首页> 美国卫生研究院文献>Polymers >Effect of Iignocellulosic Nanoparticles Extracted from Yerba Mate (Ilex paraguariensis) on the Structural Thermal Optical and Barrier Properties of Mechanically Recycled Poly(lactic acid)
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Effect of Iignocellulosic Nanoparticles Extracted from Yerba Mate (Ilex paraguariensis) on the Structural Thermal Optical and Barrier Properties of Mechanically Recycled Poly(lactic acid)

机译:叶巴配套(ILEX PARAGUARIARIARISIS)提取的岩毛细管纳米粒子对机械回收聚(乳酸)的结构热光学和阻隔性能

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摘要

In this work, yerba mate nanoparticles (YMNs) were extracted from yerba mate wastes and further used to improve the overall performance of mechanically recycled PLA (PLAR). Recycled PLA was obtained by melt reprocessing PLA subjected to an accelerated ageing process, which involved photochemical, thermal and hydrothermal ageing steps, as well as a final demanding washing step. YMNs (1 and 3 wt. %) were added to the PLAR during the melt reprocessing step and further processed into films. The main goal of the development of PLAR-YMNs bionanocomposites was to increase the barrier properties of recycled PLA, while showing good overall performance for food packaging applications. Thus, optical, structural, thermal, mechanical and barrier properties were evaluated. The incorporation of YMNs led to transparent greenish PLAR-based films with an effective blockage of harmful UV radiation. From the backbone FTIR stretching region (bands at 955 and 920 cm ), it seems that YMNs favor the formation of crystalline domains acting as nucleating agents for PLAR. The morphological investigations revealed the good dispersion of YMNs in PLAR when they are used in the lowest amount of 1 wt. %, leading to bionanocomposites with improved mechanical performance. Although the addition of high hydrophilic YMNs increased the water vapor transmission, the addition of 1 wt. % of YMNs enhanced the oxygen barrier performance of the produced bionanocomposite films. These results show that the synergistic revalorization of post-consumer PLA and nanoparticles obtained from agri-food waste is a potential way for the production of promising packaging materials that meet with the principles of the circular economy.
机译:在这项工作中,Yerba Mate纳米颗粒(YMNS)被从Yerba Mate废物中提取,并进一步用于改善机械回收PLA(PLA)的总体性能。通过熔融再加工PLA进行再循环PLA,其进行加速老化过程,其涉及光化学,热和水热老化步骤以及最终要求苛刻的洗涤步骤。在熔体再处理步骤期间将YMNS(1和3重量%)加入褶皱中并进一步加工成薄膜。 PLAR-YMNS BionAnoC复合材料的发展的主要目的是增加再生PLA的阻隔性能,同时为食品包装应用显示出良好的整体性能。因此,评估光学,结构,热,机械和屏障性质。 YMNS的掺入导致透明的基于绿色的薄膜,有效堵塞有害的紫外线辐射。从骨干FTIR拉伸区域(955和920厘米的带),似乎YMNS有利于形成作用为羽毛成核剂的结晶结构域。当它们以最低1重量的最低量时,形态学研究显示YMNS在斑块中的良好分散。 %,导致脱硫复合材料,具有改善的机械性能。虽然添加高亲水性YMNS增加了水蒸气透射,但加入1重量。 YMN的百分比增强了所生产的脱硫膜的氧气阻隔性能。这些结果表明,消费后PLA和从农业食品废物中获得的纳米颗粒的协同反转是一种潜在的方法,用于生产符合循环经济原则的有前途的包装材料。

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