Chen Yang, Zhang Ting-An, Lv Guozhi, Chao Xi, 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, Shenyang, 110819, China.
Bull Environ Contam Toxicol. 2022 Jul;109(1):228-237. doi: 10.1007/s00128-022-03502-w. Epub 2022 Apr 20.
Bauxite is the ideal raw material for the manufacturing of alumina. Aside from the primary constituents of aluminum and silicon, bauxite is frequently coupled with many valuable elements such as gallium (Ga), titanium (Ti), scandium (Sc), and lithium (Li). The bauxite residue and circulating spent liquor in alumina production typically include significant amounts of valuable elements, making them a potential source of polymetallic. The recovery of these essential components can greatly increase alumina manufacturing process efficiency while reducing industrial liability and environmental impact. This study gives a critical analysis of existing technology used to recover valuable elements from bauxite residue and circulating spent liquor to provide insight into the broader usage of bauxite residue as a resource rather than a waste. A comparison of existing process features demonstrates that an integrated process for valuable elements recovery and waste emission reduction is advantageous.
铝土矿是制造氧化铝的理想原料。除了铝和硅的主要成分外,铝土矿还经常与许多有价值的元素结合在一起,如镓(Ga)、钛(Ti)、钪(Sc)和锂(Li)。氧化铝生产中的铝土矿残渣和循环废液通常含有大量有价值的元素,使其成为多金属的潜在来源。回收这些关键成分可以大大提高氧化铝制造工艺的效率,同时减少工业负担和环境影响。本研究对从铝土矿残渣和循环废液中回收有价值元素的现有技术进行了批判性分析,以深入了解铝土矿残渣作为一种资源而非废物的更广泛用途。对现有工艺特点的比较表明,回收有价值元素和减少废物排放的综合工艺具有优势。