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Proposal for management and alkalinity transformation of bauxite residue in China

机译:关于我国铝土矿渣碱化治理的建议

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Bauxite residue is a hazardous solid waste produced during the production of alumina. Its high alkalinity is a potential threat to the environment which may disrupt the surrounding ecological balance of its disposal areas. China is one of the major global producers of alumina and bauxite residue, but differences in alkalinity and associated chemistry exist between residues from China and those from other countries. A detailed understanding of the chemistry of bauxite residue remains the key to improving its management, both in terms of minimizing environmental impacts and reducing its alkaline properties. The nature of bauxite residue and the chemistry required for its transformation are still poorly understood. This review focuses on various transformation processes generated from the Bayer process, sintering process, and combined Bayer-sintering process in China. Problems associated with transformation mechanisms, technical methods, and relative merits of these technologies are reviewed, while current knowledge gaps and research priorities are recommended. Future research should focus on transformation chemistry and its associated mechanisms and for the development of a clear and economic process to reduce alkalinity and soda in bauxite residue.
机译:铝土矿残留物是氧化铝生产过程中产生的有害固体废物。它的高碱度是对环境的潜在威胁,可能破坏其处置区域周围的生态平衡。中国是氧化铝和铝土矿残渣的主要全球生产国之一,但中国残渣和其他国家的残渣在碱度和相关化学上存在差异。从最小化环境影响和降低其碱性的角度出发,对铝土矿残留物化学的详细了解仍然是改善其管理的关键。铝土矿残留物的性质及其转化所需的化学方法仍然知之甚少。本文将重点介绍拜耳法,烧结法和拜耳法烧结法联合产生的各种转化过程。回顾了与转换机制,技术方法和这些技术的相对优点相关的问题,同时建议了当前的知识差距和研究重点。未来的研究应侧重于转化化学及其相关机理,以及开发一种清晰,经济的方法来减少铝土矿残渣中的碱度和苏打水。

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