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首页> 外文期刊>Fuel cells >Polycyclic Aromatic Hydrocarbons (PAHs) Degradation and Detoxification of Water Environment in Single-chamber Air-cathode Microbial Fuel Cells (MFCs)
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Polycyclic Aromatic Hydrocarbons (PAHs) Degradation and Detoxification of Water Environment in Single-chamber Air-cathode Microbial Fuel Cells (MFCs)

机译:单环芳烃(PAHS)在单室空气阴极微生物燃料电池(MFCs)中的水环境降解和排毒

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The influence of microelectrogenesis on PAHs degradation and detoxification operated by Pseudomonadaceae, Bacillaceae, Staphylococcaceae and Enterobacteriaceae was investigated in water environment. Single chamber, air-cathode MFCs and bioreactors were filled with the microbial pool (10(7)-10(8) CFUmL(-1)) inoculated in a 400mL Winogradsky saline solution containing no other carbon and energy source than naphthalene (80 ppm), phenanthrene (40 ppm), pyrene (40 ppm), benzo(a)pyrene (20 ppm). MFCs and bioreactors operated at 25 degrees C for thirteen weeks. Power Density (PD) and Current Density (CD) outputs as well as PAHs degradation rate were measured. The toxic effect of PAHs suspension vs.Raphidocelis subcapitata was quantified by EC1, EC20, EC50, LOEC and NOEC calculations. The results showed a significant variability in PD and CD outputs, with highest PD of 300 mW m(-3) and 25 mA m(-3). After 5 weeks, the overall PAHs concentration in MFCs decreased of a 90%. COD and TOC removal respectively of 62% and 73% after 11 weeks was achieved in MFC inoculated with bacteria (MFC2). Ecotoxicological tests showed for MFCs a lower toxic effect vs.P.subcapitata when bacteria are present. Microelectrogenesis just sped up microbial metabolism rather than take advantage from the interaction of PAHs with graphite electrodes.
机译:在水环境下研究了微电子对PAHS降解和通过Pseudomonadaceae,甲基菌,酪蛋白和肠杆菌植物操作的降解和解毒的影响。填充单个室,空气阴极MFCs和生物反应器(10(7)-10(8)Cfuml(-1)),其接种在400ml Winogradsky盐溶液中,含有没有其他碳和能量源的盐溶液(80ppm ),菲(40ppm),芘(40ppm),苯并(a)芘(20ppm)。 MFCS和生物反应器在25℃下运行13周。测量功率密度(Pd)和电流密度(CD)输出以及PAHS降解速率。通过EC1,EC20,EC50,LOEC和NOEC计算量化了PAHS悬浮液vs.raphidocelis子谱的毒性作用。结果表明Pd和Cd输出中具有显着的可变性,最高PD为300mW m(-3)和25 ma m(-3)。 5周后,MFC中的整体PAHS浓度降低了90%。在接种细菌(MFC2)的MFC中,在11周内分别达到62%和73%的COD和TOC除去。生态毒理学试验显示MFCS较低的毒性效果Vs.p.subcapitata,当存在细菌时。微电子刚刚加速微生物代谢而不是利用PAH与石墨电极的相互作用。

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