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The evaluation of vegetable oil based macromonomers in emulsion polymerization.

机译:乳液聚合中基于植物油的大分子单体的评估。

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摘要

A novel class of monomers derived from vegetable oil resources has been proposed by the Thames Research Group (TRG) for application as comonomers in emulsion polymerization and the development of environmentally responsible latex coatings. Vegetable oil macromonomers (VOMMs) are not only derived from renewable resources, but the long hydrocarbon fatty acid moieties promote low temperature film formation, reducing the organic cosolvent requirements. Finally, VOMMs possess internal double bonds which permit oxidative crosslinking at ambient conditions.; VOMMs derived from castor oil were incorporated in vinyl-acrylic latexes. The surfactant system selection and process parameters were critical to the success of the polymerization. Staging of the monomer addition to separate the vinyl acetate monomer from the VOMM and pre-emulsifying the VOMM monomer mixture helped to achieve adequate conversion and latex stability. High levels of surfactant were required to pre-emulsify the VOMM monomer mixture. The VOMM structure and the fatty acid unsaturation level proved to be key considerations in the development of VOMM technology. Mechanical properties of cured vinyl-acrylic latex films increased with increasing VOMM unsaturation.; VOMMs were also successfully polymerized in single-stage all-acrylic latexes. The high surfactant requirement was avoided by preparing the pre-emulsion under high shear to lower the monomer droplet size. The VOMMs stabilized the monomer droplets and promoted initiation and subsequent polymerization of the droplet itself, as indicated by particle size analysis and AFM imaging of the dried latex film.; A final series of VOMMs containing urethane moieties was also evaluated. The urethane-based monomers were synthesized with low free oil content and did not require high shear to produce the pre-emulsion. Particle size analysis and AFM phase imaging indicated that large particles were not formed during the polymerization and resulted in homogeneous films. VOMMs with an improved ability to randomly copolymerize in the emulsion media, such as the urethane VOMMs, showed improved ease of handling and property development. VOMMs with higher concentrations of double bonds offered the highest potential for improvements in mechanical strength.
机译:泰晤士河研究小组(TRG)提出了一种新型的源自植物油资源的单体,可作为共聚单体用于乳液聚合和开发对环境负责的胶乳涂料。植物油大分子单体(VOMM)不仅来自可再生资源,而且长烃脂肪酸部分可促进低温成膜,从而降低了有机助溶剂的需求。最后,VOMMs具有内部双键,可以在环境条件下进行氧化交联。将衍生自蓖麻油的VOMMs掺入乙烯基丙烯酸乳胶中。表面活性剂体系的选择和工艺参数对聚合成功至关重要。分阶段添加单体以将乙酸乙烯酯单体与VOMM分离并预乳化VOMM单体混合物有助于实现足够的转化率和胶乳稳定性。需要高水平的表面活性剂来预乳化VOMM单体混合物。 VOMM结构和脂肪酸不饱和度被证明是VOMM技术发展的关键考虑因素。固化的乙烯基丙烯酸胶乳薄膜的机械性能随着VOMM不饱和度的增加而增加。 VOMMs还成功地在单级全丙烯酸胶乳中聚合。通过在高剪切下制备预乳液以降低单体液滴尺寸,避免了对高表面活性剂的需求。 VOMM稳定了单体液滴,并促进了液滴本身的引发和随后的聚合反应,如干燥胶乳薄膜的粒度分析和AFM成像所示。还评估了最终的含氨基甲酸酯部分的VOMM。氨基甲酸酯基单体的合成具有低游离油含量,并且不需要高剪切力即可生产预乳液。粒度分析和AFM相成像表明,聚合过程中未形成大颗粒,并形成了均匀的薄膜。具有改进的在乳液介质中无规共聚能力的VOMM(例如聚氨酯VOMM)显示出更高的易处理性和性能发展。具有较高双键浓度的VOMM具有提高机械强度的最大潜力。

著录项

  • 作者单位

    The University of Southern Mississippi.;

  • 授予单位 The University of Southern Mississippi.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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