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微生物电化学驱动的缺氧氨氮去除。

Microbial electricity driven anoxic ammonium removal.

机构信息

LEQUiA, Institute of the Environment, University of Girona, Girona, Spain.

Department of Environmental Microbiology, Helmholtz Centre for Environmental Research GmbH - UFZ, Leipzig, Germany.

出版信息

Water Res. 2018 Mar 1;130:168-175. doi: 10.1016/j.watres.2017.11.059. Epub 2017 Dec 1.

Abstract

Removal of nitrogen, mainly in form of ammonium (NH), in wastewater treatment plants (WWTPs) is a highly energy demanding process, mainly due to aeration. It causes costs of about half a million Euros per year in an average European WWTP. Alternative, more economical technologies for the removal of nitrogen compounds from wastewater are required. This study proves the complete anoxic conversion of ammonium (NH) to dinitrogen gas (N) in continuously operated bioelectrochemical systems at the litre-scale. The removal rate is comparable to conventional WWTPs with 35 ± 10 g N m d with low accumulation of NO, NO, NO. In contrast to classical aerobic nitrification, the energy consumption is considerable lower (1.16 ± 0.21 kWh kg N, being more than 35 times less than for the conventional wastewater treatment). Biotic and abiotic control experiments confirmed that the anoxic nitrification was an electrochemical biological process mainly performed by Nitrosomonas with hydroxylamine as the main substrate (mid-point potential, E = +0.67 ± 0.08 V vs. SHE). This article proves the technical feasibility and reduction of costs for ammonium removal from wastewater, investigates the underlying mechanisms and discusses future engineering needs.

摘要

在废水处理厂(WWTP)中,去除氮主要以氨(NH)的形式存在,是一个高度耗能的过程,主要是由于曝气。在一个普通的欧洲 WWTP 中,这每年造成约五十万欧元的成本。需要替代更经济的技术来去除废水中的氮化合物。本研究证明了在连续运行的生物电化学系统中,在升规模下完全缺氧将氨(NH)转化为氮气(N)。去除率可与传统 WWTP 相媲美,达到 35±10gNmd,同时 NO、NO和 NO 的积累量较低。与经典的需氧硝化作用相比,能耗明显更低(1.16±0.21kWhkgN,比传统废水处理低 35 倍以上)。生物和非生物控制实验证实,缺氧硝化是一种电化学生物过程,主要由亚硝化单胞菌通过羟胺作为主要底物进行(中点电位,E=+0.67±0.08V vs. SHE)。本文证明了从废水中去除氨的技术可行性和成本降低,研究了潜在的机制,并讨论了未来的工程需求。

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