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Temperature, inocula and substrate: contrasting electroactive consortia, diversity and performance in microbial fuel cells

机译:温度,接种物和底物:对比电活性聚生体,微生物燃料电池的多样性和性能

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摘要

The factors that affect microbial community assembly and its effects on the performance of bioelectrochemical systems are poorly understood. Sixteen microbial fuel cell (MFC) reactors were set up to test the importance of inoculum, temperature and substrate: Arctic soil versus wastewater as inoculum; warm (26.5°C) versus cold (7.5°C) temperature; and acetate versus wastewater as substrate. Substrate was the dominant factor in determining performance and diversity: unexpectedly the simple electrogenic substrate delivered a higher diversity than a complex wastewater. Furthermore, in acetate fed reactors, diversity did not correlate with performance, yet in wastewater fed ones it did, with greater diversity sustaining higher power densities and coulombic efficiencies. Temperature had only a minor effect on power density, (Q10: 2 and 1.2 for acetate and wastewater respectively): this is surprising given the well-known temperature sensitivity of anaerobic bioreactors. Reactors were able to operate at low temperature with real wastewater without the need for specialised inocula; it is speculated that MFC biofilms may have a self-heating effect. Importantly, the warm acetate fed reactors in this study did not act as direct model for cold wastewater fed systems. Application of this technology will encompass use of real wastewater at ambient temperatures.
机译:影响微生物群落组装的因素及其对生物电化学系统性能的影响知之甚少。建立了16个微生物燃料电池(MFC)反应器,以测试接种物,温度和底物的重要性:北极土壤与废水作为接种物;温暖(26.5°C)与寒冷(7.5°C)的温度;醋酸盐与废水作为底物。底物是决定性能和多样性的主要因素:出乎意料的是,简单的电底物比复杂的废水具有更高的多样性。此外,在乙酸酯给料反应器中,多样性与性能没有关系,而在废水给料反应器中,多样性却与性能相关,更大的多样性可维持更高的功率密度和库仑效率。温度对功率密度的影响很小(分别为乙酸盐和废水的Q10:2和1.2):考虑到厌氧生物反应器众所周知的温度敏感性,这令人惊讶。反应堆能够在低温下与真实废水一起运行,而无需专门接种。据推测,MFC生物膜可能具有自热作用。重要的是,在这项研究中,温暖的乙酸盐进料反应堆没有作为冷废水进料系统的直接模型。该技术的应用将包括在环境温度下使用实际废水。

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