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[生物活性炭对不同碳氮比进水同步硝化反硝化的影响]

[Influence of Biological Activated Carbon on Simultaneous Nitrification and Denitrification in Inflow with Different C/N Ratios].

作者信息

Cui Yan-Rui, Qiu Xin, Zhang Qing-Rong, Wang Qi, Wu Qing, Sun Jian-Hui

机构信息

Key Laboratory for Yellow River and Huai River Water Environment and Pollution Control, Ministry of Education, Henan Key Laboratory of Environmental Pollution Control, School of Environment, Henan Normal University, Xinxiang 453007, China.

出版信息

Huan Jing Ke Xue. 2016 Nov 8;37(11):4296-4301. doi: 10.13227/j.hjkx.201601020.

Abstract

Influence of biological activated carbon (BAC) on simultaneous nitrification and denitrification (SND) in inflow with different C/N ratios was investigated with continuous operation of BAC reactor and SBR. Methanol was added as carbon source and the inflow C/N ratio was set to 3, 5, 8 and 10 to run for about 120 cycles, under conditions of indoor temperature (15-27℃), initial DO 2-3mg·L. The TN removal efficiency and stability of two reactors were compared. The results showed that, BAC reactor had a higher TN removal efficiency than SBR at different C/N ratios. TN removal rate of BAC reactor was 44.88%, 58.07% and 66.64%, when the C/N ratio was 3, 5 and 8 respectively. After increasing the C/N ratio to 10, the BAC reactor could maintain TN removal rate of 63.65%, but the SBR showed sludge bulking. BAC provided various DO environments for microorganisms in a vessel, which was beneficial to SND. BAC could reduce the influence of excessive carbon source on the nitrification system, enlarge the application range and improve the stability of reactor at different C/N ratios, and increase the nitrogen removal capacity of organic matter. BAC provided condition for efficient nitrogen removal.

摘要

采用生物活性炭(BAC)反应器和序批式反应器(SBR)连续运行的方式,研究了生物活性炭对不同碳氮比进水同步硝化反硝化(SND)的影响。以甲醇作为碳源,在室内温度(15 - 27℃)、初始溶解氧2 - 3mg·L的条件下,将进水碳氮比设置为3、5、8和10,运行约120个周期。比较了两个反应器的总氮去除效率和稳定性。结果表明,在不同碳氮比条件下,BAC反应器的总氮去除效率均高于SBR。当碳氮比分别为3、5和8时,BAC反应器的总氮去除率分别为44.88%、58.07%和66.64%。将碳氮比提高到10后,BAC反应器能够保持63.65%的总氮去除率,而SBR出现了污泥膨胀现象。BAC在一个容器内为微生物提供了多种溶解氧环境,有利于同步硝化反硝化。BAC可以降低过量碳源对硝化系统的影响,扩大不同碳氮比条件下反应器的应用范围并提高其稳定性,增加有机物的脱氮能力。BAC为高效脱氮提供了条件。

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