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Ball Milling to Produce Composites Based of Natural Clinoptilolite as a Carrier of Salicylate in Bio-Based PA11

机译:球磨生产基于天然斜发沸石作为水杨酸酯载体的生物基PA11复合材料

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摘要

Antimicrobial packaging systems are recognized as effective approaches to prolong food shelf life. In this context, Bio-based PA11 loaded with a food-grade zeolite were prepared using ball milling technology in the dry state. Zeolite was filled with sodium salicylate, as an antimicrobial agent, and incorporated into the polymer matrix (~50 wt % of salicylate) at different loadings (up to 10 wt %). Structural characterization and an analysis of the physical properties (thermal, barrier, mechanical) were conducted on the composites’ films and compared with the unfilled PA11. The successful entrapment of the antimicrobial molecule into the zeolite’s cavities was demonstrated by the thermal degradation analysis, showing a delay in the molecule’s degradation. Morphological organization, evaluated using SEM analysis, indicated the homogeneous distribution of the filler within the polymer matrix. The filler improves the thermal stability of PA11 and mechanical properties, also enhancing its barrier properties against CO2 and O2. The elongated form of the zeolite particles, evaluated through SEM analysis, was used to model the permeability data. The controlled release of salicylate, evaluated as a function of time and found to depend on the filler loading, was analyzed using the Gallagher‒Corrigan model.
机译:抗菌包装系统被认为是延长食品保质期的有效方法。在这种情况下,使用球磨技术在干燥状态下制备了载有食品级沸石的生物基PA11。沸石填充有水杨酸钠作为抗微生物剂,并以不同的负载量(最高10 wt%)掺入聚合物基质(约50 wt%的水杨酸酯)中。在复合材料的薄膜上进行了结构表征和物理性能(热,阻隔,机械)分析,并与未填充的PA11进行了比较。通过热降解分析证明了抗菌分子成功地被包埋在沸石的空腔中,表明该分子的降解有所延迟。使用SEM分析评估的形态组织表明填料在聚合物基质内的均匀分布。填料改善了PA11的热稳定性和机械性能,还增强了其对CO2和O2的阻隔性能。通过SEM分析评估的细长形式的沸石颗粒用于对渗透率数据建模。使用Gallagher‒Corrigan模型分析了水杨酸酯的控制释放,将其作为时间的函数进行评估,并发现其取决于填料的负载量。

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