Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming, 650093, China.
The National Engineering Laboratory for Vacuum Metallurgy, Kunming University of Science and Technology, Kunming, 650093, China.
Environ Sci Pollut Res Int. 2024 Apr;31(18):27388-27402. doi: 10.1007/s11356-024-32877-y. Epub 2024 Mar 21.
In aluminum electrolysis, the iron-rich cover material is formed on the cover material and the steel rod connecting the carbon anode. Due to the high iron content in the iron-rich cover material, it differs from traditional cover material and thus requires harmless recycling and treatment. A process was proposed and used in this study to recovery F, Al, and Fe elements from the iron-rich cover material. This process involved aluminum sulfate solution leaching for fluorine recovery and alkali-acid synergistic leaching for α-AlO and FeO recovery were obtained. The optimal leaching rates for F, Na, Ca, Fe, and Si were 93.92, 96.25, 94.53, 4.48, and 28.87%, respectively. The leaching solution and leaching residue were obtained. The leaching solution was neutralized to obtain the aluminum hydroxide fluoride hydrate (AHFH, AlF(OH)·(HO)). AHFH was calcined to form a mixture of AlF and AlO with a purity of 96.14%. The overall recovery rate of F in the entire process was 92.36%. Additionally, the leaching residue was sequentially leached with alkali and acid to obtain the acid leach residue α-AlO. The pH of the acid-leached solution was adjusted to produce a black-brown precipitate, which was converted to FeO under a high-temperature calcination, and the recovery rate of Fe in the whole process was 94.54%. Therefore, this study provides a new method for recovering F, Al, and Fe in iron-rich cover material, enabling the utilization of aluminum hazardous waste sources.
在铝电解过程中,富铁覆盖材料会在覆盖材料和连接碳阳极的钢棒上形成。由于富铁覆盖材料中含铁量高,与传统覆盖材料不同,因此需要无害回收和处理。本研究提出并使用了一种从富铁覆盖材料中回收 F、Al 和 Fe 元素的工艺。该工艺包括用硫酸铝溶液浸出回收氟,以及用酸碱协同浸出回收α-AlO 和 FeO。F、Na、Ca、Fe 和 Si 的最佳浸出率分别为 93.92%、96.25%、94.53%、4.48%和 28.87%。得到浸出液和浸出渣。浸出液用碱中和,得到水合氟铝酸氢盐(AHFH,AlF(OH)·(HO))。AHFH 经煅烧形成纯度为 96.14%的 AlF 和 AlO 的混合物。整个过程中 F 的总回收率为 92.36%。此外,用碱和酸顺序浸出浸出渣以得到酸浸渣α-AlO。调节酸浸液的 pH 值,产生黑棕色沉淀,该沉淀在高温煅烧下转化为 FeO,整个过程中 Fe 的回收率为 94.54%。因此,本研究为富铁覆盖材料中 F、Al 和 Fe 的回收提供了一种新方法,实现了铝危险废物源的利用。