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Compostability assessment of nano-reinforced poly(lactic acid) films

机译:纳米增强聚乳酸薄膜的堆肥性评估

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摘要

Nanomaterials can provide plastics with great advantages on mechanical and active properties (i.e. release and capture of specific substances). Therefore, packaging is expected to become one of the leading applications for these substances by 2020. There are some applications already in the market. Nevertheless, there is still some areas under development. A key issue to be analyzed is the end-of-life of these materials once they become waste, and specifically when nanomaterials are used in biodegradable products. The present study evaluated the disintegration, biodegradability, and ecotoxicity of poly (lactic acid) films reinforced with the three following nanomaterials: (1) montmorillonite modified with an ammonium quaternary salt, (2) calcium carbonate and (3) silicon dioxide. Results on disintegration showed that films completely disintegrated into visually indistinguishable residues after 6-7 weeks of incubation in composting environment. Moreover, no differences were observed in the evolution of the bioresidue with respect to color, aspect, and odor in comparison with the control. It was also observed that nanomaterials did not significantly reduce the level of biodegradability of PLA (p > 0.05). In fact, biodegradation was higher, without finding significant differences (p>0.05), in all the nano-reinforced samples with respect to PLA after 130 days in composting (9.4% in PLA + Nano-SiO_2; 34.0% in PLA + Clayl; 48.0% in PLA + Nano-CaCO_3). Finally, no significant differences (p > 0.05) in ecotoxicity in plants were observed as a result of the incorporation of nanoparticles in the PLA matrix.
机译:纳米材料可以为塑料提供在机械和活性特性(即释放和捕获特定物质)方面的巨大优势。因此,预计到2020年,包装将成为这些物质的主要应用之一。市场上已经有一些应用。尽管如此,仍有一些领域正在开发中。要分析的一个关键问题是这些材料一旦变废后的寿命,特别是当纳米材料用于可生物降解产品时。本研究评估了用以下三种纳米材料增强的聚(乳酸)薄膜的崩解性,生物降解性和生态毒性:(1)季铵盐改性的蒙脱石,(2)碳酸钙和(3)二氧化硅。崩解结果表明,在堆肥环境中孵育6-7周后,薄膜完全崩解成视觉上无​​法区分的残留物。此外,与对照相比,在颜色,外观和气味方面,没有观察到生物残留物的进化差异。还观察到纳米材料并未显着降低PLA的生物降解水平(p> 0.05)。实际上,在堆肥130天后,所有纳米增强样品相对于PLA的生物降解率更高,而没有发现显着差异(p> 0.05)(PLA + Nano-SiO_2为9.4%; PLA + Clayl为34.0%; PLA + Clayl为34.0%; PLA为+ 3%)。在PLA + Nano-CaCO_3中为48.0%)。最后,由于在PLA基质中掺入了纳米颗粒,因此未观察到植物在生态毒性方面的显着差异(p> 0.05)。

著录项

  • 来源
    《Waste Management》 |2016年第2期|143-155|共13页
  • 作者单位

    Packaging, Transport, and Logistics Research Center (ITENE), C/ Albert Einstein 1, 46980 Paterna, Valencia, Spain;

    Packaging, Transport, and Logistics Research Center (ITENE), C/ Albert Einstein 1, 46980 Paterna, Valencia, Spain;

    Packaging, Transport, and Logistics Research Center (ITENE), C/ Albert Einstein 1, 46980 Paterna, Valencia, Spain;

    Packaging, Transport, and Logistics Research Center (ITENE), C/ Albert Einstein 1, 46980 Paterna, Valencia, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanomaterial; PLA; Film; Biodegradability; Compostability; Disintegration;

    机译:纳米材料解放军电影;生物降解性可堆肥性;解体;

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