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生物柴油是环境友好的替代燃油,由天然油脂与低级醇通过酯交换反应制备.采用固体酸催化剂制备生物柴油较为简单,同样适用于低等级、高度酸性以及含有水的油的酯化和酯交换反应,且不形成皂化物,还可以有效避免传统均相酸碱催化酯交换工艺中存在的产品分离困难和废催化剂的二次污染问题.研究非均相固体酸催化剂在生物柴油生产中的应用,对于正在兴起的中国生物柴油产业具有重要的意义.详细介绍了各种固体酸,包括硫酸化的金属氧化物、磺酸离子交换树脂、磺酸改性的介孔二氧化硅材料、磺化碳基催化剂、杂多酸和酸性离子液体作为酯化和酯交换反应中的非均相催化剂的研究进展.

参考文献

[1] Chouhan A P S;Sarma A K .Modern heterogeneous catalysts for biodiesel production:A comprehensive review[J].Renewable Sustainable Energy Rev,2011,15:4378.
[2] Dalai A K;Kulkarni M G;Meher L C.Biodiesel productions from vegetable oils using heterogeneous catalysts and their applications as lubricity additives[A].Ottawa,Canada,2006
[3] Suarez P;Plentz A Z;Meneghetti M S M et al.Transformation of triglycerides into fulels,polymers and chemicals:Some applications of catalysis in oleochemistry[J].Quimica Nova,2007,30:667.
[4] Zhang GM;Huang J;Huang GR;Ma LX;Zhang XE .Molecular cloning and heterologous expression of a new xylanase gene from Plectosphaerella cucumerina[J].Applied Microbiology and Biotechnology,2007(2):339-346.
[5] Jacobson K;Gopinath R;Meher L C et al.Solid acid catalyzed biodiesel production from waste cooking oil[J].Applied Catalysis B:Environmental,2008,85:86.
[6] Alsalme, A.M.;Wiper, P.V.;Khimyak, Y.Z.;Kozhevnikova, E.F.;Kozhevnikov, I.V. .Solid acid catalysts based on H_3PW_(12)O_(40) heteropoly acid: Acid and catalytic properties at a gas-solid interface[J].Journal of Catalysis,2010(1):181-189.
[7] Jiménez-Morales I;Santamaría-Gonzdlez J;Maireles-Torres P et al.Calcined zirconium sulfate supported on MCM-41 silica as acid catalyst for ethanolysis of sunflower oil[J].Applied Catalysis B:Environmental,2011,103:91.
[8] Muthu H;Sathiya S V;Varathachary T K et al.Synthesis of biodiesel from Neem oil using sulfated zirconia via tranesterification[J].BRAZILIAN JOURNAL OF CHEMICAL ENGINEERING,2010,27:601.
[9] Zhu M;He B;Shi W et al.Preparation and characterization of PSSA/PVA catalytic membrane for biodiesel production[J].FUEL,2010,89:2299.
[10] Shi W;He B;Ding J et al.Preparation and characterization of the organic-inorganic hybrid membrane for biodiesel production[J].Bioresource Technology,2010,101:1501.
[11] Zhang, S;Zu, YG;Fu, YJ;Luo, M;Zhang, DY;Efferth, T .Rapid microwave-assisted transesterification of yellow horn oil to biodiesel using a heteropolyacid solid catalyst[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2010(3):931-936.
[12] Young-Moo Park;Dae-Won Lee;Deog-Keun Kim .The heterogeneous catalyst system for the continuous conversion of free fatty acids in used vegetable oils for the production of biodiesel[J].Catalysis Today,2008(1/4):238-243.
[13] Park, YM;Chung, SH;Eom, HJ;Lee, JS;Lee, KY .Tungsten oxide zirconia as solid superacid catalyst for esterification of waste acid oil (dark oil)[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2010(17):6589-6593.
[14] Effects of water on the esterification of free fatty acids by acid catalysts[J].Renewable energy,2010(3):614.
[15] Russbueldt B M E;Hoelderich W F .New sulfonic acid ionexchange resins for the preesterification of different oils and fats with high content of free fatty acids[J].Applied Catalysis A:General,2009,362:47.
[16] Sharma Y C;Singh B;Korstad J .Advancements in solid acid catalysts for ecofriendly and economically viable synthesis of biodiesel[J].Biofuels Bioprod Biorefin,2011,5:69.
[17] Oguzhan Ilgen.Investigation of reaction parameters, kinetics and mechanism of oleic acid esteriflcation with methanol by using Amberlyst 46 as a catalyst[J].Fuel Processing Technology,2014:134-139.
[18] Tesser R;Casale L;Verde D et al.Santacesaria.Kinetics and modeling of fatty acids on acid exchange resins[J].CHEMICAL ENGINEERING JOURNAL,2010,157:539.
[19] Andrijanto E;Dawsona E A;Brown D R .Hypercrosslinked polystyrene sulphonic acid catalysts for the esterification of free fatty acids in biodiesel synthesis[J].Applied Catalysis B:Environmental,2012,115-116:261.
[20] Zuo D;Lane J;Culy D et al.Sulfonic acid functionalized mesoporous SBA-15 catalysts for biodiesel production[J].Applied Catalysis B:Environmental,2013,129:342.
