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A Review: Research Progress in Modification of Poly (Lactic Acid) by Lignin and Cellulose

机译:综述:木质素和纤维素改性聚(乳酸)的研究进展

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摘要

With the depletion of petroleum energy, the possibility of prices of petroleum-based materials increasing, and increased environmental awareness, biodegradable materials as a kind of green alternative have attracted more and more research attention. In this context, poly (lactic acid) has shown a unique combination of properties such as nontoxicity, biodegradability, biocompatibility, and good workability. However, examples of its known drawbacks include poor tensile strength, low elongation at break, poor thermal properties, and low crystallization rate. Lignocellulosic materials such as lignin and cellulose have excellent biodegradability and mechanical properties. Compounding such biomass components with poly (lactic acid) is expected to prepare green composite materials with improved properties of poly (lactic acid). This paper is aimed at summarizing the research progress of modification of poly (lactic acid) with lignin and cellulose made in in recent years, with emphasis on effects of lignin and cellulose on mechanical properties, thermal stability and crystallinity on poly (lactic acid) composite materials. Development of poly (lactic acid) composite materials in this respect is forecasted.
机译:随着石油能源的消耗,石油基材料价格的可能性增加,并增加了环境意识,可生物降解的材料作为一种绿色替代品吸引了越来越多的研究关注。在这种情况下,聚(乳酸)已经显示出独特的性质组合,例如无毒,生物降解性,生物相容性和良好的可加工性。然而,其已知缺点的实例包括抗拉强度差,断裂处的低伸长率,较差的热性能和低结晶速率。木质素和纤维素如木质纤维素材料具有优异的生物降解性和机械性能。预期将这种具有聚(乳酸)的生物质组分加工制备具有改进的聚(乳酸)性能的绿色复合材料。本文旨在总结近年来木质素和纤维素的聚(乳酸)改性的研究进展,重点是木质素和纤维素在聚(乳酸)复合材料上对机械性能,热稳定性和结晶度的影响材料。预测了在这方面的聚(乳酸)复合材料的研制。

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