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Photocatalytic removal organic matter and bacteria simultaneously from real WWTP effluent with power generation concomitantly: Using an Er-Al-ZnO photo-anode

机译:光催化除去有机物和细菌,同时从真正的WWTP流出物,始终如一的发电:使用ER-Al-ZnO光阳极

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摘要

Wastewater treatment plant (WWTP) effluent is one of the most bulk water body that carries organic matters which is promising for energy catching, but it also contains complex un-degradable organic matters with low concentrations. Integration of advanced treatment of Wastewater treatment plant (WWTP) effluent and electricity generation is an attractive method but rarely reported. We innovatively applied a photocatalytic fuel cell (PFC) with a highly efficient Er-Al co-doped ZnO photo-anode to treat the WWTP effluent, which realized simultaneous advanced organic matters removal, bacteria disinfection, and considerable electricity generation. In the constructed visible light-driven PFC system, the chemical oxygen demand (COD) and dissolved organic carbon (DOC) removal efficiencies achieved 69.7% and 53.0%, respectively. The soluble microbial products decreased significantly. Both of the total bacteria cell and Escherichia coil (E. coli) cell accounts showed a 99% disinfection efficiency. Advanced electricity generation capability was simultaneously observed, in which the open-circuit voltage, short-current density, and maximum power density were 0.55 V, 9.13 mu A cm(-2) and 1.83 W cm(-2), respectively, with the fill factor as high as 0.36. In summary, the proposed PFC open up more opportunities for WWTP effluent reusing and clean energy generation.
机译:废水处理厂(WWTP)流出物是携带有机物质的最散装水体之一,这对能量捕捉有前途,但它还含有具有低浓度的复杂的不可降解的有机物。污水处理厂的先进治疗(WWTP)流出物和发电的整合是一种有吸引力的方法,但很少报道。我们创新了用高效的ER-A1共掺杂ZnO光阳极进行光催化燃料电池(PFC),以治疗WWTP流出物,其实现了同时进行了先进的有机物去除,细菌消毒和相当大的发电。在构造的可见光驱动的PFC系统中,化学需氧量(COD)和溶解的有机碳(DOC)去除效率分别达到69.7%和53.0%。可溶性微生物产品显着下降。两种总细菌细胞和大肠杆菌卷(大肠杆菌)细胞症显示出99%的消毒效率。同时观察到先进发电能力,其中开路电压,短电流密度和最大功率密度分别为0.55V,9.13μm(-2)和1.83W cm(-2),其中填充尺寸高达0.36。总之,拟议的PFC为WWTP流出物再生和清洁能源产生了更多机会。

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