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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced power generation and energy conversion of sewage sludge by CEA–microbial fuel cells
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Enhanced power generation and energy conversion of sewage sludge by CEA–microbial fuel cells

机译:CEA-微生物燃料电池提高污水污泥的发电和能量转换

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摘要

The production of methane from sewage sludge through the use of anaerobic digestion has been able to effectively offset energy costs for wastewater treatment. However, significant energy reserves are left unrecovered and effluent standards are not met necessitating secondary processes such as aeration. In the current study a novel cloth-electrode assembly microbial fuel cell (CEA–MFC) was used to generate electricity from sewage sludge. Fermentation pretreatment of the sludge effectively increased the COD of the supernatant and improved reactor performance. Using the CEA–MFC design, a maximum power density of 1200mWm~(-2) was reached after a fermentation pre-treatment time of 96 h. This power density represents a 275% increase over those previously observed in MFC systems. Results indicate continued improvements are possible and MFCs may be a viable modification to existing wastewater treatment infrastructure.
机译:通过使用厌氧消化从污水污泥中生产甲烷,已经能够有效抵消废水处理的能源成本。但是,大量的能源储备得不到回收,不能满足废水标准,因此必须进行二次处理,例如曝气。在当前的研究中,新型的布电极组件微生物燃料电池(CEA–MFC)用于从污水污泥中发电。污泥的发酵预处理有效地提高了上清液的COD并改善了反应器性能。使用CEA–MFC设计,经过96 h的发酵预处理时间,最大功率密度达到1200mWm〜(-2)。该功率密度比以前在MFC系统中观察到的功率密度提高了275%。结果表明,持续改进是可能的,而MFCs可能是对现有废水处理基础设施的可行修改。

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