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Review on the Bio-oxidation of Pyrite: Implications for the Mining Industry

机译:黄铁矿生物氧化研究 - 采矿业的影响

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Pyrite (FeS_2) is the most abundant and widely spread iron-containing sulfide mineral in the earth, and it is also an important source of sulfuric acid (H2SO4) and is commonly associated with the other valuable minerals as gangue mineral. Hence, it cannot be ignored in the modern industry, especially in the mining industry. Bio-oxidation of pyrite is an important technology, which mainly means the surface oxidation and/or the oxidative dissolution of pyrite in the presence of microorganisms. Pyrite bio-oxidation is extremely important in the mining industry, such as bio-oxidation of refractory gold ores, bioleaching of precious metals, biological desulphurization, and acid mine drainage (AMD). In this paper, the crystal structure and physicochemical properties of pyrite have been summarized. The bio-oxidation mechanisms of pyrite in various systems were summarized, compared, and discussed according to previous publications. Finally, the current status, challenges, and future prospects of bio-oxidation technologies of pyrite in different systems were discussed.
机译:黄铁矿(FeS_2)是地球上最丰富且广泛蔓延含铁硫化矿物,并且还硫酸(H2SO4)的重要来源,并且通常与其它有价值的矿物如脉石矿物相关联。因此,它不能在现代工业中被忽略,尤其是在采矿业。黄铁矿的生物氧化是重要的技术,其主要是指在表面氧化和/或黄铁矿中的微生物的存在的氧化溶解。黄铁矿生物氧化是在采矿业中极为重要的,如难处理金矿的生物氧化,贵金属的浸出,生物脱硫和酸性矿山废水(AMD)。在本文中,晶体结构和黄铁矿的物理化学性质进行了总结。在各种系统中的黄铁矿的生物氧化机制是根据以前的文献综述,比较和讨论。最后,讨论了目前的状况,面临的挑战,以及未来在不同的系统中黄铁矿的生物氧化技术的前景。

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