, Blk 6, 41 Tiang Jia Xian, Suzhou, 215000, Jiangsu Province, China.
Department of Biotechnology, Delft University of Technology, Van der Maasweg 9, 2629 HZ, Delft, The Netherlands.
Appl Microbiol Biotechnol. 2017 Feb;101(4):1365-1383. doi: 10.1007/s00253-016-8058-7. Epub 2017 Jan 13.
Driven by energy neutral/positive of wastewater treatment plants, significant efforts have been made on the research and development of mainstream partial nitritation and anaerobic ammonium oxidation (anammox) (PN/A) (deammonification) process since the early 2010s. To date, feasibility of mainstream PN/A process has been demonstrated and proven by experimental results at various scales although with the low loading rates and elevated nitrogen concentration in the effluent at low temperatures (15-10 °C). This review paper provides an overview of the current state of research and development of mainstream PN/A process and critically analyzes the bottlenecks for its full-scale application. The paper discusses the following: (i) the current status of research and development of mainstream PN/A process; (ii) the interactions among aerobic ammonium-oxidizing bacteria, aerobic nitrite-oxidizing bacteria, anammox bacteria, and heterotrophic bacteria; (iii) the suppression of aerobic nitrite-oxidizing bacteria; (iv) process and bioreactors; and (v) suggested further studies including efficient and robust carbon concentrating pretreatment, deepening of understanding competition between autotrophic nitrogen-converting organisms, intensification of biofilm anammox activity, reactor design, and final polishing.
受污水处理厂能量平衡/正能量的驱动,自 21 世纪 10 年代初以来,人们在主流部分亚硝化和厌氧氨氧化(PN/A)(脱氨)工艺的研究和开发方面做出了巨大努力。迄今为止,尽管在低温(15-10°C)下,主流 PN/A 工艺的负荷率较低,出水氮浓度较高,但通过各种规模的实验结果已经证明了其可行性。本文综述了主流 PN/A 工艺的研究与开发现状,并对其大规模应用的瓶颈进行了批判性分析。本文讨论了以下几个方面:(i)主流 PN/A 工艺的研究与开发现状;(ii)好氧氨氧化菌、好氧亚硝化菌、厌氧氨氧化菌和异养菌之间的相互作用;(iii)好氧亚硝化菌的抑制;(iv)工艺和生物反应器;(v)建议进一步研究包括高效和稳健的碳浓缩预处理、深化对自养氮转化生物之间竞争的理解、强化生物膜厌氧氨氧化活性、反应器设计和最终抛光。