Kim Sunghoon, Oh Seungtaek, Lee Jungmin, Roh Hyun-Gyoo, Park Jongshin
Ore Co. Ltd., Seoul 04781, Korea.
Hyosung, R&D Business Labs, Anyang 431-080, Korea.
Materials (Basel). 2016 Aug 5;9(8):657. doi: 10.3390/ma9080657.
The purpose of this study is to modify lignin for better blending with general purpose synthetic polymers. The possible advantages by using this modification would be cost reduction, better physical properties, and biodegradability. In this study, butyrolactone-modified lignin (BLL) and tetrahydrofuran-modified lignin (THFL) were used for aliphatic chain modification of lignin using an acid-catalyzed esterification method in order to mimic the relation of lignin-carbohydrate-complex (LCC) and cellulose. The results of several analyses indicated that lignin was well modified. It was confirmed that the lignin was modified as expected and the reaction sites of the modification, as well as the reaction behaviors, were varied by the reagent types. The result of X-ray diffraction analysis (XRD) analysis indicated that modified lignin/polymer blends increased the crystallinity due to their good compatibility. It can be confirmed that the type of alkyl chain and the miscibility gap between the alkyl chain-matrix affected the mechanical properties enormously in the fungi-degradable environment. From this study, a new method of lignin modification is proposed, and it is found that modified lignin retains the property of the substituted aliphatic chain well. This method could be a proper lignin modification method.
本研究的目的是对木质素进行改性,以便更好地与通用合成聚合物共混。采用这种改性方法可能带来的好处包括降低成本、改善物理性能以及实现生物降解性。在本研究中,使用丁内酯改性木质素(BLL)和四氢呋喃改性木质素(THFL),通过酸催化酯化法对木质素进行脂肪族链改性,以模拟木质素 - 碳水化合物复合体(LCC)与纤维素的关系。多项分析结果表明木质素得到了良好的改性。证实了木质素按预期进行了改性,且改性的反应位点以及反应行为因试剂类型而异。X射线衍射分析(XRD)结果表明,改性木质素/聚合物共混物由于良好的相容性而提高了结晶度。可以确认,在真菌可降解环境中,烷基链的类型以及烷基链 - 基体之间的混溶间隙对机械性能有极大影响。通过本研究,提出了一种新的木质素改性方法,并且发现改性木质素能很好地保留取代脂肪族链的性质。该方法可能是一种合适的木质素改性方法。