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生物天然气(BNG)是近年来新兴的一种可再生清洁能源.制备生物天然气的核心是去除沼气中的二氧化碳.CO2/CH4分离膜技术被认为是未来沼气提纯领域最有潜力的一项技术.本文对CO2/CH4分离膜技术在沼气提纯中的应用研究和发展现状进行综述,包括CO2/CH4分离膜材料的最新发展;膜法沼气提纯工艺过程的设计;欧美膜法沼气提纯工业化装置的近况等;最后对膜法沼气提纯技术的主要困难及未来发展方向进行分析与讨论.

参考文献

[1] Weiland, P. .Biogas production: Current state and perspectives[J].Applied Microbiology and Biotechnology,2010(4):849-860.
[2] Bauer F;Hulteberg C;Persson T et al.Biogas upgrading-review of commercial technologies.SGC Report 2013:270[R].Malmo:Swedish Gas Technology Centre,2013.
[3] Galante C G;Pezzola L;Priano N et al.Methane from biogas:the process,cleaning and projects.TPG 4140 Natural Gas[R].Trondheim:Norwegian University of Science and Technology,2012.
[4] Holm-Nielsen, JB;Al Seadi, T;Oleskowicz-Popiel, P .The future of anaerobic digestion and biogas utilization[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2009(22):5478-5484.
[5] 程序,崔宗均,朱万斌.呼之欲出的中国生物天然气战略性新兴产业[J].天然气工业,2013(09):141-148.
[6] 程序,崔宗均,朱万斌.论另类非常规天然气--生物天然气的开发[J].天然气工业,2013(01):137-144.
[7] 程序,朱万斌.欧盟国家新兴的生物天然气产业[J].中外能源,2011(06):22-29.
[8] A. Molino;M. Migliori;Y. Ding;B. Bikson;G. Giordano;G. Braccio .Biogas upgrading via membrane process: Modelling of pilot plant scale and the end uses for the grid injection[J].Fuel,2013(May):585-592.
[9] 程序,朱万斌.创建若干10×108m3级生物天然气“气田”可行性分析[J].中外能源,2012(07):24-28.
[10] 赵伟,黄小美,谭顺民.沼气混入天然气管网使用的可行性探讨[J].煤气与热力,2012(12):50-53.
[11] 梁素钰,王述洋,李二平,谭文英.沼气制取车用天然气级燃料系统[J].农业工程学报,2009(06):210-213.
[12] Marco Scholz;Thomas Melin;Matthias Wessling .Transforming biogas into biomethane using membrane technology[J].Renewable & sustainable energy reviews,2013(Jan.):199-212.
[13] Baker, RW;Lokhandwala, K .Natural gas processing with membranes: An overview[J].Industrial & Engineering Chemistry Research,2008(7):2109-2121.
[14] 宫徽,徐恒,左剑恶,王凯军,甘海南.沼气精制技术的发展与应用[J].可再生能源,2013(05):103-108.
[15] 郑戈,张全国.沼气提纯生物天然气技术研究进展[J].农业工程学报,2013(17):1-8.
[16] 江皓,吴全贵,周红军.沼气净化提纯制生物甲烷技术与应用[J].中国沼气,2012(02):6-11,19.
[17] 陈祥,梁芳,盛奎川,包先斌.沼气净化提纯制取生物甲烷技术发展现状[J].农业工程,2012(07):30-34.
[18] 陈曦,王耀,江雷.CO2选择性透过膜材料的制备[J].高等学校化学学报,2013(02):249-268.
[19] Zhang Yuan;Sunarso, J.;Liu ShaoMin;Wang Rong.Current status and development of membranes for co<sub>2</sub>/CH<sub>4</sub> separation: a review.[J].International Journal of Greenhouse Gas Control,2013:84-107.
[20] Subhankar Basu;Asim L. Khan;Angels Cano-Odena .Membrane-based technologies for biogas separations[J].Chemical Society Reviews,2010(2):750-768.
[21] 滕一万,武法文,王辉,李磊,张志炳.CO2/CH4高分子气体分离膜材料研究进展[J].化工进展,2007(08):1075-1079.
[22] 晏水平,陈竞翱,艾平,王媛媛,张衍林.利用膜吸收技术分离沼气中CO2[J].农业工程学报,2012(11):196-204.
