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首页> 外文期刊>Journal of Colloid and Interface Science >Surface Chemical Stuies on Sphalerite and Galena Using Bacillus polymyxa II. Mechanisms of Microbe-Mineral Interactions
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Surface Chemical Stuies on Sphalerite and Galena Using Bacillus polymyxa II. Mechanisms of Microbe-Mineral Interactions

机译:多粘芽孢杆菌II对闪锌矿和方铅矿的表面化学研究。微生物-矿物质相互作用的机制

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Biodissolution tests reveal the release of lead/zinc species from galenalsphalerite, respectively, while biosorption experiments con-firm interaction of cells of Bacillus polymyxa (B. polymyxa) with the metal ions of interest. The amount of exo-polysaccharides is found to be the highest in the case of galena-interacted cells, fol-lowed by the Bromfield medium-grown cells while the sphalerite-interacted cells have the least, based on ruthenium red adsorption studies. In contrast, the sphalerite-interacted cells assay the highest amount of protein while the galena-interacted cells have the low-est amount, on a comparative basis. The adsorption of xanthate onto galena is found to be diminished in the presence of the cells whereas the xanthate adsorption density for activated sphalerite Materials is unaffected in the pH range 9—Il. Additionally, the cell surface hydrophobicity tests confirm that the sphalerite-interacted cells are more hydrophobic relative to the galena-interacted cells. FTIR spec-troscopic data lend support to the higher adsorption density of the cells onto galena vis-~-vis sphalerite. The higher exo-polysaccharide and lower protein contents together with the hydrophilic nature of the galena-interacted cells could be the contributing factors to the selective flocculation and depression 4af galuna. In a similar manner, tbebigber protein and lower exo-polysaccharide contents as well as the greater hydrophobi city of the sphalerite-interacted cells favor its floatability and dispersion.its fit~tabiIity and dispersion.
机译:生物溶解测试表明,铅/锌物质分别从galenalsphalerite释放,而生物吸附实验则确认了芽孢杆菌(B. polymyxa)细胞与目标金属离子的相互作用。根据钌红吸附研究,在方铅矿相互作用的细胞中,胞外多糖的含量最高,其次是布罗姆菲尔德中等生长的细胞,而闪锌矿相互作用的细胞含量最低。相反,与闪锌矿相互作用的细胞分析出的蛋白质含量最高,而与方铅矿相互作用的细胞分析出的蛋白质含量最低。发现在细胞存在下,黄药对方铅矿的吸附减少,而活化闪锌矿材料的黄药对密度的吸附在pH范围为9-11的情况下不受影响。另外,细胞表面疏水性测试证实,闪锌矿相互作用的细胞相对于方铅矿相互作用的细胞更疏水。 FTIR光谱数据支持了方铅矿对闪锌矿中细胞的更高吸附密度。方铅素相互作用细胞的较高的胞外多糖和较低的蛋白质含量以及亲水性可能是选择性絮凝和抑制4af galuna的促成因素。以相似的方式,闪锌矿相互作用的细胞中较大的蛋白质和较低的胞外多糖含量以及较大的疏水性城市有利于其漂浮性和分散性。其适合性和分散性。

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