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Direct interspecies electron transfer in bulk solution significantly contributes to bioelectrochemical nitrogen removal

机译:直接种间电子在本体溶液中的转移显着促进生物电化学脱氮

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摘要

A bioelectrochemical anaerobic ammonium oxidation via direct interspecies electron transfer in bulk solution was first found in an anaerobic reactor equipped with a pair of bioelectrode polarized at 0.6 V. The removal of ammonium along with a decrease in nitrite and alkalinity was observed when ammonium and nitrite are available as electron donor and acceptor, respectively, in a bioelectrochemical reactor. The requirements of nitrite nitrogen and alkalinity for the removal of ammonium nitrogen are around 0.58 mg NO2-N/mg NH4-N and 2.0 mg as CaCO3/mg NH4-N, respectively. The bioelectrochemical ammonium oxidation does not produce nitrate as a by-product as well. The microbial groups involved in bioelectrochemical ammonium oxidation are electroactive autotrophs and can be enriched from anaerobic digestion sludge from sewage treatment plant by the polarized electrode. This bioelectrochemical ammonium oxidation is a novel approach recommended for treatment of nitrogen-rich wastewater. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:首先在配备有一对在0.6 V极化的生物电极的厌氧反应器中发现了通过种间直接种间电子转移发生的生物电化学厌氧铵氧化。当铵和亚硝酸盐为铵时,观察到铵的去除以及亚硝酸盐和碱度的降低。可在生物电化学反应器中分别用作电子给体和受体。去除铵态氮所需的亚硝酸盐氮和碱度分别约为0.58 mg NO2-N / mg NH4-N和2.0 mg CaCO3 / mg NH4-N。生物电化学铵氧化也不会产生硝酸盐作为副产物。参与生物电化学铵氧化的微生物基团是电活性自养生物,可通过极化电极从污水处理厂的厌氧消化污泥中富集。这种生物电化学铵氧化是一种推荐用于处理富氮废水的新颖方法。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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