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Influence of carbon to nitrogen ratio on nitrous oxide emission in an Integrated Fixed Film Activated Sludge Membrane BioReactor plant

机译:碳氮比对一体化固定膜活性污泥膜生物反应器装置中一氧化二氮排放的影响

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In this study a University of Cape Town (UCT) Integrated Fixed Film Activated Sludge (IFAS) Membrane BioReactor (MBR) wastewater treatment plant was monitored in terms of nitrous oxide (N2O) emissions. The short term effect on the N2O emission due to the influent carbon-to-nitrogen (C/N) ratio variation (C/N ratios of 2, 5 and 10 gCOD/gN) was evaluated. Since in a previous study, the effect of the C/N ratio was studied in the same system without biofilm (UCT-MBR configuration) the main aim here was to investigate the role of biofilms on N2O emissions. Under all the investigated C/N ratios, the N2O fluxes and the average emission factors were lower than that of previous studies with no biofilm presence. The total average N2O emission was 0.5% of the influent nitrogen with biofilm (IFAS system) and 3.5% without biofilm. This result emphasizes the potential role of the biofilms in attenuating the N2O emissions especially in the case of stress conditions (i.e., low C/N influent ratios). An increase of N2O flux from the anoxic reactor (till 28 mgN(2)O m(-2)h(-1)) occurred at the lowest influent C/N tested (2 gCOD/gN - phase III). At C/N equal to 2 gCOD/gN the anoxic reactor was the main source of N2O, contributing 45% of all produced N2O. This result was attributed to an incomplete denitrification caused by a lack of organic carbon and a slight increase of dissolved oxygen concentration. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,以一氧化二氮(N2O)排放量对开普敦大学(UCT)固定膜活化污泥(IFAS)膜生物反应器(MBR)废水处理厂进行了监测。评估了由于进水碳氮比(C / N比为2、5和10 gCOD / gN)而对N2O排放的短期影响。因为在先前的研究中,在没有生物膜(UCT-MBR配置)的同一系统中研究了C / N比的影响,所以这里的主要目的是研究生物膜在N2O排放中的作用。在所有调查的碳氮比下,N2O通量和平均排放因子均低于没有生物膜存在的先前研究。使用生物膜(IFAS系统)时,总平均N2O排放量为进水氮的0.5%,不使用生物膜时为3.5%。该结果强调了生物膜在减少N 2 O排放中的潜在作用,特别是在压力条件下(即低C / N进水比)。来自缺氧反应器的N2O通量增加(至28 mgN(2)O m(-2)h(-1))在最低进水C / N(2 gCOD / gN-III期)下发生。在C / N等于2 gCOD / gN时,缺氧反应器是N2O的主要来源,占所有生产N2O的45%。该结果归因于由于缺乏有机碳和溶解氧浓度略有增加而导致的反硝化作用不完全。 (C)2017 Elsevier Ltd.保留所有权利。

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