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Etherification Reactions of Furfuryl Alcohol in the Presence of Orthoesters and Ketals: Application to the Synthesis of Furfuryl Ether Biofuels

机译:糠醇在邻甾体和缩酮存在下呋喃醇的醚化反应:在合成糠醛醚生物燃料中的应用

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Strategies for the efficient transformation of abundant and sustainable bioderived molecules, such as furfuryl alcohol (FAlc), into higher value products are currently a vibrant research area. Herein, we demonstrate that furfuryl ethers, which are of significant interest as biorenewable fuel additives, are efficiently produced employing an etherification reaction of furfuryl alcohol and short chain alkyl alcohols in the presence of a recyclable ZSM-5 catalyst and an orthoester, such as trimethyl orthoformate (TMOF) or triethyl orthoformate (TEOF), used as a sacrificial reagent. These etherification reactions proceed at temperatures significantly lower than those of the previous etherification procedures, and they provide the furfuryl ether products in high yield. Importantly, the low temperature employed improves the selectivity by minimizing the formation of hydrolysis products and the competing polymerization reactions leading to humin byproducts. By carrying out the reaction in higher alcohol solvents, such as ethanol, 1-propanol, and 1-butanol, we are able to capitalize on the ability of ZSM-5 to catalyze the orthoester exchange reaction of TMOF or TEOF to produce the corresponding furfuyl ethers in a novel, telescoped orthoester exchange-etherification reaction sequence. Finally, we also demonstrate that the etherification reaction proceeds efficiently in the presence of acetals and ketals, such as dimethoxypropane and diethoxypropane. This latter development is highly significant given the greater scope for the regeneration of acetal and ketal reagents.
机译:有效转化丰富和可持续的生物化分子(如糠醇(FALC),进入更高价值产品的策略目前是一种充满活力的研究区域。在此,我们证明,在可再循环的ZSM-5催化剂和正乙基等存在下,有效地生产具有糠醇和短链烷基醇的醚化反应的糠酰基醚,这些糠酰基醚是有效地制备糠醇和短链烷基醇的醚化反应。正式甲酸酯(TMOF)或三乙酯(TEOF),用作牺牲试剂。这些醚化反应在温度明显低于先前的醚化方法的温度下进行,并且它们以高产率提供糠酰基醚产物。重要的是,使用低温通过最小化水解产物的形成和导致疏水副产物的竞争聚合反应来改善选择性。通过在高级醇溶剂中进行反应,例如乙醇,1-丙醇和1-丁醇,我们能够利用ZSM-5催化TMOF或TEOF的正交交换反应的能力,以产生相应的糠基在一种新颖,伸缩式正交醚醚化反应序列中的醚。最后,我们还证明醚化反应在缩醛和缩酮存在下有效进行,例如二甲氧基丙烷和二乙氧基丙烷。对于缩醛和缩缩试剂再生的范围更大的范围,后一种发展非常重要。

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