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首页> 外文期刊>Research in Microbiology >Electricity generation from an inorganic sulfur compound containing mining wastewater by acidophilic microorganisms
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Electricity generation from an inorganic sulfur compound containing mining wastewater by acidophilic microorganisms

机译:嗜酸性微生物从含无机硫化合物的采矿废水中发电

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摘要

Sulfide mineral processing often produces large quantities of wastewaters containing acid-generating inorganic sulfur compounds. If released untreated, these wastewaters can cause catastrophic environmental damage. In this study, microbial fuel cells were inoculated with acidophilic microorganisms to investigate whether inorganic sulfur compound oxidation can generate an electrical current. Cyclic voltammetry suggested that acidophilic microorganisms mediated electron transfer to the anode, and that electricity generation was catalyzed by microorganisms. A cation exchange membrane microbial fuel cell, fed with artificial wastewater containing tetrathionate as electron donor, reached a maximum whole cell voltage of 72 +/- 9 mV. Stepwise replacement of the artificial anolyte with real mining process wastewater had no adverse effect on bioelectrochemical performance and generated a maximum voltage of 105 +/- 42 mV. 16S rRNA gene sequencing of the microbial consortia resulted in sequences that aligned within the genera Thermoplasma, Ferroplasma, Leptospirillum, Sulfobacillus and Acidithiobacillus. This study opens up possibilities to bioremediate mining wastewater using microbial fuel cell technology. (C) 2016 The Authors. Published by Elsevier Masson SAS on behalf of Institut Pasteur.
机译:硫化物矿物加工通常会产生大量废水,这些废水中含有产酸的无机硫化合物。如果不经处理释放,这些废水会造成灾难性的环境损害。在这项研究中,嗜酸性微生物接种了微生物燃料电池,以研究无机硫化合物的氧化是否可以产生电流。循环伏安法表明,嗜酸性微生物介导电子转移到阳极,并且微生物催化了发电。阳离子交换膜微生物燃料电池(其中包含含四硫酸盐作为电子给体的人工废水)达到的最大全电池电压为72 +/- 9 mV。用实际采矿过程中的废水逐步替换人造阳极电解液对生物电化学性能没有不利影响,并且产生的最大电压为105 +/- 42 mV。微生物群落的16S rRNA基因测序产生了在嗜热菌属,铁质体,钩端螺旋体,硫杆菌和酸性硫杆菌属内比对的序列。这项研究为使用微生物燃料电池技术生物修复采矿废水开辟了可能性。 (C)2016作者。由Elsevier Masson SAS代表巴斯德研究所出版。

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