微乳液
葵花籽油
离子液体
燃料油
化学工程
材料科学
向日葵
有机化学
化学
废物管理
肺表面活性物质
工程类
催化作用
数学
生物化学
组合数学
作者
Yousef Ghazal,Reza Najjar
标识
DOI:10.1016/j.aej.2024.01.065
摘要
Finding more efficient surfactants for water emulsification in diesel or its blends with vegetable oil biodiesels, to resolve their environmental and technical issues is an important research field. Ionic liquid-type Gemini surfactants (ILGS), 1,2-bis[N-(N ´ -dodecyl imidazole)]ethane diacetate ([C12-2-im][2Ac]) and 1,5-bis[N-(N ´ -dodecyl imidazole)]pentane diacetate ([C12-5-im][2Ac]) are synthesized and evaluated for formulation of gasoil/sunflower oil (80:20) fuel microemulsions. ILGS have two connected head-groups on each molecule, a tunable chemical structure and emulsification performance, and it was expected that their structure can be designed to form highly stable micelles. The performance of Tween80, Span80 and ILGS were compared in formulation of a single-phase fuel microemulsions via titration with 1-butanol as cosurfactant. ILGS with longer spacer length ([C12-5-im][2Ac]) has exhibited better performance than [C12-2-im][2Ac] with shorter spacer length resulting to lower 1-butanol consumption, which is attributed to the formation of more stable micelles. The 70:27:3 mixture of Tween80:Span80:ILGS has been determined as optimum surfactant mixture resulting in samples which have been remained stable as a single phase for upto 6 months. A narrowly distributed DLS hydrodynamic water droplets size of 8 and 4 nm, and a kinematic viscosity of 6.4434 and 6.6055 mm2/s (comparable to diesel) were measured for samples prepared by [C12-2-im][2Ac] and [C12-5-im][2Ac].
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