首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Impacts of various filtration media on wastewater treatment and bioelectric production in up-flow constructed wetland combined with microbial fuel cell (UCW-MFC)
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Impacts of various filtration media on wastewater treatment and bioelectric production in up-flow constructed wetland combined with microbial fuel cell (UCW-MFC)

机译:各种过滤介质对蓄水湿地污水处理和生物电制备的影响与微生物燃料电池(UCW-MFC)相结合

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摘要

A successful design and operation of up-flow constructed wetlands combined with microbial fuel cell (UCW-MFC) were assessed for wastewater treatment and bioelectric production. One of the main aims of present study is also to investigate effect of various types of filtration media on wastewater treatment process and bioelectric production in UCW-MFC systems, and determine the most efficient media type in order to obtain higher wastewater treatment performance and generate higher bioelectric production. In the present experiment, UCW-MFC system with zeolite (clinoptilolite) as filtration media had higher treatment efficiency compared to other UCW-MFC systems with sand and volcanic cinder, and average COD, NH4+, NO3-, and TP removal efficiency were 92.1%, 93.2%, 81.1%, and 96.7%, respectively. This superior performance in the zeolite medium in the UCW-MFC system was due to its larger specific surface area, different framework structure, and more porous composition. On the other hand, the maximum average output voltage, power density, and Coulombic efficiency were also obtained for zeolite wetland system which 1.008 +/- 0.14 V, 15.1 mWatt/m(2), and 1.64%, respectively. In this respect, we found that the formation of electrogenic bacteria-zeolite media-graphite surface facilitate the degradation of organic substrate and increase electrogenic bacteria' activities which are catalyzed during the electron flow from anode to the cathode. Thus, the results suggest that zeolite-based filtration media can be use for improving the treatment efficiency and bioelectric production in UCW-MFC.
机译:评估了加上流动构造的湿地的成功设计和操作,与微生物燃料电池(UCW-MFC)进行评估,以进行废水处理和生物电施工。目前研究的主要目的之一也是调查各种类型的过滤介质对UCW-MFC系统中的废水处理过程和生物电保的影响,并确定最有效的媒体类型,以获得更高的废水处理性能并产生更高的生物电化生产。在本实验中,与沸石(Clinophtilolite)的UCW-MFC系统作为过滤介质的处理效率更高,与砂和火山煤渣的其他UCW-MFC系统相比,平均COD,NH 4 +,NO 3和TP去除效率为92.1%分别为93.2%,81.1%和96.7%。 UCW-MFC系统中沸石培养基中的这种卓越的性能是由于其较大的比表面积,不同的骨架结构和更多孔的组合物。另一方面,对于沸石湿地系统,也可以分别获得最大的平均输出电压,功率密度和库仑效率,其分别为1.008 +/- 0.14 V,15.1MWatt / m(2)和1.64%。在这方面,我们发现电菌 - 沸石介质 - 石墨表面的形成有助于有机基质的降解,并增加在从阳极到阴极的电子流过程中催化的电菌的活性。因此,结果表明,基于沸石的过滤介质可用于提高UCW-MFC中的治疗效率和生物电性产生。

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