测定从荠菜油和废弃煎炸油中提取的二元生物柴油和二元生物柴油-柴油混合燃料的某些燃料特性

Seda Şahin, Rümeysa Ersoy, H. Mengeş
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摘要

在当今有关液态生物燃料的研究中,我们发现许多研究都侧重于单一生物柴油与柴油的混合。这些研究表明,用不同原料生产的生物柴油在燃料特性和发动机性能方面与传统柴油的特性相似,这表明生物柴油具有替代柴油的潜力。然而,最近的研究显示,涉及双生物柴油与传统柴油混合的研究有限。本研究选择了在确保人类食物生产可持续性方面具有重要地位的高含油量荠菜植物(换句话说,它不适合人类食用,但有潜力大幅提高我们国内的生物燃料产量)和大幅降低生物柴油原料生产成本的家用废弃煎炸油作为生物柴油原料。将荠菜和家用废弃煎炸油通过酯交换法生产的生物柴油燃料按体积比 1:1 和 1:3 混合,得到二元生物柴油燃料(D0C50WF50、D0C75WF25 和 D0C25WF75)。二元生物柴油-柴油混合燃料是将二元生物柴油燃料(D75C12.5WF12.5、D50C25WF25 和 D25C37.5WF37.5)与传统柴油燃料(柴油)按 1:1 的体积比混合后得到的。研究结果确定了制备的二元生物柴油和二元生物柴油+柴油混合燃料的理化性质(密度、运动粘度、闪点、含水量、热值、冷滤堵塞点、浊点和倾点、铜带腐蚀)。混合燃料的分析结果是根据相关生物柴油标准(EN 14214、ASTM D-6751)确定的,并与参考燃料柴油进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of some fuel properties of binary biodiesel and binary biodiesel – diesel blend fuels obtained from camelina oil and waste frying oils
In today's studies on liquid biofuels, it is observed that many of them focus on blends of single biodiesel with diesel. These studies have shown that biodiesel produced from different feedstocks exhibits similar properties to traditional diesel fuel in terms of fuel characteristics and engine performance, indicating the potential of biodiesel to replace diesel fuel. However, recent research has shown limited studies involving the blending of dual biodiesel with traditional diesel fuel. In this study, high oil content camelina plant, which has an important place in ensuring sustainability in human food production, in other words, it is not suitable for human food and has the potential to significantly increase our domestic biofuel production, and domestic waste frying oil, which significantly reduces the cost of biodiesel raw material production, were selected as biodiesel feedstock. Binary biodiesel fuels (D0C50WF50, D0C75WF25, and D0C25WF75) were obtained by mixing the biodiesel fuels produced from camelina and domestic waste frying oil by transesterification method in the ratio of 1:1 and 1:3 by volume. Binary biodiesel-diesel blend fuels were obtained by blending binary biodiesel fuels (D75C12.5WF12.5, D50C25WF25 and D25C37.5WF37.5) with conventional diesel fuel (diesel) after blending at 1:1 ratio by volume. As a result of the research, the physicochemical properties (density, kinematic viscosity, flash point, water content, calorific value, cold filter plugging point, cloud and pour point, copper strip corrosion) of the prepared binary biodiesel and binary biodiesel+diesel blend fuels were determined. The results of the analyses of the blend fuels were determined in accordance with the relevant biodiesel standards (EN 14214, ASTM D-6751) and the results were also compared with the reference fuel, diesel fuel.
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