首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bio-cathode materials evaluation and configuration optimization for power output of vertical subsurface flow constructed wetland — Microbial fuel cell systems
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Bio-cathode materials evaluation and configuration optimization for power output of vertical subsurface flow constructed wetland — Microbial fuel cell systems

机译:垂直地下流动人工湿地功率输出的生物阴极材料评估和配置优化—微生物燃料电池系统

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摘要

To optimize the performance of a vertical subsurface flow constructed wetland–microbial fuel cell (CW–MFC), studies of bio-cathode materials and reactor configurations were carried out. Three commonly used bio-cathode materials including stainless steel mesh (SSM), carbon cloth (CC) and granular activated carbon (GAC) were compared and evaluated. GAC–SSM bio-cathode achieved the highest maximum power density of 55.05mWm~(-2), and it was most suitable for CW–MFCs application because of its large surface area and helpful capillary water absorption. Two types of CW–MFCs with roots were constructed, one was placed in the anode and the other was placed in the cathode. Both planted CW–MFCs obtained higher power output than non-planted CW–MFC. Periodic voltage fluctuations of planted CW–MFCs were caused by light/dark cycles, and the influent substrate concentration significantly affected the amplitude of oscillation. The coulombic efficiencies of CW–MFCs decreased greatly with the increase of the influent substrate concentration.
机译:为了优化垂直地下流动构建的湿地-微生物燃料电池(CW-MFC)的性能,对生物阴极材料和反应堆配置进行了研究。比较并评估了三种常用的生物阴极材料,包括不锈钢网(SSM),碳布(CC)和颗粒活性炭(GAC)。 GAC–SSM生物阴极具有55.05mWm〜(-2)的最高最大功率密度,并且由于其较大的表面积和有益的毛细管吸水性,因此最适合CW–MFCs应用。构造了两种带有根的CW-MFC,一种置于阳极,另一种置于阴极。两种种植的CW-MFC都比未种植的CW-MFC获得更高的功率输出。植入的CW–MFCs的周期性电压波动是由明/暗循环引起的,并且进水底物浓度显着影响振荡幅度。 CW–MFCs的库仑效率随着进水底物浓度的增加而大大降低。

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