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Information Journal Paper

Title

Investigation the Effects of Operating Parameters in Ethan Dehydration by 3A Molecular Sieve

Pages

  26-36

Abstract

 In this study, an industrial unit of ethane Dehydration which uses 3A Adsorbents molecular sieve was simulated by using of mass, energy and momentum equations. For modeling of this process, rate of adsorption is approximated by linear driving force expression. The second form of Langmuir isotherm was employed in predicting adsorption equilibrium for water content in gas and solid phases. The mentioned mathematical equations were solved simultaneously by Matlab software. Then the simulation results were validated by using the experimental data and the simulation studies were performed to investigate the effect of changing various process variables, such as, diameter of absorbent, regeneration gas flow rate, feed pressure and temperature on water content of the product. The results shows that water content in the product increased by increasing of adsorbent diameter and feed temperature. While water content in the product decreased by increasing feed pressure and regeneration gas flow rate.

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  • Cite

    APA: Copy

    SADEGHZADEH AHARI, JAFAR, Pakseresht, saeed, Mohammad beigy, Khashayar, SHAFIEE, ZAHRA, & Farmoudeh, Fatemeh. (2016). Investigation the Effects of Operating Parameters in Ethan Dehydration by 3A Molecular Sieve. PETROLEUM RESEARCH, 26(88 ), 26-36. SID. https://sid.ir/paper/114631/en

    Vancouver: Copy

    SADEGHZADEH AHARI JAFAR, Pakseresht saeed, Mohammad beigy Khashayar, SHAFIEE ZAHRA, Farmoudeh Fatemeh. Investigation the Effects of Operating Parameters in Ethan Dehydration by 3A Molecular Sieve. PETROLEUM RESEARCH[Internet]. 2016;26(88 ):26-36. Available from: https://sid.ir/paper/114631/en

    IEEE: Copy

    JAFAR SADEGHZADEH AHARI, saeed Pakseresht, Khashayar Mohammad beigy, ZAHRA SHAFIEE, and Fatemeh Farmoudeh, “Investigation the Effects of Operating Parameters in Ethan Dehydration by 3A Molecular Sieve,” PETROLEUM RESEARCH, vol. 26, no. 88 , pp. 26–36, 2016, [Online]. Available: https://sid.ir/paper/114631/en

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