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Valorization of lignin in polymer and composite systems for advanced engineering applications - A review

机译:高分子素在高级工程应用中木质素的算命 - 综述

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As fossil fuel resources dwindle and new regulations for a cleaner and safer environment come on stream, there is growing interest in developing new sustainable feedstocks for future fuels, chemicals, polymers and fibers. Therefore materials research is ever more focused on the production of green or bio-based materials and their composites. Lignocellulosic biomass has become the feedstock of choice for these new materials as cellulose and lignin are the most abundant biopolymers on the planet. Lignin is a phenolic macromolecule, the principal biological source of aromatic structures, with a complex structure which varies depending on plant species and its isolation process. Despite its high carbon content and its potential as a raw material, lignin remains underutilised. Between 40 and 50 million tons of lignin are produced worldwide per year; while some is being used for low- and medium-value applications, most is currently treated as a non -commercialized by-product or as low value fuel to produce energy. However, with the emergence of biorefinery projects larger amounts of lignin with the potential for valorisation are being produced. Here, we summarise some of the latest developments in the field. (C) 2019 Elsevier B.V. All rights reserved.
机译:随着化石燃料资源DWWindle和更清洁和更安全的环境的新规定来到溪流上,对未来燃料,化学品,聚合物和纤维开发新的可持续原料时,日益增长的兴趣。因此,材料研究更专注于生产绿色或生物基材料及其复合材料。木质纤维素生物量已成为这些新材料的选择原料,因为纤维素和木质素是地球上最丰富的生物聚合物。木质素是一种酚类大分子,芳族结构的主要生物来源,具有复杂的结构,根据植物物种及其隔离过程而变化。尽管其高碳含量高及其作为原料的潜力,但木质素仍然未充分利用。每年在全球范围内生产40%至5000万吨木质素;虽然有些是用于低价和中值应用,但大多数人目前被视为非繁殖的副产品或低价燃料以产生能量。然而,随着生物遗料的出现,正在制作较大量的木质素,具有储度可能的储度。在这里,我们总结了该领域的一些最新发展。 (c)2019 Elsevier B.v.保留所有权利。

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