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Long-term investigation of microbial fuel cells treating primary sludge or digested sludge

机译:微生物燃料电池处理初级污泥或消化污泥的长期研究

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The long-term performance of sludge treatment in microbial fuel cells (MFCs) was examined by operating two MFCs for almost 500. days. In Phase I, one MFC fed with primary sludge removed 69.8. ±. 24.1% of total chemical oxygen demand (TCOD) and 68.4. ±. 17.9% of volatile suspended solids (VSS); the other MFC with digested sludge reduced 36.2. ±. 24.4% of TCOD and 46.1. ±. 19.2% of VSS. In Phase II, both MFCs were operated as a two-stage system that removed 60% of TCOD and 70% of VSS from the primary sludge. An energy analysis revealed that, although the total energy in the MFC system was comparable with that of anaerobic digesters, the electric energy had a minor contribution and methane gas still dominated the total energy production. The results suggest that MFCs may not be suitable for treating primary sludge for energy recovery, but could potentially be used to polish the effluent from anaerobic digesters.
机译:通过操作两个MFC约500天来检查微生物燃料电池(MFC)中污泥处理的长期性能。在阶段I中,一个装有主要污泥的MFC去除了69.8。 ±。占总化学需氧量(TCOD)的24.1%和68.4。 ±。 17.9%的挥发性悬浮固体(VSS);另一个带有消化污泥的MFC减少了36.2。 ±。 TCOD的24.4%和46.1。 ±。 VSS的19.2%。在阶段II中,两个MFC均作为两阶段系统运行,该系统从主污泥中去除了60%的TCOD和70%的VSS。能量分析表明,尽管MFC系统中的总能量与厌氧消化池的能量相当,但电能的贡献很小,甲烷气体仍占总能量生产的主导地位。结果表明,MFCs可能不适合处理用于能源回收的初级污泥,但可能潜在地用于抛光厌氧消化池的废水。

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