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首页> 外文期刊>Polymer Degradation and Stability >Effect of the individual and combined use of cardanol-based plasticizers and epoxidized soybean oil on the properties of PVC
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Effect of the individual and combined use of cardanol-based plasticizers and epoxidized soybean oil on the properties of PVC

机译:腰果酚基增塑剂和环氧化大豆油的单独和组合使用对PVC性能的影响

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摘要

AbstractThe cardanol-derived plasticizers cardanol acetate (CA) and epoxidized cardanol acetate (ECA) were prepared from a renewable resource, cashew nut shell liquid (CNSL), and their plasticization efficiencies were investigated. The thermal decomposition temperatures of the cardanol derivatives were higher than that of the common petroleum-based plasticizer di-2-ethylhexyl phthalate (DOP) in the order ECA > CA > DOP. The tensile strains of the PVCs containing CA and ECA were ca. 705–810%, and the tensile strengths were ca. 17.4–19.1 MPa, which were higher than those of PVC containing DOP. The results of a Fourier transform infrared spectroscopy (FT-IR/ATR) and dynamic mechanical analysis (DMA) showed that the compatibility of ECA with PVC was excellent, and theTgof PVC containing 50 phr of ECA decreased to 27.4 °C. In studies on the combination of a primary plasticizer with epoxidized soybean oil (ESBO), it has been shown that the addition of small amounts (5 phr) of ESBO to ECA improves not only the thermal stability but also the mechanical properties, despite the insufficient compatibility of ESBO and PVC. It can be inferred that the mixture of ECA and ESBO improves the affinity of ESBO and PVC, thereby reducing the polymer chain interactions. Finally, in the leaching tests, the weight loss of PVC containing 50 phr of ECA was reduced to 2%, confirming that ECA is highly resistant to migration to water. As a result, the combination of two biobased plasticizers, ECA and ESBO, could be a good candidate to replace DOP.Graphical abstractDisplay OmittedHighlightsCardanol-based plasticizers were prepared with efficient process.ECA and ESBO mixture shows excellent plasticizing effect, heat and leaching stability.The synergetic mechanism of the combinational use of ECA and ESBO is proposed.
机译: 摘要 腰果酚衍生的增塑剂乙酸腰果酚乙酸酯(CA)和环氧化腰果酚乙酸酯(ECA)由可再生的腰果壳液体制成(CNSL),并研究了它们的增塑效率。腰果酚衍生物的热分解温度高于普通石油基增塑剂邻苯二甲酸二-2-乙基己基酯(DOP)的顺序,即ECA> CA> DOP。含有CA和ECA的PVC的拉伸应变为ca。 705–810%,抗拉强度约为17.4-19.1 MPa,高于含DOP的PVC的MPa。傅立叶变换红外光谱(FT-IR / ATR)和动态力学分析(DMA)的结果表明ECA与PVC的相容性极好, T g 降至27.4°C。在对主要增塑剂与环氧化大豆油(ESBO)的组合进行的研究中,已表明,向ECA添加少量(5 phr)的ESBO不仅改善了热稳定性,而且改善了机械性能,尽管不足ESBO和PVC的兼容性。可以推断,ECA和ESBO的混合物改善了ESBO和PVC的亲和力,从而减少了聚合物链的相互作用。最终,在浸出试验中,含有50 phr ECA的PVC的重量损失降低至2%,这证明ECA具有高度的抗水迁移能力。因此,两种生物基增塑剂ECA和ESBO的组合可能是替代DOP的不错选择。 图形摘要 省略显示 突出显示 腰果酚高效增塑剂制备 ce:para> ECA和ESBO混合物显示出优异的增塑效果,耐热性和浸出稳定性。 提出了ECA与ESBO结合使用的协同机制。

著录项

  • 来源
    《Polymer Degradation and Stability 》 |2018年第1期| 1-11| 共11页
  • 作者单位

    Center for Greenhouse Gas Resources, Korea Research Institute of Chemical Technology (KRICT);

    Center for Greenhouse Gas Resources, Korea Research Institute of Chemical Technology (KRICT),Department of Advanced Materials and Chemical Engineering, Korea University of Science and Technology (UST);

    Center for Greenhouse Gas Resources, Korea Research Institute of Chemical Technology (KRICT),Department of Advanced Materials and Chemical Engineering, Korea University of Science and Technology (UST);

    Center for Greenhouse Gas Resources, Korea Research Institute of Chemical Technology (KRICT),Department of Advanced Materials and Chemical Engineering, Korea University of Science and Technology (UST);

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

    Cardanol; Acetylation; Epoxidation; Plasticizer; Epoxidized soybean oil; PVC;

    机译:腰果酚;乙酰化;环氧化;增塑剂;环氧大豆油;PVC;

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