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Evaluating hexavalent chromium reduction and electricity production in microbial fuel cells with alkaline cathodes

机译:用碱性阴极评估微生物燃料电池中六价铬的还原和发电量

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摘要

The work investigated the efficiency of microbial fuel cells (MFCs) for the treatment of alkaline hexavalent chromium containing wastewater. When lactate was used as the metal chelator in alkaline (pH 8) abiotic cathodes, hexavalent chromium concentration dropped from 10 mg l?1 to undetectable levels within the first 45 h of operation. Power density produced in the pH 8 abiotic cathodes was up to 21.4 mW m?2, and in the pH 9 cathodes up to 2.4 mW m?2; these values were well comparable with other values found in the literature for biologically catalysed cathodes, even at lower pH values. When Shewanella oneidensis MR-1 was present in a hexavalent chromium reducing cathode at pH 8, current production contributed by 26 % to the total hexavalent chromium reduced during the 36 days of operation. On the other hand, when hexavalent chromium (10 mg l?1) was controllably added in the anode where S. oneidensis MR-1 was present, up to 73 % of current decreased immediately after every hexavalent chromium addition; this toxic effect remained even after hexavalent chromium was depleted in the anode and strongly indicates that the presence of hexavalent chromium in the anodes of MFCs must be avoided. Overall, our results indicate that alkaline hexavalent chromium wastewater can be effectively remediated in the cathodes of MFCs, provided that a metal chelator is present in the cathodes and that hexavalent chromium is not present in the anodes.
机译:这项工作研究了微生物燃料电池(MFCs)处理含碱六价铬废水的效率。当在碱性(pH 8)非生物阴极中将乳酸用作金属螯合剂时,在操作的前45小时内,六价铬的浓度从10 mg l?1降至不可检测的水平。在pH 8的非生物阴极中产生的功率密度高达21.4 mW m?2,在pH 9的阴极中产生2.4 mW m?2。即使在较低的pH值下,这些值也可以与文献中的其他生物催化阴极值相媲美。当Shewanella oneidensis MR-1在pH值为8的六价铬还原阴极中存在时,在生产36天的过程中,电流产生占还原的六价铬总量的26%。另一方面,当将六价铬(10 mg l?1)可控地添加到存在拟南芥MR-1的阳极中时,每次添加六价铬后,高达73%的电流会立即减少;即使在阳极中耗尽了六价铬后,这种毒性作用仍然存在,并强烈表明必须避免MFC阳极中存在六价铬。总体而言,我们的结果表明,只要在阴极中存在金属螯合剂而在阳极中不存在六价铬,则碱性六价铬废水可以在MFC的阴极中得到有效修复。

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