Chao Xi, Zhang Ting-An, Lv Guozhi, Chen Yang, Li Xiaofei, Yang Xuewei
Key Laboratory of Ecological Metallurgy of Multi-metal Intergrown Ores of Ministry of Education, Special Metallurgy and Process Engineering Institute, School of Metallurgy, Northeastern University, 110819, Shenyang, China.
Bull Environ Contam Toxicol. 2022 Jul;109(1):209-214. doi: 10.1007/s00128-022-03478-7. Epub 2022 Mar 1.
The emission of bauxite residue continues to grow with the increase of alumina production capacity, along with the large amounts of bauxite residue currently stored in stockpiles. The exposed problems of high yield, strong alkalinity, low comprehensive utilization rate, and threats to the ecological environment are becoming increasingly prominent. With the strict requirements of environmental protection, improving the comprehensive utilization rate of bauxite residue and bulk consumption of bauxite residue has become an urgent issue to be solved. A large number of researchers have conducted in-depth investigations into the application of bauxite residue over a wide range, and this paper summarizes its application in the environment in recent years, providing guidance for the high value and harmless application of bauxite residue, which can help reduce environmental pollution and human life and health hazards caused by bauxite residue.
随着氧化铝生产能力的提高,铝土矿残渣的排放量持续增长,同时目前有大量铝土矿残渣储存在堆场中。其产量高、碱性强、综合利用率低以及对生态环境构成威胁等问题日益突出。在环境保护要求日益严格的背景下,提高铝土矿残渣的综合利用率并实现其大宗消纳已成为亟待解决的问题。众多研究者对铝土矿残渣的应用进行了广泛深入的研究,本文总结了近年来其在环境领域的应用情况,为铝土矿残渣的高值化和无害化应用提供指导,有助于减少铝土矿残渣对环境污染以及对人类生命健康造成的危害。