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Towards a Novel Bioleaching Mechanism Published by license under the Gordon and Breach science

机译:建立一种新颖的生物浸提机制,由戈登和突破科学许可出版

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Research on the chemistry of pyrite bioleaching demonstrated - contradictory to the text book theory on direct or indirect leaching mechanisms - that only the indirect one is functioning. Cells of Thiobacillus ferrooxidans and Leptospirillum ferrooxidans primarily attach to the surface of pyrite particles by electrostatic interactions caused by iron(III) ion containing extracellular polymeric compounds. If sufficient free iron(III) ions are available (0.2 g/l) pyrite degradation starts. The first degradation products are thiosulfate and iron(II) ions. Thiosulfate will be rapidly oxidized by iron(III) ions to tetrathionate. Tetrathionate adsorbs to the pyrite surface and is hydrolized to sulfane-monosulfonic acid and sulfate plus one proton. From the sulfane-monosulfonic acid several polythionates and elemental sulfur may arise. Consequently, the function of the leaching bacteria is "only" the maintenance of a high redox potential by keeping the iron(III) ions mainly in the oxidized state to optimize the indirect attack on the metal sulfide.
机译:对黄铁矿生物浸出化学的研究表明,与直接或间接浸出机理的教科书理论相反,只有间接作用起作用。氧化铁硫杆菌和氧化亚铁螺旋螺菌的细胞主要通过含铁(III)离子的胞外聚合化合物引起的静电相互作用而附着在黄铁矿颗粒的表面。如果有足够的游离铁(III)离子(0.2 g / l),则开始黄铁矿降解。第一降解产物是硫代硫酸盐和铁(II)离子。硫代硫酸盐将被铁(III)离子迅速氧化为四硫代酸盐。四硫代磺酸盐吸附到黄铁矿表面,并水解为亚砜一磺酸和硫酸盐加一个质子。从亚砜-单磺酸可以生成多种多硫酸酯和元素硫。因此,通过主要使铁(III)离子保持在氧化态以优化对金属硫化物的间接攻击,浸出细菌的功能“仅”维持了高氧化还原电势。

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