Selective Flotation of Elemental Sulfur from Pressure Acid Leaching Residue of Zinc Sulfide

Liu, Guiqing and Jiang, Kaixi and Zhang, Bangsheng and Dong, Zhonglin and Zhang, Fan and Wang, Fang and Jiang, Tao and Xu, Bin (2021) Selective Flotation of Elemental Sulfur from Pressure Acid Leaching Residue of Zinc Sulfide. Minerals, 11 (1). p. 89. ISSN 2075-163X

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Abstract

An efficient flotation process was developed to selectively recover elemental sulfur from a high-sulfur pressure acid leaching residue of zinc sulfide concentrate. The process mineralogy analysis showed that the sulfur content reached 46.21%, and 81.97% of the sulfur existed as elemental sulfur which was the major mineral in the residue and primarily existed as pellet aggregate and biconical euhedral crystal. An elemental sulfur concentrate product with 99.9% of recovery and 83.46% of purity was obtained using the flotation process of one-time blank rougher, two-time agent-added roughers, and two-time cleaners with Z-200 as collector and Na2S + ZnSO4 + Na2SO3 as depressant. The flotation experiment using return water indicated that the cycle use of return water had no adverse effect on the flotation performance of elemental sulfur. The process mineralogy analysis manifested that main minerals in the residue directionally went into the flotation products. Most of elemental sulfur entered the concentrate while other minerals almost completely went into the tailing. Main valuable elements lead, zinc, and silver entered the tailing with sulfides and could be recovered by lead smelting. The proposed process can realize the comprehensive recovery of valuable components in the high-sulfur residue and thus it has wide industrial application prospect.

Item Type: Article
Uncontrolled Keywords: high-sulfur zinc residue; elemental sulfur; process mineralogy; selective flotation; cycle use of return water
Subjects: STM Repository > Geological Science
Depositing User: Managing Editor
Date Deposited: 21 Oct 2024 04:11
Last Modified: 21 Oct 2024 04:11
URI: http://classical.goforpromo.com/id/eprint/1448

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