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Simultaneous electricity generation and tetracycline removal in continuous flow electrosorption driven by microbial fuel cells

机译:微生物燃料电池驱动的连续流电吸附同时发电和去除四环素

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A novel continuous flow electrosorption driven by microbial fuel cells (MFCs) was developed for the first time to remove tetracycline, the second most commonly used antibiotic, from synthetic wastewater. The MFC-sorption proved to be cost-effective without any external power consumption. Various operating parameters including pH, electrolyte concentration, initial concentration of tetracycline, number of MFCs connected in series and flow rate were investigated, and the adsorption kinetics of tetracycline removal were studied. Three MFCs connected in series in the continuous flow MFC-sorption system reached an adsorption capacity of 23.12 mg g(-1), higher than that with two MFCs (16.76 mg g(-1)) and that with only one MFC (14.16 mg g(-1)). The performance was compared with that in the batch mode, and it was confirmed that the continuous flow was practical for tetracycline removal. This work confirmed that continuous flow electrosorption driven by MFCs was cost-effective and an environmentally friendly removal of tetracycline.
机译:首次开发了一种由微生物燃料电池(MFCs)驱动的新型连续流电吸附技术,用于从合成废水中去除第二种最常用的抗生素四环素。 MFC吸附被证明是经济有效的,而且没有任何外部功耗。研究了pH,电解质浓度,四环素的初始浓度,串联连接的MFC数和流速等各种操作参数,并研究了四环素的吸附动力学。在连续流MFC吸附系统中串联的三个MFC达到23.12 mg g(-1)的吸附容量,高于两个MFC(16.76 mg g(-1))和仅一个MFC(14.16 mg)的吸附容量。 g(-1))。将性能与分批模式下的性能进行了比较,并证实了连续流对于去除四环素是可行的。这项工作证实了由MFC驱动的连续流电吸附具有成本效益,并且对四环素具有环保意义。

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