Bogner J., Pipatti R., Hashimoto S., et al. Mitigation of global greenhouse gas emissions from waste: Conlusions and strategies from the intergovernmental panel on climate change(IPCC) fourth assessment report. Waste Management & Research, 2008,26(1):11-32
[2]
耿军军,王亚宜,张兆祥,等.污水生物脱氮革新工艺中强温室气体N2O的产生及微观机理.环境科学学报,2010,30(9):1729-1738 Geng J. J.,Wang Y. Y.,Zhang Z. X.,et al. N2O pruduction and mechanism in recently developed biological nitrogen removal process. Acta Scientiae Circumstantiae,2010,30(9):1729-1738(in Chinese)
[3]
张静蓉,王淑莹,尚会来,等.污水短程硝化反硝化和同步硝化反硝化生物脱氮中N2O释放量及控制策略.环境科学,2009,30(12):3624-3629 Zhang J. R., Wang S. Y., Shang H. L., Peng Y. Z., et al. N2O Emission and control in shortcut nitrification and denitrification and stimultaneous nitrification and denitrification biological nitrogen removal systems.Enviromental Science, 2009,30(12):3624-3629(in Chinese)
[4]
吕锡武,稻森悠平,水落元之.同步硝化反硝化脱氮及处理过程中的N2O的控制研究.东南大学学报,2001,31(1):95-99 Lu X. W., Yuhei Inamori, Motoyuki Mizuochi. Nitrogen removal by simutltaneous nitrification and denitrification for control of N2O emission. Journal of Southeast University, 2001,31(1):95-99(in Chinese)
[5]
Khalil M. A. K., Rasmussen K. A. The global sources of nitrous oxide.Geophys. Res., 1992,91(13):14651-14660
[6]
Balmelle B., Nguyen K. M., Capdeville B., et al. Study of factors controlling nitrite build-up in biological processes for water nitrification. Water Science and Technology, 1992,26(5-6):1017-1025
[7]
Ford D. L.,Churchwell R. L.,Kachitick J. W.,et al.Comprehensive analysis of nitrification of chemical processing wastewaters. Journal of Water Pollution Control Federation,1995,52(11):2726-2736
[8]
高大文,彭永臻,王淑莹.短程硝化生物脱氮工艺的稳定性.环境科学,2005,26(1):63-65 Gao D. W., Peng Y. Z., Wang S. Y. Stability of shortcut nitrification-denitrification. Enviromental Science, 2005,26(1):63-65(in Chinese)
[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]
Wu J., Zhang J., Jia W., et al.Impact of COD/N ratio on nitrous oxide emission from microcosm wetlands and their performance in removing nitrogen from wastewater. Bioresource Technology, 2009,100(12):2910-2917
[11]
李一冉,张建,胡振,等.以化学抑制法研究污水生物处理过程中N2O的释放源.中国环境科学,2011,31(9):1438-1443 Li Y. R., Zhang J., Hu Z., et al. A study on the source of the emitted N2O during the biological wastewater treatment by the use of inhibitors. China Enviromental Science, 2011,31(9):1438-1433(in Chinese)
[12]
罗远玲,杨朝晖,徐铮勇,等.亚硝化颗粒污泥对温度变化的响应特性研究.环境科学, 2012,33(2):511-517 Luo Y. L., Yang Z. H., Xu Z. Y., et al.Effect and Temperature on the response characteristics of shortcut nitrification granular sludge.Enviromental Science, 2012,33(2):511-517(in Chinese)
[13]
Dytezaka M. A., Londryb K. L., Oleszkiewiez J. A. Activated sludge operational regime has significant impact on the type of nityifying community and its nitrification rates. Water Research, 2008,42(8-9):2320-2328
[14]
汪惠珍,李颖.生物脱氮工艺的新发展—半硝化和厌氧氨氧化.水处理技术,2002,28(5):308-310 Wang H. Z., Li Y. Advances in biological nitrogen removal process-partial nitrification and anammox. Technology of Water Treatment, 2002,28(5): 308-310(in Chinese)
[15]
Sang-Wan Kim, Morio Miyahara, Shinya Fushinobu, et al. Nitrous oxide emission from nitrifying activated sludge dependent on denitrification by ammonia-oxidizing bacteria. Bioresource Technology, 2010,101(11):3958-3963