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使用聚合物粘结隔膜缓解微生物燃料电池的外阴极和内阴极污垢。

Mitigating external and internal cathode fouling using a polymer bonded separator in microbial fuel cells.

机构信息

Department of Civil and Environmental Engineering, The Pennsylvania State University, University Park, PA 16802, United States.

State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, No. 73 Huanghe Road, Nangang District, Harbin 150090, PR China.

出版信息

Bioresour Technol. 2018 Feb;249:1080-1084. doi: 10.1016/j.biortech.2017.10.109. Epub 2017 Nov 4.

Abstract

Microbial fuel cell (MFC) cathodes rapidly foul when treating domestic wastewater, substantially reducing power production over time. Here a wipe separator was chemically bonded to an activated carbon air cathode using polyvinylidene fluoride (PVDF) to mitigate cathode fouling and extend cathode performance over time. MFCs with separator-bonded cathodes produced a maximum power density of 190 ± 30 mW m after 2 months of operation using domestic wastewater, which was ∼220% higher than controls (60 ± 50 mW m) with separators that were not chemically bonded to the cathode. Less biomass (protein) was measured on the bonded separator surface than the non-bonded separator, indicating chemical bonding reduced external bio-fouling. Salt precipitation that contributed to internal fouling was also reduced using separator-bonded cathodes. Overall, the separator-bonded cathodes showed better performance over time by mitigating both external bio-fouling and internal salt fouling.

摘要

微生物燃料电池 (MFC) 阴极在处理家庭废水时会迅速结垢,随着时间的推移,会大大降低发电能力。在这里,使用聚偏二氟乙烯 (PVDF) 将擦拭式分离器化学结合到活性炭空气阴极上,以减轻阴极结垢并随着时间的推移延长阴极性能。使用家庭废水运行 2 个月后,带有分离器结合阴极的 MFC 产生的最大功率密度为 190±30mW m,比未化学结合到阴极的分离器的对照物(60±50mW m)高约 220%。在结合的分离器表面上测量到的生物量(蛋白质)比非结合的分离器少,表明化学结合减少了外部生物污垢。使用结合分离器的阴极还减少了导致内部结垢的盐沉淀。总的来说,通过减轻外部生物结垢和内部盐结垢,结合分离器的阴极在更长的时间内表现出更好的性能。

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