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Fed batch approach for stable generation of power from dairy wastewater using microbial fuel cell and its kinetic study

机译:美联储分批法利用微生物燃料电池稳定地从乳制品废水中发电的动力学研究

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An attempt was taken for a stable generation of power from dairy wastewater using single chamber microbial fuel cell (SCMFC), and Escherichia coli -K-12 was used as a biological catalyst. The experiments were carried out initially at batch operation with simulated dairy wastewater (SDW) for 72 hr, followed by two steps feeding strategies. The two successive feedings were carried out by concentrated SDW at 72 hr, followed by various chemical oxygen demand (COD) containing real dairy wastewater (RDW) at 120 hr, and pH was initially adjusted to 9 before feeding. The maximum open-circuit voltage (OCV) of 654 mV was found after 123 hr of fedbatch operation in the presence of 1000 mg COD/L of RDW. The COD removal efficiency was found to be 95.45%, and coulombic efficiency was 67.53% during fed-batch operation. Kinetic parameters were computed through nonlinear regression analysis of experimental data obtained from fed-batch study. The performance study of SCMFC was carried out based on polarization behavior and cell potentials. It was evident from results that the maximum power and current density were found to be 1.05 W/m(2) and 8.01 A/m(2), respectively in the presence of 1000 mg COD/L of RDW. The performance of SCMFC in the presence of RDW suggests that SCMFC is a promising alternative for power generation along with treatment of wastewater.
机译:尝试使用单室微生物燃料电池(SCMFC)从乳制品废水中稳定发电,并且大肠杆菌-K-12被用作生物催化剂。实验最初是在模拟牛奶废水(SDW)的分批运行中进行72小时,然后分两步进料。连续两次进料在72小时通过浓缩SDW进行,然后在120小时通过各种化学需氧量(COD)包含实际的乳制品废水(RDW)进行,并在进料前将pH最初调整为9。在存在1000 mg COD / L RDW的条件下进行123个小时的分批补料操作后,发现最大开路电压(OCV)为654 mV。发现在分批进料操作期间,COD去除效率为95.45%,库仑效率为67.53%。通过从补料分批研究获得的实验数据进行非线性回归分析来计算动力学参数。 SCMFC的性能研究是基于极化行为和电池电势进行的。从结果可以明显看出,在存在1000 mg COD / L RDW的情况下,最大功率和电流密度分别为1.05 W / m(2)和8.01 A / m(2)。在存在RDW的情况下SCMFC的性能表明SCMFC是一种有希望的发电和废水处理替代品。

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