References
- Water Environment Federation (WEF), Biofilm Reactors:
Manual of Practice No. 35, McGraw-Hill, WEF Press, New York,
2010.
- C. Nicolella, M.C. van Loosdrecht, J.J. Heijnen, Wastewater
treatment with particulate biofilm reactors, J. Biotechnol., 80
(2000) 1–33.
- M. González-Brambila, F. López-Isunza, Comportamiento de
un reactor de biopelícula para tratamiento de agua residual a
diferentes velocidades de flujo (Membrane-attached biofilm
reactor behavior under different flow rate conditions in the
treatment of a synthetic wastewater), Rev. Mex. Ing. Chim., 3
(2008) 183–193.
- D.G. Najafpour, Biochemical engineering and biotechnology,
1st ed., Elsevier, Amsterdam, 2007.
- B. Arrojo, M. Figueroa, A. Mosquera-Corral, J.L. Campos, R.
Méndez, Influence of gas flow-induced shear stress on the
operation of the Anammox process in a SBR, Chemosphere, 72
(2008) 1687–1693.
- S. Chakraborty, E. Drioli, L. Giorno, Development of a two
separate phase submerged biocatalytic membrane reactor
for the production of fatty acids and glycerol from residual
vegetable oil streams, Biomass Bioenergy, 46 (2012) 574–583.
- B. Jajuee, A. Margaritis, B. Karamanev, M.A. Bergoug, Kinetics
of biodegradation of p-xylene and naphthalene and oxygen
transfer in a novel airlift immobilized bioreactor, Biotechnol.
Bioeng., 96 (2007) 232–243.
- I. Hutten, Handbook of Nonwoven Filter Media, 1st Ed.,
Elsevier, Oxford, 2007.
- Y.H. Lin, Modeling the performance of biodegradation of
textile wastewater using polyurethane foam sponge cube as a
supporting medium, Water Sci. Technol., 62 (2010) 2801–2810.
- Y.H. Lin, T.Y. Hsien, Kinematics of biodegradation of phenolic
wastewater in a biofilm reactor, Water Sci. Technol., 59 (2009)
1703–1711.
- P.M. Kilonzo, A. Margaritis, M.A. Bergougnou, Hydrodynamics
and mass transfer characteristics in an inverse internal loop
airlift-driven fibrous-bed bioreactor, Chem. Eng. J., 157 (2010)
146–160.
- S.J. Russell, Handbook of Nonwovens, 1st Ed., Woodhead
Publishing Limited, The Textile Institute, CRC Press, England,
2007.
- G. Besagni, P. Brazzale, A. Fiocca, F. Inzoli, Estimation of bubble
size distributions and shapes in two-phase bubble column
using image analysis and optical probes, Flow Meas. Instrum.,
52 (2016) 190–207.
- D. Mamma, E. Kalogeris, N. Papadopoulos, D.G. Hatzinikolaou,
P. Christrakopoulos, D. Kekos, Biodegradation of phenol by
acclimatized Pseudomonas putida cells using glucose as an added
growth substrate, J. Environ. Sci. Health, A39 (2004) 2093–2104.
- M.H. El-Naas, S.A. Al-Muhtaseb, S. Makhlouf, Biodegradation of
phenol by Pseudomonas putida immobilized in polyvinylalcohol
(PVA) gel, J. Hazard. Mater., 164 (2009) 720–725.
- American Public Health Association, Water Works Association,
Water Environmental Federation, Standard Methods for the
Examination of Water and Wastewater, 20th Ed, American
Public Health Association, Washington, D.C., 1999.
- M. Mkandawire, J. Förster, D. Fiedler, H. Böttcher, W. Pompe,
Spectrophotometric verification of biodegradation of phenol in
a flow dynamic biocers-based bioreactor system, Int. J. Environ.
Anal. Chem., 89 (2009) 529–541.
- A. Moser, Bioprocess technology, kinetics and reactors,
Springer-Verlag, New York, 1988.
- O. Levenspiel, Chemical Reaction Engineering, 3rd Ed., John
Wiley & Sons Inc., New York, 2004.
- M. Pirdashti, R. Kompany, Effects of height to diameter ratio and
aeration rate on liquid mixing and hydrodynamic properties in
a bubble column, Iran. J. Chem. Eng., 6 (2009) 46–56.
- Y. Chisti, Pneumatically agitated bioreactor in industrial and
environmental bioprocessing: hydrodynamics, hydraulics, and
transport phenomena. Appl. Mech. Rev., 51 (1998) 33–112.
- R.S. Ramalho, Introduction to Wastewater Treatment Processes,
2nd ed., Academic Press, New York, 2003.
- F. Garcia-Ochoa, E. Gomez, Bioreactor scale-up and oxygen
transfer rate in microbial processes: an overview, Biotechnol.
Adv., 27 (2009) 153–176.
- H. Eberl, E. Morgenroth, D. Noguera, C. Picioreanu, B.
Rittmann, M. Van Loosdrecht, O. Wanner, (IWA Task Group
on Biofilm), Modeling, Mathematical Modeling of Biofilms,
Scientific and Technical Report No. 18, 1st Ed., IWA Publishing,
Hove, 2006.
- Y. Chisti, Hydrodynamic damage to animal cells, Crit. Rev.
Biotechnol., 21 (2001) 67–110.
- P. Reichert, Design techniques of a computer program for the
identification of processes and the simulation of water quality
in aquatic systems, Environ. Software, 10 (1995) 199–210.
- P. Reichert, AQUASIM 2.0 Tutorial, Swiss Federal Institute for
Environmental Science and Technology (EAWAG), CH-8600
Dübendorf, Switzerland, 1998.
- P. Reichert, AQUASIM 2.0 User Manual, Swiss Federal Institute
for Environmental Science and Technology (EAWAG), CH-8600
Dübendorf, Switzerland, 1998.
- M. Bajaj, C. Gallert, J. Winter, Phenol degradation kinetics of
aerobic mixed culture, Biochem. Eng. J., 46 (2009) 205–209.
- N. Kantarci, F. Borak, K.O. Ulgen, Bubble column reactors,
Process Biochem., 40 (2005) 2263–2283.
- A. Pérez, P. Torres, Evaluación del comportamiento
hidrodinámico como herramienta para optimización de
reactores anaerobios de crecimiento en medio fijo (Evaluation
of hydrodynamic behavior as a tool to optimize anaerobic
reactors of attached growth), Antioquia, 45 (2008) 27–40.
- A.J. Guwy, S.R. Martin, F.R. Hawkes, D.L., Catalase activity
measurements in suspended aerobic biomass and soil samples,
Enzyme Microb. Technol., 25 (1999) 669–676.
- T. Kablan, Y.Y. Clément, K.A. Françoise, O.K. Mathias,
Determination and modelling of moisture sorption isotherms
of chitosan and chitin, Acta Chim. Slov., 55 (2008) 677–682.