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废水中的细菌在生物滴滤池中去除一氧化氮。

Nitric oxide removal by wastewater bacteria in a biotrickling filter.

机构信息

Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, China.

Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, China.

出版信息

J Environ Sci (China). 2014 Mar 1;26(3):555-65. doi: 10.1016/S1001-0742(13)60456-8.

Abstract

Nitric oxide (NO) is one of the most important air pollutants in atmosphere mainly emitted from combustion source. A biotrickling filter was designed and operated to remove NO from an air stream using bacteria extracted from the sewage sludge of a municipal sewage treatment plant. To obtain the best operation conditions for the biotrickling filter, orthogonal experiments (L9(3(4))) were designed. Inlet oxygen concentration was found to be the most significant factor of the biotrickling filter and has a significant negative effect on the system. The optimal conditions of the biotrickling filter occurred at a temperature of 40°C, a pH of 8.0 and a chemical oxygen demand of 165 mg/L in the recycled water with no oxygen in the system. The bacteria sample was detected by DNA sequencing technology and showed 93%-98% similarity to Pseudomonas mendocina. Moreover, a full gene sequencing results indicated the bacterium was a brand new strain and named as P. mendocina DLHK. This strain can transfer nitrate to organic nitrogen. The result suggested the assimilation nitrogen process in this system. Through the isotope experimental analysis, two intermediate products ((15)NO and (15)N2O) were found. The results indicated the denitrification function and capability of the biotrickling filter in removing NO.

摘要

一氧化氮(NO)是大气中最重要的空气污染物之一,主要来自燃烧源。本研究设计并运行了生物滴滤器,利用从城市污水处理厂的污泥中提取的细菌从气流中去除 NO。为了获得生物滴滤器的最佳运行条件,设计了正交实验(L9(3(4)))。结果表明,进气中的氧浓度是生物滴滤器的最重要因素,对系统有显著的负面影响。生物滴滤器的最佳条件为:温度 40°C、pH 值 8.0、循环水中化学需氧量为 165mg/L,系统中无氧气。通过 DNA 测序技术对细菌样本进行检测,结果显示其与假单胞菌属(Pseudomonas mendocina)的相似度为 93%-98%。此外,全基因测序结果表明该菌是一个全新的菌株,并将其命名为 P. mendocina DLHK。该菌株可以将硝酸盐转化为有机氮。这一结果表明该系统存在同化氮的过程。通过同位素实验分析,发现了两种中间产物((15)NO 和 (15)N2O)。结果表明生物滴滤器具有去除 NO 的反硝化功能和能力。

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