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理解废水的复杂性:碳水化合物和硫酸盐对生物电化学系统性能的综合影响。

Understanding the complexity of wastewater: The combined impacts of carbohydrates and sulphate on the performance of bioelectrochemical systems.

机构信息

School of Engineering, Newcastle University, Newcastle-upon-Tyne, NE1 7RU, England, UK.

School of Engineering, Newcastle University, Newcastle-upon-Tyne, NE1 7RU, England, UK.

出版信息

Water Res. 2020 Jun 1;176:115737. doi: 10.1016/j.watres.2020.115737. Epub 2020 Mar 20.

Abstract

Bioelectrochemical systems (BES) have long been viewed as a promising wastewater treatment technology. However, in reality, the performance of bioelectrochemical systems fed with real (and therefore complex) wastewaters is often disappointing. We have sought to investigate the combined impacts of complex substrates and presence of electron acceptors. In particular, this study illustrates and systematically evaluates the disparity in performance between a BES acclimatised with acetate and those acclimatised with more complex carbohydrates (glucose, sucrose or starch) and in the presence and absence of sulphate. Relative to acetate only, operating with complex carbohydrates reduced current by 73%-87% and coulombic efficiency by 4%-50%. Acclimation with complex carbohydrates seriously impeded the colonisation anode by Geobacteraceae, resulting in substantially reduced capacity to produce current (60.2% on average). Combined acclimation with sulphate further reduced current by 35% on average, and resulted in a total reduction of 83%-93% relative to the acetate control. However, the presence of an electrogenic sulphide-sulphur shuttle meant sulphate had little effect on the coulombic efficiency of the BES. The results indicate that a reduction in current and coulombic efficiency is, at present, an unavoidable consequence of operating a BES fed with complex wastewater. Researchers, designers and policy makers should incorporate such losses in both their plans and their prognostications.

摘要

生物电化学系统(BES)长期以来一直被视为一种很有前途的废水处理技术。然而,在现实中,生物电化学系统处理实际(因此复杂)废水的性能往往令人失望。我们试图研究复杂基质和电子受体存在的综合影响。特别是,本研究说明了并系统地评估了在存在和不存在硫酸盐的情况下,用乙酸盐驯化的 BES 与用更复杂的碳水化合物(葡萄糖、蔗糖或淀粉)驯化的 BES 之间性能的差异。与仅使用乙酸盐相比,使用复杂碳水化合物会使电流降低 73%-87%,库仑效率降低 4%-50%。用复杂碳水化合物驯化严重阻碍了 Geobacteraceae 在阳极上的定植,导致电流产生能力大幅降低(平均降低 60.2%)。与硫酸盐联合驯化平均进一步降低电流 35%,与乙酸盐对照相比,电流降低 83%-93%。然而,电生的硫代硫酸盐-硫代硫酸盐穿梭作用意味着硫酸盐对 BES 的库仑效率几乎没有影响。研究结果表明,目前,用复杂废水运行 BES 会不可避免地导致电流和库仑效率降低。研究人员、设计者和政策制定者应该在他们的计划和预测中考虑到这些损失。

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