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Photodegradation of a polypropylene filled with lanthanide complexes

机译:填充镧系元素配合物的聚丙烯的光降解

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This research aims at studying the photodegradation of a polypropylene formulation filled with lanthanide complexes. These complexes can be used as tracers for the identification of polymer materials in order to facilitate an high speed automatic sorting of plastic wastes for an economically efficient recycling. By paying attention to the evolution of carbonyl absorption bands in FTIR spectra, it is observed that the addition of lanthanide complexes into our formulation improves UV stability of polypropylene by reducing the extent of photo-degradation. Furthermore, TG analyses show that the traced blends can maintain better thermal properties, after irradiation. A significant increase of the crystallinity degree and a decrease of the melting temperature are more pronounced for the unfilled UV–irradiated PP. This might result from chemi-crystallization that can occur when chain entanglements are broken as a result of chain scissions. From SEM analyses, it is observed that the severity of surface cracks induced by photo degradation is reduced for filled PP. The mechanical tests are in agreement with this result and show a fundamental change in the behavior of the as-exposed blends from a ductile to a brittle material.
机译:这项研究旨在研究填充有镧系元素络合物的聚丙烯配方的光降解。这些络合物可用作鉴定聚合物材料的示踪剂,以促进塑料废物的高速自动分类,以实现经济有效的回收。通过关注FTIR光谱中羰基吸收带的演变,可以发现在我们的配方中添加镧系元素络合物可通过减少光降解程度来提高聚丙烯的UV稳定性。此外,TG分析表明,所辐照的混合物在辐照后可以保持更好的热性能。对于未填充的紫外线辐照PP,结晶度的显着提高和熔融温度的降低更为明显。这可能是由于链断裂导致链缠结破裂时可能发生的化学结晶导致的。从SEM分析,观察到填充PP的由光降解引起的表面裂纹的严重程度降低了。机械测试与该结果一致,并且显示出所暴露的共混物的行为从韧性材料到脆性材料的根本变化。

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