[1]. Y. Zhang J., Sunarso S., Liu and R. Wang, “Current status and development of membranes for CO2/CH4 separation: a review,” International Journal of Greenhouse Gas Control., Vol. 12, pp. 84-107, 2012.##
[2]. Shimekit B. and Mukhtar H., “Natural gas purification technologies-major advances for CO2 separation and future directions,” INTECH Open Access Publisher Croatia., Europe., 2012.##
[3]. Scholes C. A., Stevens G. W. and Kentish S. E., “Membrane gas separation applications in natural gas processing,” Fuel., Vol. 96, pp. 15-28, 2012.##
[4]. Murali R. S., Ismail A. F., Rahman M. A. and Sridhar S., “Mixed matrix membranes of Pebax-1657 loaded with 4A zeolite for gaseous separations,” Separation and Purification Technology., Vol. 129, pp. 1-8, 2014.##
[5]. Kim J. H. and Lee Y. M., “Gas permeation properties of poly (amide 6-b-ethylene oxide)– silica hybrid membranes,” Journal of Membrane Science., Vol. 193, No. 2, pp. 209-225, 2001.##
[6]. Murali R. S., Sridhar S., Sankarshana T. and Ravikumar Y., “Gas permeation behavior of Pebax-1657 nanocomposite membrane incorporated with multiwalled carbon nanotubes,” Industrial & Engineering Chemistry Research., Vol. 49, No. 14, pp. 6530-6538, 2010.##
[7]. Ha S. Y., Park H. B. and Lee Y. M., “Percolational effect of siloxane content in poly (amideimide siloxane) on the gas permeation behavior,” Macromolecules., Vol. 32, No. 7, pp. 2394-2396, 1999.##
[8]. Nafisi V. and Hägg M. B., “Development of Nanocomposite membranes containing modified Si Nanoparticles in PEBAX-2533 as a block Copolymer and 6FDA-Durene diamine as a glassy polymer,” ACS applied materials & interfaces., Vol. 6, No. 18, pp. 15643-15652, 2014.##
[9]. Bernardo P., Jansen J. C., Bazzarelli F., Tasselli F., Fuoco A., Friess K., Izák P., Jarmarová V., Kačírková M. and Clarizia G., “Gas transport properties of Pebax/room temperature ionic liquid gel membranes,” Separation and Purification Technology., Vol. 97, pp. 73-82, 2012.##
[10]. Liu S. L., Shao L. Chua M. L., Lau C. H., Wang H. and Quan S., “Recent progress in the design of advanced PEO-containing membranes for CO2 removal,” Progress in Polymer Science., Vol. 38, No. 7, pp. 1089-1120, 2013.##
[11]. Wahab M. A. and Sunarti A., “Development of PEBAX based membrane for gas separation: a review,” International Journal of Membrane Science and Technology, Vol. 2, pp. 79-91, 2015.##
[12]. Car A., Stropnik C., Yave W. and Peinemann K. V., “PEG modified poly (amide-b-ethylene oxide) membranes for CO2 separation,” Journal of Membrane Science., Vol. 307, No. 1, pp. 88-95, 2008.##
[13]. Bondar V., Freeman B. and Pinnau I., “Gas transport properties of poly (ether‐b‐amide) segmented block copolymers,” Journal of Polymer Science Part B: Polymer Physics., Vol. 38, No. 15, pp. 2051-2062, 2000.##
[14]. Sridhar S., Suryamurali R., Smitha B. and Aminabhavi T., “Development of crosslinked poly (ether-block-amide) membrane for CO2/ CH4 separation,” Colloids and Surfaces A: Physicochemical and Engineering Aspects., Vol. 297, No. 1-3, pp. 267-274, 2007.##
[15]. Kim J. H., Ha S. Y. and Lee Y. M., “Gas permeation of poly (amide-6-b-ethylene oxide) copolymer,” Journal of Membrane Science, Vol. 190, No. 2, pp. 179-193, 2001.##
