Martins A.M.,Paqilla K.,Heijnen J.J., et al. Filamentous bulking sludge—A critical review. Water Research,2004, 38(4): 793-817
[2]
周利,彭永臻,高春娣,等. 丝状菌污泥膨胀的影响因素控制. 环境科学进展,1999,7(1): 88-93 Zhou L.,Peng Y. Z.,Gao C. D,et al.The Factors of effects on filamentous bulking and the control of filamentous bulking.Advances in Environmental Science,1999,7(1): 88-93(in Chinese)
[3]
巫晶晶,陈素艳,邓清莲,等. 污泥膨胀的诱因及控制措施. 净水技术,2010,25(1): 49-52 Wu J. J., Chen S. Y., Deng Q. L., et al. The reasons for sludge bulking and some available measures.Water Purification Technology,2006,25(1): 49-52(in Chinese)
[4]
王荣昌,文湘华,钱易. 生物膜反应器中好氧颗粒污泥形成机理. 中国给水排水,2004,20(3): 5-8 Wang R. C.,Wen X. H.,Qian Y. Formation mechanism of granular sludge in suspended carrier biofilm reactor. China Water & Wastewater,2004,20(3): 5-8(in Chinese)
[5]
谭险夷,袁兴中,曾光明,等. 丝状菌对生物淋滤去除底泥中重金属的促进作用. 环境工程学报,2010,4(12): 2853-2859 Tan X.Y.,Yuan X.Y.,Zeng G. M.,et al. Promotion effect of filamentous bacteria on removal of heavymetals during bioleaching from contam inated sediment. Chinese Journal of Environmental Engineering,2010,4(12): 2853-2859(in Chinese)
[6]
Garcia-Ochoa F.,Gomez E.Bioreactor scale-up and oxygen transfer rate in microbial processess:An overview. Biotechnology Advances,2009,27(2): 153-176
[7]
郝晓地,朱景义,曹秀芹. 污泥膨胀形成机理及控制措施研究现状和进展. 环境污染治理技术与设备,2006,7(5):1-9 Hao X. D.,Zhu J. Y.,Cao X. Q. Situation and development of bulking sludge study:General theories and controlmeasures. Techniques and Equipment for Environmental Pollution Control,2006,7(5):1-9(in Chinese)
[8]
崔和平,钟艳萍. 丝状菌污泥膨胀的原因及其控制方法. 中国给水排水,2004,20(6): 99-101 Cui H. P.,Zhong Y. P.The cause of the expansion of sludge filamentous bacteria and its control method.China Water & Wastewater,2004,20(6): 99-101(in Chinese)
[9]
Goldwyn P.L.,Saseetharan M.K.,Jayanthi J. Effect of chlorine in controlling the filamentous bulking in dairy activated sludgeand its settling characteristics.Journal of Environment Science and Engineering,2010,52(3):205-212
[10]
李志华,刘芳,王晓昌. 影响微生物聚集体的聚集度的因素分析. 环境科学学报,2010,30(3):456-462 Li Z. H.,Liu F.,Wang X. C. Analysis of the factors that influence the aggregation-degree of microbial aggregates in sludge. Acta Scientiae Cirumstantiae,2010,30(3):456-462(in Chinese)
[11]
Frolund B.,Palmgren R.,Keiding K., et.al.Extraction of extracellular polymers fromactivated sludge using a cation exchange resins.Water Research,1996,30(8):1749-1758
[12]
Reddy C. A.,Beveridge T.J.Methods for general and molecular bacteriology.(3rd).Washington DC:ASM Press,2007
[13]
Frolund B.,Griebe T.,Nielsen P. H.Enzymatic activity in the activated-sludge floc matrix.Applied Microbiology and Biotechnology,1995,43(4):755-761
[14]
屠唯华,刘媛. 反硝化控制丝状菌膨胀的研究. 山西能源与节能,2007,(3): 34-37 Tu W. H.,Liu Y.The investigation of controlling filamentous sludge bulking by denitrification.Shanxi Energy and Conser Vation,2007,(3): 34-37(in Chinese)
[15]
李志华,孙玮,姬晓琴,等.丝状菌污泥致密过程的强化条件研究. 环境科学,2012,33(2): 505-510 Li Z. H.,Sun W.,Ji X. Q.,et al. Investigation on enhanced conditions for the densification of filamentous sludge.Environmental Science,2012,33(2): 505-510(in Chinese)
[16]
Jenkins D.,Richard M. G.,Daigger G. T. Manual on the Causes and Control of Activated Sludge Bulking,Foaming,and Other Solids Separation Problems. (3rd).London:Intl Water Assn,2004