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A Two-StageMicrobial Fuel Cell and Anaerobic FluidizedBed Membrane Bioreactor (MFC-AFMBR) System for Effective DomesticWastewater Treatment

机译:两阶段微生物燃料电池和厌氧流化高效家用床膜生物反应器(MFC-AFMBR)系统废水处理

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摘要

Microbial fuel cells (MFCs) are a promising technology for energy-efficient domestic wastewater treatment, but the effluent quality has typically not been sufficient for discharge without further treatment. A two-stage laboratory-scale combined treatment process, consisting of microbial fuel cells and an anaerobic fluidized bed membrane bioreactor (MFC-AFMBR), was examined here to produce high quality effluent with minimal energy demands. The combined system was operated continuously for 50 days at room temperature (∼25 °C) with domestic wastewater having a total chemical oxygen demand (tCOD) of 210 ± 11 mg/L. At a combined hydraulic retention time (HRT) for both processes of 9 h, the effluent tCOD was reduced to 16 ± 3 mg/L (92.5% removal), and there was nearly complete removal of total suspended solids (TSS; from 45 ± 10 mg/L to <1 mg/L). The AFMBR was operated at a constant high permeate flux of 16 L/m2/h over 50 days, without the need or use of any membrane cleaning or backwashing. Total electrical energy required for the operation of the MFC-AFMBR systemwas 0.0186 kWh/m3, which was slightly less than the electricalenergy produced by the MFCs (0.0197 kWh/m3). The energyin the methane produced in the AFMBR was comparatively negligible(0.005 kWh/m3). These results show that a combined MFC-AFMBRsystem could be used to effectively treat domestic primary effluentat ambient temperatures, producing high effluent quality with lowenergy requirements.
机译:微生物燃料电池(MFCs)是用于节能住宅废水处理的有前途的技术,但是未经进一步处理,废水的质量通常不足以排放。在这里检查了由微生物燃料电池和厌氧流化床膜生物反应器(MFC-AFMBR)组成的两阶段实验室规模的联合处理过程,以产生具有最低能耗的高质量废水。该组合系统在室温(约25°C)下连续运行50天,总废水化学需氧量(tCOD)为210±11 mg / L。在这两个过程的总水力停留时间(HRT)为9小时时,出水tCOD降低至16±3 mg / L(去除92.5%),并且几乎完全去除了总悬浮固体(TSS;从45± 10 mg / L至<1 mg / L)。 AFMBR在50天内以16 L / m 2 / h的恒定高渗透通量运行,而无需或使用任何膜清洁或反冲洗。 MFC-AFMBR系统运行所需的总电能为0.0186 kWh / m 3 ,略低于电MFC产生的能量(0.0197 kWh / m 3 )。能量在AFMBR中产生的甲烷中的含量可以忽略不计(0.005 kWh / m 3 )。这些结果表明,组合的MFC-AFMBR系统可用于有效处理生活污水在环境温度下产生高质量的废水能源需求。

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