Effect of Fiber Cross-Sectional and Surface Properties on the Degradation of Biobased Polymers.

IF 4.7 3区 工程技术 Q1 POLYMER SCIENCE
Polymers Pub Date : 2024-11-02 DOI:10.3390/polym16213096
Simon Schick, Andreas Weinberger, Robert Groten, Gunnar H Seide
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引用次数: 0

Abstract

Biobased polymers such as polylactic acid (PLA) and polybutylene succinate (PBS) break down naturally under certain environmental conditions. The efficiency of degradation can be linked directly to fiber surface properties, which influence polymer accessibility. Here, the degradation of PLA and PBS fibers with six different cross-sections was investigated. The fibers were aged by hydrolysis and UV exposure in an accelerated weathering test, followed by an ISO 20200 laboratory-scale disintegration test with non-aged fibers as controls. The polymers were analyzed by differential scanning calorimetry, Fourier transform infrared spectroscopy, and gel permeation chromatography, comparing the polymer granulate, virgin fibers, and UV-exposed fibers. It was found that the molecular mass and crystallinity of PBS changed more than PLA during spinning. Several PLA samples were completely degraded, whereas all the PBS samples remained intact. Furthermore, surface openings appeared on the PLA fibers during weathering, suggesting greater sensitivity to UV exposure and hydrolysis than PBS. A clear correlation between the fiber surface area and the degradation rate was observed for all samples, but the correlation was positive for PLA and negative for PBS. The slower degradation of PBS fibers with a larger surface area may reflect the ability of PBS to preserve itself by further crystallization during degradation processes at temperatures higher than the glass transition point. The data clearly show that the analysis of single degradation mechanisms is insufficient to predict the behavior of material under real-world conditions, where different degradation mechanisms may work in parallel or consecutively, and may show interdependencies.

纤维横截面和表面特性对生物基聚合物降解的影响。
聚乳酸(PLA)和聚丁二酸丁二醇酯(PBS)等生物基聚合物在特定环境条件下会自然分解。降解效率与纤维表面特性直接相关,而纤维表面特性会影响聚合物的可及性。本文研究了具有六种不同横截面的聚乳酸和 PBS 纤维的降解情况。在加速老化试验中,通过水解和紫外线曝晒对纤维进行老化,然后以未老化纤维为对照,进行 ISO 20200 实验室规模的崩解试验。通过差示扫描量热法、傅立叶变换红外光谱法和凝胶渗透色谱法对聚合物进行了分析,比较了聚合物颗粒、原始纤维和紫外线暴露纤维。结果发现,在纺丝过程中,PBS 的分子质量和结晶度变化比 PLA 更大。一些聚乳酸样品完全降解,而所有 PBS 样品都保持完好。此外,在风化过程中,聚乳酸纤维的表面出现了开口,这表明聚乳酸比聚苯乙烯对紫外线照射和水解更敏感。所有样品的纤维表面积与降解率之间都存在明显的相关性,但聚乳酸的相关性为正,而 PBS 的相关性为负。表面积较大的 PBS 纤维降解速度较慢,这可能反映了 PBS 在降解过程中,在高于玻璃化转变点的温度下通过进一步结晶来保存自身的能力。这些数据清楚地表明,对单一降解机制的分析不足以预测材料在实际条件下的行为,在实际条件下,不同的降解机制可能并行或连续工作,并可能表现出相互依存的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Polymers
Polymers POLYMER SCIENCE-
CiteScore
8.00
自引率
16.00%
发文量
4697
审稿时长
1.3 months
期刊介绍: Polymers (ISSN 2073-4360) is an international, open access journal of polymer science. It publishes research papers, short communications and review papers. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Polymers provides an interdisciplinary forum for publishing papers which advance the fields of (i) polymerization methods, (ii) theory, simulation, and modeling, (iii) understanding of new physical phenomena, (iv) advances in characterization techniques, and (v) harnessing of self-assembly and biological strategies for producing complex multifunctional structures.
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