[1] Mishima K., Nakamura M.Self-immobilization of aerobic activated sludge: A pilot study of the aerobic upflow sludge blanket process in municipal sewage treatment. Water Science and Technology, 1991,23(1):981-990
[2] Van Benthum W. A. J., Garrido-Fernandez J. M., Tijhuis L., et al. Formation and detachment of biofilms and granules in a nitrifying biofilm airlift suspension reactor. Biotechnol.Prog., 1996,12(6):764-772
[3] Beun J. J., Hendriks A., Van Loosdrecht M. C. M., et al.Aerobic granulation in a sequencing batch reactor. J. Wat. Res., 1999,33(10):2283-2290
[4] Peng Dangcong, Nicolas Bernet, Jean-philippe Delgenesi,et al. Aerobic granular sludge: A case report. Wat. Res., 1999,33(3):890-893
[5] Tay J. H., Liu Q. S., Liu Y. Microscopic observation of aerobic granulation in sequential aerobic sludge blanket reactor. Journal of Applied Microbiology,2001,91(1):168-175
[6] Tay J. H., Liu Q. S., Liu Y. Aerobic granulation in sequential sludge blanket reactor. Water Science and Technology, 2002,46(4-5):13-18
[7] Schwarzenbeck N., Erley R., Wilderer P. A. Aerobic granular sludge in an SBR-system treating wastewater rich in particulate matter. Water Sci. and Technol.,2004b,49(11-12):21-46
[8] Li Anjie, Li Xiaoyan, Yu Hanqing. Granular activated carbon for aerobic sludge granulation in a bioreactor with a low-strength wastewater influent. Separation and Purification Technology, 2011,80(29):276-283
[9] Chen Yao, Jiang Wenju, Liang David Tee, et al. Aerobic granulation under the combined hydraulic and loading selection pressures. Bioresource Technology, 2008,99(16):7444-7449
[10] McSwain B. S., Irvine R. L., Wilderer P. A. The influence of settling time on the formation of aerobic granules. Water Sci. and Technol., 2004,50(10):195-202
[11] Liu Y., Tay J. H. The essential role of hydrodynamic shear force in the formation of biofilm and granular sludge. Water Res., 2002,36(7):1653-1665
[12] APHA. Standard Methods for Examination of Water and Wastewater(20th ed). American Public Health Association: Washington, DC,USA, 1998
[13] Frolund B., Palmigren R., Keidin G. K., et al. Extraction of extracellular polymer from activated sludge using a cation exchange resin. Water Res., 1996,30(8):1749-1758
[14] Tay J. H.,Liu Q. S., Liu Y.The role of cellular polysaccharides in the formation and stability of aerobic granules. Lett. Appl. Microbiol., 2001,33(3):222-226
[15] Morgenroth E., Sherden T., vanloosdrecht M. C. M., et al. Aerobic granular sludge in a sequencing batch reactor. Wat. Res.,1997,31(12):3191-3194
[16] Beun J. J., van Loosdrecht M. C. M., Heijnen J. J. Aerobic granulation in a sequencing batch airlift reactor. Water Res., 2002,36(3):702-712
[17] Moy B. Y. P., Tay J. H., Toh S. K., et al. High organic loading influences the physical characteristics of aerobic sludge granules. Letters in Applied Microbiology, 2002, 34(6):407-412
[18] Hu Linlin, Wang Jianlong, Wen Xianghua, et al. The formation and characteristics of aerobic granules in sequencing batch reactor (SBR) by seeding anaerobic granules. Process Biochemistry, 2005,40(1):5-11
[19] Qin Lei, Liu Yu, Tay Joo-Hwa. Effect of settling time on aerobic granulation in sequencing batch reactor. Biochemical Engineering Journal, 2004,21(1):47-52
[20] Tay J. H., Liu Q. S., Liu Y. The effects of shear force on the formation, structure and metabolism of aerobic granules.Appl.Microbiol.Biotechnol.,2001,57(1-2):227-233
[21] Liu Y., Xu H. L., Yang S. F., et al. The mechanisms and models for anaerobic granulation in upflow anaerobic sludge blanket reactor. Water Res., 2003,37(3):661-673
[22] Schwarzenbeck N., Erley R., Wilderer P. A. Aerobic granular sludge in an SBR-system treating wastewater rich in particulate matter. Water Sci. and Technol., 2004,49(11-12):41-46