Research Article

NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE

Volume: 36 Number: 2 June 1, 2018
  • Salman Qadır
  • Arshad Hussaın
  • Muhammad Ahsan

NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE

Abstract

In this research, an approximated technique is proposed for predicting the performance of membrane gas separation using an asymmetric membrane-based gas separator. The permeation behavior of the high-flux asymmetric membrane varies from that of the traditional symmetric membrane. The advanced mathematical model has been applied in this study for the separation of a binary gas mixture. In the present work, a shell-fed hollow fiber module like counter-current flow pattern is modeled mathematically for CO2 separation from CH4. Finite Difference method (FDM) is applied to solving the equations numerically. The models offered separation for a membrane module, for given gas conditions, simulating permeate and residue composition and the stage cut. The different parameters are investigating like a change in the pressure ratio, stage cut and feed flow rates. The numerical approach is helpful as it entails the least effort and computational time due to the fact algebraic equations are used instead of differential equations. The obtained model’s data also verified with numerical and experimental results available in the literature.

Keywords

References

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  2. [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. [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. [4] Baker, R.W., 2000. Membrane technology. Wiley Online Library.
  5. [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. [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. [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. [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

APA
Qadır, S., Hussaın, A., & Ahsan, M. (2018). NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE. Sigma Journal of Engineering and Natural Sciences, 36(2), 500-510. https://izlik.org/JA76CX74SB
AMA
1.Qadır S, Hussaın A, Ahsan M. NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE. SIGMA. 2018;36(2):500-510. https://izlik.org/JA76CX74SB
Chicago
Qadır, Salman, Arshad Hussaın, and Muhammad Ahsan. 2018. “NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4 CO2 USING HOLLOW FIBER MEMBRANE MODULE”. Sigma Journal of Engineering and Natural Sciences 36 (2): 500-510. https://izlik.org/JA76CX74SB.
EndNote
Qadır S, Hussaın A, Ahsan M (June 1, 2018) NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE. Sigma Journal of Engineering and Natural Sciences 36 2 500–510.
IEEE
[1]S. Qadır, A. Hussaın, and M. Ahsan, “NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE”, SIGMA, vol. 36, no. 2, pp. 500–510, June 2018, [Online]. Available: https://izlik.org/JA76CX74SB
ISNAD
Qadır, Salman - Hussaın, Arshad - Ahsan, Muhammad. “NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4 CO2 USING HOLLOW FIBER MEMBRANE MODULE”. Sigma Journal of Engineering and Natural Sciences 36/2 (June 1, 2018): 500-510. https://izlik.org/JA76CX74SB.
JAMA
1.Qadır S, Hussaın A, Ahsan M. NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE. SIGMA. 2018;36:500–510.
MLA
Qadır, Salman, et al. “NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4 CO2 USING HOLLOW FIBER MEMBRANE MODULE”. Sigma Journal of Engineering and Natural Sciences, vol. 36, no. 2, June 2018, pp. 500-1, https://izlik.org/JA76CX74SB.
Vancouver
1.Salman Qadır, Arshad Hussaın, Muhammad Ahsan. NUMERICAL ANALYSIS OF A GAS SEPARATION OF CH4/CO2 USING HOLLOW FIBER MEMBRANE MODULE. SIGMA [Internet]. 2018 Jun. 1;36(2):500-1. Available from: https://izlik.org/JA76CX74SB

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