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Exploitation of Digestate from Thermophilic and Mesophilic Anaerobic Digesters Fed with Fermentable Food Waste Using the MFC Technology

机译:利用MFC技术将嗜热和嗜苯胺厌氧消化器的消化利用嗜热和嗜渗厌氧消化器

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This study reports on the investigation of the digestate treatment using microbial fuel cell (MFC) technology. The effluents from a thermophilic and a mesophilic anaerobic digester, fed with fermentable household food waste (FORBI), were characterized and used as the feed in four air-cathode MFC units. The chemical oxygen demand (COD) removal ranged from 80% to 90% and was achieved within the first 24 h to 48 h of each cycle operation, although electricity was still produced for more than 190 h. The electrochemical characterization of the cells showed low internal resistances (10-50 Omega) of the units for both inlets. The maximum power output of the mesophilic fed cells (similar to 0.24 mW) is lower in comparison with the respective power achieved from the thermophilic fed cells (similar to 0.42 mW). The work demonstrated the potential of using MFC technology to further treat and exploit anaerobic digestates which are produced from FORBI.[GRAPHICS].
机译:本研究报告了使用微生物燃料电池(MFC)技术对消化处理的研究。 来自嗜热和嗜渗厌氧蒸煮器的流出物,用可发酵的家庭食物废物(Forbi)进行,并用作四个空气阴极MFC单元的饲料。 除去的化学需氧量(COD)除去80%至90%,并且在每个循环操作的前24小时内实现,尽管电力仍然产生超过190小时。 细胞的电化学表征显示出两个入口的单元的低内阻(10-50Ω)。 与来自嗜热喂养细胞(类似于0.42mW)达到的相应功率相比,嗜苯胺馈电池(类似于0.24mW)的最大功率输出较低。 该工作证明了利用MFC技术进一步治疗和利用厌氧消化的潜力,这些消化来自Forbi。[图形]。

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