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Efficient Bioelectrochemical Conversion of Industrial Wastewater by Specific Strain Isolation and Community Adaptation

机译:通过特定的菌株分离和社区适应有效地对工业废水进行生物电化学转化

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The aim of this study was the development of a specifically adapted microbial community for the removal of organic carbon from an industrial wastewater using a bioelectrochemical system. In a first step, ferric iron reducing microorganisms were isolated from the examined industrial wastewater. In a second step, it was tested to what extent these isolates or a cocultivation of the isolates with the exoelectrogenic model organism Geobacter sulfurreducens (G. sulfurreducens) were able to eliminate organic carbon from the wastewater. To establish a stable biofilm on the anode and to analyze the performance of the system, the experiments were conducted first under batch-mode conditions for 21 days. Since the removal of organic carbon was relatively low in the batch system, a similar experiment was conducted under continuous-mode conditions for 65 days, including a slow transition from synthetic medium to industrial wastewater as carbon and electron source and variations in the flow rate of the medium. The overall performance of the system was strongly increased in the continuous- compared to the batch-mode reactor and the highest average current density (1,368 mA/m2) and Coulombic efficiency (54.9%) was measured in the continuous-mode reactor inoculated with the coculture consisting of the new isolates and G. sulfurreducens. The equivalently inoculated batch-mode system produced only 82-fold lower current densities, which were accompanied by 42-fold lower Coulombic efficiencies.
机译:这项研究的目的是开发一种特别适应的微生物群落,以利用生物电化学系统从工业废水中去除有机碳。第一步,从检查的工业废水中分离出还原铁的微生物。在第二步中,测试了这些分离物或这些分离物与外生电模型有机物Geobacter sulfreducens(G. sulfreducens)能够在多大程度上消除废水中的有机碳。为了在阳极上建立稳定的生物膜并分析系统的性能,首先在批处理模式下进行了21天的实验。由于分批处理系统中有机碳的去除率相对较低,因此在连续模式条件下进行了65天的类似实验,包括从合成介质向工业废水(作为碳和电子源)的缓慢转化以及甲烷流量的变化。媒介。与间歇模式反应器相比,该系统的整体性能在连续模式下得到了大幅提高,并且在2007年测量了最高平均电流密度(1,368 mA / m 2 )和库仑效率(54.9%)连续模式反应器接种了由新分离物和硫还原芽孢杆菌组成的共培养物。等效接种的分批模式系统仅产生低82倍的电流密度,同时降低42倍的库仑效率。

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