[16]. Feng S., Ren J., Li H., Hua K., Li X. and Deng M., “Polyvinyl acetate/poly (amide-12-b-ethylene oxide) blend membranes for carbon dioxide separation,” Journal of Energy Chemistry., Vol. 22, No. 6, pp. 837-844, 2013.##
[17]. Tena A., Shishatskiy S. and Filiz V., “Poly (ether–amide) vs. poly (ether–imide) copolymers for post-combustion membrane separation processes,” RSC Advances., Vol. 5, No. 29, pp. 22310-22318, 2015.##
[18]. Feng S., Ren J., Li Z., Li H., Hua K., Li X. and Deng M., “Poly(amide-12-b-ethylene oxide) /glycerol triacetate blend membranes for CO2 separation,” International Journal of Greenhouse Gas Control., Vol. 19, pp. 41-48, 2013.##
[19]. Khosravi T. and Omidkhah M., “Preparation of CO2-philic polymeric membranes by blending poly (ether-b-amide-6) and PEG/PPG-containing copolymer,” RSC Advances., Vol. 5, No. 17, pp. 12849-12859, 2015.##
[20]. Yave W., Car A., Peinemann K. V., Shaikh M. Q., Rätzke K. and Faupel F., “Gas permeability and free volume in poly (amide-b-ethylene oxide)/polyethylene glycol blend membranes,” Journal of Membrane Science., Vol. 339, No. 1-2, pp. 177-183, 2009.##
[21]. Abdollahi M., Khoshbin M., Biazar H. and khanbabaei G., “Preparation, morphology and gas permeation properties of carbon dioxide- selective vinyl acetate-based polymer/poly (ethylene oxide-b-amide 6) blend membranes,” Polymer., Vol. 121, pp. 274-285, 2017.##
[22]. Salame M., “Prediction of gas barrier properties of high polymers,” Polymer Engineering and Science., Vol. 26, No. 22, pp. 1543-1546, 1986.##
[23]. Lee W., “Selection of barrier materials from molecular structure,” Polymer Engineering and Science., Vol. 20, No. 1, pp. 65-69, 1980.##
[24]. Bondi A., “van der Waals volumes and radii,” The Journal of Physical Chemistry., Vol. 68, No. 3, pp. 441-451, 1964.##
[25]. Park J. and Paul D., “Correlation and prediction of gas permeability in glassy polymer membrane materials via a modified free volume based group contribution method,” Journal of Membrane Science. Vol. 125, No. 1, pp. 23-39, 1997.##
[26]. Pixton M. and Paul D., “Gas transport properties of adamantane-based polysulfones,” Polymer, Vol. 36, No. 16, pp. 3165-3172, 1995.##
[27]. Thran A., Kroll G. and Faupel F., “Correlation between fractional free volume and diffusivity of gas molecules in glassy polymers,” Journal of Polymer Science Part B: Polymer Physics., Vol. 37, No. 23, pp. 3344-3358, 1999.##
[28]. Wang X. Y., Raharjo R. D., Lee H. J., Lu Y., Freeman B. and Sanchez I., “Molecular simulation and experimental study of substituted polyacetylenes: fractional free volume, cavity size distributions and diffusion coefficients,” The Journal of Physical Chemistry B., Vol. 110, No. 25, pp. 12666-12672, 2006.##
[29]. Farrokhi M., Abdollahi M. and Hemmati M., “Controlled radical copolymerization of vinyl acetate and dibutyl maleate by iodine transfer radical polymerization,” Polymer International., Vol. 63, No. 8, pp. 1494-1504, 2014.##
[30]. Gupta R. K., Kennel E. and Kim K. J., “Polymer nanocomposites handbook,” CRC Press, 2009.##
[31]. Kusuma V. A., Freeman B. D., Borns M. A. and Kalika D. S., “Influence of chemical structure of short chain pendant groups on gas transport properties of cross-linked poly(ethylene oxide) copolymers,” Journal of Membrane Science, Vol. 327, No. 1-2, pp. 195-207, 2009.##