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电催化木质素解聚制备高值化学品:挑战与机遇。

High-Value Chemicals from Electrocatalytic Depolymerization of Lignin: Challenges and Opportunities.

机构信息

RISE Processum AB, Bioeconomy and Health Division, SE-891 22 Örnsköldsvik, Sweden.

Department of Chemistry, Quaid-i-Azam University, Islamabad 45320, Pakistan.

出版信息

Int J Mol Sci. 2022 Mar 29;23(7):3767. doi: 10.3390/ijms23073767.

Abstract

Lignocellulosic biomass is renewable and one of the most abundant sources for the production of high-value chemicals, materials, and fuels. It is of immense importance to develop new efficient technologies for the industrial production of chemicals by utilizing renewable resources. Lignocellulosic biomass can potentially replace fossil-based chemistries. The production of fuel and chemicals from lignin powered by renewable electricity under ambient temperatures and pressures enables a more sustainable way to obtain high-value chemicals. More specifically, in a sustainable biorefinery, it is essential to valorize lignin to enhance biomass transformation technology and increase the overall economy of the process. Strategies regarding electrocatalytic approaches as a way to valorize or depolymerize lignin have attracted significant interest from growing scientific communities over the recent decades. This review presents a comprehensive overview of the electrocatalytic methods for depolymerization of lignocellulosic biomass with an emphasis on untargeted depolymerization as well as the selective and targeted mild synthesis of high-value chemicals. Electrocatalytic cleavage of model compounds and further electrochemical upgrading of bio-oils are discussed. Finally, some insights into current challenges and limitations associated with this approach are also summarized.

摘要

木质纤维素生物质是可再生的,也是生产高价值化学品、材料和燃料的最丰富资源之一。利用可再生资源开发生产化学品的新高效技术具有重要意义。木质纤维素生物质有可能取代基于化石的化学物质。在环境温度和压力下,利用可再生电力从木质素生产燃料和化学品,可以实现更可持续的方式获得高价值化学品。更具体地说,在可持续的生物炼制厂中,必须重视木质素的增值,以增强生物质转化技术并提高整个过程的整体经济性。在最近几十年,电化学催化方法作为一种增值或解聚木质素的方法引起了科学界的极大兴趣。本综述全面介绍了用于木质纤维素生物质解聚的电催化方法,重点介绍了非靶向解聚以及选择性和靶向温和合成高价值化学品。讨论了模型化合物的电催化裂解以及生物油的进一步电化学升级。最后,还总结了与该方法相关的当前挑战和局限性的一些见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8af7/8999055/e4b9f45a45a9/ijms-23-03767-sch001.jpg

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