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煤及煤矸石中镓的综述:探索湿法冶金回收金属的策略

Review on Gallium in Coal and Coal Waste Materials: Exploring Strategies for Hydrometallurgical Metal Recovery.

作者信息

Rudnik Ewa

机构信息

Faculty of Non-Ferrous Metals, AGH University of Krakow, Al. Mickiewicza 30, 30-059 Krakow, Poland.

出版信息

Molecules. 2024 Dec 15;29(24):5919. doi: 10.3390/molecules29245919.

Abstract

Gallium, a critical and strategic material for advanced technologies, is anomalously enriched in certain coal deposits and coal by-products. Recovering gallium from solid residues generated during coal production and utilization can yield economic benefits and positive environmental gains through more efficient waste processing. This systematic literature review focuses on gallium concentrations in coal and its combustion or gasification by-products, modes of occurrence, gallium-hosting phases, and hydrometallurgical recovery methods, including pretreatment procedures that facilitate metal release from inert aluminosilicate minerals. Coal gangue, and especially fly ashes from coal combustion and gasification, are particularly promising due to their higher gallium content and recovery rates, which can exceed 90% under optimal conditions. However, the low concentrations of gallium and the high levels of impurities in the leachates require innovative and selective separation techniques, primarily involving ion exchange and adsorption. The scientific literature review revealed that coal, bottom ash, and coarse slag have not yet been evaluated for gallium recovery, even though the wastes can contain higher gallium levels than the original material.

摘要

镓是先进技术所需的关键战略材料,在某些煤矿床和煤副产品中异常富集。从煤炭生产和利用过程中产生的固体残渣中回收镓,通过更高效的废物处理,既能产生经济效益,又能带来积极的环境效益。本系统文献综述聚焦于煤及其燃烧或气化副产品中的镓浓度、赋存方式、含镓相以及湿法冶金回收方法,包括促进金属从惰性铝硅酸盐矿物中释放的预处理程序。煤矸石,尤其是煤炭燃烧和气化产生的粉煤灰,因其较高的镓含量和回收率而特别具有前景,在最佳条件下回收率可超过90%。然而,浸出液中镓浓度低且杂质含量高,需要创新的选择性分离技术,主要涉及离子交换和吸附。科学文献综述表明,煤、底灰和粗渣尚未针对镓回收进行评估,尽管这些废物中的镓含量可能高于原始材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6480/11677871/a880ab2e60b4/molecules-29-05919-g003.jpg

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