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Durability of a starch-based biodegradable polymer

机译:淀粉基可生物降解聚合物的耐久性

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摘要

The photo-oxidation and the photo-stabilization of a commercial biodegradable polymer have been investigated in order to establish the possibility of using this polymer as raw material for films for agriculture. The degradation has been followed by measuring the mechanical properties as a function of photo-oxidation time and in particular by following the elongation at break. The virgin polymer, made from maize starch and a synthetic biodegradable polyester, shows poor resistance to the UV irradiation as observed by the fast decay of the elongation at break, but the presence of small amounts of conventional UV stabilizers strongly improves the durability of this polymer. The UV stabilizers remarkably extend the induction time without modifying the photo-oxidation kinetics. Among the investigated stabilizers, the benzophenone compound seems to work slightly better than the benzotriazoles, than the triazine and than the sterically hindered amine. This behaviour has been attributed to the larger absorbance in the UV range of the biodegradable polymer.
机译:为了确定使用这种聚合物作为农业用薄膜的原料的可能性,已经研究了商业上可生物降解的聚合物的光氧化和光稳定作用。通过测量机械性能作为光氧化时间的函数来跟踪降解,特别是通过遵循断裂伸长率。由玉米淀粉和可生物降解的合成聚酯制成的纯净聚合物显示出很差的抗紫外线辐射能力,如断裂伸长率的快速衰减所观察到的那样,但是少量常规紫外线稳定剂的存在极大地改善了该聚合物的耐久性。紫外线稳定剂可显着延长诱导时间,而不会改变光氧化动力学。在所研究的稳定剂中,二苯甲酮化合物似乎比苯并三唑,三嗪和位阻胺略好。该行为归因于可生物降解的聚合物在紫外线范围内的较大吸收。

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