首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Development of high-performance biodegradable rigid polyurethane foams using all bioresource-based polyols: Lignin and soy oil-derived polyols
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Development of high-performance biodegradable rigid polyurethane foams using all bioresource-based polyols: Lignin and soy oil-derived polyols

机译:使用所有生物源的多元醇的高性能可生物降解刚性聚氨酯泡沫的开发:木质素和大豆衍生多元醇

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摘要

Development of biodegradable polyurethane materials is the most promising in the wider context of the "greening" of industrial chemistry. To tackle this challenge, a novel biodegradable polyurethane foam from all bioresource-based polyols (lignin and soy oil-derived polyols) and polymeric methyldiphenyl diisocyanate (pMDI) have been synthesized via a one-pot and self-rising process. All these foam samples have the internal cellular morphology and microstructure. FTIR result exhibits characteristic peaks of polyurethane, and indicates covalent bonds between soy-based polyurethane and lignin, and the lignin powders can react with pMDI via active-H and -CNO. In addition, hydrogen bonding also plays an important role in forming the 3D structures. These interactions and chemical bonds made the prepared foam samples form the 3D macromolecular structure with improved mechanical, thermal, and biodegradable properties. The reaction process is time-saving and cost-effective as it requires no blowing agent and minimum processing steps, while exploring the potential of using the higher content of nature bioresource constituents. (C) 2018 Elsevier B.V. All rights reserved.
机译:可生物降解的聚氨酯材料的发展是工业化学“绿化”的更广泛背景下最有希望的。为了解决这一挑战,通过单罐和自上升过程合成了来自所有生物源的多元醇(木质素和大豆衍生的多元醇)和聚合物甲基二苯基二异氰酸酯(PMDI)的新型生物降解的聚氨酯泡沫。所有这些泡沫样品都具有内部细胞形态和微观结构。 FTIR结果表现出聚氨酯的特征峰,并表明大豆基聚氨酯和木质素之间的共价键,木质素粉末可以通过活性-H和-CNO与PMDI反应。此外,氢键也在形成3D结构方面发挥着重要作用。这些相互作用和化学键使制备的泡沫样品形成了具有改善的机械,热和可生物降解性的3D大分子结构。反应过程是节省的,并且由于不需要发泡剂和最小处理步骤,而探讨了使用较高含量的自然生物源成分的潜力的成本效益。 (c)2018年elestvier b.v.保留所有权利。

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