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Urine microbial fuel cells in a semi-controlled environment for onsite urine pre-treatment and electricity production

机译:半受控环境中的尿液微生物燃料电池用于现场尿液预处理和发电

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摘要

Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer electrons to an external circuit as electricity at voltage levels of <1 V. Urine has been shown to be an excellent feedstock for various MFC systems, particularly MFCs inoculated with activated sludge and with a terracotta ceramic membrane separating carbon-based electrodes. In this article, we studied a MFC system composed of two stacks of 32 individual cells each sharing the same anolyte. By combining the current produced by the 32 cells connected in parallel and by adding the potential of both stacks connected in series, an average power density of 23 mW m−2 was produced at an effective current density of 65 mA m−2 for more than 120 days. [NH3], TIC, COD, and TOC levels were monitored frequently to understand the chemical energy conversion to electricity as well as to determine the best electrical configuration of the stacks. Archaeal and bacterial populations on selected anode felts and in the anolyte of both stacks were investigated as well. Indicator microorganisms for bacterial waterborne diseases were measured in anolyte and catholyte compartments to evaluate the risk of reusing the catholyte in a non-regulated environment.
机译:微生物燃料电池(MFC)系统具有氧化有机物的能力,并能在电压低于1 V的情况下以电的形式将电子转移到外部电路。尿液已被证明是各种MFC系统(尤其是接种了活性炭的MFC)的极佳原料。污泥和兵马俑陶瓷膜分隔碳基电极。在本文中,我们研究了一个MFC系统,该系统由两个堆栈组成,每个堆栈包含32个单独的单元,每个单元共享相同的阳极电解液。通过合并由并联连接的32个电池单元产生的电流,并通过增加两个串联连接的电池组的电位,在有效电流密度为65的情况下,平均功率密度为23 mW m -2 mA m -2 超过120天。经常监测[NH3],TIC,COD和TOC含量,以了解化学能转化为电能的过程,并确定电池组的最佳电气配置。还研究了在选定的阳极毡上和两堆阳极电解液中的古细菌和细菌种群。在阳极液室和阴极液室中测量了细菌性水传播疾病的指示微生物,以评估在不受监管的环境中重复使用阴极液的风险。

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