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Bio-based polymeric materials from vegetable oils

机译:植物油中的生物基聚合物材料

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摘要

Vegetable oils have been utilized in developing various types of bio-based materials in my research work.Bio-based polyhydroxy fatty acids have been subject to ring-opening epoxidized soybean oil with alkaline catalyst DBU to generate polyols with varying OH numbers. Polyurethane films were obtained using these polyols polymerized with isophrone diisocyanates. The polyhydroxy fatty acids were also used as internal emulsifiers in anionic polyurethane dispersion synthesis due to the presence of carboxylic acid groups in their structures. In addition, acrylated epoxidized soybean oil was involved in another project. 2-methyl aziridine was added to acrylic groups via Michael addition mechanism under mild conditions. The resulting aziridine-containing compound could be polymerized with bio-based polyacids rapidly at room temperature. Plus, thermal polymerization of soybean oil has been studied. The heat-bodied soybean oils were subject to ozonolysis followed by reduction in order to produce polyols with primary hydroxyls, which are relatively reactive.The principle of the research is to develop products with considerably high bio-content. The soaring price of petroleum has become a global issue so that industry and academia have been seeking bio-renewable substitutions which can be potentially converted to versatile products that have comparable properties to petroleum-based merchandise.
机译:在我的研究工作中,植物油已被用于开发各种类型的生物基材料。生物基多羟基脂肪酸已通过碱性催化剂DBU进行环氧化大豆油的开环反应,生成具有不同OH值的多元醇。使用这些与异佛尔酮二异氰酸酯聚合的多元醇获得聚氨酯薄膜。由于在其结构中存在羧酸基团,因此多羟基脂肪酸还用作阴离子聚氨酯分散体合成中的内部乳化剂。此外,丙烯酸酯化的环氧大豆油也参与了另一个项目。在温和的条件下,通过迈克尔加成机理将2-甲基氮丙啶加到丙烯酸基团上。所得含氮丙啶的化合物可以在室温下与生物基多元酸快速聚合。另外,已经研究了大豆油的热聚合。对热固性大豆油进行臭氧分解,然后还原,以生产具有相对活性的伯羟基多元醇。研究的原理是开发具有相当高生物含量的产品。石油价格飞涨已成为全球性问题,因此工业界和学术界一直在寻求生物可替代的替代品,这些替代品可以潜在地转化为具有与石油类产品可比的性能的多功能产品。

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    Chen, Ruqi;

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  • 年度 2014
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  • 正文语种 en
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