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Tunable Synthesis and Characterization of Oleo-furan Sulfonate Surfactants from Renewable Furan and Fatty Acids

机译:可再生呋喃和脂肪酸的可调谐合成油呋喃磺酸盐表面活性剂

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摘要

An important advance in fluid surface control was the amphiphilic surfactant composed of coupled molecular structures (i.e., hydrophilic and hydrophobic) to reduce surface tension between two distinct fluid phases. Surfactants are widely used in household detergents, cleaners, emulsifiers, foaming agents, and personal care products. Anionic surfactants constitute 50% of the $30 billion global surfactant industry and are widely used in household detergents, and personal care products. Linear alkylbenzene sulfonates (LAS) are widely used due to their low cost and high detergency. Current LAS production methods rely on toxic catalysts and petrochemical-based constituents, such as benzene and long chain hydrocarbons. The reaction has low selectivity to the prescribed linear structure thereby rendering minimal control over the desired composition and properties. Additionally, implementation of simple surfactants such as LAS has been hindered by the broad range of applications in water containing alkaline earth metals (i.e., hard water), which disrupt surfactant function and require extensive use of undesirable and expensive chelating additives.;Despite years of technology development, most large-volume surfactants are made from petrochemical sources, while efforts to make renewable surfactants are focused on making existing surfactant structures from renewable sources. In this work, we demonstrate a new surfactant based on the natural structure and chemistry of plant-based oils and sugars with superior function and suitability as a replacement to petrochemicals. Furans obtained from lignocellulosic biomass can be acylated with triglyceride-derived fatty acids and anhydrides in the presence of a heterogenous zeolite catalyst. The results obtained for the reaction of lauric anhydride with furan show that different pore sizes, structures and acidity of zeolites result in varying acylation activity. Preliminary kinetic studies of the indirect acylation using anhydrides provide insight into reaction orders and product inhibition resulting in lowering of catalytic activity. Following acylation, the molecule can be upgraded via several independent and sequential chemistries such as etherification, hydrogenation and aldol condensation and finally subjected to sulfonation to yield surfactant molecules termed as oleo-furan sulfonates (OFS) in high yield. Evaluation of surfactant performance of OFS revealed hundredfold better detergency and stability in hard water conditions in comparison with petroleum-derived counterparts. The synthesis of OFS molecules is, highly tunable and selective where the number of carbon atoms in the linear or branched chain can be easily varied without compromising on reaction yields to achieve desired surfactant properties.
机译:流体表面控制方面的重要进步是由偶联的分子结构(即亲水和疏水)组成的两亲性表面活性剂,可降低两个不同流体相之间的表面张力。表面活性剂广泛用于家用洗涤剂,清洁剂,乳化剂,发泡剂和个人护理产品中。阴离子表面活性剂占300亿美元全球表面活性剂行业的50%,广泛用于家用洗涤剂和个人护理产品。线性烷基苯磺酸盐(LAS)由于其低成本和高去污力而被广泛使用。当前的LAS生产方法依赖于有毒催化剂和基于石油化学的成分,例如苯和长链烃。该反应对规定的线性结构具有低选择性,从而使对所需组成和性质的控制最小。另外,简单的表面活性剂(如LAS)的实施由于在含碱土金属(即硬水)的水中的广泛应用而受到阻碍,这破坏了表面活性剂的功能,并且需要大量使用不希望的和昂贵的螯合添加剂。随着技术的发展,大多数大批量表面活性剂都是从石油化学原料中提炼出来的,而制造可再生表面活性剂的努力则集中在从可再生来源制备现有表面活性剂结构上。在这项工作中,我们展示了一种基于植物油和糖的天然结构和化学性质的新型表面活性剂,具有出色的功能和适用性,可替代石化产品。在异质沸石催化剂的存在下,可以将得自木质纤维素生物质的呋喃与甘油三酸酯衍生的脂肪酸和酸酐酰化。月桂酸酐与呋喃反应获得的结果表明,沸石的不同孔径,结构和酸度会导致不同的酰化活性。使用酸酐进行间接酰化的初步动力学研究提供了对反应顺序和产物抑制作用的了解,从而降低了催化活性。酰化后,可以通过几种独立且依次的化学方法(例如醚化,氢化和羟醛缩合反应)对分子进行升级,最后进行磺化反应,以高收率得到称为油呋喃磺酸盐(OFS)的表面活性剂分子。对OFS的表面活性剂性能的评估表明,与石油衍生的同类产品相比,在硬水条件下的去污力和稳定性要好上百倍。 OFS分子的合成具有高度的可调谐性和选择性,其中直链或支链中的碳原子数可以轻松变化,而不会影响达到所需表面活性剂性能的反应产率。

著录项

  • 作者

    Joseph, Kristeen Esther.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Chemical engineering.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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