研究旨在解决电解锰渣(EMR)中残留锰难以回收利用、容易造成环境危害和资源浪费的问题。本研究开发了一种在球磨和草酸的联合作用下,从 EMR 中高效、选择性回收锰并去除氨氮(硫酸铵)的方法。通过单因素实验和响应面模型得到了该方法的最佳工艺参数。结果表明,锰的回收率可超过 98%,铁的浸出率远低于 2%,EMR 球磨后锰和氨氮的浸出率分别为 1.01 和 13.65 mg/L。动力学和机理研究表明,铵盐主要以氨的形式去除,草酸作用下,EMR 中的 FeS 和 FeS 将还原,生成不溶性锰(MnO)。铁以 FeO 和 Fe(SiO)的形式固化。本研究提出的技术对于 EMR 的回收利用和无害化处理具有重要的工业应用价值。

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