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首页> 外文期刊>Recent Patents on Biotechnology >Treatment of Effluents Polluted by Nitrogen with New Biological Technologies Based on Autotrophic Nitrification-Denitrification Processes
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Treatment of Effluents Polluted by Nitrogen with New Biological Technologies Based on Autotrophic Nitrification-Denitrification Processes

机译:自养硝化-反硝化新生物技术处理氮污染的废水

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In recent years, various technologies have been developed for the removal of nitrogen from wastewater, that is rich in nitrogen but poor in organic carbon, such as the effluents from anaerobic digesters and from certain industries. These technologies have resulted in several patents. The core of these technologies is some of the processes and patents described in this paper: Aerobic denitrification, Sharon, Anammox, OLAND, CANON, NO_(x) process, DEMON. More specifically, one of the first innovative options described for removing nitrogen include partial nitrification under aerobic conditions (partial Sharon process) followed by autotrophic anaerobic oxidation (Anammox process). The partial Sharon-Anammox process can be performed under alternating oxic and anoxic conditions in the same bioreactor or in two steps in two separate bioreactors. This overview focuses on the technical and biological aspects of these new types of treatment system, and compares them to other technologies. Given the fact that nitrification is a sensitive process, special attention is paid to conditions such as temperature, dissolved oxygen, hydraulic retention time, free ammonia, nitrous acid concentration, and pH. A discussion of the pros and cons of such treatment systems is also included since autotrophic nitrogen removal has advantages as well as drawbacks. The paper concludes with a discussion of future research that could improve these systems by enhancing performance and reducing costs.
机译:近年来,已经开发了各种技术来去除废水中的氮,废水中的氮含量很高而有机碳含量却很低,例如厌氧消化池和某些行业的废水。这些技术已获得多项专利。这些技术的核心是本文描述的一些过程和专利:好氧反硝化,沙龙,阿纳莫克斯,厄兰岛,佳能,NO_(x)过程,恶魔。更具体地说,描述的用于脱氮的第一个创新选择之一是在好氧条件下进行部分硝化(部分沙龙工艺),然后进行自养厌氧氧化(Anammox工艺)。可以在相同的生物反应器中交替进行有氧和无氧条件下,或在两个单独的生物反应器中分两步进行Sharon-Anammox部分工艺。本概述重点介绍这些新型治疗系统的技术和生物学方面,并将它们与其他技术进行比较。考虑到硝化是一个敏感的过程,应特别注意温度,溶解氧,水力停留时间,游离氨,亚硝酸浓度和pH等条件。由于自养氮的去除既有优点也有缺点,因此也讨论了这种处理系统的优缺点。本文最后讨论了可以通过提高性能和降低成本来改善这些系统的未来研究。

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