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Oxidative Dissolution of Arsenopyrite by Mesophilic and Moderately Thermophilic Acidophiles

机译:嗜温和中度嗜热嗜酸性嗜酸性菌对毒砂的氧化溶解

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摘要

The purpose of this work was to determine solution- and solid-phase changes associated with the oxidative leaching of arsenopyrite (FeAsS) by Thiobacillus ferrooxidans and a moderately thermoacidophilic mixed culture. Jarosite [KFe3(SO4)2(OH)6], elemental sulfur (S0), and amorphous ferric arsenate were detected by X-ray diffraction as solid-phase products. The oxidation was not a strongly acid-producing reaction and was accompanied by a relatively low redox level. The X-ray diffraction lines of jarosite increased considerably when ferrous sulfate was used as an additional substrate for T. ferroxidans. A moderately thermoacidophilic mixed culture oxidized arsenopyrite faster at 45°C than did T. ferroxidans at 22°C, and the oxidation was accompanied by a nearly stoichiometric release of Fe and As. The redox potential was initially low but subsequently increased during arsenopyrite oxidation by the thermoacidophiles. Jarosite, S0, and amorphous ferric arsenate were also formed under these conditions.
机译:这项工作的目的是确定与溶液氧化和固相变化有关的氧化亚铁硫杆菌和中等嗜热嗜酸混合培养物对毒砂(FeAsS)的氧化浸出。通过X射线衍射检测出Jarosite [KFe3(SO4)2(OH)6],元素硫(S 0 )和非晶态砷酸铁为固相产物。氧化不是产生强酸的反应,并且伴随着相对较低的氧化还原水平。当使用硫酸亚铁作为三氧化二铁的另一种底物时,黄铁矿的X射线衍射线显着增加。适度嗜热的混合培养物在45°C时氧化亚砷铁矿的速度比在22°C时氧化亚铁红球菌更快,并且伴随着化学计量的Fe和As的释放。氧化还原电势起初很低,但随后在嗜热嗜酸性菌的毒砂黄铁矿氧化过程中增加。在这些条件下,还生成了铁矾,S 0 和无定形砷酸铁。

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