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Reducing effluent discharge and recovering bioenergy in an osmotic microbial fuel cell treating domestic wastewater

机译:减少处理生活污水的渗透性微生物燃料电池中的废水排放并回收生物能

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Osmotic microbial fuel cells (OsMFCs) are an emerging concept that integrates forward osmosis into an MFC for simultaneous wastewater treatment, bioenergy recovery, and water extraction. Previous studies of OsMFCs have demonstrated the proof of concept and examined different draw solutes as catholytes. This study investigated the performance of an OsMFC treating actual domestic wastewater. The OsMFC achieved water flux of 1.06-1.49 LMH and reduced wastewater effluent by 24.3-72.2% depending on hydraulic retention time. Increasing the recirculation rate of the catholyte from 100 to 3000 mL/min slightly improved water flux to 2.15 LMH. The low water flux was likely due to inefficient reactor configuration, membrane fouling, and concentration polarization. The OsMFC constantly produced bioelectricity and achieved a maximum power density of 28.2 W/m3 from an acetate solution, or 4.5 W/m3 from domestic wastewater. Preliminary energy analysis suggested the OsMFC has the potential to produce more energy than was consumed by the pumping system, thereby creating an energy-neutral wastewater treatment system. After operating the OsMFC for more than 100 days, the FO membrane was analyzed for fouling using electrochemical techniques, imaging, and water flux tests, and the results revealed microbial fouling and abiotic scaling on the surface and inside the FO membrane.
机译:渗透微生物燃料电池(OsMFC)是一个新兴概念,它将正向渗透集成到MFC中,以同时进行废水处理,生物能回收和水提取。以前对OsMFC的研究已经证明了概念的证明,并研究了不同的溶质作为阴极电解液。这项研究调查了OsMFC处理实际生活废水的性能。根据水力停留时间,OsMFC的水通量为1.06-1.49 LMH,废水排放减少了24.3-72.2%。将阴极电解液的再循环速率从100 mL / min增加到3000 mL / min可使水通量略微提高至2.15 LMH。低水通量可能是由于反应器配置低效,膜结垢和浓差极化所致。 OsMFC不断产生生物电,从醋酸盐溶液中获得最大功率密度为28.2 W / m3,从生活废水中获得最大功率密度为4.5 W / m3。初步的能量分析表明,OsMFC有潜力产生比泵系统消耗的能量更多的能量,从而创建了一种能量中和的废水处理系统。在运行OsMFC 100天以上之后,使用电化学技术,成像和水通量测试分析FO膜的结垢情况,结果表明FO膜表面和内部存在微生物结垢和非生物结垢现象。

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