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废铁屑还原软锰矿制备高纯硫酸锰工艺研究
引用本文:蔡振勇,易清风,刘汉勇,方明略,龚学华,符国庆. 废铁屑还原软锰矿制备高纯硫酸锰工艺研究[J]. 中国锰业, 2011, 29(3): 28-31
作者姓名:蔡振勇  易清风  刘汉勇  方明略  龚学华  符国庆
作者单位:1. 湖南科技大学化学化工学院,湖南 湘潭,411201
2. 湘西自治州金戈锰业有限责任公司,湖南 吉首,416000
摘    要:研究了采用废铁屑作为还原剂,在稀硫酸介质中湿法还原软锰矿制备硫酸锰的工艺过程。通过单因素实验确定最佳工艺参数,结果表明:当Fe/MnO2的摩尔比为0.78∶1,H2SO4/MnO2的摩尔比为2.1∶1,反应温度50℃,反应时间80 min时,锰的浸出率在95%以上。加入碳酸钙中和调节溶液pH值至5~6,使溶液中的铁、铝等杂质离子水解为氢氧化铁、氢氧化铝等沉淀除去,加入硫化钡使浸出溶液中的重金属离子以硫化物沉淀除去,减压过滤得到硫酸锰粗滤液,向粗滤液中加入二氟化锰使溶液中的Ca2+、Mg2+等离子生成氟化物沉淀,然后溶液经过静置过滤得到硫酸锰净化液,滤液经浓缩、结晶制备硫酸锰产品。经检测产品纯度在99%以上,杂质含量低于国家标准。

关 键 词:废铁屑  软锰矿  高纯硫酸锰  净化  结晶

Preparation of High Purity Manganese Sulfate from the Reduction of Pyrolusite Using Scrap Iron as the Reductant
CAI Zhenyong,YI Qingfeng,LIU Hanyong,FANG Minglue,GONG Xuehua,FU Guoqing. Preparation of High Purity Manganese Sulfate from the Reduction of Pyrolusite Using Scrap Iron as the Reductant[J]. China's Manganese Industry, 2011, 29(3): 28-31
Authors:CAI Zhenyong  YI Qingfeng  LIU Hanyong  FANG Minglue  GONG Xuehua  FU Guoqing
Affiliation:CAI Zhenyong1,YI Qingfeng1,LIU Hanyong2,FANG Minglue2,GONG Xuehua2,FU Guoqing2(1.School of Chemistry and Chemical Engineering,Hunan University of Science and Technology,Xiangtan,Hunan 411201,China,2.Xiangxi Jinge Manganese Industry Co.,LTD,Jishou,Hunan 416000,China)
Abstract:In this paper, the leaching of manganese sulfate from pyrolusite with scrap iron as a reductant in dilute sulfuric acid solution was studied. Optimal parameters that affect the leaching efficiency of manganese sulfate were determined by the single factor method. The results shows that the leaching rate of manganese can reach more than 95% under the condition of Fe to M nO2 molar ratio of 0.78, H2SO4 to MnO2 molar ratio of 2.1, reaction temperature 50℃, reaction time 80min. Calcium carbonate was added to the leaching solution to adjust pH 5 6 so that iron,aluminum and other impurities were removed by becoming iron hydroxide,aluminum hydroxide and other precipitations. Heavy metal ions were removed by adding barium sulfide to the leaching solution to form sulfide precipitations. After being filtrated, manganese difluoride was added to the filtrate to precipitate Ca^2+ , M g^2+ and other impurities. After standing, the solution was then filtrated and high purity manganese sulfate solution was obtained. Crystallized manganese sulfate was obtained after being concentrated. Manganese sulfate purity can reach more than 99% and impurity contents were lower than those what the national standard claims.
Keywords:Scrap iron  Pyrolusite  Manganese sulphate high purity  Purification  Crystallization  
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