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Lowering the boiling point curve of biodiesel by cross-metathesis

机译:通过交叉复分解降低生物柴油的沸点曲线

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One of the challenges of today's biodiesel (FAME) is its unsuitable boiling curve behavior. A more or less continuously increasing curve is beneficial because it provides good fuel ignition and combustion in the cylinder of the engine. Here, we present the results of our investigation on the chemical modification of biodiesel with the use of a well-known catalytic reaction, olefin metathesis. Self- and cross-metathesis of biodiesel and 1-hexene were carried out. Ten different ruthenium-based metathesis catalysts were initially subjected to a screening. After selection of the most active catalyst, a series of reactions were prepared wherein the concentration of the biodiesel was held constant, while the amount of 1-hexene was varied. The samples were then analyzed by simulated distillation to determine their boiling curve range. Results revealed that as the hexene amount was increased, a more favorable distillation curve was observed since it generated a fairly good distribution of low to high molecular weight compounds, which in turn exhibited an almost steadily increasing distillation curve, more similar to that of a conventional diesel fuel.
机译:当今生物柴油(FAME)的挑战之一是其不合适的沸腾曲线行为。或多或少连续增加的曲线是有益的,因为它在发动机的气缸中提供了良好的燃料点火和燃烧。在这里,我们介绍了利用众所周知的催化反应烯烃复分解法对生物柴油进行化学改性的研究结果。进行了生物柴油和1-己烯的自我和交叉复分解。首先对十种不同的钌基复分解催化剂进行筛选。在选择最具活性的催化剂之后,制备了一系列反应,其中生物柴油的浓度保持恒定,而1-己烯的量变化。然后通过模拟蒸馏分析样品,以确定其沸腾曲线范围。结果表明,随着己烯量的增加,观察到一条更有利的蒸馏曲线,因为它产生了从低分子量到高分子量化合物的相当不错的分布,这反过来又显示了几乎稳定地增加的蒸馏曲线,这与传统的类似。柴油染料。

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