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在甲醇中将己糖直接转化为甘油酸甲酯和乙醇酸。

Direct conversion of C6 sugars to methyl glycerate and glycolate in methanol.

作者信息

Feng Lei, Li Gang, Yan Yueer, Hou Wenrong, Zhang Yahong, Tang Yi

机构信息

Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Laboratory of Advanced Materials, Collaborative Innovation Centre of Chemistry for Energy Materials (iChEM), Fudan University Shanghai 200433 China

出版信息

RSC Adv. 2018 Aug 28;8(53):30163-30170. doi: 10.1039/c8ra05612a. eCollection 2018 Aug 24.

Abstract

The present work deals with the one-pot conversion of C6 sugars to methyl glycerate and glycolate a cascade of retro-aldol condensation and oxidation processes catalyzed by using MoO as the Lewis acid catalyst and Au/TiO as the oxidation catalyst in methanol. Methyl glycerate (MGLY) is the product of C6 ketose (fructose), while methyl glycolate (MG) is produced from C6 aldose (mannose, glucose). It is found that a good one-pot match between two reactive processes is the key to the production of MGLY and MG with high yield (27.6% MGLY and 39.2% MG). A separated retro-aldol condensation and oxidation process greatly decreases their yields, and even no MGLY can be obtained in this separated process. We attribute this to high instability of glyceraldehyde/glycolaldehyde and their different reaction pathways which mainly depend on whether acetalization of retro-aldol products (glyceraldehyde and glycolaldehyde) occurs with methanol or not. This result opens a new prospect on the accumulation of C3 products other than lactate from biomass-derived carbohydrates.

摘要

本研究工作涉及将C6糖类一锅法转化为甘油酸甲酯和乙醇酸甲酯,即在甲醇中使用MoO作为路易斯酸催化剂、Au/TiO作为氧化催化剂催化一系列逆羟醛缩合和氧化过程。甘油酸甲酯(MGLY)是C6酮糖(果糖)的产物,而乙醇酸甲酯(MG)则由C6醛糖(甘露糖、葡萄糖)产生。研究发现,两个反应过程之间良好的一锅法匹配是高产率生产MGLY和MG(27.6%的MGLY和39.2%的MG)的关键。单独的逆羟醛缩合和氧化过程会大大降低它们的产率,在这种单独的过程中甚至无法获得MGLY。我们将此归因于甘油醛/乙醇醛的高不稳定性以及它们不同的反应途径,这主要取决于逆羟醛产物(甘油醛和乙醇醛)是否与甲醇发生缩醛化反应。这一结果为从生物质衍生的碳水化合物中积累除乳酸之外的C3产物开辟了新的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af1e/9085406/a081f48d1246/c8ra05612a-s1.jpg

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