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Influence of Organophilic Ammonium-Free Nanoclay Incorporation on Mechanical Properties and Biodegradability of Biodegradable Polyester

机译:无子系中无氨纳米粘土掺入对生物降解聚酯机械性能和生物降解性的影响

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摘要

Disposal of petroleum-derived polymers is a growing global environmental problem of alarming proportions, which has increased interest in the use and production of biodegradable materials. In addition to biodegradation, investment in research and development in the nanotechnology area is also significant. This study evaluated the effect of incorporation of an organophilic nanoclay ammonium-free salt (Novaclay~(TM)) on the mechanical properties and biodegradation of a biodegradable polyester (Ecoflex~R), according to ASTM G 160. Ecoflex with and without incorporated Novaclay was characterized before and after biodegradation in organically enriched soil for up to 180 days, by visual analysis, optical microscopy, weight loss, differential scanning calorimetry, dynamic mechanical analysis, mechanical testing, and scanning electron microscopy. The pure Ecoflex and the Ecoflex/Novaclay nanocomposite were partially biodegraded by the method used, and showed changes in their morphological and mechanical properties.
机译:处理石油衍生的聚合物是一种不断增长的全球环境问题,令人惊叹的比例,这增加了可生物降解材料的使用和生产的兴趣。除了生物降解,纳米技术领域的研发投资也是显着的。该研究评估了掺入有机纳米铬 - 无铵盐(Novaclay〜(TM))对生物降解的聚酯(EcoFlex〜R)的机械性能和生物降解的影响,根据ASTM G 160. Ecoflex与诺纳诺卡粘土在有机富集的土壤中生物降解之前和之后的特征在一起,通过可视化分析,光学显微镜,减肥,差动扫描量热法,动态力学分析,机械测试和扫描电子显微镜。纯EcoFlex和EcoFlex / Novaclay纳米复合材料通过所用方法部分生物降解,并显示其形态学和机械性能的变化。

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