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Lignin-based monomers: Utilization in high-performance polymers and the effects of their structures on polymer properties.

机译:木质素基单体:在高性能聚合物中的用途及其结构对聚合物性能的影响。

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摘要

With the uncertainty of petroleum reserves and future crude oil prices, lignocellulosic biomass is becoming an increasingly valuable resource for the sustainable development of fuels, chemicals, and materials, including vinyl ester resins (VERs). Petroleum-based VERs are used to produce polymer composites for a wide variety of commercial applications. Although possessing relatively high moduli, strengths, and glass transition temperatures, commercial VERs typically contain high concentrations of a reactive diluent, such as styrene. However, these reactive diluents are often considered hazardous air pollutants (HAPs), volatile organic compounds (VOCs), and anticipated carcinogens. Moreover, bisphenol-A, which has gained considerable attention due to potential associated health-related issues, is utilized as a precursor in the synthesis of VERs. A green chemistry and engineering approach in the development of new VERs and renewable reactive diluents that are based on lignin is presented in this dissertation. Lignin, which is currently an abundant, renewable waste product of the paper and pulping industry, is primarily burned as a low value fuel. However, lignin has the potential to be a low cost feedstock in future lignocellulosic biorefineries that could yield highly valuable aromatic chemicals (lignin model compounds, LMCs) when strategically depolymerized. The incorporation of aromaticity in a resin's chemical structure is known to improve overall polymer composite performance and the high aromatic content found in lignin is ideal for novel resin development. Highlighted in this dissertation are three projects: (1) the synthesis and characterization of a lignin-based bio-oil resin/reactive diluent, (2) the use of functionalized LMCs as styrene replacements in VERs, and (3) the synthesis and characterization of a vanillin-based resin. Through the use of traditional and new polymer theory coupled with spectroscopic, thermal, and mechanical techniques, structure-property relationships are identified and related to polymer performance. These findings have important implications for the optimization and design of polymer composites that are based on sustainable resources and processes, are petroleum-independent, and have reduced toxicity with beneficial environmental impacts. In addition, these findings provide the incentive for continued investment in using lignin as a respected materials' feedstock. Lastly, several lignin-related research opportunities of scientific and commercial interest are recommended.
机译:随着石油储备和未来原油价格的不确定性,木质纤维素生物质正成为可持续发展燃料,化学品和材料(包括乙烯基酯树脂(VERs))的宝贵资源。石油基VERs用于生产多种商业应用的聚合物复合材料。尽管具有相对较高的模量,强度和玻璃化转变温度,但市售VER通常包含高浓度的反应性稀释剂,例如苯乙烯。但是,这些反应性稀释剂通常被认为是有害的空气污染物(HAP),挥发性有机化合物(VOC)和预期的致癌物。此外,由于潜在的与健康相关的问题而引起了极大关注的双酚A被用作合成VERs的前体。本文提出了一种基于木质素的新型VERs和可再生反应性稀释剂开发的绿色化学和工程方法。木质素目前是造纸和制浆工业中大量的可再生废物,主要作为低价值燃料燃烧。但是,木质素有可能在未来的木质纤维素生物提炼厂中成为低成本的原料,当战略性地解聚时,木质素可生产出有价值的芳香族化学品(木质素模型化合物,LMCs)。已知在树脂的化学结构中引入芳香族可以改善整体聚合物复合材料的性能,木质素中发现的高芳香族含量是新型树脂开发的理想选择。本文重点研究了三个项目:(1)木质素基生物油树脂/反应性稀释剂的合成和表征;(2)在VERs中使用功能化LMC作为苯乙烯替代品;(3)合成和表征香兰素基树脂。通过使用传统的和新的聚合物理论以及光谱,热和机械技术,可以确定结构-特性关系并与聚合物性能相关。这些发现对基于可持续资源和工艺,与石油无关,毒性降低且对环境有利的聚合物复合材料的优化和设计具有重要意义。此外,这些发现为继续投资使用木质素作为备受推崇的原料提供了动力。最后,推荐了一些具有科学和商业意义的木质素相关的研究机会。

著录项

  • 作者

    Stanzione, Joseph F., III.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Engineering Chemical.;Chemistry Polymer.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 365 p.
  • 总页数 365
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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