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首页> 外文期刊>Scientific reports. >Promoting the bio-cathode formation of a constructed wetland-microbial fuel cell by using powder activated carbon modified alum sludge in anode chamber
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Promoting the bio-cathode formation of a constructed wetland-microbial fuel cell by using powder activated carbon modified alum sludge in anode chamber

机译:通过在阳极室中使用粉末活性炭改性的氧化铝污泥促进人工湿地微生物燃料电池的生物阴极形成

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MFC centered hybrid technologies have attracted attention during the last few years due to their compatibility and dual advantages of energy recovery and wastewater treatment. In this study, a MFC was integrated into a dewatered alum sludge (DAS)- based vertical upflow constructed wetland (CW). Powder activate carbon (PAC) was used in the anode area in varied percentage with DAS to explore its influences on the performance of the CW-MFC system. The trial has demonstrated that the inclusion of PAC improved the removal efficiencies of COD, TN and RP. More significantly, increasing the proportion of PAC from 2% to 10% can significantly enhance the maximum power densities from 36.58?mW/m(2) to 87.79?mW/m(2). The induced favorable environment for bio-cathode formation might be the main reason for this improvement since the content of total extracellular polymeric substances (TEPS) of the substrate in the cathode area almost doubled (from 44.59?μg/g wet sludge to 87.70?μg/g wet sludge) as the percentage of PAC increased to 10%. This work provides another potential usage of PAC in CW-MFCs with a higher wastewater treatment efficiency and energy recovery.
机译:以MFC为中心的混合技术由于其兼容性以及能量回收和废水处理的双重优势而在最近几年引起了关注。在这项研究中,将MFC集成到基于脱水矾泥(DAS)的垂直上流人工湿地(CW)中。粉末活性炭(PAC)与DAS一起用于阳极区域的百分比不同,以探索其对CW-MFC系统性能的影响。该试验表明,PAC的加入可提高COD,TN和RP的去除效率。更重要的是,将PAC的比例从2%增加到10%可以将最大功率密度从36.58?mW / m(2)显着提高到87.79?mW / m(2)。诱导生物阴极形成的有利环境可能是这种改进的主要原因,因为阴极区域中底物的总细胞外聚合物质(TEPS)的含量几乎翻了一番(从44.59?g / g湿污泥增加到87.70?μg。 / g湿污泥),因为PAC的百分比增加到10%。这项工作提供了PAC在CW-MFC中的另一种潜在用途,具有更高的废水处理效率和能量回收率。

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