[1] Bitton, Gabriel. Wastewater Microbiology. Wiley. Com, 2005.
[2] Andrew, D. (Ed.). Standard methods for the examination of water and wastewater. American Public Health Association, Washington DC, 20th Ed, 2005.
[3] Eckenfelder W. Wesley. Industrial Water Pollution Control 3ed. New York: McGraw- Hill;1999. p. 42.
[4] Haandel A.C. van and Lubbe J. G. M. van der, Handbook of Biological Wastewater Treatment; Design and Optimisation of Activated Sludge Systems, Second Edition, IWA Publishing; 2012.
[5] Paixa˜o, J.F., Nascimento, I.A., Pereira, S.A., Leite, M. B. L., Carvalho, G.C., Silveira Jr., J.S.C., Rebouc-as, M., Matias, G.R.A., Rodrigues, I.L.P., Estimating the gasoline components and formulations toxicity to microalgae (Tetraselmis chuii) and oyster (Crassostrea rhizophorae) embryos: an approach to minimize environmental pollution risk. Environ. Res. 2007; 103 (3):365–374.
[6] Di Trapani, D., Mannina, G., Torregrossa, M., Viviani, G., Comparison between hybrid moving bed biofilm reactor and activated sludge system: a pilot plant experiment. Water Sci. Technol. 2010; 61 (4), 891–902.
[7] Mulkerrins, D., Dobson, A. D. W., & Colleran, E. Parameters affecting biological phosphate removal from wastewaters, Environment International. 2004; 30(2), 249-259.
[8] Khali Aria F., Ayati B., Ganjdoust H., (2012) Comparison of conventional and packed-cage RBC in hydroquinone removal, Modares Civil Engineering Journal, 2012; 12(3): 11-20 (in Persian).
[9] Kermani, M., Bina, B., Movahedian, H., Amin, M. M., & Nikaein, M. Application of moving bed biofilm process for biological organics and nutrients removal from municipal wastewater, American Journal of Environmental Sciences. 2008; 4(6), 675.
[10] Tizghadam, M., Dagot, Ch., and Baudu, M. Wastewater treatment in a hybrid activated sludge bafaed reactor. J. of Hazardous Materials. 2008; 154, 550-557.
[11] Pastorelli, G., Canziani, R., Pedrazzi, L., & Rozzi, A. Phosphorus and nitrogen removal in moving-bed sequencing batch biofilm reactors, Water science and technology. 1999; 40(4), 169-176.
[12] Odegaard, H., Rusten, B., Westrum, T., A new moving bed biofilm reactor–application and results, Water Sci. Technol. 1994; 29, 157–165.
[13] Delnavaz M., Ayati B., Ganjidoust H., Treatment of wastewater containing aniline Using a moving bed biofilm reactor (MBBR), Journal of Water and Wastewater. 2008; 68(1): 9-18 (in Persian).
[14] Hosseini, S. H., & Borghei, S. M. The treatment of phenolic wastewater using a moving bed bio-reactor. Process Biochemistry. 2005; 40(3), 1027-1031.
[15] Rusten Bjørn, Eikebrokk Bjørnar, Ulgenes Yngve, Lygren Eivind, Design and operations of the Kaldnes moving bed biofilm reactors. Aquacultural Engineering. 2006; 34(3):322–331.
[16] Dong, Z., Lu, M., Huang, W., & Xu, X., Treatment of oilfield wastewater in moving bed biofilm reactors using a novel suspended ceramic biocarrier, Journal of hazardous materials, 2011; 196:123–30.
[17] Ayati, B., Ganjidoust, H., Mir Fattah, M., Degradation of aromatic compounds using moving bed biofilm reactor, Iranian Journal of Environmental Health Science & Engineering, 2007; 4(2):107-112 (in Persian).
[18] Delnavaz, M., Ayati, B., & Ganjidoust, H., Prediction of moving bed biofilm reactor (MBBR) performance for the treatment of aniline using artificial neural networks (ANN). Journal of hazardous materials, 2010; 179(1), 769-775.
[19] Schneider, E. E., Cerqueira, a C. F. P., & Dezotti, M., MBBR evaluation for oil refinery wastewater treatment, with post-ozonation and BAC, for wastewater reuse, Water Science and Technology: A journal of the International Association on Water Pollution Research, 2011; 63(1):143–148.
[20] Borghei M., Hasani A., Amani N., Javid A., Mathematical model of moving bed biofilm reactor (MBBR) in salty wastewater treatment, Environmental Science and Technology. 2005; Number 27.
[21] Delnavaz M., Treatment of wastewater containig aromatic amine compounds using moving bed biofilm reactor (MBBR), M.Sc. Thesis, Environmental Engineering Department, Civil and Environmental Engineering Faculty, Tarbiat Modares University, 2007 (in Persian).
[22] Chavan, A., and Mukherji, S. Treatment of hydrocarbon-rich wastewater using oil degrading bacteria and phototrophic microorganisms in rotating biological contactor: Effect of N:P ratio. J. of Hazardous Materials. 2008; 154, 63-72.
[23] Zolfaghari M., Alamzadeh I., Vosoughi M., Tafti N., Application of hybrid activated sludge reactor to improve activated sludge process for oily wastewater treatment, Journal of Water & Wastewater. 2013; 1: 43-52 (in Persian).
[24] Dale Van Stempvoort, Kevin Biggar., Potential for bioremediation of petroleum hydrocarbons in groundwater under cold climate conditions: A review, Cold Regions Science and Technology. 2008; 53:16–41.
[25] Sayyahzadeh A.H., Effect of natural adsorbents on total petroleum hydrocarbons (TPH) removal efficiency from wastewater using MBBR, Ph.D. Thesis, Environmental Engineering Department, Civil and Environmental Engineering Faculty, Tarbiat Modares University, 2014 (in Persian).
[26] Nayebi R., Acid dyes removal by the combination of stabilized nano TiO2 on concrete and biological processes, M.Sc. Thesis, Environmental Engineering, Tarbiat Modares University; 2011 (in Persian).
[27] Delnavaz M., Ayati B., Ganjidoust H., Reaction kinetics of aniline synthetic wastewater treatment by moving bed biofilm reactor, Iran. J. Health & Environ, 2009; 2(1):76-87 (in Persian).
[28] Borghei, S. M., Sharbatmaleki, M., Pourrezaie, P., & Borghei, G., Kinetics of organic removal in fixed-bed aerobic biological reactor, Bioresource Technology, 2008; 99(5):1118-1124.
[29] Dvořák, L., Lederer, T., Jirků, V., Masák, J., Novák, L., Removal of aniline, cyanides and Diphenylguanidine from industrial wastewater using a full-scale Moving Bed Biofilm Reactor, Process Biochemistry, 2013; 49(1), 102– 109.
[30] Sun, C., Leiknes, T., Weitzenböck, J., Thorstensen, B., Development of a biofilm-MBR for shipboard wastewater treatment: The effect of process configuration. Desalination, 2010; 250(2):745–75.