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使用 2-苯基-2-咪唑啉基离子液体催化剂将葡萄糖转化为戊二酸。

Catalytic Conversion of Glucose into Levulinic Acid Using 2-Phenyl-2-Imidazoline Based Ionic Liquid Catalyst.

机构信息

Department of Chemical Engineering Indian Institute of Technology Delhi, New Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Molecules. 2021 Jan 12;26(2):348. doi: 10.3390/molecules26020348.

Abstract

Levulinic acid (LA) is an industrially important product that can be catalytically valorized into important value-added chemicals. In this study, hydrothermal conversion of glucose into levulinic acid was attempted using Brønsted acidic ionic liquid catalyst synthesized using 2-phenyl-2-imidazoline, and 2-phenyl-2-imidazoline-based ionic liquid catalyst used in this study was synthesized in the laboratory using different anions (NO, HPO, and Cl) and characterized using H NMR, TGA, and FT-IR spectroscopic techniques. The activity trend of the Brønsted acidic ionic liquid catalysts synthesized in the laboratory was found in the following order: [CSOHPhim][Cl] > [CSOHPhim][NO] > [CSOHPhim][HPO]. A maximum 63% yield of the levulinic acid was obtained with 98% glucose conversion at 180 °C and 3 h reaction time using [CSOHPhim][Cl] ionic liquid catalyst. The effect of different reaction conditions such as reaction time, temperature, ionic liquid catalyst structures, catalyst amount, and solvents on the LA yield were investigated. Reusability of [CSOHPhim][Cl] catalyst up to four cycles was observed. This study demonstrates the potential of the 2-phenyl-2-imidazoline-based ionic liquid for the conversion of glucose into the important platform chemical levulinic acid.

摘要

乙酰丙酸(LA)是一种工业上重要的产品,可以通过催化转化为有重要附加值的化学品。在这项研究中,使用合成的 2-苯基-2-咪唑啉制备的 Brønsted 酸性离子液体催化剂将葡萄糖水热转化为乙酰丙酸。在实验室中使用不同的阴离子(NO、HPO 和 Cl)合成了用于本研究的 2-苯基-2-咪唑啉基离子液体催化剂,并通过 H NMR、TGA 和 FT-IR 光谱技术进行了表征。实验室合成的 Brønsted 酸性离子液体催化剂的活性趋势如下:[CSOHPhim][Cl]>[CSOHPhim][NO]>[CSOHPhim][HPO]。使用[CSOHPhim][Cl]离子液体催化剂,在 180°C 和 3 h 反应时间下,葡萄糖转化率为 98%时,乙酰丙酸的最高收率为 63%。考察了不同反应条件(反应时间、温度、离子液体催化剂结构、催化剂用量和溶剂)对 LA 产率的影响。[CSOHPhim][Cl]催化剂重复使用了四次。这项研究证明了基于 2-苯基-2-咪唑啉的离子液体在将葡萄糖转化为重要平台化学品乙酰丙酸方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99bf/7827230/c99f34eaec45/molecules-26-00348-g001.jpg

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