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改性热塑性淀粉对聚乳酸结晶动力学和阻隔性能的影响

Effects of Modified Thermoplastic Starch on Crystallization Kinetics and Barrier Properties of PLA.

作者信息

Kulkarni Apoorva, Narayan Ramani

机构信息

Department of Chemical Engineering & Material Science, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Polymers (Basel). 2021 Nov 26;13(23):4125. doi: 10.3390/polym13234125.

Abstract

This study reports on using reactive extrusion (REX) modified thermoplastic starch particles as a bio-based and biodegradable nucleating agent to increase the rate of crystallization, percent crystallinity and improve oxygen barrier properties while maintaining the biodegradability of PLA. Reactive blends of maleated thermoplastic starch (MTPS) and PLA were prepared using a ZSK-30 twin-screw extruder; 80% glycerol was grafted on the starch during the preparation of MTPS as determined by soxhlet extraction with acetone. The crystallinity of PLA was found to increase from 7.7% to 28.6% with 5% MTPS. The crystallization temperature of PLA reduced from 113 °C to 103 °C. Avrami analysis of the blends showed that the crystallization rate increased 98-fold and t was reduced drastically from 20 min to <1 min with the addition of 5% MTPS compared to neat PLA. Observation from POM confirmed that the presence of MTPS in the PLA matrix significantly increased the rate of formation and density of spherulites. Oxygen and water vapor permeabilities of the solvent-casted PLA/MTPS films were reduced by 33 and 19% respectively over neat PLA without causing any detrimental impacts on the mechanical properties (α = 0.05). The addition of MTPS to PLA did not impact the biodegradation of PLA in an aqueous environment.

摘要

本研究报道了使用反应挤出(REX)改性的热塑性淀粉颗粒作为生物基可生物降解成核剂,以提高聚乳酸(PLA)的结晶速率、结晶度百分比并改善其氧气阻隔性能,同时保持PLA的生物降解性。使用ZSK-30双螺杆挤出机制备了马来酸化热塑性淀粉(MTPS)与PLA的反应共混物;通过丙酮索氏提取法测定,在MTPS制备过程中80%的甘油接枝到了淀粉上。发现添加5%的MTPS后,PLA的结晶度从7.7%提高到了28.6%。PLA的结晶温度从113℃降至103℃。对共混物的阿弗拉米分析表明,与纯PLA相比,添加5%的MTPS后结晶速率提高了98倍,t从20分钟急剧降至<1分钟。偏光显微镜(POM)观察证实,PLA基体中MTPS的存在显著提高了球晶的形成速率和密度。溶剂浇铸的PLA/MTPS薄膜的氧气和水蒸气渗透率分别比纯PLA降低了33%和19%,且对机械性能没有任何不利影响(α = 0.05)。向PLA中添加MTPS不会影响PLA在水环境中的生物降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31b4/8659831/8bca6f3d12d9/polymers-13-04125-g001.jpg

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