You Qing-Guo, Wang Jian-Hui, Qi Gao-Xiang, Zhou Yue-Ming, Guo Zhi-Wei, Shen Yu, Gao Xu
National Research Base of Intelligent Manufacturing Service, Chongqing Technology and Business University Chongqing 400067 China
Chongqing South-to-Thais Environmental Protection Technology Research Institute Co., Ltd. Chongqing 400069 China.
RSC Adv. 2020 Mar 27;10(21):12554-12572. doi: 10.1039/d0ra00001a. eCollection 2020 Mar 24.
As a new wastewater biological nitrogen removal process, anammox and partial denitrification coupling not only plays a significant role in the nitrogen cycle, but also holds high engineering application value. Because anammox and some denitrifying bacteria are coupled under harsh living conditions, certain operating conditions and mechanisms of the coupling process are not clear; thus, it is more difficult to control the process, which is why the process has not been widely applied. This paper analyzes the research focusing on the coupling process in recent years, including anammox and partial denitrification coupling process inhibitors such as nitrogen (NH , NO ), organics (toxic and non-toxic organics), and salts. The mechanism of substrate removal in anammox and partial denitrification coupling nitrogen removal is described in detail. Due to the differences in process methods, experimental conditions, and sludge choices between the rapid start-up and stable operation stages of the reactor, there are significant differences in substrate inhibition. Multiple process parameters (such as pH, temperature, dissolved oxygen, redox potential, carbon-to-nitrogen ratio, and sludge) can be adjusted to improve the coupling of anammox and partial denitrification to modify nitrogen removal performance.
作为一种新型的废水生物脱氮工艺,厌氧氨氧化与部分反硝化耦合不仅在氮循环中发挥着重要作用,而且具有很高的工程应用价值。由于厌氧氨氧化与一些反硝化细菌是在苛刻的生存条件下耦合的,耦合过程的某些运行条件和机制尚不清楚;因此,该过程更难控制,这就是该工艺尚未得到广泛应用的原因。本文分析了近年来针对耦合过程的研究,包括厌氧氨氧化与部分反硝化耦合过程中的抑制剂,如氮(NH 、NO )、有机物(有毒和无毒有机物)和盐类。详细描述了厌氧氨氧化与部分反硝化耦合脱氮过程中底物去除的机制。由于反应器快速启动阶段和稳定运行阶段在工艺方法、实验条件和污泥选择上存在差异,底物抑制也存在显著差异。可以调整多个工艺参数(如pH值、温度、溶解氧氧化还原电位、碳氮比和污泥等)来改善厌氧氨氧化与部分反硝化的耦合,从而改善脱氮性能。