[1] 李安峰, 潘涛, 李箭. 某高校污水处理及再生回用工程[J]. 中国给水排水, 2013, 29(22): 127-129.
[2] 何钰, 肖肖, 唐颖等. 高等院校校区建设污水处理站的可行性研究[J]. 节能环保, 2013(3): 3-4.
[3] 张晓玮, 张磊, 刘春, 等. 臭氧微气泡曝气生物膜反应器深度处理校园污水运行性能[J]. 环境污染与防治, 2018, 40(7): 789-793.
[4] 张 皓, 李绍平, 李宗明, 等. 微氧水解酸化-SBR工艺处理校园生活污水的研究[J]. 绿色科技, 2019(22): 76-78. doi: 10.3969/j.issn.1674-9944.2019.14.027
[5] 吴子平, 王竹梅. 新型人工湿地用于校园生活污水强化氨氮、磷及有机物的去除[J]. 环境与发展, 2019(7): 115-117.
[6] 高廷耀, 顾国维, 周琪.水污染控制工程[M].北京: 高等教育出版社, 2007.
[7] RUIZ-MARTINEZA A, CLAROS J, SERRALTA J, et al. Modeling the decay of nitrite oxidizing bacteria under different reduction potential conditions[J]. Process Biochemistry, 2018, 71: 159-165. doi: 10.1016/j.procbio.2018.05.021
[8] LOPEZ C, PONS M, MORGENROTHA E. Endogenous processes during long-term starvation in activated sludge performing enhanced biological phosphorus removal[J]. Water Research, 2006, 40(8): 1519-1530. doi: 10.1016/j.watres.2006.01.040
[9] 国家环境保护总局. 水和废水监测分析方法[M]. 4版. 北京: 中国环境科学出版社, 2002.
[10] 常蝶, 彭党聪. 进水C/P比对EBPR反应器中高温聚磷菌除磷性能的影响[J]. 中国给水排水, 2019, 35(3): 83-86.
[11] AMANN R. In situ identification of microorganisms by whole cell hybridization with rRNA-targeted nucleic acid probes// AKKEMANS A, VAN ELSAS J, DE BRUIJN F. Molecular Microbial Ecology Manual. The Netherlands, Dordrecht: Kluwer Academic Publications, 1995.
[12] AMANN R, LUDWIG W, SCHLEIFER K H. Phylogenetic identification and in situ detection of individual microbial cells without cultivation[J]. Microbiol Review, 1995, 59: 143-169. doi: 10.1128/MMBR.59.1.143-169.1995
[13] SAUDERS A, OEHMEN A, BLACKALL L L, et al. The effect of GAOs (glycogen accumulating organisms) on anaerobic carbon requirements in full-scale Australian EBPR (enhanced biological phosphorus removal) plants[J]. Water Science and Technology, 2003, 47(11): 37-43. doi: 10.2166/wst.2003.0584
[14] JANSSEN P, MEINEMA K, VAN DER ROEST H. Biological Phosphorus Removal: Manual for Design and Operation[M]. London: IWA Publishing, 2008.
[15] NIELSEN P, DAIMS H, LEMMER H. FISH Handbook for Biological Wastewater Reatment[M]. London: IWA Publishing, 2009.
[16] HAO X D, WANG Q L, CAO Y L, et al. Evaluating sludge minimization caused by predation and viral infection based on the extended activated sludge model 2d[J]. Water Research, 2011, 45(16): 2416-2426.
[17] SIEGRIST H, BRUNNER I, KOCH G. Reduction of biomass decay rate under anoxic and anaerobic conditions[J]. Water Science and Technology, 1999, 39(1): 129-137. doi: 10.2166/wst.1999.0028
[18] SALEM S, MOUSSA M S, VAN LOOSDRECHT M C M. Determination of the decay rate of nitrifying bacteria[J]. Biotechnology and Bioengineering, 2006, 94(2): 252-262. doi: 10.1002/bit.20822
[19] MANSER R, GUJER W, SIEGRIST H. Decay processes of nitrifying bacteria in biological wastewater treatment systems[J]. Water Research, 2006, 40(12): 2416-2426. doi: 10.1016/j.watres.2006.04.019
[20] 杜兴治, 吴志超, 周振, 等. A2/O工艺重新启动试验的污泥活性恢复研究[J]. 环境污染与防治, 2009, 31(1): 69-73. doi: 10.3969/j.issn.1001-3865.2009.01.019