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Development of Electroactive and Anaerobic Ammonium-Oxidizing (Anammox) Biofilms from Digestate in Microbial Fuel Cells

机译:从微生物燃料电池中消化的电活性和厌氧铵氧化(厌氧)生物膜的研制

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摘要

Microbial Fuel cells (MFCs) have been proposed for nutrient removal and energy recovery from different wastes. In this study the anaerobic digestate was used to feed H-type MFC reactors, one with a graphite anode preconditioned with Geobacter sulfurreducens and the other with an unconditioned graphite anode. The data demonstrate that the digestate acts as a carbon source, and even in the absence of anode preconditioning, electroactive bacteria colonise the anodic chamber, producing a maximum power density of 172.2 mW/m2. The carbon content was also reduced by up to 60%, while anaerobic ammonium oxidation (anammox) bacteria, which were found in the anodic compartment of the reactors, contributed to nitrogen removal from the digestate. Overall, these results demonstrate that MFCs can be used to recover anammox bacteria from natural sources, and it may represent a promising bioremediation unit in anaerobic digestor plants for the simultaneous nitrogen removal and electricity generation using digestate as substrate.
机译:已经提出了微生物燃料电池(MFCs)用于不同废物中的营养去除和能量回收。在该研究中,厌氧消化物用于供给H型MFC反应器,一种具有石墨阳极,预处理具有根茎硫化琥珀素,另一种具有无条件的石墨阳极。数据表明,消化用作碳源,甚至在没有阳极预处理的情况下,电活性细菌定植到阳极腔室,产生172.2mW / m 2的最大功率密度。碳含量也降低至60%,而在反应器的阳极隔室中发现的厌氧氧化(厌氧毒素)细菌有助于从消化物中除去氮。总体而言,这些结果表明,MFC可用于从天然来源中回收厌氧菌细菌,它可以代表使用消化物作为基质的同时氮去除和发电的厌氧消化器植物中的有前途的生物化单元。

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