闪锌矿
溶解
浸出(土壤学)
化学
环境化学
环境修复
硫黄
酸性矿井排水
硫酸盐
金属
湿法冶金
无机化学
冶金
污染
环境科学
材料科学
矿物学
黄铁矿
土壤水分
物理化学
生态学
有机化学
生物
土壤科学
作者
Mingtong Zhang,Hongbo Zhao,Yisheng Zhang,Xin Lv,Luyuan Zhang,Li Shen,Liang Hu,Jiankang Wen,Louyan Shen,Xianping Luo
出处
期刊:Toxics
[Multidisciplinary Digital Publishing Institute]
日期:2024-04-08
卷期号:12 (4): 275-275
被引量:2
标识
DOI:10.3390/toxics12040275
摘要
Metal sulfides in waste rocks and tailings are susceptible to serious soil and water contamination due to the generation of acid mine drainage (AMD) during stockpiling. The hydrometallurgical process is one of the most essential heavy metal remediation technologies through harmless disposal and resource utilization of the waste sulfides. However, atmospheric hydrometallurgy of sulfides still faces great challenges due to low leaching efficiency and high cost. In this work, we proposed a cooperative leaching system (Fe2(SO4)3-O3) and investigated the oxidative dissolution process of sphalerite (ZnS). Under the optimal conditions, the extracted zinc reached 97.8%. Reactive oxygen species (ROS) (·OH, 1O2 and ·O2−) were identified in the radical quenching experiments. The dissolution of sphalerite did not show passivation due to the ozone’s capability to oxidize the sulfur in sphalerite to sulfate. In addition, stirring rate, O3 inlet concentration, and Fe2(SO4)3 concentration had a significant effect on the dissolution of sphalerite. Meanwhile, the apparent activation energy was 24.11 kJ/mol based on kinetic fitting, which indicated that the controlling step of the reaction was mainly a diffusion process. This work demonstrated the cooperative effect of sphalerite leaching in the O3-Fe2(SO4)3 system and provided a theoretical reference for efficient and atmospheric dissolution of sphalerite.
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