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Pre-treatment of anodic inoculum with nitroethane to improve performance of a microbial fuel cell

机译:用硝基甲烷预处理阳极接种以提高微生物燃料电池的性能

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Methanogenic substrate loss is reported to be a major bottleneck in microbial fuel cell (MFC), which significantly reduces the power production capacity and coulombic efficiency (CE) of this system. Nitroethane is found to be a potent inhibitor of hydrogenotrophic methanogens in rumen fermentation process. Influence of nitroethane pre-treated sewage sludge inoculum on suppressing the methanogenic activity and enhancing the electrogenesis in MFC was evaluated. MFC inoculated with nitroethane pre-treated anodic inoculum demonstrated a maximum operating voltage of 541 mV, with CE and maximum volumetric power density of 39.85% and 20.5 W/m(3), respectively. Linear sweep voltammetry indicated a higher electron discharge on the anode surface due to enhancement of electrogenic activity while suppressing methanogenic activity. A 63% reduction in specific methanogenic activity was observed in anaerobic sludge pre-treated with nitroethane, emphasizing the significance of this pre-treatment for suppressing methanogenesis and its utility for enhancing electricity generation in MFC.
机译:据报道,甲烷基底损失是微生物燃料电池(MFC)中的主要瓶颈,这显着降低了该系统的电力生产能力和库仑效率(CE)。发现硝基甲烷是瘤胃发酵过程中的氢脱氢甲烷酮的有效抑制剂。评价硝基甲烷预处理污泥污泥接种物对抑制MFC中的甲基活性和增强电生发生的影响。用硝基甲烷预处理的阳极接种的MFC证明了541mV的最大工作电压,Ce和最大体积功率密度分别为39.85%和20.5 / m(3)。线性扫描伏安法指示阳极表面上的较高电子放电,由于产生甲状腺炎的电力活性的增强,阳极表面上。在用硝基甲烷预处理的厌氧污泥中观察到特异性甲状腺炎的63%,强调该预处理对抑制甲烷发生的重要性及其在MFC中提高发电的实用性。

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