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首页> 外文期刊>Polymer Degradation and Stability >Characterization and degradation characteristics of poly (ε-caprolactone)-based composites reinforced with almond skin residues
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Characterization and degradation characteristics of poly (ε-caprolactone)-based composites reinforced with almond skin residues

机译:杏仁皮残渣增强的聚(ε-己内酯)基复合材料的表征和降解特性

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Poly(ε-caprolactone), PCL, degradation by microorganisms is a very interesting feature for its potential use in massive applications, such as food packaging. Blends of PCL with natural fibres, such as those from agricultural and food processing wastes, have proved effective by permitting a substantial reduction of the material costs, but also playing a role as reinforcement in mechanical properties. This study is focused on the evaluation of morphological, mechanical, thermal, barrier properties and degradation in composting environment of new bio-composites based on PCL and almond skin (AS) filler at different contents (0,10, 20 and 30 wt%). Results showed a clear improvement in mechanical properties, corresponding to a gain in elastic modulus of 17% at 10 wt% particle loading. Lower melting and crystallization enthalpies and higher crystallinity values were obtained for bio-composites compared with neat PCL Some decrease in thermal stability and increase in oxygen and water vapour barrier properties were also observed for composites with increasing filler content. PCL/AS composites showed higher biodegrad-ability than pure PCL, which can be explained in terms of the depressed crystallization enthalpy of the polymer matrix and improved hydrophilicity. PCL-based composites reinforced with almond skin filler at 10 wt% loading have shown as promising environmentally-friendly materials for food packaging showing a high disintegration rate, increasing the added-value potential of agricultural wastes and reducing the packaging cost.
机译:聚(ε-己内酯),PCL被微生物降解是非常有趣的功能,因为它可以在食品包装等大量应用中潜在使用。 PCL与天然纤维(例如来自农业和食品加工废料的天然纤维)的掺混物已被证明是有效的,它不仅可以大幅降低材料成本,而且还可以起到增强机械性能的作用。这项研究的重点是评估基于不同含量(0、10、20和30 wt%)的PCL和杏仁皮(AS)填料的新型生物复合材料的形态,机械,热,阻隔性能和堆肥环境中的降解。 。结果显示出机械性能的明显改善,对应于在10 wt%的颗粒负载下的弹性模量增加了17%。与纯净PCL相比,生物复合材料的熔融和结晶焓较低,且结晶度较高,对于填料含量增加的复合材料,其热稳定性也有所降低,氧气和水蒸气阻隔性能也有所提高。 PCL / AS复合材料比纯PCL具有更高的生物降解能力,这可以用降低的聚合物基质结晶焓和改善的亲水性来解释。以10%的负载量添加杏仁皮填料增强的PCL基复合材料已显示出是有前途的环保食品包装材料,具有高崩解率,增加了农业废物的附加值潜力并降低了包装成本。

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