NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE
Abstract
Keywords
References
- [1] Ahmad, F., Lau, K., Lock, S., Rafiq, S., Khan, A.U., and Lee, M., 2015. Hollow fiber membrane model for gas separation: Process simulation, experimental validation and module characteristics study. Journal of Industrial and Engineering Chemistry 21, 1246-1257.
- [2] Ahsan, M. and Hussain, A., 2016. Mathematical modelling of membrane gas separation using the finite difference method. Pacific Science Review A: Natural Science and Engineering 18, 1, 47-52.
- [3] Antonson, C.R., Gardner, R.J., King, C.F., and Ko, D.Y., 1977. Analysis of gas separation by permeation in hollow fibers. Industrial & Engineering Chemistry Process Design and Development 16, 4, 463-469.
- [4] Baker, R.W., 2000. Membrane technology. Wiley Online Library.
- [5] Basaran, O.A. and Auvil, S.R., 1988. Asymptotic analysis of gas separation by a membrane module. AIChE Journal 34, 10, 1726-1731.
- [6] Boucif, N., Majumdar, S., and Sirkar, K.K., 1984. Series solutions for a gas permeator with countercurrent and cocurrent flow. Industrial & engineering chemistry fundamentals 23, 4, 470-480.
- [7] Boucif, N., Sengupta, A., and Sirkar, K.K., 1986. Hollow fiber gas permeator with countercurrent or cocurrent flow: series solutions. Industrial & engineering chemistry fundamentals 25, 2, 217-228.
- [8] Bounaceur, R., Berger, E., Pfister, M., Santos, A.A.R., and Favre, E., 2017. Rigorous variable permeability modelling and process simulation for the design of polymeric membrane gas separation units: MEMSIC simulation tool. Journal of membrane science 523, 77-91.
Details
Primary Language
English
Subjects
-
Journal Section
Research Article
Authors
Salman Qadır
This is me
0000-0002-4177-1990
Pakistan
Arshad Hussaın
This is me
0000-0002-5212-844X
Pakistan
Muhammad Ahsan
This is me
0000-0003-2512-8759
Pakistan
Publication Date
June 1, 2018
Submission Date
January 6, 2018
Acceptance Date
March 6, 2018
Published in Issue
Year 2018 Volume: 36 Number: 2