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Solketal synthesis from glycerol and acetone in the presence of metal salts: A Lewis or Bronsted acid catalyzed reaction?

机译:在金属盐存在下甘油和丙酮的Solketal合成:Lewis或富烷酸催化反应?

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摘要

In this paper, several commercial transition metal salts were tested in acetalization reactions of glycerol with acetone to produce solketal (i.e., 2,2-dimethyl-1,3-dioxolan-4-yl)methanol). Among the salts assessed, Fe(NO3)(3) 9 center dot H2O exhibited the highest catalytic activity, virtually converting all the glycerol to solketal, with 95% selectivity in short reaction time (ca. 30 min). Ferric nitrate is inexpensive, commercially available, non-corrosive and water-tolerant Lewis acid catalyst. Although soluble, it was easily recovered through a liquid-liquid extraction process followed by the drying of the aqueous phase and reused without loss activity or selectivity. The performance of Fe(NO3)(3) was compared to other Lewis and Bronsted acid catalysts. Insights on the reaction mechanism were performed aiming to verify the effect of H+ ions generated by hydrolysis of metal catalysts throughout the reactions. This process described herein is an attractive option to the Bronsted acid-catalyzed routes because it is non-corrosive, avoids products neutralization steps and allow an easy recovery and reuse of catalyst.
机译:在本文中,用丙酮的甘油在甘油的缩醛化反应中测试了几种商业过渡金属盐,得到甲基酮(即2,2-二甲基-1,3-二氧化甲醇-4-基)甲醇)。在评估的盐中,Fe(NO3)(3)(3)9中心点H2O表现出最高的催化活性,几乎将所有甘油转化为SOLKERAL,在短反应时间(约30分钟)中的95%选择性。硝酸铁是便宜的,市售,非腐蚀性和耐水性的路易斯酸催化剂。虽然可溶,但通过液 - 液提取过程易于回收,然后通过液相干燥并重复使用而没有损失活性或选择性。将Fe(NO3)(3)的性能与其他Lewis和富正酸催化剂进行比较。进行关于反应机理的见解,旨在验证在整个反应中通过水解金属催化剂的H +离子产生的影响。本文所述的该方法是伪造酸催化的途径的有吸引力的选择,因为它是非腐蚀性的,因此避免了产品中和步骤并允许易于恢复和再利用催化剂。

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