Furan monomers and polymers from renewable plant biomass

IF 7 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Russian Chemical Reviews Pub Date : 2021-06-01 DOI:10.1070/RCR5018
V. Kashparova, Daria V. Chernysheva, V. Klushin, Veronika E. Andreeva, O. A. Kravchenko, N. Smirnova
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引用次数: 12

Abstract

Plant biomass is considered the main source of renewable carbon raw materials, which is a viable alternative to crude oil and natural gas and provides compounds with a low carbon footprint. The most promising direction for the conversion of biomass is the synthesis of 5-hydroxymethylfurfural, which is regarded as a platform chemical, the basis for the synthesis of valuable compounds, including monomers and polymers. The move of the polymer industry to renewable plant materials will contribute to solving global environmental problems and ensure the sustainability and environmental safety of plastics production. This review analyzes recent advances in the preparation of key C6-furan platform chemicals, such as 5-hydroxymethylfurfural, 2,5-furandicarboxylic acid, 2,5-diformylfuran, 2,5-bis(hydroxymethyl)furan, levulinic acid, and their use for the production of monomers and polymers based on renewable plant biomass. Production processes of widely known furan polyesters and polyamides, such as polyethylene-, polypropylene-, polybutylene furanoates, polyhexamethylene furanamide, are considered, as well as developments towards novel promising materials that are furan copolymers and polymer mixtures. For the first time, studies have been systematized aimed at converting liquid and solid wastes of the synthesis of platform chemicals, known as humins, into a range of value-added products, including organic compounds, porous carbon materials, thermosetting binders, and anticorrosive coatings that can replace similar materials based on fossil raw materials. Economic and environmental prospects and problems of production and consumption of furan polymers are considered. The bibliography includes 275 references.
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可再生植物生物质中的呋喃单体和聚合物
植物生物质被认为是可再生碳原料的主要来源,是原油和天然气的可行替代品,并提供低碳足迹的化合物。生物质转化最有希望的方向是合成5-羟甲基糠醛,它被认为是一种平台化学物质,是合成有价值化合物(包括单体和聚合物)的基础。聚合物工业向可再生植物材料的转变将有助于解决全球环境问题,确保塑料生产的可持续性和环境安全性。本文综述了5-羟甲基糠醛、2,5-呋喃二羧酸、2,5-二甲酰呋喃、2,5-双(羟甲基)呋喃、乙酰丙酸等主要c6 -呋喃平台化合物的制备及其在可再生植物生物质单体和聚合物生产中的应用进展。考虑了众所周知的呋喃聚酯和聚酰胺的生产工艺,如聚乙烯、聚丙烯、聚呋喃丁烯酸酯、聚六亚甲基呋喃酰胺,以及呋喃共聚物和聚合物混合物等有前途的新型材料的发展。这是第一次系统化的研究,旨在将合成平台化学品的液体和固体废物转化为一系列增值产品,包括有机化合物、多孔碳材料、热固性粘合剂和防腐涂料,这些产品可以取代基于化石原料的类似材料。讨论了呋喃聚合物生产和消费的经济和环境前景以及存在的问题。参考书目包括275篇参考文献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Russian Chemical Reviews
Russian Chemical Reviews 化学-化学综合
CiteScore
13.00
自引率
5.20%
发文量
27
审稿时长
6-12 weeks
期刊介绍: Russian Chemical Reviews serves as a complete translation of the esteemed monthly review journal Uspekhi Khimii, which has been a prominent figure in Russian scientific journals since its establishment in 1932. It offers comprehensive access to the advancements made by chemists from Russia and other former Soviet Union countries. Established in 1932, Russian Chemical Reviews is committed to publishing timely and significant review articles encompassing various facets of modern chemistry, including chemical physics, physical chemistry, computational and theoretical chemistry, catalysis, coordination chemistry, analytical chemistry, organic, organometallic, and organoelement chemistry, chemistry of macromolecules, applied chemistry, biochemistry, bio-organic chemistry, biomolecular chemistry, medicinal chemistry, materials chemistry, nanochemistry, nanostructures, and environmental chemistry.
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