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Design of Hybrid Fuels Using a Modeling Study of the Miscibility of Ethanol-Biodiesel-Hydrocarbon Systems

机译:使用乙醇-生物柴油-烃系统混溶性的模型研究设计混合燃料

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摘要

Recently, the concept of diesel-ethanol blends has emerged as an alternative to regular diesel oils. However, these blends present serious stability limitations entailed by the contrasted physicochemical properties of hydrated ethanol and diesel oil. Biodiesel is often used as a third solvent since it behaves successfully as a surface-active agent to stabilize ethanol/diesel fuel blends. In this paper, a flash algorithm, employing the UNIFAC-Dortmund gE-model for calculating the activity coefficients, has been used to evaluate the Minimal Miscibility Temperature (MMT) of alcohol-biodiesel-hydrocarbon systems. The simulation work was focused on the influence of various parameters such as the paraffinic/aromaticaphthenic character of the hydrocarbon fraction, the hydration level of the alcohol, the size of the alcohol molecule, and the composition of the added biodiesel. The results show that biodiesel enhances ethanol/hydrocarbon miscibility whichever the nature of the fossil fractions. They also highlight the importance of the aromatic content of the fuel in the miscibility of the alcohol/hydrocarbon blends. The chain moiety of the alcohol as well as its hydration degree were found relevant for the fuel blends stability. Conversely, while increasing biodiesel concentration leads to significant decreases of the MMT, the influence of the biodiesel chemical structure remains practically insignificant.
机译:近来,柴油-乙醇共混物的概念已经出现,可以代替常规柴油。然而,这些混合物由于水合乙醇和柴油的相反物理化学性质而存在严重的稳定性局限性。生物柴油通常被用作第三种溶剂,因为它可以作为表面活性剂来稳定乙醇/柴油混合燃料。在本文中,采用UNIFAC-Dortmund gE模型计算活度系数的快速算法已用于评估醇-生物柴油-烃系统的最低混溶温度(MMT)。模拟工作集中于各种参数的影响,例如烃馏分的链烷烃/芳烃/环烷烃特性,醇的水合度,醇分子的大小以及添加的生物柴油的组成。结果表明,无论化石馏分的性质如何,生物柴油都能提高乙醇/烃的混溶性。它们还强调了燃料中芳烃含量在醇/烃共混物混溶性中的重要性。发现醇的链部分及其水合度与燃料共混物的稳定性有关。相反,虽然增加生物柴油浓度导致MMT显着降低,但生物柴油化学结构的影响实际上仍然微不足道。

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