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Radiation effect on the mechanical stability and biodegradability of CPP/Bionolle blend

机译:辐射对CPP / Bionolle共混物的机械稳定性和生物降解性的影响

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Blends of polypropylene-co-ethylene (CPP) and polybutylene succinate (Bionolle) with polypropylene grafted maleic anhydride (Modic) as a compatibilizer were prepared by melt blending. Irradiation of the resultant polyblend was carried out using an electron beam in air. It was noted that the Modic compatibilizer also appears to act as a protective agent toward radiation degradation. The occurrence of crosslinking in the polyblend was observed, mainly contributed by Bionolle. However the whole process over all blend composition ranges was dominated by degradation. During indoor storage, the mechanical stability of irradiated polyblends was found to be fairly good, particularly compatibilized Bionolle and CPP/Bionolle (27/75). On the other hand, the sample buried in soil showed a drastic reduction in the over all mechanical properties. The extent of biodegradability as estimated from the weight loss increased with increasing Bionolle content. A synergistic effect on the weight loss was shown by compatibilized Bionolle and CPP/Bionolle (25/75). Additionally, even if the sample was no longer strong due to postirradiation degradation, the biodegrad- ability of the polyblend was not much improved. Using a curve fit model the time for complete weight loss was found to be approximately 14, 8, 7, and 12 months for unirradiated and irradiated Bionolle, compatibilized Bionolle, CPP/Bionolle (25/75) and (50/50), respectively.
机译:通过熔融共混制备聚丙烯-共-乙烯(CPP)和聚丁二酸丁二酯(Bionolle)与聚丙烯接枝的马来酸酐(Modic)作为增容剂的共混物。使用电子束在空气中照射所得的共混物。注意到,莫迪克相容剂也似乎充当辐射降解的保护剂。观察到在共混物中发生交联,主要是由Bionolle贡献的。但是,整个过程在所有共混物组成范围内都以降解为主。在室内储存期间,发现辐照的混合纤维的机械稳定性相当好,特别是相容的Bionolle和CPP / Bionolle(27/75)。另一方面,埋在土壤中的样品在所有机械性能方面都急剧下降。由体重减轻估计的生物降解程度随Bionolle含量的增加而增加。相容的Bionolle和CPP / Bionolle(25/75)显示出对减肥的协同作用。另外,即使样品由于辐照后降解而不再坚固,多掺混物的生物降解能力也没有得到很大改善。使用曲线拟合模型,发现未辐照和辐照的Bionolle,相容的Bionolle,CPP / Bionolle(25/75)和(50/50)的完全减肥时间分别约为14、8、7和12个月。 。

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