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两阶段硝化间歇反应过程中的硝酸盐生成速率。

Rate of nitrate production during a two-stage nitrification batch reaction.

作者信息

Pratt S, Gapes D, Yuan Z, Keller J

机构信息

Advanced Wastewater Management Centre, The University of Queensland, St Lucia, QLD 4072, Australia.

出版信息

Water Sci Technol. 2004;50(10):81-7.

Abstract

The two steps of nitrification, namely the oxidation of ammonia to nitrite and nitrite to nitrate, often need to be considered separately in process studies. It has been assumed that these two reactions can be described by single Monod models. In this paper, the suitability of the single Monod model for describing nitrite oxidation to nitrate is discussed. The measured rate of nitrate production during a batch reaction is presented. For the system studied it was found that nitrate production actually increased after the completion of ammonia oxidation. It is suggested that the reason for the increase was a combination of: (i) likely competition for oxygen when both substrates were present, and (ii) a decrease in ammonia inhibition of nitrite oxidisers with the removal of ammonia. The result is that a single Monod expression (based on nitrite as the substrate) could not be used to describe nitrate production. In these types of systems the consequence of oxygen limitation and substrate inhibition should also be considered.

摘要

硝化作用的两个步骤,即将氨氧化为亚硝酸盐以及将亚硝酸盐氧化为硝酸盐,在过程研究中通常需要分别考虑。一直以来人们假定这两个反应可用单一的莫诺德模型来描述。本文讨论了单一莫诺德模型用于描述亚硝酸盐氧化为硝酸盐的适用性。给出了间歇反应过程中硝酸盐生成的实测速率。对于所研究的系统,发现氨氧化完成后硝酸盐生成量实际上增加了。有人提出增加的原因是以下两者的结合:(i) 两种底物同时存在时可能存在的对氧气的竞争,以及 (ii) 随着氨的去除,氨对亚硝酸盐氧化菌的抑制作用减弱。结果是,单一的莫诺德表达式(以亚硝酸盐为底物)无法用于描述硝酸盐的生成。在这类系统中,还应考虑氧气限制和底物抑制的影响。

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