Position:Home >> Abstract

Study on CO2/ N2 separation in four kinds of membrane materials based molecular simulation
Authors: GAO Yingjia,YAO Hui,BEI Pengzhi,YU Dan, ZHOU Dingyi,LIU Hongjing
Units: 1.School of Petrochemcial Engineering,Shenyang University of Technology,Liaoyang 111003,Liaoning,China; 2.Liaohe Petrochemical Company, PetroChina, Panjin 124022, Liaoning ,China
KeyWords: molecular simulation technology;gas separation membrane;CO2/N2
ClassificationCode:TQ028.8
year,volume(issue):pagination: 2020,40(3):72-80

Abstract:
In this paper, the molecular simulation technique has been used to investigate CO2/N2 separation properties and separation mechanism in four kinds of common polymer membranes . Using MD and GCMC method, the properties?of?membranes was stimulated and the solution and diffusion processes of CO2/N2 in four kinds of polymer membranes were obtained. The values caculated are in good agreement with the experimental results. The results show that the gas diffusion coefficients in membrane materials increases with the increase of free volume size.The gas solubility coefficients in materials increases with the more hole. The microscopic properties of the materials are the key factors that determine the macroscopic properties of the material. Since the rubbery polymers have more flexible chain and smaller cohesive energy density than the glassy polymers,the permeability coefficients of CO2/ N2 in the rubbery polymers is greater than those in the glassy polymers.

Funds:
辽宁省自然科学基金(NO.20170540685);辽宁百千万人才项目;辽宁省教育厅,重点攻关项目(LZGD2019004)

AuthorIntro:
第一作者简介:高缨佳(1996-),女,辽宁辽阳,硕士,气体分离膜,E-mail:1057694072@qq.com通讯作者,E-mail:liuhongjing_101@126.com

