JOURNAL ARTICLE

Analysis and Simulation of Hollow-Fiber Reverse-Osmosis Modules

Amal M. El-HalwagiVasilios I. ManousiouthakisMahmoud M. El‐Halwagi

Year: 1996 Journal:   Separation Science and Technology Vol: 31 (18)Pages: 2505-2529   Publisher: Taylor & Francis

Abstract

Abstract The purpose of this work is to analyze the performance of hollow-fiber reverse-osmosis (HFRO) systems. First, the mass and momentum balances on the fluids inside and outside of the hollow fibers are derived. Consequently, these equations are coupled with the membrane transport expressions to provide a two-phase model for completely describing the hydrodynamic behavior of HFRO units. The model equations are solved numerically via discretization techniques. Experimental data are used for two objectives; transport-parameters estimation and model validation. Based upon optimization principles, a parameter-estimation technique is proposed for correlating the membrane-transport coefficients with the operating pressures and concentrations. The model validity is elucidated by comparing the theoretical predictions with the experimental data for different HFRO modules and over a wide range of operating parameters.

Keywords:
Reverse osmosis Discretization Chemistry Experimental data Work (physics) Momentum (technical analysis) Fiber Range (aeronautics) Mechanics Osmosis Membrane Hollow fiber membrane Process engineering Biological system Thermodynamics Physics Materials science Mathematical analysis Mathematics Engineering Statistics Composite material

Metrics

9
Cited By
0.95
FWCI (Field Weighted Citation Impact)
30
Refs
0.78
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Membrane Separation Technologies
Physical Sciences →  Environmental Science →  Water Science and Technology
High voltage insulation and dielectric phenomena
Physical Sciences →  Materials Science →  Materials Chemistry
Nanopore and Nanochannel Transport Studies
Physical Sciences →  Engineering →  Biomedical Engineering

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