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Emulsification characteristics of nano-emulsions of solketal in diesel prepared using microwave irradiation

机译:微波辐照柴油中酚醛树脂纳米乳液的乳化特性

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Glycerol acetonide, also termed solketal, which is chemically derived from bio-glycerol, was used as a combustion improver in the dispersed emulsion phase in this study. Nano-emulsions of ultra-low sulfur diesel (ULSD) containing nano-sized droplets of solketal were produced using microwave irradiation and compared with those produced by mechanical homogenizing. A non-ionic surfactant mixture of Tween 80 and Span 80, with a combined hydrophile-lipophile balance (HLB) adjusted to 10 by the weight proportion of the two surfactants was added to assist the emulsion formation. The characteristics of the emulsions produced using the two methods were analyzed and compared. The experimental results show that nano-emulsions can only form when up to 15 wt% of surfactant and no more than 5 wt% of solketal are added. The nano-emulsions from microwave irradiation had a larger mean droplet size, more concentrated one-peak distribution of droplet size, and lower kinematic viscosity and emulsification stability (ES) than those from the mechanical homogenizer. Higher solketal content in the emulsion increased the mean droplet size and kinematic viscosity of the nano-emulsions prepared using either method, and decreased the emulsification stability. The nano-emulsions with 3 wt% solketal in the dispersed phase also had superior characteristics including the lowest mean droplet size and highest ES. This is thus suggested to be the optimum composition.
机译:在这项研究中,丙酮酸甘油酯(也称为Solketal)(化学衍生自生物甘油)在分散的乳液相中用作助燃剂。使用微波辐照制备了含有纳米尺寸的solketal液滴的超低硫柴油(ULSD)纳米乳液,并将其与机械均质化的乳液进行了比较。加入吐温80和Span 80的非离子表面活性剂混合物,其亲水亲脂平衡值(HLB)通过两种表面活性剂的重量比调整为10,以帮助乳液形成。分析和比较了使用两种方法生产的乳液的特性。实验结果表明,仅当添加不超过15 wt%的表面活性剂和不超过5 wt%的Solketal时才能形成纳米乳液。与来自机械均化器的纳米乳液相比,来自微波辐射的纳米乳液具有更大的平均液滴尺寸,更集中的液滴尺寸一峰分布,较低的运动粘度和乳化稳定性(ES)。乳状液中较高的脂状含量增加了使用任一种方法制得的纳米乳状液的平均液滴尺寸和运动粘度,并降低了乳化稳定性。在分散相中具有3wt%的缩酮缩醛的纳米乳液还具有优异的特性,包括最低的平均液滴尺寸和最高的ES。因此建议这是最佳的组成。

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