毒砂在不同湿法氧化体系中矿物相变与砷形态转化研究进展

Research Status on Mineral Phase and Arsenic form Trans Formation of Arsenopyrite in Different Hydrometallurgical Systems

  • 摘要: 毒砂作为典型的含砷矿物常与有色金属硫化矿伴生,其氧化过程复杂且对环境保护和资源利用意义重大。湿法氧化是氧化毒砂矿物结构并导致砷形态转化的高效方法。重点总结了不同湿法氧化体系(常压氧化体系、加压氧化体系、生物氧化体系以及其他氧化体系)下毒砂的矿物相变机制和砷形态转化规律。常压氧化体系中,砷元素价态呈现As(Ⅲ)至As(Ⅴ)的演化路径。加压氧化体系下,提高温度和压力可有效提高砷的浸出率,并促进砷向砷酸盐形态转化。生物氧化方面,毒砂的氧化效率可通过定向调控生物菌种结构、菌群协同作用及微生物环境而显著提升。其他氧化体系中,也可通过改变矿物微观结构或毒砂界面特性,提高毒砂的氧化效率,并促进毒砂发生矿物相变。3种体系各有优缺点。同时,提出了未来的研究发展方向,可为强化毒砂的高效氧化及绿色浸出提供理论参考。

     

    Abstract: Arsenopyrite (FeAsS) is a typical arsenic−containing mineral, and its oxidation process is complex and of great significance to environmental protection and resource utilization. Hydrometallurgy is an effective method to oxidize the mineral structure of arsenic pyrite and lead to the transformation of arsenic species. This review systematically summarizes the phase transformation mechanisms of arsenopyrite and arsenic species evolution patterns under various hydrometallurgical oxidation systems, including atmospheric pressure oxidation system, pressure oxidation, bio−oxidation, and other advanced oxidation techniques. In chemical oxidation systems, arsenic predominantly undergoes sequential oxidation from As(Ⅲ) to As(Ⅴ) species. Under pressure oxidation systems, increasing temperature and pressure can effectively improve the leaching rate of arsenic and promote the transformation of arsenic to arsenate. Bio−oxidation demonstrates remarkable improvement in arsenopyrite dissolution through targeted regulation of microbial species composition, synergistic interactions within microbial communities, and optimization of microenvironments. Alternative oxidation strategies achieve enhanced oxidation efficiency by modifying mineral microstructure or surface properties, thereby promoting phase transformation. The three systems have their own advantages and disadvantages. At the same time, this paper puts forward the future research and development direction, which can provide theoretical reference for strengthening the efficient oxidation and green production of arsenopyrite.

     

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