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首页> 外文期刊>Polymer Degradation and Stability >The antioxidant role of α-tocopherol in polymers II. Melt stabilising effect in polypropylene
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The antioxidant role of α-tocopherol in polymers II. Melt stabilising effect in polypropylene

机译:α-生育酚在聚合物中的抗氧化作用II。聚丙烯中的熔体稳定作用

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The antioxidant efficiency of the biological antioxidant a-tocopherol during melt extrusion of polypropylene (PP) was investi- gated. The melt stabilising effect of α-tocopherol was found to be much higher than that of the commercial synthetic hindered phenol antioxidant Irganox 1010 especially at very low concentrations. The excellent stabilising performance of α-tocopherol was maintained even under severe extrusion conditions. The colour stability of PP processed in the presence of α-tocopherol was shown to be as good as that of Irganox 1010 when the former was used at low concentrations. However, higher concentrations of α- tocopherol imparted greater discoloration to the polymer than Irganox 1010 examined at the same concentrations. The incor- poration of a phosphite antioxidant or a polyhydric alcohol (non-antioxidant) was shown to reduce drastically polymer dis- colouration concomitant with higher levels of retention of the tocopherol in the polymer. This was attributed partly to the reduction of the overall concentration of transformation products, formed from tocopherol as a result of its antioxidant function, and partly to interactions of the co-additives with coloured transformation products and regeneration of tocopherol. The transformation products were shown to be more coloured than the parent antioxidant. A mechanism is proposed for the co-operative interactions between α-tocopherol and phosphite U-626 which result in the improvement in melt stability and reduction in colour of PP.
机译:研究了聚丙烯(PP)熔融挤出过程中生物抗氧化剂α-生育酚的抗氧化效率。发现α-生育酚的熔体稳定作用远高于商业合成的受阻酚抗氧化剂Irganox 1010,特别是在非常低的浓度下。即使在严格的挤出条件下,α-生育酚也能保持优异的稳定性能。当在低浓度下使用前者时,在α-生育酚存在下加工的PP的颜色稳定性显示出与Irganox 1010一样好的颜色稳定性。但是,与相同浓度的Irganox 1010相比,较高浓度的α-生育酚会使聚合物变色更大。已显示,加入亚磷酸酯抗氧化剂或多元醇(非抗氧化剂)可显着减少聚合物变色,同时生育酚在聚合物中的保留率更高。这部分归因于由于生育酚的抗氧化剂功能而由生育酚形成的转化产物的总浓度降低,部分归因于助添加剂与有色转化产物的相互作用和生育酚的再生。转化产物显示出比母体抗氧化剂更着色。提出了一种机制,用于α-生育酚与亚磷酸酯U-626之间的相互作用,从而改善了熔体的稳定性并降低了PP的颜色。

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