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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >In-situ integration of microbial fuel cell with hollow-fiber membrane bioreactor for wastewater treatment and membrane fouling mitigation
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In-situ integration of microbial fuel cell with hollow-fiber membrane bioreactor for wastewater treatment and membrane fouling mitigation

机译:微生物燃料电池与中空纤维膜生物反应器的原位集成,用于废水处理和减缓膜污染

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A hollow-fiber membrane bioreactor was integrated with a microbial fuel cell to develop a novel system of MFC-MBR based on the utilization of electricity recovered by the MFC for wastewater treatment improvement and membrane fouling mitigation in the MBR. In this system, a maximum power density of 2.18 W/m(3) and an average voltage output of 0.15 V were achieved at an external resistance of 50 Omega. The removal efficiencies of COD, ammonia nitrogen (NH4+ -N) and total nitrogen (TN) in the MFC-MBR were improved by 4.4%, 1.2% and 10.3%, respectively. It is worth noting that, in addition to reducing the deposition of sludge on the membrane surface by the electric field force, the MFC-MBR also alleviated the membrane fouling by sludge modification. Compared with the control MBR (C-MBR), less loosely bound extracellular polymeric substances (LB-EPS), lower SMPp/SMPc ratio, more homogenized sludge flocs and less filamentous bacteria were obtained in the MFC-MBR, which improved the dewaterability and filterability of the sludge. The cake layer on the membrane formed by the modified sludge was more porous with lower compressibility, significantly enhancing the membrane filterability. A proof of concept of an MFC-MBR was provided and shown to be effective in membrane fouling mitigation with efficient wastewater treatment and energy recovery, demonstrating the feasibility of the minute electricity generated by the MFC for membrane fouling alleviation in the MBR (C) 2014 Elsevier B.V. All rights reserved.
机译:将中空纤维膜生物反应器与微生物燃料电池集成在一起,以利用MFC回收的电能用于改善MBR中的废水处理和减轻膜污染,开发出新型MFC-MBR系统。在该系统中,在50Ω的外部电阻下实现了2.18 W / m(3)的最大功率密度和0.15 V的平均电压输出。 MFC-MBR中COD,氨氮(NH4 + -N)和总氮(TN)的去除率分别提高了4.4%,1.2%和10.3%。值得注意的是,除了通过电场力减少污泥在膜表面的沉积外,MFC-MBR还减轻了因污泥改性而引起的膜污染。与对照MBR(C-MBR)相比,MFC-MBR中获得的松散结合的细胞外聚合物(LB-EPS)更少,SMPp / SMPc比更低,污泥絮凝更均一且丝状细菌更少,从而改善了脱水性和污泥的可过滤性。由改性污泥形成的膜上的滤饼层具有更高的多孔性和较低的可压缩性,从而大大提高了膜的过滤性。提供了MFC-MBR的概念证明,并证明其通过有效的废水处理和能量回收在减轻膜结垢方面是有效的,证明了MFC产生的微小电力在MBR(C)2014中减轻膜结垢的可行性。 Elsevier BV保留所有权利。

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