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纳米木质素的制备、表征及应用的最新进展

A recent advancement on preparation, characterization and application of nanolignin.

机构信息

Materials Technology Research Group (MaTReC), School of Chemical Sciences, Universiti Sains Malaysia, 11800 Minden, Penang, Malaysia.

Materials Technology Research Group (MaTReC), School of Chemical Sciences, Universiti Sains Malaysia, 11800 Minden, Penang, Malaysia.

出版信息

Int J Biol Macromol. 2022 Mar 1;200:303-326. doi: 10.1016/j.ijbiomac.2022.01.007. Epub 2022 Jan 7.

Abstract

Each year, 50 to 70 million tonnes of lignin are produced worldwide as by-products from pulp industries and biorefineries through numerous processes. Nevertheless, about 98% of lignin is directly burnt to produce steam to generate energy for the pulp mills and only a handful of isolated lignin is used as a raw material for the chemical conversion and for the preparation of various substances as well as modification of lignin into nanomaterials. Thus, thanks to its complex structure, the conversion of lignin to nanolignin, attracting growing attention and generating considerable interest in the scientific community. The objective of this review is to provide a complete understanding and knowledge of the synthesis methods and functionalization of various lignin nanoparticles (LNP). The characterization of LNP such as structural, thermal, molecular weight properties together with macromolecule and quantification assessments are also reviewed. In particular, emerging applications in different areas such as UV barriers, antimicrobials, drug administration, agriculture, anticorrosives, the environment, wood protection, enzymatic immobilization and others were highlighted. In addition, future perspectives and challenges related to the development of LNP are discussed.

摘要

每年,全世界有 5000 万至 7000 万吨木质素作为纸浆工业和生物精炼厂通过多种工艺产生的副产品而生产。然而,大约 98%的木质素直接燃烧以产生蒸汽,为纸浆厂提供能源,只有少数分离的木质素被用作化学转化和制备各种物质以及将木质素改性为纳米材料的原料。因此,由于其复杂的结构,木质素转化为纳米木质素引起了越来越多的关注,并在科学界引起了相当大的兴趣。本综述的目的是提供对各种木质素纳米粒子(LNP)的合成方法和功能化的全面理解和认识。还综述了 LNP 的表征,如结构、热、分子量特性以及大分子和定量评估。特别是,强调了在不同领域的新兴应用,如紫外线阻隔剂、抗菌剂、药物管理、农业、防腐剂、环境、木材保护、酶固定化等。此外,还讨论了与 LNP 发展相关的未来展望和挑战。

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