[1] |
ZHAO Q L, KUGEL G. Thermopholic/mesophilic digestion of sewage sludge and organic waste[J]. Journal of Environment Science and Health, 1996, A31(9): 2211-2231.
|
[2] |
韩玮, 袁林江, 柴璐. 长污泥龄污水生物除磷系统的除磷效果[J]. 安全与环境学报, 2012, 12(5): 17-22. doi: 10.3969/j.issn.1009-6094.2012.05.004
|
[3] |
GE H Q, BATSTONE D J, KELLER J. Operating aerobic wastewater treatment at very short sludge ages enables treatment and energy recovery through anaerobic sludge digestion[J]. Water Research, 2013, 47(17): 6546-6557. doi: 10.1016/j.watres.2013.08.017
|
[4] |
戴晓虎. 城镇污水处理厂污泥稳定化处理的必要性和迫切性的思考[J]. 给水排水, 2017, 53(12): 1-5. doi: 10.3969/j.issn.1002-8471.2017.12.001
|
[5] |
LIU Y, TAY J H. Strategy for minimization of excess sludge production from the activated sludge process[J]. Biotechnology Advances, 2001, 19(2): 97-107. doi: 10.1016/S0734-9750(00)00066-5
|
[6] |
许劲, 孙俊贻. 生物除磷脱氮系统工程设计中的污泥龄[J]. 重庆建筑大学学报, 2005, 27(5): 83-86.
|
[7] |
许小平, 陶晓武, 杜敬, 等. 污泥龄对A2/O工艺脱氮除磷的影响分析[J]. 中国给水排水, 2013, 29(21): 69-71.
|
[8] |
BRDJANOVIC D, YAN LOOSDRECHT M C M, VERTEEG P, et al. Modeling COD, N and P removal in a full-scale WWTP Haarlem Waarderpolder[J]. Water Research, 2000, 34(3): 846-858. doi: 10.1016/S0043-1354(99)00219-5
|
[9] |
左宁, 吉芳英, 万小军, 等. 污泥龄对LSP&PNR污泥减量新工艺运行效能的影响[J]. 环境工程学报, 2008, 2(1): 105-109.
|
[10] |
LIU J J, YUAN Y, ZHANG Q, et al. Enhanced nitrogen and phosphorus removal from municipal wastewater in an anaerobic-aerobic-anoxic sequencing batch reactor with sludge fermentation products as carbon source[J]. Bioresource Technology, 2017, 244(1): 1158-1165.
|
[11] |
边德军. 微压内循环多生物相反应器研制及性能[D]. 长春: 东北师范大学, 2015.
|
[12] |
任庆凯. 微压内循环生物反应器的流场特性研究[D]. 长春: 东北师范大学, 2017.
|
[13] |
BIAN D J, ZHOU D D, HUO M X, et al. Improving oxygen dissolution and distribution in a bioreactor with enhanced simultaneous COD and nitrogen removal by simply introducing micro-pressure and swirl[J]. Applied Microbiology & Biotechnology, 2015, 99(20): 8741-8749.
|
[14] |
边德军, 沈国, 艾胜书, 等. 曝气量对微压内循环多生物相反应器同步脱氮除磷的影响[J]. 东北师范大学学报, 2019, 51(4): 152-159.
|
[15] |
REN Q K, YU Y, ZHU S Y, et al. Characterization of a novel micro-pressure swirl reactor for removal of chemical oxygen demand and total nitrogen from domestic wastewater at low temperature[J]. Biodegradation, 2017, 28(2/3): 145-157.
|
[16] |
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.
|
[17] |
詹咏, 张焕焕, 冯青青, 等. 不同泥龄对活性污泥絮凝特性的影响[J]. 环境工程学报, 2017, 11(11): 5836-5842. doi: 10.12030/j.cjee.201608073
|
[18] |
MOUSSA M S, HOOIJMANS C M, LUBBERDING H J, et al. Modelling nitrification, heterotrophic growth predation in activated sludge[J]. Water Research, 2005, 39(20): 5080-5098. doi: 10.1016/j.watres.2005.09.038
|
[19] |
陈滨, 许立群, 周鹏飞, 等. 低负荷状态下CAST工艺脱氮特性的研究[J]. 四川环境, 2010, 29(1): 12-16. doi: 10.3969/j.issn.1001-3644.2010.01.003
|
[20] |
徐宇峰. 低氧活性污泥法除污及污泥减量研究[D]. 重庆: 重庆大学, 2014.
|
[21] |
LIU S L, DAIGGER G T, LIU B T, et al. Enhanced performance of simultaneous carbon, nitrogen and phosphorus removal from municipal wastewater in an anaerobic-aerobic-anoxic sequencing batch reactor (AOA-SBR) system by alternating the cycle times[J]. Bioresource Technology, 2020, 301: 1-8.
|
[22] |
毕学军, 张波, 丁日堂, 等. 长期低负荷运行对污水生物除磷的影响[J]. 中国给水排水, 2002, 18(7): 83-85. doi: 10.3321/j.issn:1000-4602.2002.07.028
|