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Continuous treatment of high strength wastewaters using air-cathode microbial fuel cells

机译:使用空气阴极微生物燃料电池连续处理高强度废水

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Treatment of low strength wastewaters using microbial fuel cells (MFCs) has been effective at hydraulic retention times (HRTs) similar to aerobic processes, but treatment of high strength wastewaters can require longer HRTs. The use of two air-cathode MFCs hydraulically connected in series was examined to continuously treat high strength swine wastewater (7-8 g/L of chemical oxygen demand) at an HRT of 16.7 h. The maximum power density of 750 +/- 70 mW/m(2) was produced after 12 days of operation. However, power decreased by 85% after 185 d of operation due to serious cathode fouling. COD removal was improved by using a lower external resistance, and COD removal rates were substantially higher than those previously reported for a low strength wastewater. However, removal rates were inconsistent with first order kinetics as the calculated rate constant was an order of magnitude lower than rate constant for the low strength wastewater. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用微生物燃料电池(MFCs)处理低浓度废水已在类似于需氧工艺的水力停留时间(HRT)上很有效,但处理高强度废水可能需要更长的HRT。检查了两个液压串联的空气阴极MFC的使用,以在16.7 h的HRT连续处理高强度猪废水(化学需氧量7-8 g / L)。运行12天后,产生了750 +/- 70 mW / m(2)的最大功率密度。但是,由于严重的阴极污垢,运行185 d后功率降低了85%。通过使用较低的外部电阻提高了COD的去除率,并且COD去除率大大高于以前报道的低浓度废水的去除率。然而,去除速率与一级动力学不一致,因为计算出的速率常数比低浓度废水的速率常数低一个数量级。 (C)2016 Elsevier Ltd.保留所有权利。

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