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The Photodegradation and Biodegradation of rEPS/Curaua Fiber Composites

机译:rEPS /库拉瓦纤维复合材料的光降解和生物降解

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摘要

The development of composite materials comprised of postconsumer polymers and natural fibers is important for the possibility to obtain materials that are more compatible with the environment. Depending on the application of these materials and their final disposal, the relevant degradation processes must be considered in the studies of these materials. The aim of this work is to evaluate the effect of the degradation process in simulated soil and in the aging accelerated UV chamber on the properties (tensile strength, chemical, morphology) of the composites developed with recycled expanded polystyrene matrix reinforced by curaua fiber. In the tensile strength tests, it was found that the presence of the curaua fiber and the coupling agent did not have significant effect in the degradation processes of the polymer matrix. However, the use of the coupling agent without the addition of fiber curaua promoted the accelerated degradation of the matrix. The carbonyl index was used as the main assessment parameter of the degradation of the composites, since an increasing in the carbonyl index was observed in the initial periods of degradation decreasing for longer time periods. The presence of cracks in the samples following exposure to UV was observed, but no biofilm formation was identified in the samples exposed to the simulated soil.
机译:由消费后聚合物和天然纤维组成的复合材料的开发对于获得与环境更相容的材料的可能性很重要。根据这些材料的应用及其最终处理,在研究这些材料时必须考虑相关的降解过程。这项工作的目的是评估在模拟土壤中和在老化的加速UV室中的降解过程对由Curuaa纤维增强的再生发泡聚苯乙烯基体开发的复合材料的性能(拉伸强度,化学性质,形态)的影响。在拉伸强度测试中,发现姜黄纤维和偶联剂的存在对聚合物基质的降解过程没有显着影响。但是,不添加纤维姜黄素的偶联剂的使用促进了基质的加速降解。羰基指数用作复合材料降解的主要评估参数,因为在降解的初始阶段观察到羰基指数的增加会持续较长时间。观察到暴露于紫外线后样品中存在裂纹,但暴露于模拟土壤的样品中未发现生物膜形成。

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