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Predicting bed dynamics in three-phase, fluidized-bed biofilm reactors

H. T. Chang, B. E. Rittmann
Published October 1994, 29 (10-11) 231-241; DOI:
H. T. Chang
Pritzker Department of Environmental Engineering, Illinois Institute of Technology, 3200 South State Street, Chicago, IL 60616-3793, USA
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B. E. Rittmann
Department of Civil Engineering, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208-3109, USA
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Abstract

This paper presents a unified model that inter-relates gas flow rate, liquid flow rate, and hold-ups of each of the liquid, gas, and solid phases in three-phase, fluidized-bed biofilm (TPFBB) process. It describes how carrier properties, biofilm properties, and gas and liquid flow velocities control the system dynamics, which ultimately will affect the density, thickness, and distribution of the biofilm. The paper describes the development of the mathematical model to correlate the effects of gas flow rate, liquid flow rate, solid concentration, and biofilm thickness and density. This knowledge is critically needed in light of the use of TPFBB processes in treating industrial wastewater, which often has high substrate concentration. For example, the proper design of the TPFBB process requires mathematical description of the cause-effect relationship between biofilm growth and fluidization.

  • Biofilm properties
  • three-phase
  • fluidized-bed dynamics
  • modeling
  • © IWA Publishing 1994
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Predicting bed dynamics in three-phase, fluidized-bed biofilm reactors
H. T. Chang, B. E. Rittmann
Water Science and Technology Oct 1994, 29 (10-11) 231-241;
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Predicting bed dynamics in three-phase, fluidized-bed biofilm reactors
H. T. Chang, B. E. Rittmann
Water Science and Technology Oct 1994, 29 (10-11) 231-241;

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Keywords

Biofilm properties
three-phase
fluidized-bed dynamics
modeling
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