首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >A Novel Circulation Process to Effectively Produce Electrolytic Manganese Metal (EMM) with Low‑Grade Manganese Oxide Ores and High‑Sulfur Manganese Ores
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A Novel Circulation Process to Effectively Produce Electrolytic Manganese Metal (EMM) with Low‑Grade Manganese Oxide Ores and High‑Sulfur Manganese Ores

机译:一种新的循环过程,有效地用低级锰氧化物矿石和高硫锰金属(EMM)和高硫锰金属(EMM)

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摘要

A novel circulation process of electrolytic manganese metal (EMM) production with low-grade manganese oxide ores (LGMO) and high-sulfur manganese ores (HSMO) was studied and developed. The unit operations mainly include dissolution of LGMO, purification of leach liquor and electrolysis for EMM preparation. Based on the theoretical thermodynamic analysis, a reductive roasting-acid leaching process for utilizing LGMO using HSMO as reductant was investigated. The leaching efficiency of Mn and Fe could get to 97.30% and 17.50% with conditions set as following, which have all been verified through a series of experiments: the material ratio of 1.67:1 (mass ratio of HSMO to LGMO, w/w), roasting temperature of 600°C for 60 min, L/S ratio of 5:1, stirring speed of 150 rpm, sulfuric acid concentration of 1.0 mol/L and the leaching temperature of 60 °C for 35 min. Meanwhile, the reduction roasting-acid leaching process applies to the Mn extraction for assorted manganese dioxide ores in general. Furthermore, the leach liquor was purified in two steps, and following a scaleup electrolysis process was implemented to prepare EMM from the purified liquors. The uniform and dense α-Mn with bcc crystal structure, meeting the requirement of metallurgical industry standard (YB/T 051-2003), could be stably produced in 9-day incessant ongoing test.
机译:研究了用低级锰氧化物矿石(LGMO)和高硫锰矿石(HSMO)的电解锰金属(EMM)生产的新型循环过程。该单元操作主要包括LGMO的溶解,浸出液体净化和EMM制备的电解。基于理论热力学分析,研究了使用HSMO使用HMO作为还原剂使用LGMO的还原焙烧酸浸出方法。 Mn和Fe的浸出效率可以获得如下条件的97.30%和17.50%,并通过一系列实验进行了验证:材料比为1.67:1(HSMO的质量比,LGMO,W / W ),600℃的烘烤温度60分钟,L / S比为5:1,搅拌速度为150rpm,硫酸浓度为1.0mol / l,浸出温度为60℃,35分钟。同时,减少焙烧酸浸出方法适用于各种二氧化碳矿石的Mn萃取。此外,用两步纯化浸出液,并在实施略微的电解过程之后,实施从纯化的液体中制备EMM。具有BCC晶体结构的均匀和致密α-MN,满足冶金工业标准(YB / T 051-2003)的要求,可以在9天不停的持续测试中稳定地生产。

著录项

  • 来源
  • 作者单位

    College of Safety Science and Engineering Nanjing Tech University Nanjing 211816 Jiangsu China;

    College of Safety Science and Engineering Nanjing Tech University Nanjing 211816 Jiangsu China;

    College of Safety Science and Engineering Nanjing Tech University Nanjing 211816 Jiangsu China;

    College of Safety Science and Engineering Nanjing Tech University Nanjing 211816 Jiangsu China;

    College of Chemistry and Chemical Engineering Central South University Changsha 410083 Hunan China Hunan Provincial Key Laboratory of Efficient and Clean Utilization of Manganese Resources Central South University Changsha 410083 Hunan China;

    College of Chemistry and Chemical Engineering Central South University Changsha 410083 Hunan China Hunan Provincial Key Laboratory of Efficient and Clean Utilization of Manganese Resources Central South University Changsha 410083 Hunan China;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Low-grade manganese oxide ores; High-sulfur manganese ores; Reduction roasting; Acid leaching; Electrolytic manganese metal;

    机译:低级锰氧化物矿石;高硫锰矿;减少焙烧;酸浸出;电解锰金属;

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