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生物脱硝反应器中一氧化氮的还原:动力学与机理

Nitric oxide reduction in BioDeNOx reactors: kinetics and mechanism.

作者信息

van der Maas Peter, Manconi Isabella, Klapwijk Bram, Lens Piet

机构信息

Sub-Department of Environmental Technology, Wageningen University, PO Box 8129, 6700 EV Wageningen, The Netherlands.

出版信息

Biotechnol Bioeng. 2008 Aug 15;100(6):1099-107. doi: 10.1002/bit.21841.

Abstract

Biological reduction of nitric oxide (NO) to di-nitrogen (N(2)) gas in aqueous Fe(II)EDTA(2-) solutions is a key reaction in BioDeNOx, a novel process for NOx removal from flue gases. The mechanism and kinetics of the first step of NO reduction, that is, the conversion of NO to N(2)O, was determined in batch experiments using various types of inocula. Experiments were performed in Fe(II)EDTA(2-) medium (5-25 mM) under BioDeNOx reactor conditions (55 degrees C, pH 7.2 +/- 0.2) with ethanol as external electron donor. BioDeNOx reactor mixed liquor gave the highest NO reduction rates (+/-0.34 nmol s(-1) mg(prot)(-1)) with an estimated K(m) value for NO lower than 10 nM. The specific NO (to N(2)O) reduction rate depended on the NO (aq) and Fe(II)EDTA(2-) concentration as well as the temperature. The experimental results, complemented with kinetic and thermodynamic considerations, show that Fe(II)EDTA(2-), and not ethanol, is the primary electron donor for NO reduction, that is, the BioDeNOx reactor medium (the redox system Fe(II)EDTA(2-)/Fe(III)EDTA(-)) interferes with the NO reduction electron transfer chain and thus enhances the NO denitrification rate.

摘要

在Fe(II)EDTA(2-)水溶液中将一氧化氮(NO)生物还原为氮气(N₂)气体是BioDeNOx中的关键反应,BioDeNOx是一种从烟道气中去除氮氧化物的新工艺。使用各种类型的接种物在分批实验中确定了NO还原第一步的机理和动力学,即NO转化为N₂O。实验在BioDeNOx反应器条件(55℃,pH 7.2±0.2)下的Fe(II)EDTA(2-)培养基(5 - 25 mM)中进行,以乙醇作为外部电子供体。BioDeNOx反应器混合液具有最高的NO还原速率(±0.34 nmol s⁻¹ mg(prot)⁻¹),估计的NO的K(m)值低于10 nM。特定的NO(转化为N₂O)还原速率取决于NO(aq)和Fe(II)EDTA(2-)的浓度以及温度。实验结果,结合动力学和热力学考虑,表明Fe(II)EDTA(2-)而非乙醇是NO还原的主要电子供体,即BioDeNOx反应器介质(氧化还原体系Fe(II)EDTA(2-)/Fe(III)EDTA(-))干扰了NO还原电子传递链,从而提高了NO反硝化速率。

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