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首页> 外文期刊>Journal of Environmental Management >An innovative route for valorising iron and aluminium oxide rich industrial wastes: Recovery of multiple metals
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An innovative route for valorising iron and aluminium oxide rich industrial wastes: Recovery of multiple metals

机译:储存钢铁富含工业废物的创新途径:多种金属的恢复

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摘要

Several industrial wastes including biomass, fly ashes, red mud, mill scales, water treatment residues, have significant concentrations of metal oxides: Fe_2O_3, Al_2O_3, TiO_2, SiO_2 etc. Several efforts have been made towards recovering metals within these wastes. Rather than recovering one metal at a time, we report a novel approach for simultaneously extracting multiple metals from mixed oxides in a single process step. Using three distinct furnaces/heating regimes, the carbothermic reduction of Fe_2O_3/Al_2O_3/SiO_2 system was investigated at 1450-1700 °C for up to 2 h over a wide composition range. Complete reduction was achieved for both Fe_2O_3 and SiO_2 in all cases leading to the formation of Fe and Fe-Si alloys. The reduction of alumina at moderate temperatures was the key challenge. No alumina reduction was observed during reductions at 1450 °C. A partial reduction of alumina and the formation of Fe-Al alloys was detected in the Al_2O_3/Fe_2O_3/C system at 1550 °C. The formation of Fe-Si-Al alloys was also observed in the Fe_2O_3/SiO_2/Al_2O_3/C system at 1550 °C. Complete reduction of alumina was observed at 1600-1700 °C, even for up to 50 wt% alumina in the system. Optimal operating conditions and reference standards were established for the simultaneous recovery of multiple metals from waste oxides. While conserving natural resources, this novel route will lower the burden on waste storage facilities with significant contributions to the economic and environmental sustainability of industrial waste management.
机译:包括生物质,飞行灰,红色泥浆,轧机等的几种工业废物,水处理残留物,具有显着浓度的金属氧化物:Fe_2O_3,Al_2O_3,TiO_2,SiO_2等。已经努力回收这些废物中的金属。我们一次恢复一种金属,我们报告了一种新的方法,用于在单个工艺步骤中同时从混合氧化物中提取多种金属。使用三个不同的熔种/加热制度,在1450-1700℃下在宽的组成范围内在1450-1700℃下进行Fe_2O_3 / Al_2O_3 / SiO_2系统的碳热还原。在导致Fe和Fe-Si合金形成的所有病例中,对于Fe_2O_3和SiO_2,均为Fe_2O_3和SiO_2实现完全减少。温度温度下的氧化铝的还原是关键挑战。在1450℃下减少期间未观察到氧化铝还原。在1550℃下在Al_2O_3 / Fe_2O_3 / C系统中检测到氧化铝的部分还原和Fe-Al合金的形成。在Fe_2O_3 / SiO_2 / Al_2O_3 / C系统中也在1550℃下观察到Fe-Si-Al合金的形成。在1600-1700℃下观察到氧化铝的完全减少,即使在系统中均可高达50wt%的氧化铝。建立了从废氧化物同时恢复多种金属的最佳操作条件和参考标准。在保护自然资源的同时,这种新颖的路线将降低废物储存设施的负担,对工业废物管理的经济和环境可持续性具有重大贡献。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|113035.1-113035.11|共11页
  • 作者单位

    School of Materials Science and Engineering The University of New South Wales NSW 2052 Sydney Australia;

    Department of Functional Nanosystems and High-Temperature Materials National University of Science and Technology "MISiS" Moscow 119049 Russia;

    School of Materials Science and Engineering The University of New South Wales NSW 2052 Sydney Australia;

    Engineering Centre Plekhanov Russian University of Economics Moscow 117997 Russia;

    Facultad de Ingenieria Universidad Andres Bello Antonio Varas 880 Providencia Santiago Chile;

    Department of Physical Metallurgy and Physics of Strength National University of Science and Technology "MISiS" Moscow 119049 Russia;

    Department of Physical Metallurgy and Physics of Strength National University of Science and Technology "MISiS" Moscow 119049 Russia;

    Laboratory of Inorganic Nanomaterials National University of Science and Technology 'MISiS' Moscow 119049 Russia;

    Institute of Minerals and Materials Technology (Ret) Council of Scientific and Industrial Research Bhubaneshwar Orissa 751013 India;

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

    Sustainability; Waste oxides; Ferroalloys; Valorisation; Material recovery; Biomass;

    机译:可持续性;氧化物;铁合金;甘露化;材料恢复;生物量;

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