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A comparison of microbial fuel cell and microbial electrolysis cell biosensors for real-time environmental monitoring

机译:微生物燃料电池与微生物电解细胞生物传感器进行实时环境监测的比较

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This study compares the biosensing performance of a microbial fuel cell (MFC) and a microbial electrolysis cell (MEC). Initial tests provided a qualitative comparison of MFC and MEC currents after the anode compartment liquid (anolyte) was spiked with acetate, or sulphates of NH4+, Na+, Mg2+, Fe2+, or a fertilizer solution. Current measurements showed that the MFC sensor had a faster response time, higher sensitivity, and faster recovery time after the spike. Following the spike tests, the MFC and MEC were operated in a continuous flow mode at several influent concentrations of acetate, and sulphates of NH4+, Na+, and Fe2+. The continuous flow tests confirmed the better performance of the MFC sensor, which was selected for further experiments. Two MFC sensors were used for real-time (on-line) COD measurements of brewery wastewater. Regression analysis showed a strong correlation between the MFC power output and COD concentrations in the anode compartment with a coefficient of determination (R-2) of 0.97. Overall, results of this study suggest that an MFC-based sensor can be successfully used as a simple and cost-efficient real-time monitoring tool. (C) 2018 Published by Elsevier B.V.
机译:该研究比较了微生物燃料电池(MFC)和微生物电解细胞(MEC)的生物传感性能。初始试验提供了在用乙酸盐掺针液(阳极电解液)之后MFC和MEC电流的定性比较,或NH 4 +,Na +,Mg2 +,Fe2 +或肥料溶液的硫酸盐。电流测量结果表明,MFC传感器具有更快的响应时间,更高的灵敏度和秒杀后的恢复时间更快。在尖峰试验之后,MFC和MEC在连续流动模式下以几种影响的乙酸盐浓度,NH 4 +,NA +和Fe2 +的硫酸盐操作。连续流量测试证实了MFC传感器的性能更好,选择了用于进一步实验。两个MFC传感器用于啤酒厂废水的实时(在线)COD测量。回归分析显示MFC功率输出与阳极室中的COD浓度之间的强关系,其测定系数(R-2)为0.97。总体而言,本研究的结果表明,基于MFC的传感器可以成功用作简单且具有成本高效的实时监控工具。 (c)2018由elsevier b.v发布。

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