Ab'/> Process development for selective precipitation of valuable metals and simultaneous synthesis of single-phase spinel ferrites from saprolite-limonite laterite leach liquors
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Process development for selective precipitation of valuable metals and simultaneous synthesis of single-phase spinel ferrites from saprolite-limonite laterite leach liquors

机译:用于选择性金属的选择性沉淀的过程开发以及Saprolite - 褐铁矿红皂岩液中同时合成单相尖晶石铁氧体

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摘要

AbstractTo comprehensively utilize the laterite resources, the present study focused on the selective recovery of valuable metals Ni, Co or Al, Cr, and concurrent synthesis of spinel ferrites from saprolite-limonite laterite leach liquors by a one-step selective precipitation method. The precipitation behaviors were investigated in detail, as were factors such as precipitant reagent, pH value, precipitation method, and initial metal ion concentration. In optimal conditions, about 93.0% Ni and 92.0% Co could be enriched in the filtrate by using ammonia (aqueous NH3) solution as precipitant reagent while the recoveries of Al and Cr were 92.0% and 90.0% by using sodium hydroxide (NaOH) solution. After the separation and selective precipitation processes, the precipitates were utilized to synthesize spinel ferrites and the effects of saprolite to limonite laterite mass ratio (MS/L) and calcination temperature on the product purity are discussed. Single phase multi-metal doped magnesium ferrites with high purity could be synthesized when the precipitates were obtained using MS/Lratio of 9:1 and 7:3 by using aqueous NH3and NaOH solutions as precipitant reagents, and then calcined at 1000°C for 2h, respectively. The overall metal recoveries from laterite blends using aqueous NH3and NaOH precipitant reagents were 89.2% and 85.4%, respectively.Highlights?A simple approach to the comprehensive utilization of laterite ores is reported.?Extraction of valuable metals and synthesis of ferrite spinel materials are realized.?A reverse precipitation method is more favorable for the metal recoveries.?The overall metal recovery as spinel ferrite materials was about 85%.]]>
机译:<![cdata [ 抽象 全面利用后卫的资源,本研究专注于有价值的金属Ni,Co或Al的选择性恢复通过一步选择性沉淀法从Saprolite - 唇尼岩后浸液中与尖晶石铁氧体的同时合成。详细研究了沉淀行为,如沉淀剂试剂,pH值,沉淀法和初始金属离子浓度等​​因素。在最佳条件下,通过使用氨(NH 3 CE:INF>)溶液作为沉淀剂试剂,可以在滤液中富集约93.0%Ni和92.0%CO。使用氢氧化钠(NaOH)溶液,Al和Cr为92.0%和90.0%。在分离和选择性沉淀过程之后,利用沉淀物合成尖晶石铁氧体,并皂化物对褐铁矿后果的影响(M S / L )和煅烧讨论了产品纯度的温度。当使用M 比例为9:1和7:3使用NH 3> 3 和NaOH溶液作为沉淀剂试剂,然后分别在1000℃下煅烧2小时。使用NH 3 和NaOH沉淀剂试剂的整体金属回收率分别为89.2%和85.4%。 亮点 报告了横向矿石综合利用的简单方法。 实现了有价值金属的提取和铁氧体尖晶石材料的合成。 反向PR碳钢方法对金属回收更有利。 作为尖晶石铁氧体材料的整体金属恢复约为85%。 ]]>

著录项

  • 来源
    《Hydrometallurgy》 |2017年第2017期|共8页
  • 作者单位

    Institute of Resources and Environmental Engineering State Environmental Protection Key Laboratory of Efficient Utilization Technology of Coal Waste Resources Shanxi University;

    Shanxi Collaborative Innovation Center of High Value-added Utilization of Coal-related Wastes;

    Institute of Resources and Environmental Engineering State Environmental Protection Key Laboratory of Efficient Utilization Technology of Coal Waste Resources Shanxi University;

    Shanxi Collaborative Innovation Center of High Value-added Utilization of Coal-related Wastes;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金技术;
  • 关键词

    Laterite leach liquor; Spinel ferrite; Selective precipitation; Precipitant reagent; Separation and recovery;

    机译:红铁液;尖晶石铁氧体;选择性沉淀;沉淀剂;分离和恢复;

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