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厌氧氨氧化菌脱氮机理及其在污水处理中的应用
引用本文:王惠,刘研萍,陶莹,刘新春.厌氧氨氧化菌脱氮机理及其在污水处理中的应用[J].生态学报,2011,31(7):2019-2028.
作者姓名:王惠  刘研萍  陶莹  刘新春
作者单位:1. 中国科学院研究生院资源与环境学院,北京,100049
2. 北京化工大学环境科学与工程系,北京,100029
3. 河南源通环保工程有限公司,开封,475000
基金项目:中国科学院知识创新项目,国家科技支撑计划
摘    要:厌氧氨氧化细菌(anammox)可以将亚硝酸盐和氨氮转化为氮气从而缩短氨氮转化的过程,它已经成为新型生物污水脱氮技术研究的热点之一。当前,有关厌氧氨氧化菌特有的生理结构特点、种群分类及其功能酶等方面的研究取得了一定突破,为实现其工业应用奠定了良好的理论基础;同时分子生物学技术在厌氧氨氧化细菌种群分布、群落多样性及其共生关系等方面的应用也大大促进了污水生物脱氮技术的革新和进步。总结了厌氧氨氧化菌主要的生理生化特点、细胞结构特点、脱氮机理、污水处理体系中的应用以及分子生物学方法对污水处理体系中厌氧氨氧化菌种群分析的研究现状,并指出未来anammox细菌在生物特性及在污水脱氮处理实际应用的研究中的热点问题。生物特性方面的主要研究热点有:(1)anammox细菌除厌氧氨氧化作用外,其它新陈代谢途径有待探索;(2)anammox细菌在不同环境中分布的倾向性问题;(3)新型anammox细菌的确定。污水处理的实际应用方面的主要研究热点有:(1)anammox污泥的快速高效富集问题;(2)设计高特异性引物;(3)anammox细菌和其他微生物的共生关系。

关 键 词:厌氧氨氧化菌  生理生化特点  污水处理工艺  分子生物学方法
收稿时间:3/10/2010 4:08:53 AM
修稿时间:6/2/2010 12:00:00 AM

The biochemical mechanism and application of anammox in the wastewater treatment process
WANG Hui,LIU Yanping,TAO Ying and LIU Xinchun.The biochemical mechanism and application of anammox in the wastewater treatment process[J].Acta Ecologica Sinica,2011,31(7):2019-2028.
Authors:WANG Hui  LIU Yanping  TAO Ying and LIU Xinchun
Institution:College of Resources and Environment, Graduate University Chinese Academy of Sciences,College of Resources and Environment, Graduate University Chinese Academy of Sciences
Abstract:Anaerobic ammonium-oxidation (anammox) with nitrite as an electron acceptor has been discovered as both a completely different pathway of the nitrogen cycle and a new cost-effective method for removal of ammonium from wastewater. Recently, the study of the peculiar biochemical mechanism, special structure and function of anammoxosome, functional enzymes and related genes, microbial ecological biotope, and diversity of the anaerobic ammonium oxidation have obtained great improvement, which provided theoretical foundation for the application of anammox bacteria. Especially in the wastewater treatment engineering, the anammox process has become the hotspot in research of new biological N-removal technique for wastewater treatment with its advantages of abbreviation on the N-removal process and low material and energy consumption. Deeper understanding in their species diversity, distribution in the sludge, and qualitative and quantitive relationships with other bacterial species will significantly accelerate the renovation of N-removal technique for wastewater treatment. A summary on the advances in processes on the main physiology characteristics, structural characteristics, biochemical mechanism, applications in the wastewater systems and species analysis of anammox in the engineering process by molecular biological methods are all presented in this paper. Firstly, the anammox reaction takes place inside the anammoxosome: an intracytoplasmic compartment bounded by a single ladderane lipid-containing membrane, and the ladderane membrane lipids have so far been found only in the anammox bacteria. Secondly, all the anammox bacteria are affiliated within 85% sequence similarity of 16S rRNA genes in the branch of Planctomycetes and different levels of the anammox bacterial diversity and distribution are found in various ecosystems. Thirdly, the nitrite reductase, hydrazine hydrolase, and hydrazine oxidizing enzyme are the essentially functional enzymes. Fourthly, the discovery of anammox bacteria and its anaerobic metabolism of ammonia oxidizers open up new possibilities for nitrogen removal from wastewater, which made the paradigm that the only way to biologically convert wastewater ammonium to dinitrogen gas necessitates the complete oxidation to nitrate followed by heterotrophic denitrication become obsolete . Finally, the implementation of the molecular biological methods in the ANAMMOX-related wastewater treatment systems has broadened our information towards the anammox bacteria. The research hotspots of anammox bacteria in both biochemical characteristics and application in wastewater treatment systems are also summarized here. On the aspect of biochemical characteristics, the issues addressed are: (1) some new metabolic reactions besides the anammox reaction have been found, while their theories and reasons were still unclear; (2) the distribution inclination of anammox bacteria in different ecosystems seems to provide some rule which is still unidentified; (3) new kinds of anammox bacteria wait for discovery to expend the pholygenetic relationship, all of which would increase the genetic and ecological spectrum of anammox bacteria in the nature. In terms of the wastewater treatment application, the following issues are dealt with: (1) proper designs and methods for higher efficiency in the enrichment and stabilization of anammox bacteria are required in order to shorten the start-up process of the ANAMMOX-like wastewater treatment plants; (2) more primers or probes with high specificity to anammox bacteria are also needed to guarantee the precision and credibility of research study; (3) the coexistence relationship of anammox and other groups of bacteria, which are still not confirmed , would facilitate the exploration of new anammox metabolism and characteristics, all of which would advance the actual application of anammox bacteria in the wastewater treatment plants.
Keywords:Anammox  biochemical characteristics  wastewater treatment  molecular biological methods
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