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评价移动床序批式反应器在同时去除 4-氯酚和氮过程中的曝气策略。

Evaluation of aeration strategy in moving bed sequencing batch reactor performing simultaneous 4-chlorophenol and nitrogen removal.

机构信息

School of Chemical Sciences, Universiti Sains Malaysia, 11800 Penang, Malaysia.

出版信息

Appl Biochem Biotechnol. 2013 Jun;170(4):831-40. doi: 10.1007/s12010-013-0245-8. Epub 2013 Apr 24.

Abstract

The aeration strategy ranging from intermittent to continuous aeration in the REACT period of moving bed sequencing batch reactor (MBSBR) was evaluated for simultaneous removal of 4-chlorophenol (4-CP) and nitrogen. The results show that the removal rates of 4-CP and ammonium nitrogen (NH(4)(+)-N) increased with the increase of continuous aeration period. In the presence of 4-CP, NH(4)(+)-N removal was mainly by the assimilation process. The removal of NH(4)(+)-N to oxidized nitrogen via oxidation was only observed after 4-CP was completely degraded with sufficient aeration period provided indicating the inhibitory effect of 4-CP on nitrification. As the intermittent aeration strategy would lead to slower 4-CP degradation resulting in the delay of nitrification process, continuous aeration would be the preferred strategy in the simultaneous removal of 4-CP and nitrogen in the MBSBR system.

摘要

在移动床序批式反应器(MBSBR)的反应期,采用从间歇曝气到连续曝气的曝气策略,同时去除 4-氯苯酚(4-CP)和氮。结果表明,4-CP 和氨氮(NH(4)(+)-N)的去除率随连续曝气时间的增加而增加。在 4-CP 的存在下,NH(4)(+)-N 的去除主要是通过同化作用。只有在提供足够的曝气周期使 4-CP 完全降解后,才观察到通过氧化将 NH(4)(+)-N 转化为氧化氮,这表明 4-CP 对硝化的抑制作用。由于间歇曝气策略会导致 4-CP 降解速度较慢,从而延迟硝化过程,因此在 MBSBR 系统中同时去除 4-CP 和氮时,连续曝气将是首选策略。

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