Hydrolytic degradation of poly(lactic acid): Population balance modelling for simulating molecular weight distribution

IF 6 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Polymer Testing Pub Date : 2025-03-06 DOI:10.1016/j.polymertesting.2025.108756
Wanwarang Limsukon , Maria Rubino , Muhammad Rabnawaz , Loong-Tak Lim , Puttha Sakkaplangkul , Rafael Auras
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Abstract

Poly (lactic acid) (PLA) is one of the most promising biobased and biodegradable polymers able to replace several fossil-based plastics for packaging and other applications. However, PLA is susceptible to hydrolytic degradation, impacting its overall service performance and end-of-life. The molecular weight distribution (MWD) is a critical parameter that provides insights during hydrolytic degradation. In this study, we introduced a population balance model, utilizing the high-order moment-conserving method of classes, to describe the MWD during the hydrolytic degradation of amorphous PLA film at 45 °C and 65 °C and expanded to 85 °C. The phenomenological model provided hydrolysis constants that clarified noncatalytic and autocatalytic reaction mechanisms and information on specific chain scission of a particular length. Our predictions demonstrate a promising alignment in weight location and distribution shape with the experimental MWDs observed throughout the hydrolytic process of PLA. One notable advantage is the MWD simulation, conducted over an extended time frame. Furthermore, this predictive capability extends to forecasting the lifetime of PLA films at various temperatures within the tested range, thereby fostering insights into PLA hydrolysis applicable to real-life scenarios and supporting environmentally conscious degradation practices.

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聚乳酸的水解降解:模拟分子量分布的种群平衡模型
聚乳酸(PLA)是最有前途的生物基和可生物降解聚合物之一,能够取代几种化石基塑料用于包装和其他应用。然而,聚乳酸容易水解降解,影响其整体使用性能和寿命终止。分子量分布(MWD)是一个关键参数,提供了深入了解水解降解。在本研究中,我们引入了一个种群平衡模型,利用高阶矩守恒类方法来描述非晶态PLA膜在45°C和65°C以及扩展到85°C时水解降解过程中的MWD。现象学模型提供了澄清非催化和自催化反应机理的水解常数,以及特定长度链断裂的信息。我们的预测表明,在PLA水解过程中观察到的实验mwd在重量位置和分布形状上有希望保持一致。一个显著的优势是MWD模拟,可以在较长的时间内进行。此外,这种预测能力扩展到预测PLA薄膜在测试范围内不同温度下的寿命,从而促进对适用于现实生活场景的PLA水解的见解,并支持具有环保意识的降解实践。
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来源期刊
Polymer Testing
Polymer Testing 工程技术-材料科学:表征与测试
CiteScore
10.70
自引率
5.90%
发文量
328
审稿时长
44 days
期刊介绍: Polymer Testing focuses on the testing, analysis and characterization of polymer materials, including both synthetic and natural or biobased polymers. Novel testing methods and the testing of novel polymeric materials in bulk, solution and dispersion is covered. In addition, we welcome the submission of the testing of polymeric materials for a wide range of applications and industrial products as well as nanoscale characterization. The scope includes but is not limited to the following main topics: Novel testing methods and Chemical analysis • mechanical, thermal, electrical, chemical, imaging, spectroscopy, scattering and rheology Physical properties and behaviour of novel polymer systems • nanoscale properties, morphology, transport properties Degradation and recycling of polymeric materials when combined with novel testing or characterization methods • degradation, biodegradation, ageing and fire retardancy Modelling and Simulation work will be only considered when it is linked to new or previously published experimental results.
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