首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancement of anaerobic acidogenesis by integrating an electrochemical system into an acidogenic reactor: Effect of hydraulic retention times (HRT) and role of bacteria and acidophilic methanogenic Archaea
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Enhancement of anaerobic acidogenesis by integrating an electrochemical system into an acidogenic reactor: Effect of hydraulic retention times (HRT) and role of bacteria and acidophilic methanogenic Archaea

机译:通过将电化学系统集成到产酸反应器中来增强厌氧产酸:水力停留时间(HRT)的影响以及细菌和嗜酸产甲烷古细菌的作用

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摘要

In this study, an acidogenic reactor packed with a pair of Fe-carbon electrodes (R1) was developed to enhance anaerobic acidogenesis of organic wastewater at short hydraulic retention times. The results indicated that the acidogenic efficiency was improved by settling a bio-electrochemical system. When hydraulic retention times decreased from 12 to 3 h, R1 showed 18.9% more chemical oxygen demand removal and 13.8% more acidification efficiency. After cutting off the voltage of R1, the COD removal decreased by about 5%. Coupling of Fe2+ leaching and electric field accelerated the hydrolysis of polysaccharide, relieving its accumulation in the sludge phase. Several acidophilic methanogenic Archaea such as Methanosarcina sp. were enriched in R1, which was favorable for consuming organic acids and preventing excessive pH decline. Thus, the developed acidogenic reactor with Fe-carbon electrodes is expected to be potentially effective and useful for wastewater treatment. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了一个装有一对Fe-碳电极(R1)的产酸反应器,以在较短的水力停留时间下增强有机废水的厌氧产酸作用。结果表明,通过建立生物电化学系统可以提高产酸效率。当水力停留时间从12小时减少到3小时时,R1的化学需氧量去除增加了18.9%,酸化效率增加了13.8%。切断R1的电压后,COD去除率降低了约5%。 Fe2 +浸出和电场的耦合加速了多糖的水解,减轻了其在污泥相中的积累。几种嗜酸的产甲烷古生菌,如Methanosarcina sp.。富含R1,有利于消耗有机酸并防止pH值过度下降。因此,期望开发的具有Fe-碳电极的产酸反应器对于废水处理是潜在有效的。 (C)2014 Elsevier Ltd.保留所有权利。

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