影响厌氧氨氧化与甲烷化反硝化耦合的因素  被引量:13

Factors Affecting the Integration of Methanogenesis with Simultaneous Anaerobic Ammonium Oxidation and Denitrification

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作  者:祖波[1] 张代钧[1,2] 张萍[1] 白玉华[1] 

机构地区:[1]重庆大学环境科学系 [2]西南资源开发及环境灾害控制工程教育部重点实验室,重庆400030

出  处:《应用与环境生物学报》2007年第3期438-442,共5页Chinese Journal of Applied and Environmental Biology

基  金:国家自然科学基金(No.50378094);重庆大学研究生科技创新基金创新项目资助~~

摘  要:氨氮、氮氧化物对产甲烷菌有一定的抑制作用,但可以通过驯化去除毒性.亚硝酸盐在厌氧氨氧化菌作用下与氨发生厌氧氨氧化反应.虽然厌氧氨氧化菌是自养菌,但具有异养代谢能力,并且NO2可提高厌氧氨氧化菌的活性.因此,通过特殊的反应器技术,将厌氧氨氧化菌与甲烷菌、反硝化菌复合在一个有利的微生态环境中,充分发挥它们之间的协同耦合作用,把有机物转化为清洁能源又同时脱氮,是极有前景的废水厌氧(缺氧)处理研究新方向.Ammonium nitrogen and nitrogen oxides are toxic to methanogeneic bacteria, however, their toxicities can be decreased through domestication. In the process of anaerobic ammonium oxidation, ammonium is oxidized to dinitrogen gas with nitrite as the electron acceptor under anoxic conditions. Although anaerobic ammonium oxidation bacteria have been described as obligate chemolithoautotrophs, they can use organic compounds as a supplementary carbon source. Furthermore, NO2 can increase the activity of anaerobic ammonium oxidation bacteria. It is very exciting to integrate methanogenesis with simultaneous anaerobic ammonium oxidation and denitrification in their preferred micro-ecological symbiosis environment by using special reactors. It could change the organic compounds into a clean energy source, and at the same time remove nitrogen in wastewater treatment. Tab 1, Ref 31

关 键 词:厌氧氨氧化 甲烷化 反硝化 耦合 氮氧化物 

分 类 号:X703[环境科学与工程—环境工程]

 

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