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Combined effects of jarosite and visible light on chalcopyrite dissolution mediated by Acidithiobacillus ferrooxidans

机译:黄铁矿和可见光对酸性氧化铁硫杆菌介导的黄铜矿溶解的联合作用

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Although jarosite and visible light are important factors for the formation of acid mine drainage (AMD), the effects of combined jarosite and visible light on chalcopyrite biodissolution have not been explored until now. In order to fill this knowledge gap, the combined effects of jarosite and visible light on chalcopyrite dissolution mediated by Acidithiobacillus ferrooxidans were investigated. The results indicated that jarosite and visible light could significantly accelerate chalcopyrite biodissolution, thus releasing more copper ions, iron ions and producing more acid. This in turn suggests enhanced generation of AMD under these conditions. Biodissolution results, mineral surface morphology, mineralogical phase and elemental composition analyses revealed that the promotion of chalcopyrite dissolution by additional jarosite and visible light was mainly attributed to the acceleration of ferric iron/ferrous iron cycling and the inhibition of the formation of a passivation layer (jarosite and S-n(2)/S-0) on the surface of chalcopyrite. This study provides a better understanding of the effects of jarosite and visible light on chalcopyrite biodissolution. In the future, the influences of jarosite and visible light on chalcopyrite dissolution should be considered in AMD evaluation to ensure reliability. (C) 2019 Elsevier B.V. All rights reserved.
机译:尽管黄铁矿和可见光是形成酸性矿山排水(AMD)的重要因素,但到目前为止,尚未探索黄铁矿和可见光的结合对黄铜矿生物溶解的影响。为了填补这一知识空白,研究了黄铁矿和可见光对酸性氧化铁硫杆菌介导的黄铜矿溶解的综合影响。结果表明,黄铁矿和可见光可以显着加速黄铜矿的生物溶解,从而释放出更多的铜离子,铁离子并产生更多的酸。这反过来提示在这些条件下AMD的生成增强。生物溶解结果,矿物表面形态,矿物相和元素组成分析显示,通过额外的黄铁矿和可见光促进黄铜矿溶解主要归因于三价铁/亚铁循环的加速和钝化层的形成的抑制(黄铁矿和黄铜矿表面上的Sn(2)/ S-0)。这项研究可以更好地了解黄铁矿和可见光对黄铜矿生物溶解的影响。将来,在AMD评估中应考虑黄铁矿和可见光对黄铜矿溶解的影响,以确保可靠性。 (C)2019 Elsevier B.V.保留所有权利。

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