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Effects of anode spacing and flow rate on energy recovery of flat-panel air-cathode microbial fuel cells using domestic wastewater

机译:阳极间距和流速对使用国内废水的平板空气阴极微生物微生物燃料电池能量回收的影响

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摘要

A flat-panel air-cathode microbial fuel cell (FA-MFC) is known to overcome the low conductivity and biodegradability of domestic wastewater. This study evaluated the normalized energy recovery (NER) based on the volume of wastewater treated (NERV) and chemical oxygen demand (COD) removal (NERCOD) using FA-MFCs with three anode spacing conditions and different flow rates (within a hydraulic retention time of 30 min). Generation of current was similar (11.7 +/- 0.5 mA) at different spacings; however, COD removal was affected by the flow rates. The NERV for both acetate and domestic wastewater showed good agreements with the flow rates in all anode spacing conditions. The NERCOD results were negatively correlated with the COD removal rates, independent of the anode spacing. The FA-MFCs yielded an NERCOD of 0.22 kWh/kg-COD from extremely low-strength domestic wastewater (150 mg-COD/L). The FA-MFC has a significant potential as an energy-sustainable wastewater treatment technology.
机译:已知平板空气阴极微生物燃料电池(FA-MFC)克服国内废水的低导电性和生物降解性。 本研究评估了基于使用FA-MFC的废水处理(神经)和化学需氧量(COD)去除(NERCOD)的归一化能量回收(NER),其使用具有三个阳极间隔条件和不同流速(在液压保留时间内) 30分钟)。 不同间距的电流产生类似(11.7 +/- 0.5 mA); 然而,COD去除受流速的影响。 醋酸盐和国内废水的神经表现出与所有阳极间距条件的流速良好的协议。 Nercod结果与鳕鱼去除速率呈负相关,与阳极间隔无关。 FA-MFCs从极低强度的国内废水(150 mg-COD / L)产生0.22千瓦时/ kg-cod的Nercod。 FA-MFC具有作为能源可持续废水处理技术的显着潜力。

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