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Reduction of alkalinity in bauxite residue during Bayer digestion in high-ferrite diasporic bauxite

机译:高铁素体流散铝土矿的拜耳消化过程中铝土矿残渣碱度的降低

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Bauxite residue is a hazardous solid waste generated during the Bayer process of extracting alumina from bauxite ore, the high alkalinity of which limits its large-scale industrial applications. In order to reduce the alkalinity of bauxite residue, rich lime additions from 0 to 30 wt.% and high digestion temperatures from 250 degrees C to 300 degrees C were performed on a high-ferrite diasporic bauxite during the Bayer digestion. The alumina extraction efficiency from bauxite and the Na2O to SiO2 weight ratio of the bauxite residue were systemically investigated. The alkalinity in the bauxite residue decreases considerably with the increasing lime addition, digestion temperature and duration. The bauxite residues after digestion are mainly comprised of hematite, zeolite, grossular hydrogarnet, andradite-grossular hydrogarnet and perovskite, but their proportions vary greatly. A new method to accurately calculate the mineralogical compositions is proposed according to both the chemical compositions and XRD analyses of the bauxite residues. The mechanisms of alkalinity reduction in the bauxite residue and performance change in bauxite digestion are discussed. (C) 2014 Elsevier B.V. All rights reserved.
机译:铝土矿残渣是在拜耳公司从铝土矿中提取氧化铝的过程中产生的有害固体废物,其高碱度限制了其大规模的工业应用。为了降低铝土矿残留物的碱度,在拜耳消化过程中,对高铁素体渗水铝土矿进行了0至30 wt%的浓石灰添加和250摄氏度至300摄氏度的高消化温度添加。系统研究了铝土矿中氧化铝的提取效率以及铝土矿中Na2O与SiO2的重量比。铝土矿渣中的碱度随石灰添加量,消化温度和时间的延长而显着降低。消化后的铝土矿残留物主要由赤铁矿,沸石,大块状水榴石,放射状大块状水榴石和钙钛矿组成,但其比例差异很大。根据铝土矿渣的化学成分和XRD分析,提出了一种精确计算矿物成分的新方法。讨论了铝土矿残渣碱度降低和铝土矿消化性能变化的机理。 (C)2014 Elsevier B.V.保留所有权利。

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