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Biotic conversion of sulphate to sulphide and abiotic conversion of sulphide to sulphur in a microbial fuel cell using cobalt oxide octahedrons as cathode catalyst

机译:使用氧化钴八面体作为阴极催化剂的微生物燃料电池中的硫酸盐生物转化为硫化物和硫化物非生物转化为硫

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Varying chemical oxygen demand (COD) and sulphate concentrations in substrate were used to determine reaction kinetics and mass balance of organic matter and sulphate transformation in a microbial fuel cell (MFC). MFC with anodic chamber volume of 1 L, fed with wastewater having COD of 500 mg/L and sulphate of 200 mg/L, could harvest power of 54.4 mW/m(2), at a Coulombic efficiency of 14%, with respective COD and sulphate removals of 90 and 95%. Sulphide concentration, even up to 1500 mg/L, did not inhibit anodic biochemical reactions, due to instantaneous abiotic oxidation to sulphur, at high inlet sulphate. Experiments on abiotic oxidation of sulphide to sulphur revealed maximum oxidation taking place at an anodic potential of -200 mV. More than 99% sulphate removal could be achieved in a MFC with inlet COD/sulphate of 0.75, giving around 1.33 kg/m(3) day COD removal. Bioelectrochemical conversion of sulphate facilitating sulphur recovery in a MFC makes it an interesting pollution abatement technique.
机译:使用不同的化学需氧量(COD)和底物中的硫酸盐浓度来确定微生物燃料电池(MFC)中有机物和硫酸盐转化的反应动力学和质量平衡。阳极室容积为1 L的MFC供以COD为500 mg / L的废水和硫酸盐为200 mg / L的废水,可以收集54.4 mW / m(2)的能量,库仑效率为14%,并带有相应的COD硫酸盐去除率分别为90%和95%。在高入口硫酸盐浓度下,由于瞬间非生物氧化成硫,即使达到1500 mg / L的硫化物浓度也不会抑制阳极生化反应。硫化物非生物氧化为硫的实验表明,最大氧化发生在-200 mV的阳极电位下。在MFC中,进口COD /硫酸盐为0.75时,硫酸盐的去除率可达到99%以上,从而可去除约1.33 kg / m(3)天的COD。硫酸盐的生物电化学转化促进了MFC中的硫回收,使其成为一种有趣的污染消除技术。

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