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Performance assessment of aeration and radial oxygen loss assisted cathode based integrated constructed wetland-microbial fuel cell systems

机译:曝气和径向氧气损失的性能评估辅助阴极集成构建的湿地 - 微生物燃料电池系统

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The present study explores low-cost cathode development possibility using radial oxygen loss (ROL) of Canna indica plants and intermittent aeration (IA) for wastewater treatment and electricity generation in constructed wetland-microbial fuel cell (CW-MFC) system. Two CW-MFC microcosms were developed. Amongst them, one microcosm was planted with Canna indica plants for evaluating the ROL dependent cathode reaction (CW-MFC dependent on ROL) and another microcosm was equipped with intermittent aeration for evaluating the intermittent aeration dependent cathode reaction (CW-MFC with additional IA). The CW-MFC with additional IA has achieved 78.71% and 53.23%, and CW-MFC dependent on ROL has achieved 72.17% and 46.77% COD removal from synthetic wastewater containing glucose loads of 0.7 g L-1 and 2.0 g L-1, respectively. The maximum power density of 31.04 mW m(-3) and 19.60 mW m(-3) was achieved in CW-MFC with additional IA and CW-MFC dependent on ROL, respectively.
机译:本研究探讨了使用Canna Indica植物和间歇曝气(IA)的径向氧气损失(ROL)在构造的湿地 - 微生物燃料电池(CW-MFC)系统中的废水处理和发电中的径向氧气丢失(ROL)。 开发了两个CW-MFC微观。 其中,将一种微观组织用Canna indica植物种植,用于评估ROL依赖性阴极反应(依赖于ROL的CW-MFC),并且另一种微观粒子配备有间歇通气,用于评估间歇通气依赖性阴极反应(CW-MFC与其他IA) 。 具有额外IA的CW-MFC已经取得了78.71%和53.23%,并且CW-MFC取决于ROL的CW-MFC已经取得了72.17%和46.77%的COD去除含有0.7g L-1和2.0g L-1的葡萄糖载量的合成废水。 分别。 在CW-MFC中,分别在CW-MFC中获得了31.04mWm(-3)和19.60mWm(-3)的最大功率密度分别取决于ROL。

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