[21] Nilesh Narkhede;Varsha Brahmkhatri;Anjali Patel .Efficient synthesis of biodiesel from waste cooking oil using solid acid catalyst comprising 12-tungstosilicic acid and SBA-15[J].FUEL,2014,135:253.
[22] Krunal A Shah;Jigisha K Parikh;Kalpana C Maheriaa .Biodiesel synthesis from acid oil over large pore sulfonic acid-modified mesostructured SBA-15:Process optimization and reaction kinetics[J].Catalysis Today,2014,237:29.
[23] Lin Jiafu;Zhao Bohan;Cao Yu et al.Rationally designed Fe-MCM-41 by protein size to enhance lipase immobilization,catalytic efficiency and performance[J].Applied Catalysis A:General,2014,478:175.
[24] Tantirungrotechai J;Thananupappaisal P et al.One-pot synthesis of calciurn incorporated MCM-41 as a solid base catalyst for transesterification of palm olein[J].CATALYSIS COMMUNICATIONS,2011,16:25.
[25] Pirez C;Caderon J M;Dacquin J P et al.Tunable KIT-6 mesoporous sulfonic acid catalysts for fatty acid esterification[J].ACS Catal,2012,2:1607.
[26] Tucker M H;Crisci A J;Wigington B N et al.Acid-functionalized SBA-15-type periodic mesoporous organosilicas and their use in the continuous production of 5-hydroxymethylfurfural[J].ACS Catal,2012,2:1865.
[27] Sivasamy A;Cheah K Y;Fornasiero P et al.Catalytic applications in the production of biodiesel from vegetable oils[J].Chem Sus Chem,2009,2:278.
[28] Lou WY;Zong MH;Duan ZQ .Efficient production of biodiesel from high free fatty acid-containing waste oils using various carbohydrate-derived solid acid catalysts[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2008(18):8752-8758.
[29] Suganuma S;Nakajima K;Kitano M;Yamaguchi D;Kato H;Hayashi S;Hara M .Hydrolysis of cellulose by amorphous carbon bearing SO3H, COOH, and OH groups[J].Journal of the American Chemical Society,2008(38):12787-12793.
[30] Nakajima K;Hara M .Amorphous carbon with SO3H groups as a solid brφnsted acid catalyst[J].ACS Catal,2012,2:1296.
[31] Shu Q;Gao J X;Nawaz Z et al.Synthesis of biodiesel from waste vegetable oil with large amounts of free fatty acids using a carbon-based solid acid catalyst[J].Applied Energy,2010,87:2589.
[32] Shu, Q;Nawaz, Z;Gao, JX;Liao, YH;Zhang, Q;Wang, DZ;Wang, JF .Synthesis of biodiesel from a model waste oil feedstock using a carbon-based solid acid catalyst: Reaction and separation[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2010(14):5374-5384.
[33] Grinenval E;Rozanska X;Baudouin A et al.Controlled interactions between anhydrous Keggin-type heteropolyacids and silica support:Preparation and characterization of welldefined silica-supported polyoxometalate species[J].J Phys Chem C,2011,114:19024.
[34] Noshadi I;Amin N A S;Pamas R S .Continuous production of biodiesel from waste cooking oil in a reactive distillation column catalyzed by solid heteropolyacid:Optimization using response surface methodology (RSM)[J].FUEL,2012,94:156.
[35] Brahmkhatri V;Patel A .Esterification of lauric acid with butanol-1 over H3PW12O40supported on MCM-41[J].FUEL,2012,102:72.
[36] Zhang, L;Xian, M;He, YC;Li, LZ;Yang, JM;Yu, ST;Xu, X .A Bronsted acidic ionic liquid as an efficient and environmentally benign catalyst for biodiesel synthesis from free fatty acids and alcohols[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,2009(19):4368-4373.
[37] Zhen B;Li H S;Jiao Q Z et al.SiW12O40-based ionic liquid catalysts:Catalytic esterification of oleic acid for biodiesel production[J].Industrial and Engineering Chemistry Research,2012,51:10374.
[38] 李颖,胡双岚,程建华,娄文勇.酸性离子液体催化油酸酯化合成生物柴油[J].催化学报,2014(03):396-406.
[39] Miao J M;Wan H;Shao Y B et al.Acetalization of carbonyl compounds catalyzed by acidic ionic liquid immobilized on silica gel[J].Journal of Molecular Catalysis A:Chemical,2011,348:77.
[40] Xu Z J;Wan H;Miao J M et al.Reusable and efficient polystyrene-supported acidic ionic liquid catalyst for esterifications[J].Journal of Molecular Catalysis A:Chemical,2010,332:152.
[41] Liang X Z .Novel efficient procedure for biodiesel synthesis from waste oils using solid acidic ionic liquid polymer as the catalyst[J].Industrial and Engineering Chemistry Research,2013,52:6894.
[42] Zeng Danlin;Liu Shenglan;Gong Wanjun et al.A nanosized solid acid synthesized from rice hull ash for biodiesel production[J].RSC Adv,2014,4:20535.
[43] Neto BAD;Alves MB;Lapis AAM;Nachtigall FM;Eberlin MN;Dupont J;Suarez PAZ .1-n-Butyl-3-methylimidazolium tetrachloro-indate (BMI center dot InCl4) as a media for the synthesis of biodiesel from vegetable oils[J].Journal of Catalysis,2007(2):154-161.
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