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Bioremediation of highly toxic arsenic via carbon-fiber-assisted indirect As(III) oxidation by moderately-thermophilic, acidophilic Fe-oxidizing bacteria

机译:通过碳纤维辅助间接作为(III)氧化通过中度嗜热性,嗜酸性Fe氧化细菌的碳纤维辅助间接的高毒性砷的生物修复

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摘要

Objective To enable removal of highly toxic As(III) from acidic waters by inducing indirect microbial As(III) oxidation by Fe-oxidizing bacteria via carbon-assisted redox-coupling between As(III) oxidation and Fe3+ reduction. Results Carbon-fiber (CF) was shown to function as an electron-mediator to catalyze chemical (abiotic) redox-coupling between As(III) oxidation and Fe3+ reduction. Accordingly, by taking advantage of Fe3+ regeneration by Fe-oxidizing bacteria, it was possible to promote oxidative removal of As(III) as ferric arsenate at moderate temperature. This reaction can be of use under the situation where a high-temperature treatment is not immediately available. Arsenic once concentrated as ferric arsenate on carbon-fibers can be collected to undergo phase-transformation to crystalline scorodite as the next re-solubilization/re-crystallization step at a higher temperature (70 degrees C). Conclusions While extremely acidophilic Fe-oxidizing bacteria are widely found in nature, the As-oxidizing counterparts, especially those grown on moderately-thermophilic and mesophilic temperatures, are hardly known. In this regard, the finding of this study could make a possible introduction of the semi-passive, low-temperature As-treatment using readily available Fe-oxidizing bacteria.
机译:目的通过通过Fe-氧化细菌通过碳辅助的氧化氧偶联与As(iii)氧化和Fe3 +减少之间的间接微生物氧化,通过碳辅助氧化铈偶联来去除酸性水域的高毒性水解物。结果显示碳纤维(CF)用作电子介体,以催化为(III)氧化和Fe3 +的氧化剂和Fe3 +之间的化学(非生物态)氧化还原偶联。因此,通过通过Fe氧化细菌利用Fe3 +再生,可以在中等温度下促进As(III)的氧化去除为(III)。该反应可在不立即可用的高温处理的情况下使用。砷可以收集浓缩成碳纤维的铁砷,以进行相变,以在较高温度(70℃)下的下一个重新溶解/再结晶步骤。结论虽然极其嗜酸性Fe氧化细菌在自然界中广泛发现,但尤其是氧化对应物,尤其是在中等嗜热和中抚化温度上生长的同性化合物。在这方面,该研究的发现可以通过易于可用的Fe氧化细菌来实现可能引入半被动,低温的疗效。

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