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Comparative Analysis of Attachment to Chalcopyrite of Three Mesophilic Iron and/or Sulfur-Oxidizing Acidophiles

机译:三种中温铁和/或硫氧化嗜酸菌附着在黄铜矿上的比较分析

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Adhesion plays an important role in bacterial dissolution of metal sulfides, since the attached cells initiate the dissolution. In addition, biofilms, forming after bacterial attachment, enhance the dissolution. In this study, interactions between initial adhesion force, attachment behavior and copper recovery were comparatively analyzed for Acidithiobacillus ferrooxidans , Acidithiobacillus thiooxidans , and Leptospirillum ferrooxidans during bioleaching of chalcopyrite. The adhesion forces between bacteria and minerals were measured by atomic force microscopy (AFM). L. ferrooxidans had the largest adhesion force and attached best to chalcopyrite, while A. ferrooxidans exhibited the highest bioleaching of chalcopyrite. The results suggest that the biofilm formation, rather than the initial adhesion, is positively correlated with bioleaching efficiency.
机译:粘附在金属硫化物的细菌溶解中起重要作用,因为附着的细胞开始溶解。此外,细菌附着后形成的生物膜会增强溶出度。在这项研究中,比较了黄铜矿生物浸出过程中酸性氧化硫杆菌,氧化硫氧化菌和氧化螺旋螺菌之间的初始粘附力,附着行为和铜回收之间的相互作用。细菌和矿物质之间的粘附力通过原子力显微镜(AFM)测量。 L.ferrooxidans具有最大的附着力,并且与黄铜矿的附着力最佳,而A. ferrooxidans则具有最高的黄铜矿生物浸出率。结果表明,生物膜的形成而不是最初的附着力与生物浸出效率呈正相关。

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