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首页> 外文期刊>Applied Microbiology and Biotechnology >Intermediary sulfur compounds in pyrite oxidation: implications for bioleaching and biodepyritization of coal
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Intermediary sulfur compounds in pyrite oxidation: implications for bioleaching and biodepyritization of coal

机译:黄铁矿氧化中的中间硫化合物:对煤的生物浸出和生物脱磷的影响

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摘要

Accumulation of elemental sulfur during pyrite oxidation lowers the efficiency of coal desulfurization and bioleaching. In the case of pyrite bioleaching by Leptospirillum ferrooxidans, an iron(II)-ion-oxidizing organism without sulfur-oxidizing capacity, from the pyritic sulfur moiety about 10% elemental sulfur, 2% pentathionate, and 1% tetrathionate accumulated by a recently described cyclic pyrite oxidation mechanism. In the case of pure cultures of Thiobacillus ferrooxidans and mixed cultures of L. ferrooxidans and T. thiooxidans, pyrite was nearly completely oxidized to sulfate because of the capacity of these cultures to oxidize both iron(II) ions and sulfur compounds. Pyrite oxidation in acidic solutions, mediated chemically by iron(III)ion, resulted in an accumulation of similar amounts of sulfur compounds as obtained with L. ferrooxidans. Changes of pH to values below 2 or in the iron ion concentration are not decisive for diverting the flux of sulfur compounds. The literature on pyrite bioleaching is in agreement with the findings indicating that the chemistry of direct and indirect pyrite leaching is identical.
机译:黄铁矿氧化过程中元素硫的积累降低了煤炭脱硫和生物浸出的效率。在铁氧体钩端螺旋体对黄铁矿进行生物浸提的情况下,一种不具有硫氧化能力的铁离子(II)离子氧化生物从黄铁矿硫部分中吸收了大约10%的元素硫,2%的戊硫酸酯和1%的四硫代酸盐(最近有报道)环状黄铁矿的氧化机理。在纯铁氧化硫杆菌和铁氧化硫杆菌和硫代氧化硫的混合培养物中,黄铁矿几乎完全被氧化成硫酸盐,因为这些培养物具有氧化铁(II)离子和硫化合物的能力。由铁(III)离子化学介导的酸性溶液中的黄铁矿氧化,导致积累了与用四氧化三铁氧菌获得的类似量的硫化合物。 pH值更改为低于2或铁离子浓度的值对于转移硫化合物的通量没有决定性作用。黄铁矿生物浸出的文献与发现一致,表明直接和间接黄铁矿浸出的化学性质是相同的。

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