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Electricity generation and modeling of microbial fuel cell from continuous beer brewery wastewater

机译:连续啤酒厂废水微生物燃料电池的发电和建模

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Electricity production and modeling of microbial fuel cell (MFC) from continuous beer brewery wastewater was studied in this paper. A single air-cathode MFC was constructed, carbon fiber was used as anode and diluted brewery wastewater (COD = 626.58 mg/L) as substrate. The MFC displayed an open-circuit voltage of 0.578 V and a maximum power density of 9.52 W/m(3) (264 mW/m(2)). Using the model based on polarization curve, various voltage losses were quantified. At Current density of 1.79 A/m(2), reaction kinetic loss and mass transport loss both achieved to 0.248 V; while ohmic loss was 0.046 V. Results demonstrated that it was feasible and stable for producing bioelectricity from brewery wastewater; while the most important factors which influenced the performance of the MFC are reaction kinetic loss and mass transport loss.
机译:本文研究了连续啤酒厂废水中微生物燃料电池(MFC)的发电和建模。构建了单空气阴极MFC,以碳纤维为阳极,稀释啤酒厂废水(COD=626.58 mg/L)为基底。MFC 的开路电压为 0.578 V,最大功率密度为 9.52 W/m(3) (264 mW/m(2))。使用基于极化曲线的模型,对各种电压损耗进行了量化。在电流密度为1.79 A/m(2)时,反应动力学损失和传质损失均达到0.248 V;欧姆损耗为0.046 V,结果表明,利用啤酒厂废水生产生物电是可行且稳定的;而影响MFC性能的最重要因素是反应动力学损失和传质损失。

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