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利用常温下连续厌氧-缺氧-好氧(A(2)O)工艺对生活污水进行硝化反硝化。

Nitritation and denitritation of domestic wastewater using a continuous anaerobic-anoxic-aerobic (A(2)O) process at ambient temperatures.

机构信息

Key Laboratory of Beijing for Water Environment Recovery, Department of Environmental Engineering, Beijing University of Technology, 100124 Beijing, China.

出版信息

Bioresour Technol. 2010 Nov;101(21):8074-82. doi: 10.1016/j.biortech.2010.05.098. Epub 2010 Jun 25.


DOI:10.1016/j.biortech.2010.05.098
PMID:20579871
Abstract

In a continuous anaerobic-anoxic-aerobic (A(2)O) process treating domestic wastewater at ambient temperatures, nitritation was achieved through a combination of short aerobic actual hydraulic retention time (AHRT) and low dissolved oxygen (DO) levels (0.3-0.5mg/L). The nitrite accumulation rate was about 90% and ammonia removal efficiency was over 95%. With respect to total nitrogen removal, nitritation-denitritation at low DO levels of 0.3-0.5mg/L was essentially equal to the complete nitrification-denitrification at DO levels of 1.5-2.5mg/L with the addition of external carbon sources. Regardless of low DO operation, sludge bulking did not occur since the sludge volume index was below 150ml/g. Real-time PCR assays showed that in response to complete and partial nitrification modes, the numbers of ammonia oxidizing bacteria population were 5.28x10(9)cells/g MLVSS and 3.95x10(10)cells/g MLVSS, respectively. Achievement of nitritation-denitritation is highly beneficial to the treatment of domestic wastewater in terms of lower carbon requirements and reduced aeration costs.

摘要

在一个处理生活污水的连续厌氧-缺氧-好氧(A(2)O)工艺中,通过短好氧实际水力停留时间(AHRT)和低溶解氧(DO)水平(0.3-0.5mg/L)的结合实现了亚硝化。亚硝酸盐积累率约为 90%,氨去除效率超过 95%。就总氮去除而言,在 0.3-0.5mg/L 的低 DO 水平下进行的亚硝化-反硝化与在 1.5-2.5mg/L 的 DO 水平下添加外部碳源的完全硝化-反硝化基本相等。由于污泥体积指数低于 150ml/g,即使在低 DO 操作下,也不会发生污泥膨胀。实时 PCR 检测表明,对于完全和部分硝化模式,氨氧化菌的数量分别为 5.28x10(9)cells/g MLVSS 和 3.95x10(10)cells/g MLVSS。实现亚硝化-反硝化对处理生活污水具有重要意义,因为它需要较低的碳需求和降低曝气成本。

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Nitritation and denitritation of domestic wastewater using a continuous anaerobic-anoxic-aerobic (A(2)O) process at ambient temperatures.

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