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Low Substrate Loading Limits Methanogenesis and Leads to High Coulombic Efficiency in Bioelectrochemical Systems

机译:低底物负载限制了甲烷生成并导致生物电化学系统中的高库仑效率

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摘要

A crucial aspect for the application of bioelectrochemical systems (BESs) as a wastewater treatment technology is the efficient oxidation of complex substrates by the bioanode, which is reflected in high Coulombic efficiency (CE). To achieve high CE, it is essential to give a competitive advantage to electrogens over methanogens. Factors that affect CE in bioanodes are, amongst others, the type of wastewater, anode potential, substrate concentration and pH. In this paper, we focus on acetate as a substrate and analyze the competition between methanogens and electrogens from a thermodynamic and kinetic point of view. We reviewed experimental data from earlier studies and propose that low substrate loading in combination with a sufficiently high anode overpotential plays a key-role in achieving high CE. Low substrate loading is a proven strategy against methanogenic activity in large-scale reactors for sulfate reduction. The combination of low substrate loading with sufficiently high overpotential is essential because it results in favorable growth kinetics of electrogens compared to methanogens. To achieve high current density in combination with low substrate concentrations, it is essential to have a high specific anode surface area. New reactor designs with these features are essential for BESs to be successful in wastewater treatment in the future.
机译:生物电化学系统(BESs)作为废水处理技术的应用的一个关键方面是生物阳极对复杂基质的有效氧化,这体现在高库仑效率(CE)中。为了获得较高的CE,必不可少的是要使电子比产甲烷菌具有竞争优势。影响生物阳极中CE的因素包括废水类型,阳极电位,底物浓度和pH。在本文中,我们重点研究乙酸盐作为底物,并从热力学和动力学的角度分析产甲烷菌和电子之间的竞争。我们回顾了较早研究的实验数据,并提出低底物负载与足够高的阳极超电势结合是实现高CE的关键角色。在大型硫酸盐还原反应器中,低底物负载是一种对抗甲烷生成活性的行之有效的策略。低底物负载和足够高的超电势的结合是必不可少的,因为与产甲烷菌相比,它可以产生有利的电能生长动力学。为了实现高电流密度和低基材浓度,必须具有较高的阳极比表面积。具有这些功能的新反应堆设计对于BES将来在废水处理中取得成功至关重要。

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