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碳化反沉淀法去除硫酸锰浸出液中钙、镁的研究
引用本文:陈晓亮,王海峰,王家伟. 碳化反沉淀法去除硫酸锰浸出液中钙、镁的研究[J]. 矿冶工程, 2020, 40(2): 82-85. DOI: 10.3969/j.issn.0253-6099.2020.02.019
作者姓名:陈晓亮  王海峰  王家伟
作者单位:1.贵州大学 材料与冶金学院, 贵州 贵阳 550025; 2.贵州省冶金工程与过程节能重点实验室, 贵州 贵阳 550025; 3.贵州省电池用锰材料工程技术研究中心, 贵州 铜仁 554300
基金项目:国家自然科学基金;贵州省科学合作计划项目
摘    要:采用碳化沉锰法去除硫酸锰溶液中的钙、镁离子。以CO2为碳化剂, 将硫酸锰溶液中的Mn2+以碳酸锰沉淀的形式从原溶液中分离出来, 然后用硫酸将沉淀物溶解, 从而达到除杂的目的。考查了CO2流量、反应温度、pH值及反应时间对钙、镁离子去除效果的影响, 结果表明, 最适宜条件为反应温度45 ℃、溶液pH值7.0、CO2流量2.7 L/min、反应时间60 min, 此时碳化产物中钙、镁离子含量分别为0.03%和0.01%, 达到了HG/T 2836-2011高纯碳酸锰Ⅰ型品的标准。

关 键 词:碳化沉锰法  硫酸锰      深度除杂  
收稿时间:2019-11-02

Removal of Calcium and Magnesium from Manganese Sulfate Leaching Solution via a Reverse Precipitation by Carbonation
CHEN Xiao-liang,WANG Hai-feng,WANG Jia-wei. Removal of Calcium and Magnesium from Manganese Sulfate Leaching Solution via a Reverse Precipitation by Carbonation[J]. Mining and Metallurgical Engineering, 2020, 40(2): 82-85. DOI: 10.3969/j.issn.0253-6099.2020.02.019
Authors:CHEN Xiao-liang  WANG Hai-feng  WANG Jia-wei
Affiliation:1.School of Mining, Guizhou University, Guiyang 550025, Guizhou, China; 2.Guizhou Key Laboratory of Metallurgical Engineering and Process Energy Conservation, Guiyang 550025, Guizhou, China; 3.Guizhou Provincial Engineering Research Center for Battery Manganese Materials, Tongren 554300, Guizhou, China
Abstract:The calcium and magnesium ions in manganese sulfate solution were removed by carbonate precipitation of manganese. With CO2 as a carbonizing agent, the Mn2+ in the manganese sulfate solution was precipitated as manganese carbonate, thus separated from the original solution. The precipitate was then dissolved with sulfuric acid, so as to achieve the purpose of removing impurities. The effects of CO2 flow rate, reaction temperature, pH value and reaction time on the removal of calcium and magnesium ions were all investigated. The results show that 60-min reaction at an optimal temperature of 45 ℃, with a solution pH of 7.0, a CO2 flow rate at 2.7 L/min, can result in the calcium and magnesium ion contents in the carbonized product reaching 0.03% and 0.01%, respectively, which is up to the HG/T 2836-2011 Standard for high-purityⅠ-type manganese carbonate products.
Keywords:carbonate precipitation of manganese  manganese sulfate  calcium  magnesium  deep impurity-removal  
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