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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Improving performance of microbial fuel cell while controlling methanogenesis by Chaetoceros pretreatment of anodic inoculum
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Improving performance of microbial fuel cell while controlling methanogenesis by Chaetoceros pretreatment of anodic inoculum

机译:Chaetoceros预处理阳极接种物可提高微生物燃料电池的性能,同时控制甲烷生成

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摘要

Loss of substrate due to methanogenesis reduces Coulombic efficiency (CE) of the microbial fuel cell (MFC) significantly. Hexadecatrienoic acid present in the marine algae Chaetoceros inhibits the growth of methanogenic archaea. Influence of Chaetoceros pre-treated mixed anaerobic sludge on the electrogenic activity of MFC was evaluated. A MFC inoculated with Chaetoceros pre-treated mixed anaerobic sludge demonstrated maximum CE of 45.18%, with volumetric power density of 21.43 W/m(3) and current density of 93 A/m(3). Cyclic voltammetry indicated higher electron discharge on the anode surface due to suppression of methanogenesis. Tafel analysis also showed a higher exchange current density and a lower Tafel slope and charge transfer resistance, indicating advantage of this pre-treatment method in reducing the cell internal losses. A 60% reduction in specific methanogenic activity was observed in anaerobic sludge pre-treated with Chaetoceros; emphasizing significance of this pretreatment for suppressing methanogenesis and its utility for enhancing electricity generation in MFC. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于产甲烷作用而导致的底物损失显着降低了微生物燃料电池(MFC)的库仑效率(CE)。存在于海藻Chaetoceros中的十六碳三烯酸会抑制产甲烷的古细菌的生长。评估了Chaetoceros预处理的混合厌氧污泥对MFC的电活性的影响。用Chaetoceros预处理的混合厌氧污泥接种的MFC显示最大CE为45.18%,体积功率密度为21.43 W / m(3),电流密度为93 A / m(3)。循环伏安法表明,由于抑制了甲烷生成,阳极表面的电子放电更高。 Tafel分析还显示出较高的交换电流密度和较低的Tafel斜率和电荷转移电阻,表明该预处理方法在减少电池内部损耗方面具有优势。在用Chaetoceros预处理的厌氧污泥中观察到比产甲烷活性降低了60%;强调了这种预处理对于抑制甲烷生成的意义及其在增强MFC中发电方面的效用。 (C)2014 Elsevier Ltd.保留所有权利。

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