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Advances in Beneficiation of Low-Grade Bauxite

机译:低型铝土矿的利用进展

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Bauxite is the major alumina (Al_2O_3) bearing ore used in the aluminum manufacturing industries. The bauxite containing less than 50% Al_2O_3 is called low-grade bauxite ore which is commonly used for the alumina-based abrasives and refractories productions. The alumina-silica and alumina-ferrite complexes are the foremost impurities present in the low-grade bauxite. They affect its commercial utilities due to development of poor binding property in the alumina grains, which creates mechano-physical problems. Therefore, they must be removed from the low-grade bauxite. Different conventional bauxite purification or beneficiation methods have been used for their removal; however, they have several limitations. Bio-beneficiation is a potential solution to the problems associated with conventional methods. In the bio-beneficiation process, the biological agents such as microorganisms and their metabolic products can mobilize or polarize different impurities present in the low-grade bauxite by means of the active redox environment created by them in the indigenous atmosphere. Many reports have suggested that Paenibacillus polymyxa efficiently removes calcium from the low-grade bauxite. Similarly, iron-oxidizing and silicate bacteria remove iron and solubilise silica, respectively, from the low-grade bauxite. However, pilot scale operation of the bauxite bio-beneficiation process has not been reported. Research related to biotechnology should be undertaken in the future to develop a comprehensive and efficient process for the bio-beneficiation of low-grade bauxite ore.
机译:铝土矿是铝制制造业中使用的主要氧化铝(AL_2O_3)轴承矿石。含有少于50%Al_2O_3的铝土矿称为低级铝土矿矿石,其通常用于氧化铝的磨料和耐火材料生产。氧化铝 - 二氧化硅和氧化铝 - 铁素体复合物是低级铝土矿中存在的最重要的杂质。由于在氧化铝谷物中的增生性不良,它们会影响其商业公用事业,从而创造了机械身体问题。因此,必须从低级铝土矿中取出它们。不同的常规铝土矿纯化或受益方法已被用于除去;但是,他们有几个限制。生物享用是与常规方法相关的问题的潜在解决方案。在生物利用过程中,微生物如微生物和它们的代谢产物的生物药物可以通过在本土气氛中产生的活性氧化还原环境来动员或偏振于低级铝土矿中存在的不同杂质。许多报道表明paenibacillus polymyxa有效地从低级铝土矿中去除钙。类似地,铁氧化和硅酸盐细菌分别从低级铝土矿中除去铁和增溶性二氧化硅。然而,尚未报告铝土矿生物营销过程的试验规模运行。与生物技术有关的研究应在未来开展全面,高效的铝土矿矿石生物矿物的过程。

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