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热塑性增强乙醇有机溶剂法制木质素,改善 PLA 基木质素生物塑料的相容性:关注木质素的结构特征。

Thermoplasticity reinforcement of ethanol organosolv lignin to improve compatibility in PLA-based ligno-bioplastics: Focusing on the structural characteristics of lignin.

机构信息

Advanced Convergent Chemical Division, Center for Bio-based Chemistry, Korea Research Institute of Chemical Technology, Ulsan 44429, Republic of Korea.

Department of Forest Sciences, Seoul National University, 1, Gwanak-ro, Seoul 08826, Republic of Korea.

出版信息

Int J Biol Macromol. 2022 Jun 1;209(Pt B):1638-1647. doi: 10.1016/j.ijbiomac.2022.04.090. Epub 2022 Apr 22.

Abstract

Commonly, lignin macromolecules have limitations in application to the thermoplastics industries due to poor dispersibility and interfacial compatibility within ligno-bioplastics. In this study, the dispersibility and interfacial compatibility of ethanol organosolv lignin (EOL) in PLA-based ligno-bioplastic were improved by enhancing the thermoplasticity via oxypropylation. Further, three types of EOLs extracted from different severity conditions were applied to investigate the effect of the structural characteristics of EOLs on the changes in the thermal properties. The thermal properties of oxypropylated EOL were dependent on the structural characteristics of the initial EOL as well as the degree of polymerization of propylene oxide. The thermoplasticity of EOLs extracted under mild condition was effectively increased as a new T and melting were observed. Based on increased thermoplasticity, the dispersibility and interfacial compatibility of EOL within PLA-based ligno-bioplastic were successfully improved, which compensates for the deterioration in mechanical strength of ligno-bioplastic due to the addition of unmodified EOL. Therefore, oxypropylation of EOL with suitable structural characteristics promises improved availability as a thermoplastic material.

摘要

通常情况下,木质素大分子由于在木质素生物塑料中分散性差和界面相容性差,限制了其在热塑性塑料工业中的应用。在本研究中,通过氧丙基化提高了热塑性,从而改善了乙醇有机溶剂木质素(EOL)在 PLA 基木质素生物塑料中的分散性和界面相容性。此外,还应用了从不同苛刻度条件下提取的三种类型的 EOL,以研究 EOL 的结构特征对热性能变化的影响。氧丙基化 EOL 的热性能取决于初始 EOL 的结构特征以及氧化丙烯的聚合度。在温和条件下提取的 EOL 的热塑性得到了有效提高,因为观察到了新的 Tg 和熔融温度。基于提高的热塑性,EOL 在 PLA 基木质素生物塑料中的分散性和界面相容性得到了成功改善,这弥补了由于添加未改性 EOL 而导致木质素生物塑料力学强度恶化的问题。因此,具有合适结构特征的 EOL 的氧丙基化有望作为一种热塑性材料得到更广泛的应用。

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