3[1]Arun V, Minp T and Matsuo T. Biological mechanisms of acetate uptake mediated by carbohydrate consumption in excess phosphorus removal systems.Wat Res, 1988, 22:565~570.
4[2]Smolders GJF, van Loosdrecht MCM and Heijnen JJ. Stoichiometric model of the aerobic metabolism of the biological phosphorus removal process.Biotechnol Bioengng, 1994, 44:837~848.
5[3]Smolders GJF, van der Meij J, van Loosdrecht MCM, et al. Model of the aerobic metabolism of the biological phosphorus removal process, stoichiometric and pH influence. Biotechnol Bioengng,1994, 43:461~470.
6[4]Henze M, Gujer W, Mino T, et al. IAWQ task group on mathematical modeling for design and operation of biological wastewater treatment processes, Activated sludge model No 2, Scientific and Technical Reports No 3 IAWQ, 1995, London.
7[5]Murnleitner E, Kuba T, van Loosdrecht MCM, et al. An integrated metabolic model for the aerobic and denitrifying biological phosphorus removal. J Environ Engng (ASCE), 1997, 56: 876~883.
8[6]Ternmink H, Petersen B, Isaacs S, et al. Recovery of biological phosphorus removal after periods of low organic loading. Wat Sci Technol, 1996, 34(1/2): 1 ~ 8.
9[7]Brdjanovic D, Slamet A, van Loosdrecht MCM, et al. Impact of excessive aeration on biological phosphorus removal from wastewater. Wat Res, 1998,32: 200~ 208.