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Evaluation of rheological behavior, anaerobic and thermal degradation, and lifetime prediction of polylactide/poly(butylene adipate-co-terephthalate)/powdered nitrile rubber blends

机译:对流变行为,厌氧和热降解的评价,以及聚酰胺/聚(丁烯己二酸丁二醇酯)/粉末丁腈橡胶共混物的寿命预测

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摘要

The present study aimed to investigate the effect of powdered nitrile rubber (NBR) content on the morphology, rheological behavior, anaerobic and thermal degradation, and life expectancy of blends based on polylactide (PLA) and poly(butylene adipate-co-terephthalate) (PBAT). The blends were prepared by extrusion and compression molding using a commercial PLA/PBAT (70:30 wt%) blend and powdered NBR coated with calcium carbonate (93:7 wt%). Photomicrographs from scanning electron microscopy revealed that the NBR particles, stained with osmium tetroxide, were preferentially located in the PLA matrix. Additionally, NBR contributed to reducing the size of PBAT domains. The rheological behavior of PLA/PBAT/NBR blends was dependent on rubber content, indicating that NBR plays an important role in blend flowability. Furthermore, a decline was observed in the activation energy needed to degrade 5% of the PLA contained in the blend, reducing the lifespan of NBR-based blends. This behavior was attributed to the thermal conductivity of the calcium carbonate present in the NBR. Finally, anaerobic degradation was not inhibited in the PLA/PBAT/NBR blend containing 20 wt% of rubber, although its biochemical methane potential was lower than that of PLA/PBAT/NBR.
机译:本研究旨在探讨粉末丁腈橡胶(NBR)含量对基于聚丙环(PLA)和聚(丁烯己二酸丁二醇酯)的混合物的寿命的影响。 PBAT)。通过使用商业PLA / PBAT(70:30wt%)共混物和涂有碳酸钙(93:7wt%)的商业PLA / PBAT(70:30wt%)混合物和粉末状NBR制备共混物。从扫描电子显微镜检查的显微照片显示,与锇氧化锇染色的NBR颗粒优先位于PLA基质中。此外,NBR促成降低PBAT域的大小。 PLA / PBAT / NBR混合物的流变行为依赖于橡胶含量,表明NBR在混合流动性中起重要作用。此外,在使共混物中包含的5%的PLA降解所需的活化能量中,观察到下降,降低了基于NBR的共混物的寿命。这种行为归因于NBR中存在的碳酸钙的导热率。最后,在含有20wt%的橡胶的PLA / PBAT / NBR共混物中不抑制厌氧降解,尽管其生化甲烷潜力低于PLA / PBAT / NBR。

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