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介孔分子筛SBA-15-SO_3H催化合成油酸甲酯 被引量:17

SYNTHESIS OF METHYL OLEATE OVER SBA-15 MESOPOROUS MATERIALS
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摘要 在成功合成出含磺酸基的介孔分子筛SBA 15 SO3H的基础上,用于油酸与甲醇的酯化反应,考察该催化剂的催化性能,结果表明:在高级脂肪酸的酯化反应中,SBA 15 SO3H催化剂的活性高于沸石分子筛,与等摩尔数的硫酸的活性接近。考察了反应条件对SBA 15 SO3H催化剂性能的影响,得到油酸与甲醇酯化反应的最佳条件:反应温度60℃,甲醇与油酸的原料比为2∶1(摩尔),催化剂与原料比为1 5∶35(重量)。最后对催化剂的稳定性进行了考察,反应结果认为该催化剂在重复使用过程中活性未发生明显变化,反应前后的XRD分析结果认为,SBA 15 SO3H具有较高的水热稳定性。 The catalytic properties of wellordered, mesoporous, hybrid SBA15 materials founctionalized with sulfonic acid group prepared by directsynthesis were studied The esterification result of oleic acid with methanol showed that the SBA15SO3H has the highest activity among the solid acid catalysts and almost approach that of sulfuric acid The influences of reaction temperature, ratio of acid to methanol, catalyst amount were discussed The optimal operation conditions are that reaction temperature 60?℃, ratio of Methanol/Oleic acid 2∶1(mol/mol), ratio of catalyst to reactant 1?g/14?g The Xray diffractions of fresh and reacted SBA15SO3H show that the samples have a very intense lowangle peak, indicating the presence of uniformly sized pores in the materials There are also two weak peaks in the reacted sample, which meaning the mesostructure was remained By a way, the conversion of oleic acid during three time reactions showed this catalyst has higher stability The catalyst SBA15SO3H can be used to replace the liquid acid for the synthesis of fat acid ester
出处 《燃料化学学报》 EI CAS CSCD 北大核心 2003年第2期167-170,共4页 Journal of Fuel Chemistry and Technology
关键词 介孔分子筛 SBA-15-SO3H 油酸 多相催化剂 酯化 催化合成 油酸甲酯 甲醇 mesoporous material SBA-15-SO_3H oleic acid heterogeneous catalyst esterification
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  • 1高雄厚,毛学文,林松柏,沈师孔.超大孔分子筛的合成研究[J].石油炼制与化工,1996,27(8):7-11. 被引量:8
  • 2[1]Beck J S, Vartuli J C, Roth W J,et al. A new family of mesoporous molecular sieves prepared with liquid crystal templates[J]. J Am Chem Soc, 1992, 114: 10835.
  • 3[2]Kresge C T, Leonowicz M E, Roth W J,et al. Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism[J]. Nature, 1992, 359: 710.
  • 4[3]Koch H, Roos K, Stocker M et al. Cracking of vacuum gas oil on microporous and mesoporous catalyst systems[J]. Chem Eng Technol, 1998, 21(5): 401-403.
  • 5[5]Song C M, Yan Z F, Wang H P, et al. Synthesis and characterization of mesoporous aluminosilicate MCM-41[J]. J Nat Gas Chem, 2000, 9(3): 237.
  • 6[1]Kresge C T, Leonowicz M E, Roth W J, at el. Ordered mesoporous molecular sieves synthesized by a liquid -crystal template mechanism[J]. Nature, 1992, 359:710-712.
  • 7[3]Aguado J, Serrano D P, Escola J M. A sol-gel route for the room temperature synthesis of Al-containing micelle-templated silica[J]. Microporous and Mesoporous Materials, 2000, 34:43-54.
  • 8[5]Scherzer. Relation between structure and reactivity[C]. In: ACS Symp. Ser., Am. Chem. Soc., Washington D C,1984,57.
  • 9Diaz I, Mohino F, Perez-Pariente J, Sastre E. Appl Catal A, 2001, 205(1/2): 19
  • 10Margolese D, Melero J A, Christiansen S C, Chmelka B F, Stucky G D. Chem Mater,2000, 12(8): 2448

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