Saengarun Chakrapong, Petsom Amorn, Tungasmita Duangamol Nuntasri
Program of Petrochemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
ScientificWorldJournal. 2017;2017:4089036. doi: 10.1155/2017/4089036. Epub 2017 Aug 3.
The etherification of glycerol with propylene over acidic heterogeneous catalysts, Amberlyst-15, S100, and S200 resins, produced mono-propyl glycerol ethers (MPGEs), 1,3-di- and 1,2-di-propyl glycerol ethers (DPGEs), and tri-propyl glycerol ether (TPGE). The propylation of glycerol over Amberlyst-15 yielded only TPGE. The glycerol etherification with 1-butene over Amberlyst-15 and S200 resins produced 1-mono-, 2-mono-, 1,2-di-, and 1,3-di-butyl glycerol ethers (1-MBGE, 2-MBGE, 1,2-DBGE, and 1,3-DBGE). The use of Amberlyst-15 resulted in the propylation and butylation of glycerol with higher yields than those obtained from the S100 and S200 resins. The PGEs, TPGE, and BGEs were evaluated as cold flow improvers and octane boosters. These alkyl glycerol ethers can reduce the cloud point of blended palm biodiesels with diesel. They can increase the research octane number and the motor octane number of gasoline.
在酸性多相催化剂(Amberlyst-15、S100和S200树脂)作用下,甘油与丙烯发生醚化反应,生成单丙基甘油醚(MPGEs)、1,3-二丙基甘油醚和1,2-二丙基甘油醚(DPGEs)以及三丙基甘油醚(TPGE)。甘油在Amberlyst-15上进行丙基化反应仅生成TPGE。甘油与1-丁烯在Amberlyst-15和S200树脂上发生醚化反应,生成1-单丁基甘油醚、2-单丁基甘油醚、1,2-二丁基甘油醚和1,3-二丁基甘油醚(1-MBGE、2-MBGE、1,2-DBGE和1,3-DBGE)。使用Amberlyst-15时,甘油丙基化和丁基化反应的产率高于使用S100和S200树脂时的产率。对丙基甘油醚(PGEs)、TPGE和丁基甘油醚(BGEs)作为冷流改进剂和辛烷值提升剂进行了评估。这些烷基甘油醚可以降低棕榈生物柴油与柴油混合燃料的浊点。它们可以提高汽油的研究法辛烷值和马达法辛烷值。