Abstract Influence of the ion-exchange membrane on the performance of double-compartment microbial fuel cells
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Influence of the ion-exchange membrane on the performance of double-compartment microbial fuel cells

机译:离子交换膜对双隔室微生物燃料电池性能的影响

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AbstractFour two-compartment microbial fuel cells (MFCs), equipped with the same components except for the membranes, were operated for two months within the same operation conditions, in order to evaluate the effects of the ion exchange membranes (IEM) and the hydraulic retention time (HRT). Results obtained point out that a MFC equipped with Nafion-117 achieves higher current and power densities (829mAm?2and 268.37mWm?2, respectively) than when the same type of MFC is equipped the cationic exchange membrane Neosepta CMX or the anionic exchange membrane Neosepta AMX, despite both membranes have higher ion exchange capacities. However, no significant differences were found in the wastewater treatment capacities of the different MFCs. In addition, hydraulic retention time (HRT) was found to play an important role in the output energy generation, because low values contributes to minimize the biofouling and, hence, to produce higher current densities.Graphical abstractDisplay OmittedHighlights
机译:<![cdata [ Abstract 四个两个隔室微生物燃料电池(MFCS),其配备除膜外的相同组件,在相同的操作中运行两个月条件,为了评估离子交换膜(IEM)和液压保留时间(HRT)的影响。获得的结果指出,配备有Nafion-117的MFC实现了更高的电流和电源密度(829MAM ?2 和268.37mWm 2 ,分别配备了相同类型的MFC时,阳离子交换膜Neosepta CMX或阴离子交换膜Neosepta AMX,尽管两个膜都具有更高的离子交换能力。然而,在不同MFCs的废水处理能力中没有发现显着差异。此外,发现液压保留时间(HRT)在输出能量产生中发挥着重要作用,因为低值有助于最小化生物污染,因此产生更高的电流密度。 图形抽象 显示省略 突出显示

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