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用Sn-USY和Sn-β制备乳酸甲酯:对半纤维素实际价值化的见解。

Production of Methyl Lactate with Sn-USY and Sn-β: Insights into Real Hemicellulose Valorization.

作者信息

Jiménez-Martin Jose M, El Tawil-Lucas Miriam, Montaña Maia, Linares María, Osatiashtiani Amin, Vila Francisco, Alonso David Martín, Moreno Jovita, García Alicia, Iglesias Jose

机构信息

Chemical & Environmental Engineering Group, Universidad Rey Juan Carlos, C/Tulipan s/n, 28933 Madrid, Spain.

Energy & Bioproducts Research Institute (EBRI), College of Engineering and Physical Sciences, Aston University, Aston Triangle, Birmingham B4 7ET, United Kingdom.

出版信息

ACS Sustain Chem Eng. 2024 Feb 6;12(7):2771-2782. doi: 10.1021/acssuschemeng.3c07356. eCollection 2024 Feb 19.

Abstract

Potassium exchanged Sn-β and Sn-USY zeolites have been tested for the transformation of various aldoses (hexoses and pentoses), exhibiting outstanding catalytic activity and selectivity toward methyl lactate. Insights into the transformation pathways using reaction intermediates-dihydroxyacetone and glycolaldehyde-as substrates revealed a very high catalytic proficiency of both zeolites in aldol and retro-aldol reactions, showcasing their ability to convert small sugars into large sugars, and vice versa. This feature makes the studied Sn-zeolites outstanding catalysts for the transformation of a wide variety of sugars into a limited range of commercially valuable alkyl lactates and derivatives. [K]Sn-β proved to be superior to [K]Sn-USY in terms of shape selectivity, exerting tight control on the distribution of produced α-hydroxy methyl esters. This shape selectivity was evident in the transformation of several complex sugar mixtures emulating different hemicelluloses-sugar cane bagasse, Scots pine, and white birch-that, despite showing very different sugar compositions, were almost exclusively converted into methyl lactate and methyl vinyl glycolate in very similar proportions. Moreover, the conversion of a real hemicellulose hydrolysate obtained from Scots pine through a simple GVL-based organosolv process confirmed the high activity and selectivity of [K]Sn-β in the studied transformation, opening new pathways for the chemical valorization of this plentiful, but underutilized, sugar feedstock.

摘要

已对钾交换的Sn-β和Sn-USY沸石用于各种醛糖(己糖和戊糖)转化的性能进行了测试,结果表明它们对乳酸甲酯具有出色的催化活性和选择性。以反应中间体二羟基丙酮和乙醇醛为底物对转化途径进行的深入研究表明,两种沸石在羟醛反应和逆羟醛反应中均具有很高的催化效率,展示了它们将小糖转化为大糖以及反之亦然的能力。这一特性使得所研究的Sn沸石成为将多种糖类转化为有限范围的具有商业价值的烷基乳酸酯及其衍生物的出色催化剂。就形状选择性而言,[K]Sn-β被证明优于[K]Sn-USY,它能严格控制所生成的α-羟基甲酯的分布。这种形状选择性在模拟不同半纤维素(甘蔗渣、苏格兰松和白桦)的几种复杂糖混合物的转化中很明显,尽管这些混合物的糖组成差异很大,但几乎都以非常相似的比例几乎完全转化为乳酸甲酯和甲基乙烯基乙醇酸酯。此外,通过简单的基于γ-戊内酯的有机溶剂法从苏格兰松获得的真实半纤维素水解产物的转化,证实了[K]Sn-β在所研究的转化过程中具有高活性和选择性,为这种丰富但未充分利用的糖原料的化学增值开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e12a/10880092/15f6e0405b55/sc3c07356_0001.jpg

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