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A bio-electrochemical membrane system for more sustainable wastewater treatment with MnO2/PANI modified stainless steel cathode and photosynthetic provision of dissolved oxygen by algae

机译:一种生物电化学膜系统,用于更可持续的废水处理MNO2 / PANI改性不锈钢阴极和藻类的光合作用溶解氧

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摘要

A competitive sewage treatment technology should meet the standard of water quality requirement and accomplish recovery of potential energy. This study presents such a new system, with coupled membrane bioreactor-microbial fuel cell features, which can not only treat wastewater, but also recovers energy from wastewater by electricity generation, and form a new resource by photosynthesis while providing the dissolved oxygen by algae. Specifically, in the system, the MnO2/polyaniline is used to modify the stainless steel mesh and to function well as system membrane and cathode, with satisfactory filtration and catalysis performance. The system enables continuous wastewater treatment with stable pollutant removal and electricity generation. Under the membrane flux of 119.4 Lm(-2) h(-1) , a maximum power density of 1.2 W m(-3) can be achieved, the algae multiply 6.1 times, and satisfactory wastewater treatment effect is achieved.
机译:竞争性的污水处理技术应符合水质要求的标准,实现潜在能源的回收率。 本研究提出了这种新系统,具有耦合膜生物反应器 - 微生物燃料电池特征,其不仅可以处理废水,还可以通过发电从废水中恢复能量,并通过光合作用来形成新的资源,同时通过藻类提供溶解的氧气。 具体地,在该系统中,MNO2 /聚苯胺用于改性不锈钢网并用作系统膜和阴极,令人满意的过滤和催化性能。 该系统可实现连续废水处理,稳定的污染物去除和发电。 在119.4 LM(-2)H(-1)的膜通量下,可以实现1.2Wm(-3)的最大功率密度,藻类繁殖6.1倍,达到令人满意的废水处理效果。

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