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Rheological characteristics of aqueous wax emulsions used for the controlled release of pheromones as an alternative to the use of pesticides for insect pest management.

机译:用于控制信息素释放的水性蜡乳液的流变特性,可替代农药用于害虫防治。

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摘要

Most pesticides produce some risk of harm to the environment because pesticides are designed to kill or adversely affect living organisms. It is desirable that alternate, safer forms of pest control be developed. One alternative is the controlled release of pest insect sex pheromones to produce a mating disruption effect. Aqueous paraffin wax emulsions have shown much promise as formulations for this controlled release when applied to tree bark or foliage. Soy wax has recently become of interest in pheromone formulations because it is renewable, biodegradable, commercially available, and acceptable for organic farming.;Emulsions exhibit complex flow behavior which can be studied using rheometry. Rheometry refers to experimental techniques to determine the fundamental relationships between force and deformation in materials. The rheological properties of emulsions are very important for production, storage, and application of these formulations. In this project the flow and viscoelastic properties of aqueous 30% paraffin wax and soy wax emulsions were investigated using three different emulsifiers: sorbitan monostearate (Span RTM), triethanolamine (TEA) stearate, and a 50%-50% mixture of both. Span 60 RTM has already been used to make effective emulsions for the controlled release of pheromones, and it is food safe. TEA stearate is widely used to make non-toxic wax emulsions in the cosmetics industry.;The investigations were carried out in both the rotational and oscillatory modes of a parallel-plate rheometer. The flow curves at three different temperatures (15 °C, 25 °C and 35 °C) of each emulsion were fitted with the Herschel-Bulkley model with the yield points determined using the one tangent method. The resulting equations can predict flow behavior at different conditions. The emulsions were also tested using a temperature sweep at low shear from 15 °C to 50 °C to investigate temperature dependent changes. The viscoelastic properties were investigated using oscillatory shear tests and expressed in terms of elastic modulus and loss modulus. This gives information about time-dependant behavior like storage and the elastic character of the formulations which were found to be weak gels. The Span 60RTM emulsions displayed faux shear-thickening behavior due to droplet subdivision while the other emulsions generally displayed shear-thinning behavior. Each emulsion approaches an infinite shear viscosity. The yield points and other flow parameters for the emulsions varied with temperature, depending on the formulation in question. All soy wax emulsions showed an increase in viscosity between 45 °C and 50 °C while the paraffin wax emulsions did not. Every emulsion showed long-term and short-term stability.
机译:大多数杀虫剂都会对环境产生一定的危害,因为杀虫剂旨在杀死或不利地影响生物。希望开发替代的,更安全的害虫控制形式。一种替代方法是控制释放有害生物昆虫性信息素以产生交配破坏效应。石蜡蜡水乳液作为应用于树皮或树叶的控释制剂已显示出很大的前景。由于可再生,可生物降解,可商购获得并且可用于有机农业,大豆蜡最近已成为信息素制剂的关注对象。乳液表现出复杂的流动行为,可以使用流变法进行研究。流变学是指确定材料中力和变形之间基本关系的实验技术。乳液的流变性质对于这些制剂的生产,储存和应用非常重要。在该项目中,使用三种不同的乳化剂研究了30%石蜡蜡和大豆蜡水溶液的流动性和粘弹性,分别是:脱水山梨糖醇单硬脂酸酯(Span RTM),三乙醇胺(TEA)硬脂酸酯,以及两者的50%-50%混合物。 Span 60 RTM已被用于制备有效的乳液以控制信息素的释放,并且它是食品安全的。硬脂酸TEA广泛用于化妆品行业中的无毒蜡乳液中。;研究是在平行板流变仪的旋转和振荡模式下进行的。使用Herschel-Bulkley模型拟合每种乳液在三种不同温度(15°C,25°C和35°C)下的流动曲线,并使用单切线法确定屈服点。所得方程可以预测不同条件下的流动行为。还使用温度扫描在低剪切(从15°C到50°C)中测试了乳液,以研究温度相关的变化。使用振荡剪切试验研究粘弹性,并以弹性模量和损耗模量表示。这给出了有关时间依赖性行为的信息,例如储存和制剂的弹性特性,这些都是弱凝胶。 Span 60RTM乳剂由于液滴的细分而表现出虚假的剪切增稠行为,而其他乳剂通常表现出剪切致稀行为。每种乳液均具有无限的剪切粘度。乳液的屈服点和其他流动参数随温度而变化,这取决于所讨论的配方。所有的大豆蜡乳液均在45°C至50°C之间显示出粘度增加,而石蜡蜡乳液则没有。每种乳液均显示长期和短期稳定性。

著录项

  • 作者

    Ballew, Stephen Daniel.;

  • 作者单位

    Western Carolina University.;

  • 授予单位 Western Carolina University.;
  • 学科 Chemistry Physical.;Chemistry Agricultural.;Engineering Materials Science.;Engineering Agricultural.
  • 学位 M.S.
  • 年度 2011
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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