[23] 王志,袁芳,王明,王纪孝,王世昌.分离CO2膜技术[J].膜科学与技术,2011(03):11-17.
[24] 曹义鸣,徐恒泳,王金渠.我国无机陶瓷膜发展现状及展望[J].膜科学与技术,2013(02):1-5,11.
[25] S. Rasi;A. Veijanen;J. Rintala .Trace compounds of biogas from different biogas production plants[J].Energy,2007(8):1375-1380.
[26] Miltner M;Makaruk A;Bala H et al.Biogas upgrading for transportation purposes-operational experiences with Austria's first Bio-CNG fuelling station[J].Chem Eng Trans,2009,18:617-622.
[27] Bos A.;Wessling M.;Strathmann H.;Punt I.G.M. .CO_2-induced plasticization phenomena in glassy polymers[J].Journal of Membrane Science,1999(1):67-78.
[28] Visser T;Masetto N;Wessling M .Materials dependence of mixed gas plasticization behavior in asymmetric membranes[J].Journal of Membrane Science,2007(1/2):16-28.
[29] Katrien Vanherck;Guy Koeckelberghs;Ivo F.J. Vankelecom .Crosslinking polyimides for membrane applications: A review[J].Progress in Polymer Science,2013(6):874-896.
[30] Wang L;Cao YM;Zhou MQ;Zhou SJ;Yuan Q .Novel copolyimide membranes for gas separation[J].Journal of Membrane Science,2007(1/2):338-346.
[31] De Q. Vu;William J. Koros;Stephen J. Miller .Mixed matrix membranes using carbon molecular sieves I. Preparation and experimental results[J].Journal of Membrane Science,2003(2):311-334.
[32] Bahtiyar Ozturk;Firuze Demirciyeva.Comparison of biogas upgrading performances of different mixed matrix membranes[J].Chemical engineering journal,2013:209-217.
[33] F. Moghadam;M.R. Omidkhah;E. Vasheghani-Farahani .The effect of TiO2 nanoparticles on gas transport properties of Matrimid5218-based mixed matrix membranes[J].Separation and Purification Technology,2011(1):128-136.
[34] Perez E V;Balkus K J Jr;Ferraris J P et al.Mixedmatrix membranes containing MOF-5 for gas separations[J].Journal of Membrane Science,2009,328(1-2):165-173.
[35] Tomoyuki Suzuki;Yasuharu Yamada .Physical and Gas Transport Properties of Novel Hyperbranched Polyimide - Silica Hybrid Membranes[J].Polymer bulletin,2005(2):139-146.
[36] C. Hibshman;C.J. Cornelius;E. Marand .The gas separation effects of annealing polyimide-organosilicate hybrid membranes[J].Journal of Membrane Science,2003(1):25-40.
[37] Tae-Hyun Bae;Jong Suk Lee;Wulin Qiu .A High-Performance Gas-Separation Membrane Containing Submicrometer-Sized Metal-Organic Framework Crystals[J].Angewandte Chemie,2010(51):9863-9866.
[38] Nik O G;Chen X Y;Kaliaguine S .Functionalized metal organic framework-polyimide mixed matrix membranes for CO2/CH4 separation[J].Journal of Membrane Science,2012,413:48-61.
[39] Shao L;Liu L;Cheng SX;Huang YD;Ma J .Comparison of diamino cross-linking in different polyimide solutions and membranes by precipitation observation and gas transport[J].Journal of Membrane Science,2008(1/2):174-185.
[40] Youchang Xiao;Bee Ting Low;Seyed Saeid Hosseini .The strategies of molecular architecture and modification of polyimide-based membranes for CO2 removal from natural gas-A review[J].Progress in Polymer Science,2009(6):561-580.
[41] 黄旭,邵路,孟令辉,黄玉东.聚酰亚胺基气体分离膜的改性方法及其最新进展[J].膜科学与技术,2009(01):101-108.
[42] Bos A.;Wessling M.;Strathmann H.;Punt IGM. .Suppression of CO2-plasticization by semiinterpenetrating polymer network formation[J].Journal of Polymer Science, Part B. Polymer Physics,1998(9):1547-1556.
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