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Assessment of pro-oxidant activity of natural phenolic compounds in bio-polyesters

机译:天然酚类化合物在生物聚酯中的抗氧化活性评估

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摘要

In this work, natural phenolic compounds, such as Vanillic Acid (VA), Ferulic Acid (FA) and Thymol (Th), at very high concentrations, have been considered as pro-oxidant agents for Polylactic acid (PLA). Specifically, thin films of neat PLA and PLA-based systems containing 2 and 3 wt% of VA, FA and Th have been produced and subjected to accelerated degradation in different environmental conditions. Preliminary characterizations, through rheological, mechanical, optical and morphological analysis, of the formulated PLA-based systems show that the VA and FA, even less the Th, are able to exert a plasticizing action during the processing and subsequently, the PLA crystallinity and rigidity slightly decrease, while, the PLA ductility increase and its optical performance and morphology remain almost unchanged.To assess the pro-oxidant activity of the considered natural phenolic compounds, thin films of PLA and PLA-based systems containing VA, FA and Th have been subjected to accelerated degradation in different environmental conditions:(i)water-medium hydrolysis,(ii)photo-oxidation upon UVB exposure and(iii)thermo-oxidation upon thermal treatment in oven. All obtained results pointing out that the considered natural compounds, at these high concentrations, exert a clear pro-oxidant activity in PLA during the water-medium hydrolysis and the photo- and thermo-oxidative degradation. Moreover, the VA, FA and Th can be considered as suitable pro-degradant additives for PLA, also in order to control the bio-polyester degradation times.
机译:在这项工作中,人们认为非常高浓度的天然酚类化合物,例如香草酸(VA),阿魏酸(FA)和百里酚(Th),可用作聚乳酸(PLA)的促氧化剂。具体来说,已经生产出纯净的PLA和PLA基体系的薄膜,其中含有VA,FA和Th含量为2和3wt%,并且在不同的环境条件下会加速降解。通过流变,机械,光学和形态学分析,对已配制的基于PLA的体系进行的初步表征表明,VA和FA(甚至不包括Th)能够在加工过程中发挥增塑作用,进而提高PLA的结晶度和刚性略微降低,而PLA延展性增加,并且其光学性能和形态几乎保持不变。为了评估所考虑的天然酚类化合物的促氧化活性,已对PLA和含有VA,FA和Th的PLA基体系的薄膜进行了研究。在不同环境条件下会加速降解:(i)水介质水解,(ii)暴露于UVB时发生光氧化和(iii)在烤箱中热处理后发生热氧化。所有获得的结果都指出,在水介质水解以及光氧化和热氧化降解过程中,这些高浓度的天然化合物在PLA中具有明显的促氧化剂活性。此外,为了控制生物聚酯的降解时间,VA,FA和Th可以被认为是PLA的合适的降解助剂。

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