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Recovery of soluble manganese from electrolyte manganese residue using a combination of ammonia and CO2

机译:使用氨气和二氧化碳从电解质锰残渣中回收可溶性锰

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To minimize the environmental impacts of electrolyte manganese residue (EMR) and to recover the valuable manganese element, precipitation of the soluble manganese from EMR using ammonia bubbled with CO2 was investigated. Precipitation behaviours in the presence of ammonia with or without CO2 are discussed by comparison. It was found that the process using a combination of ammonia and CO2 results in better precipitation of manganese, yielding MnCO3 as observed by XRD analysis. The molar ratio of ammonia to manganese and the strength of bubbling and agitation with CO2 were studied as parameters affecting the recovery of manganese. The optimal experimental conditions for the recovery of manganese were found to be an ammonia-to-manganese molar ratio of 3:1, CO2 bubbling at a rate of 2 L/min for 2 min, and agitation at 190 rpm at 298 K for 12 min. Under these conditions, a manganese recovery of 94.2% was obtained. Kinetic analysis indicated that the order of the reaction and the energy of activation for the precipitation of manganese are approximately 22 and -56.7 kJ/mol, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了最大程度地减少电解质锰残留物(EMR)的环境影响并回收有价值的锰元素,研究了使用鼓入CO2的氨气从EMR中沉淀出可溶性锰的方法。通过比较讨论了在有或没有CO2的氨存在下的沉淀行为。通过XRD分析发现,使用氨气和CO2的组合工艺可更好地沉淀锰,生成MnCO3。研究了氨水与锰的摩尔比以及鼓泡和二氧化碳搅拌的强度,作为影响锰回收率的参数。发现锰回收的最佳实验条件是氨与锰的摩尔比为3:1,以2 L / min的速度鼓泡2分钟的CO2鼓泡以及在298 K下以190 rpm的速度搅拌12分钟在这些条件下,锰的回收率为94.2%。动力学分析表明,锰的沉淀反应顺序和活化能分别约为22和-56.7 kJ / mol。 (C)2016 Elsevier B.V.保留所有权利。

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