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首页> 外文期刊>Environmental Progress & Sustainable Energy >Bioelectricity Generation Through Microbial Fuel Cell Using Organic Matters Recovered From Municipal Wastewater
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Bioelectricity Generation Through Microbial Fuel Cell Using Organic Matters Recovered From Municipal Wastewater

机译:通过微生物燃料生物电的一代使用有机物恢复细胞城市污水

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摘要

An aerated-cathode microbial fuel cell (MFC) was used in this study for bioelectricity generation using the recovered organic matters (ROMs) from real municipal wastewater. Although no preacclimation or inoculation was used before the cell startup, the voltage began to increase as the operation of MFC was started. The working voltage registered the maximum value of 256.3 mV after 120-130 h operation. Proton accumulation and pH deviation in the anode chamber resulted in the deterioration of cell performance during the experiment. Electrochemical impedance spectroscopy analysis showed that the polarization resistance was the dominant component of internal resistance compared to the ohm resistance. It was also found that total suspended solids (TSS) and volatile suspended solids (VSS) reduction rate could reach 56.9% and 62.1% in the working MFC, respectively, compared with 31.7% of TSS reduction and 31-9% of VSS reduction in the control test. It indicated that bioelectricity generation could enhance the ROMs degradation. Fourier transform infrared spectrometry spectra demonstrated that the aliphatic compounds and protein-like substances related to Amide II could be preferentially hydrolyzed and biode-graded in the working MFC. The hydrolysis of the particulate organic matters was the rate limiting step for bioelectricity generation.
机译:一个aerated-cathode微生物燃料电池(MFC)在这项研究中用于生物电的一代使用回收有机物(rom)真正的城市污水。preacclimation或接种前使用细胞启动,电压开始增加MFC的操作就开始了。电压最大值256.3 mV注册120 - 130 h后操作。在阳极室和pH值偏差导致电池性能的恶化中实验。光谱分析表明,极化电阻是占主导地位的组件的内部阻力相比欧姆电阻。悬浮固体(TSS)和挥发性悬浮固体(VSS)还原率可能达到56.9%,62.1%工作MFC,分别比较减少31.7%的TSS和31 - 9%的VSS减少控制测试。生物电代可以提高rom退化。谱谱证明了脂肪族化合物和蛋白质像物质与酰胺二可以优先水解和biode-graded MFC工作。颗粒有机物的水解是生物电的速率限制步骤的一代。

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