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金属有机框架辅助生物质转化为高附加值化学品的现状与挑战

Current Status and Challenges for Metal-Organic-Framework-Assisted Conversion of Biomass into Value-Added Chemicals.

作者信息

Srivastava Varsha, Lappalainen Katja, Rusanen Annu, Morales Gabriel, Lassi Ulla

机构信息

Research Unit of Sustainable Chemistry, University of Oulu, P.O. Box 4300, 90014, Oulu, Finland.

Chemical and Environmental Engineering Group, Universidad Rey Juan Carlos, Tulipán s-n, 28933, Móstoles, Madrid, Spain.

出版信息

Chempluschem. 2023 Nov;88(11):e202300309. doi: 10.1002/cplu.202300309. Epub 2023 Oct 18.

Abstract

Owing to the abundance of availability, low cost, and environmental-friendliness, biomass waste could serve as a prospective renewable source for value-added chemicals. Nevertheless, biomass conversion into chemicals is quite challenging due to the heterogeneous nature of biomass waste. Biomass-derived chemicals are appealing sustainable solutions that can reduce the dependency on existing petroleum-based production. Metal-organic frameworks (MOFs)-based catalysts and their composite materials have attracted considerable amounts of interest in biomass conversion applications recently because of their interesting physical and chemical characteristics. Due to their tunability, the catalytic activity and selectivity of MOF-based catalyst/composite materials can be tailored by functionalizing them with a variety of functional groups to enhance biomass conversion efficiency. This review focuses on the catalytic transformation of lignocellulosic biomass into value-added chemicals by employing MOF-based catalyst/composite materials. The main focus is given to the production of the platform chemicals HMF and Furfural from the corresponding (hemi)cellulosic biomass, due to their versatility as intermediates for the production of various biobased chemicals and fuels. The effects of different experimental parameters on the conversion of biomass by MOF-based catalysts are also included. Finally, current challenges and perspectives of biomass conversion into chemicals by MOF-based catalysts are highlighted.

摘要

由于生物质废弃物来源丰富、成本低廉且环保,它有望成为生产高附加值化学品的可再生资源。然而,由于生物质废弃物的性质不均一,将其转化为化学品具有很大的挑战性。源自生物质的化学品是颇具吸引力的可持续解决方案,能够减少对现有石油基生产的依赖。基于金属有机框架(MOF)的催化剂及其复合材料,因其有趣的物理和化学特性,近年来在生物质转化应用中引起了广泛关注。由于其可调性,基于MOF的催化剂/复合材料的催化活性和选择性可以通过用各种官能团对其进行功能化来定制,以提高生物质转化效率。本综述重点介绍了利用基于MOF的催化剂/复合材料将木质纤维素生物质催化转化为高附加值化学品的过程。主要关注从相应的(半)纤维素生物质生产平台化学品5-羟甲基糠醛(HMF)和糠醛,因为它们作为生产各种生物基化学品和燃料的中间体具有通用性。还包括了不同实验参数对基于MOF的催化剂转化生物质的影响。最后,强调了基于MOF的催化剂将生物质转化为化学品目前面临的挑战和前景。

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