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综述了高分子催化膜及膜反应器的研究进展,主要包括具备催化和分离双功能的高分子催化膜的制备方法与技术、催化膜反应器的类型及其在各种化学反应过程中的应用研究状况,总结了高分子催化膜及膜反应器的优点及面临的难题,并对其未来发展方向进行了展望.

参考文献

[1] 约瑟 G 桑切斯·马可;西奥多 T 托迪斯;张卫东;高坚.催化膜及膜反应器[M].北京:化学工业出版社,2004
[2] 徐又一;徐志康;朱宝库.高分子膜材料[M].北京:化学工业出版社,2005
[3] Blaser H U;Pugin B;Studer M.Enantioselective Heterogeneous Catalysis:Academic and Industrial Challenges[M].Wiley-VCH:Weinheim,2000
[4] Gryaznov V M;Smirnov V S;Vdovin V M et al.Method of preparing a hydrogen-permeable membrane catalyst on a base of palladium or its alloys for the hydrogenation of unsaturated organic compounds[P].US 4132668,1979-01-02.
[5] Alder K I;Sherrington D C .Synthesis of spherical particulate polysiloxane resins as catalyst support[J].Chemical Communications,1998,1:131-132.
[6] Parton R F;Vankelecom I F J;Tas D et al.Membrane occluded catalysts:a higher order mimic with improved performance[J].Journal of Molecular Catalysis A:Chemical,1996,113(1-2):283-292.
[7] Van Laar F M P R;Holsteyns F;Vankelecom I F J et al.Singlet oxygen generation using PDMS occluded dyes[J].J Photochem Phot obiol A:Chem,2001,144:141-151.
[8] Vankelecom I F J;Vercruysse K;Moens N et al.Solvent-free oxidation reactions with Ti-MCM-41 and TS-1 catalysts occluded in polydimethylsiloxane (PDMS) membranes[J].Chemical Communications,1997,1:137-138.
[9] Vankelecom I F J;Moens N M F;Vercruysse K A L et al.PDMS occluded Ti-MCM-41 as an improved olefin epoxidation catalyst[J].Studies in surface science and catalysis,1997,108:437-444.
[10] Frisch Harry L.;Deng-Nemer Haoran;Maaref Shahin .Low-temperature dehydrogenation reaction-separation membranes using zeolite 13X polyethylacrylate[J].Journal of Membrane Science,1999(1):33-40.
[11] Lee J K;Song I K;Lee W Y et al.Modification of 12-molybdophosphoric acid catalyst by blending with polysulfone and its catalytic activity for 2-propanol conversion reaction[J].Journal of Molecular Catalysis A:Chemical,1996,104(03):311-318.
[12] Liu Qinglin;Chen Hongfang;Jia Peishi .Study on catalytic membranes of H_3PW_(12)O_(40) entrapped in PVA[J].Journal of Membrane Science,1999(1):233-241.
[13] Tas D;Toelen C;Vankelecom I F J et al.Bifunctional catalytic membrane containing Bronsted acids and sites for enanticselective hydrogenation[J].Chemical Communications,1997,23:2323-2324.
[14] Neys P E F;Vankelecom I F J;Parton R F et al.The oxidation of cyclic alcohols from an aqueous solution by manganese porphyrins embedded in a polydimethyl -siloxane membrane[J].Journal of Molecular Catalysis A:Chemical,1997,126:19-112.
[15] Ziegler S;Theis J;Fritsch D .Palladium modified porous polymeric membranes and their performance in selective hydrogenation of propyne[J].Journal of Membrane Science,2001,187(1-2):71-84.
[16] Yu J.;Liu RYF.;Poon B.;Nazarenko S.;Koloski T.;Vargo T.;Hiltner A. Baer E. .Polymers with palladium nanoparticles as active membrane materials[J].Journal of Applied Polymer Science,2004(2):749-756.
[17] Prüsse U;Horold S;Vorlop K D .Encapsulation of microscopic catalysts in polymer network gels[J].Chemical Engineering and Technology,1997,69(1-2):100-103.
[18] Hans Fuhrmann;Torsten Dwars;Dirk Michalik;Gerd Holzhuter;Cordula Gruttner;Udo Kragl;Gunther Oehme .Catalyst Encapsulation and Substrate Solubilization in Polymer-Surfactant Complexes and Their Use in a Membrane Reactor[J].Advanced synthesis & catalysis,2003(1/2):202-210.
[19] Prüsse U;Morawsky V;Dierich A et al.Encapsulation of microscopic catalysts in polyvinyl alcohol hydrogel beads[J].Studies In Surface Science and Catalysis,1998,118:137-146.
[20] Hahnlein M;Prüsse U;Daum J et al.Preparation of microscopic catalysts and colloids for catalytic nitrate and nitrite reduction and their use in a hallow fibre dialyser loop reactor[J].Studies In Surface Science and Catalysis,1998,118:99-107.
[21] E. Leidig;U. Prusse;K.-D. Vorlop;J. Winter .Biotransformation of Poly R-478 by continuous cultures of PVAL-encapsulated Trametes versicolor under non-sterile conditions[J].Bioprocess Engineering,1999(1):5-12.
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