首页> 外文期刊>Journal of the American Oil Chemists' Society >Formulation of canola-diesel microemulsion fuels and their selective diesel engine performance.
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Formulation of canola-diesel microemulsion fuels and their selective diesel engine performance.

机译:低芥酸菜子柴油微乳液燃料的配方及其选择性柴油发动机的性能。

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摘要

Vegetable oils have been considered as an alternative to diesel fuel due to their comparable properties and performance. However, the high viscosity of vegetable oil causes engine durability problems with long-term usage. Vegetable oil viscosity can be reduced by blending with diesel fuel in thermodynamically stable mixtures using microemulsion fuel formulation techniques. This work focuses on the formulation of microemulsion fuels comprising diesel fuel and canola oil as the oil phase with ethanol and sec-butanol as viscosity reducers as well as 1-octanol and oleyl amine as surfactant/cosurfactant. Selective tests on an instrumented diesel engine were performed for formulated microemulsion fuels and No. 2 diesel fuel for comparison. The results show that formulated microemulsion fuels have fuel properties that meet the ASTM requirements for viscosity, cloud point, and pour point for biodiesel. Even more important, they have phase stability over a wide range of temperatures (-10 to 70 degrees C). Although all of the microemulsion fuels showed higher fuel consumption than diesel fuel, some of the microemulsion fuels had significantly reduced CO and NOx emissions as well as reduced particulates when compared to baseline diesel fuel. The research demonstrates the potential of these microemulsion fuels as alternative to neat diesel fuel.
机译:由于植物油具有可比的性能和性能,它们被认为是柴油的替代品。但是,植物油的高粘度导致长期使用会导致发动机耐久性问题。使用微乳液燃料配制技术,可以通过在热力学稳定的混合物中与柴油燃料混合来降低植物油的粘度。这项工作着重于微乳液燃料的配方,其中包括柴油和低芥酸菜子油作为油相,乙醇和仲丁醇作为降粘剂,以及1-辛醇和油胺作为表面活性剂/助表面活性剂。在仪器化柴油机上进行了选择性微乳化燃料和2号柴油的选择性测试,以进行比较。结果表明,配制的微乳化燃料具有满足ASTM要求的生物柴油粘度,浊点和倾点的燃料特性。更重要的是,它们在很宽的温度范围(-10至70摄氏度)内具有相稳定性。尽管所有微乳化燃料的耗油量均比柴油高,但与基准柴油相比,某些微乳化燃料可显着降低CO和NO 排放,并减少了颗粒物。研究表明,这些微乳化燃料具有替代纯柴油的潜力。

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