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Acid extraction of molybdenum, nickel and cobalt from mineral sludge generated by rainfall water at a metal recycling plant

机译:在金属回收厂从雨水产生的矿物污泥中酸解钼,镍和钴

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摘要

This study investigated the leaching yields of Mo, Ni and Co from a mineral sludge of a metal recycling plant generated by rainfalls. The investigated mineral sludge had a complex heterogeneous composition, consisting of particles of settled soil combined with metal-bearing particles (produced by catalysts, metallic oxides and battery recycling). The leaching potential of different leaching reagents (stand-alone strong acids (HNO3 (68%), H2SO4 (98%) and HCl (36%)) and acid mixtures (aqua regia (nitric + hydrochloric (1:3)), nitric + sulphuric (1:1) and nitric + sulphuric + hydrochloric (2:1:1)) was investigated at changing operational parameters (solid-liquid (S/L) ratio, leaching time and temperature), in order to select the leaching reagent which achieves the highest metal leaching yields. Sulphuric acid (98% H2SO4) was found to be the leachant with the highest metal leaching potential. The optimal leaching conditions were a three-stage successive leaching at 80 degrees C with a leaching time of 2 h and S/L ratio of 0.25 g L-1. Under these conditions, the achieved mineral sludge sample leaching yields were 85.5%, 40.5% and 93.8% for Mo, Ni and Co, respectively. The higher metal leaching potential of H2SO4 in comparison with the other strong acids/acid mixtures is attributed to the fact that H2SO4 is a diacidic compound, thus it has more H+ ions, resulting in its stronger oxidizing power and corrosiveness.
机译:这项研究调查了降雨产生的金属回收厂的矿物污泥中Mo,Ni和Co的浸出量。被调查的矿物污泥具有复杂的非均质组成,由沉降的土壤颗粒与含金属的颗粒(由催化剂,金属氧化物和电池回收产生)组成。不同浸出试剂(独立的强酸(HNO3(68%),H2SO4(98%)和HCl(36%))和酸混合物(王水(硝酸+盐酸(1:3)),硝酸)的浸出潜力在变化的运行参数(固液比(S / L),浸出时间和温度)下研究了+硫酸(1:1)和硝酸+硫酸+盐酸(2:1:1),以选择浸出金属浸出率最高的试剂是硫酸(98%H2SO4)是金属浸出潜能最高的浸出剂,最佳浸出条件是在80℃连续三步浸出,浸出时间为2 h和S / L比为0.25 g L-1,在这些条件下,Mo,Ni和Co的矿物污泥样品浸出率分别为85.5%,40.5%和93.8%。与其他强酸/酸混合物的比较归因于以下事实:H2SO4是二酸化合物,因此它具有更多的H +离子,因此具有更强的氧化能力和腐蚀性。

著录项

  • 来源
    《Environmental Technology》 |2016年第8期|630-639|共10页
  • 作者单位

    Univ Paris Est, Lab Geomat & Environm, EA 4508, UPEM, F-77454 Marne La Vallee, France|Univ Limoges, Fac Sci & Tech, Grp Rech Eau Sol Environm, 123 Ave Albert Thomas, F-87060 Limoges, France|UNESCO IHE Inst Water Educ, Westvest 7, NL-2611 AX Delft, Netherlands;

    Univ Limoges, Fac Sci & Tech, Grp Rech Eau Sol Environm, 123 Ave Albert Thomas, F-87060 Limoges, France;

    Univ Limoges, Fac Sci & Tech, Grp Rech Eau Sol Environm, 123 Ave Albert Thomas, F-87060 Limoges, France;

    ERAMET, Ave Maryse Bastie, F-87410 Le Palais Sur Vienne, France;

    Univ Limoges, Fac Sci & Tech, Grp Rech Eau Sol Environm, 123 Ave Albert Thomas, F-87060 Limoges, France;

    UNESCO IHE Inst Water Educ, Westvest 7, NL-2611 AX Delft, Netherlands;

    Univ Paris Est, Lab Geomat & Environm, EA 4508, UPEM, F-77454 Marne La Vallee, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chemical leaching; Mineral sludge; leaching yields; metals; sulphuric acid;

    机译:化学浸出;矿物污泥;浸出率;金属;硫酸;

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