[1] Maria J., Lopez de Alda, Damia B. Review of analytical methods for the determination of estrogens and progestogens in waste waters. Fresenius Journal of Analtical Chemistry, 2001, 371(3): 437-447
[2] Sonnenschein C., Soto A.M. An updated review of environmental estrogen and androgen mimics and antagonists. Steroid Biochemistry and Molecular Biology, 1998, 65(1-6): 143-150
[3] 李剑, 徐飞, 李少旦, 等. 环境雌激素研究进展. 现代预防医学, 2006, 33(8): 1355-1359 Li Jian, Xu Fei, Li Shaodan, et al. Advances in research of environmental estrogens. Modern Preventive Medicine, 2006, 33(8): 1355-1359(in Chinese)
[4] Kirk L. A., Tyler C. R., Lye C. M., et al. Changes in estrogenic and androgenic activities at different stages of treatment in wastewater treatment works. Environmental Toxicology and Chemistry, 2002, 21(5): 972-979
[5] Johnson A.C., Sumpter J.P. Removal of endocrine disrupting chemicals in activated sludge treatment works. Environmental Science & Technology, 2001, 35(24): 4697-4703
[6] Servos M.R., Bennie D.T., Burnison B.K., et al. Distribution of estrogens, 17β-estradiol and estrone, in Canadian municipal wastewater treatment plants. Science of the Total Environment, 2005, 336(1-3): 155-170
[7] Andersen H., Siegrist H., Halling-Srensen B., et al. Fate of estrogens in a municipal sewage treatment plant. Environmental Science & Technology, 2003, 37(18): 4021-4026
[8] Khanal S.K., Xie B., Thompson M.L., et al. Fate, transport, and biodegradation of natural estrogens in the environment and engineered systems. Environmental Science & Technology, 2006, 40(21): 6537-6546
[9] 国家环境保护总局.水和废水监测分析方法(第4版). 北京:中国环境科学出版社, 2002
[10] 甘晓明, 邢绍文, 徐高田,等. 倒置A2/O污水处理工艺的特点及应用实例. 环境工程学报, 2007, 1(6): 69-71 Gan Xiaoming, Xing Shaowen, Xu Gaotian, et al. Characteristics and application of reversed A2/O process. Chinese Journal of Environmental Engineering, 2007, 1(6): 69-71 (in Chinese)
[11] Ahn J., Daidou T., Tsuneda S., et al. Metabolic behavior of denitrifying phosphate-accumulating organisms under nitrate and nitrite electron acceptor conditions. Journal of Bioscience and Bioengineering, 2001, 92(5): 442-446
[12] 吴昌永, 彭永臻, 彭轶, 等. A2O工艺中的反硝化除磷及其强化. 哈尔滨工业大学学报, 2009, 41(8): 46-49 Wu Changyong, Peng Yongzhen, Peng Yi, et al. Characteristics of denitrifying phosphorus removal in A2O process. Journal of Harbin Institute of Technology, 2009, 41(8): 46-49 (in Chinese)
[13] Ge Shijian, Peng Yongzhen, Wang Shuying,et al. Enhanced nutrient removal in a modified step feed process treating municipal wastewater with different inflow distribution ratios and nutrient ratios. Bioresource Technology, 2010, 101(23): 9012-9019
[14] Ternes T.A., Stumpf M., Mueller J.,et al. Behavior and occurrence of estrogens in municipal sewage treatment plants-I.Investigations in Germany, Canada and Brazil. Science of the Total Environment, 1999a, 225(1-2): 81-90
[15] Andersen H.R., Hansen M., Kjolholt J.,et al. Assessment of the importance of sorption for steroid estrogens removal during activated sludge treatment. Chemosphere, 2005, 61(1): 139-146
[16] Shi J., Fujisawa S., Nakai S.,et al. Biodegradation of natural and synthetic estrogens by nitrifying activated sludge and ammonia-oxidizing bacterium Nitrosomonas europaea. Water Research, 2004, 38(9): 2323-2330
[17] Joss A., Andersen H., Ternes T., et al. Removal of Estrogens in municipal wastewater treatment under aerobic and anaerobic conditions: Consequences for plant optimization. Environmental Science & Technology, 2004, 38(11): 3047-3055
[18] Ternes T.A., Kreckel P., Mueller J. Behaviour and occurrence of estrogens in municipal sewage treatment plants—II. Aerobic batch experiments with activated sludge. Science of the Total Environment, 1999b, 225(1-2): 91-99
[19] Racz L.A., Goel R.K. Fate and removal of estrogens in municipal wastewater. Journal of Environmental Monitoring, 2010, 12(1): 58-70
[20] 张照韩, 冯玉杰, 苏惠, 等. AO与AAO工艺去除雌激素效能对比及分析. 环境科学学报, 2011, 31(1): 26-32 Zhaohan Zhang, Yujie Feng, Su Hui, et al. Comparison and analysis of estrogen removal efficiency in AO and AAO processes. Acta Scientiae Circumstantiae, 2011, 31(1): 26-32(in Chinese)
[21] Shi J.H., Suzuki Y., Lee B.C.,et al. Isolation and characterization of the ethynylestradiol biodegradation microorganism Fusarium proliferatum strain HNS-1. Water Science and Technology, 2002, 45 (12): 175-179
[22] Haiyan R., Shulan J., Naeem ud din Ahman, et al. Degradation characteristics and metabolic pathway of 17α-ethynylestradiol by Sphingobacterium sp. JCR5. Chemosphere, 2007, 66(2): 340-346
[23] Athanasios S. Stasinakis, Constantinos I. Kordoutis. Removal of selected endocrine disrupters in activated sludge systems: Effect of sludge retention time on their sorption and biodegradation. Bioresource Technology, 2010, 101(7): 2090-2095