Reference:
[1] Shimizu A, Kondo M, Yamamoto J. Gas separation membrane[J]. Membrane Technology, 2017, 2002(11): 12-14.
[2] Nejad M N, Asghari M, Afsari M. Investigation of Carbon Nanotubes in Mixed Matrix Membranes for Gas Separation: A Review[J]. Chembioeng Reviews, 2016, 3(6): 276-298.
[3] 谭婷婷, 展侠, 冯旭东, et al. 高分子基气体分离膜材料研究进展[J]. 化工新型材料, 2012, 40(10): 4-5.
[4] Mannan H A, Mukhtar H, Murugesan T, et al. Recent Applications of Polymer Blends in Gas Separation Membranes[J]. Chemical Engineering & Technology, 2013, 36(11): 1838-1846.
[5] Sanders D F, Smith Z P, Guo R, et al. Energy-efficient polymeric gas separation membranes for a sustainable future: A review[J]. Polymer, 2013, 54(18): 4729-4761.
[6] Farnam M, Mukhtar H, Mohd Shariff A. A Review on Glassy Polymeric Membranes for Gas Separation[J]. Applied Mechanics & Materials, 2014, 625:701-703.
[7] Lock S S M, Lau K K, Shariff A M, et al. Thickness dependent penetrant gas transport properties and separation performance within ultrathin polysulfone membrane: Insights from atomistic molecular simulation[J]. Journal of Polymer Science Part B Polymer Physics, 2018, 56(2): 131-158.
[8] Altintas C, Keskin S. Molecular simulations of porous coordination network-based mixed matrix membranes for CO2/N2 separations[J]. Molecular Simulation, 2015, 41(16): 1-13.
[9] Sterescu D M, Stamatialis D F, Wessling M. Boltorn-modified polyimide gas separation membranes[J]. Journal of Membrane Science, 2008, 310(1): 512-521.
[10] 和小奇, 朱腾阳, 王淑敏, et al.含PDMS聚砜膜的制备及其对CO2/CH4分离性能的影响[J]. 化工新型材料, 2018, 46(9): 97-100.
[11] Guizard C, Boutevin B, Guida F, et al. VOC vapour transport properties of new membranes based on cross-linked fluorinated elastomers[J]. Separation & Purification Technology, 2001, 22(1-3): 23-30.
[12] Golzar K, Amjad-Iranagh S, Amani M, et al. Molecular simulation study of penetrant gas transport properties into the pure and nanosized silica particles filled polysulfone membranes[J]. Journal of Membrane Science, 2014,451:117-134.
[13] Basu S , Cano A . Asymmetric Matrimid?/[Cu3(BTC)2] mixed-matrix membranes for gas separations[J]. Journal of Membrane Science, 2010, 362(1):478-487.
[14] Ahn J , Chung W J,Pinnau I , et al. Polysulfone/silica nanoparticle mixed-matrix membranes for gas separation, Journal of Membrane Science,2008,314 : 123–133.
[15] Thareja P , Velankar S S . Interfacial activity of particles at PI/PDMS and PI/PIB interfaces: analysis based on Girifalco–Good theory[J]. Colloid & Polymer Science, 2008, 286(11):1257-1264.
[16] Lin G , Abar M , Vane L M . Mixed Matrix Silicone and Fluorosilicone/Zeolite 4A Membranes for Ethanol Dehydration by Pervaporation[J]. Separation Science and Technology, 2013, 48(4):523-536.
[17] 伍艳辉, 张海峰, 李明, et al. 6FDA型聚酰亚胺中气体溶解行为的分子模拟[J]. 化工学报, 2009, 60(3): 762-768.
[18] 朱娜娜, 高会元. 杂化聚酰亚胺膜对CO2/N2气体渗透性能的模拟[J]. 膜科学与技术, 2016, 36(6): 47-52.
[19] Jiao S, Duan C, Xu Z. Water under the Cover: Structures and Thermodynamics of Water Encapsulated by Graphene[J]. Scientific Reports, 2015, 7(1):1-19.
[20] Khawaja M, Sutton A P, Mostofi A A. Molecular Simulation of Gas Solubility in Nitrile Butadiene Rubber[J]. Journal of Physical Chemistry B, 2016, 121(1): 287-297.
[21] Khan M M, Filiz V, Emmler T, et al. Free Volume and Gas Permeation in Anthracene Maleimide-Based Polymers of Intrinsic Microporosity[J]. Membranes, 2015, 5(2): 214-227.
[22] Castromu?oz R, Fíla V. Progress on Incorporating Zolites in Matrimid?5218 Mixed Matrix Membranes towards Gas Separation:[J]. Membranes, 2018, 8(2):30.
[23] Naderi A , Yong W F , Xiao Y , et al. Effects of chemical structure on gas transport properties of polyethersulfone polymers[J]. Polymer, 2017, 135:76–84.
[24] Fried J. R., Li B. Molecular Simulation of Gas Sorption and Diffusion in Silicon-Based Polymers[J]. Advanced Materials for Membrane Separations, 2004,24–38.
[25] Charati S G , Stern S A . Diffusion of Gases in Silicone Polymers:Molecular Dynamics Simulations[J]. Macromolecules, 1998, 31(16):5529-5535.
[26] Soroko I , Sairam M , Livingston A G . The effect of membrane formation parameters on performance of polyimide membranes for organic solvent nanofiltration (OSN): Part A. Effect of polymer/solvent/non-solvent system choice[J]. Journal of Membrane Science, 2011, 381(1-2):152-162
[27] Hyun-Joon Kim, Hong S I . Gas Permeabilities of CO2 and CH4 for Polysulfones Substituted with Bromo and Trimethylsilyl Groups[J]. Korean Journal of Chemical Engineering, 2000, 17(1):122-127.
[28] David Ramírez-Gutiérrez, Draghi C N , Pannacci N , et al. Surface Photografting of Acrylic Acid on Poly(dimethylsiloxane). Experimental and Dissipative Particle Dynamics Studies[J]. Langmuir, 2015, 31(4):1400-1409.
[29] Gómez-Antón M.R., Masegosa R.M., A. Horta,Polymethyltrifluoropropylsiloxane: polymer-solvent interaction, solubility and network swelling[J].Polymer,1987,28(12):2116-2121.
[30] Bozdogan A.E. A method for determination of thermodynamic and solubility parameters of polymers from temperature and molecular weight dependence of intrinsic viscosity[J]. Polymer, 2004,45(18):6415-6424.
[31] Rahmati M, Modarress H, Gooya R. Molecular simulation study of polyurethane membranes[J]. Polymer, 2012, 53(9): 1939-1950.
[32] Li X , Wang M , Wang S , et al. Constructing CO2 transport passageways in Matrimid membranes using nanohydrogels for efficient carbon capture[J]. Journal of Membrane Science, 2015, 474:156-166.
[33] Choi S H, Lee M K, Oh S J, et al. Gas sorption and transport of ozone-treated polysulfone[J]. Journal of Membrane Science, 2003, 221(1): 37-46.
[34] Kubica P , Wolinska-Grabczyk A , Grabiec E , et al. Gas transport through mixed matrix membranes composed of polysulfone and copper terephthalate particles[J]. Microporous and Mesoporous Materials, 2016, 235:120-134.
[35] Charati S G , Stern S A . Diffusion of Gases in Silicone Polymers:Molecular Dynamics Simulations[J]. Macromolecules, 1998, 31(16):5529-5535.
[36] Stern S A, Shah V M, Hardy B J. Structure Permeability Relationships in Silicone Polymers[J]. Journal of Polymer Science Part A Polymer Chemistry, 1987, 25(6): 1263-1298.
[37] 黄宇, 刘庆林. 分子模拟研究小分子在聚硅氧烷中扩散行为[J]. 厦门大学学报(自然版), 2006, 45(5): 664-669.
[38] Stern S A . Polymers for gas separations: the next decade[J]. Journal of Membrane Science, 1994, 94(1):1-65.
[39] Duthie X, Kentish S, Powell C, et al. Operating temperature effects on the plasticization of polyimide gas separation membranes[J]. Journal of Membrane Science, 2007, 294(1-2): 40-49.

Service:
Download】【Collect

《膜科学与技术》编辑部 Address: Bluestar building, 19 east beisanhuan road, chaoyang district, Beijing; 100029 Postal code; Telephone:010-80492417/010-80485372; Fax:010-80485372 ; Email:mkxyjs@163.com

京公网安备11011302000819号