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Experimental investigation on a diesel engine fuelled with biodiesel produced from waste cooking oil

机译:用废食用油生产的生物柴油为燃料的柴油机的实验研究

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Petroleum product resources are limited and their consumption is increasing very fast with globalization and high technology development since last decade. Since the prices of these products are on the rise, so there is a need to search for an alternate source, which would fuel the Automobiles without any major engine modifications. Diesel engines are used for most of the engineering applications because they have low specific fuel consumption and higher thermal efficiency compared to petrol engines. However inspite of these advantages the oxides of nitrogen and smoke emission from the diesel engines cause serious environmental concerns. Waste cooking oil and other non-edible oil (Mahua oil, Karanja oil, Jatropha oil) pose some problems when subjected to prolong use in diesel engines. The problems are attributed to its high viscosity and low volatility. These problems can be minimized by transesterification process which is a reversible reaction between the triglycerides present in vegetable oil and alcohol in presence of a base catalyst to produce mono alkyl ester which is commonly known as biodiesel and glycerol. Molecular weight of biodiesel is one third of that diesel and therefore has a low viscosity. The fuel properties for biodiesel were evaluated and compared with that of diesel. These characteristics include specific gravity, density, viscosity, pour point, flash point, fire point etc. The biodiesel was then blended with diesel in various volume proportions to prepare a number of test fuels which were tested in a single cylinder diesel engine to study the various engine performance parameters and compare those with that of diesel. The results show highest brake thermal efficiency with B60 blend, highest brake specific fuel consumption and exhaust gas temperature with pure biodiesel.
机译:石油产品资源有限,自上十年以来,它们的消费量与全球化和高科技发展越来越快。由于这些产品的价格正在上升,因此需要寻找替代来源,这将推动汽车而没有任何主要发动机修改。柴油发动机用于大部分工程应用,因为与汽油发动机相比,它们具有较低的特定燃料消耗和更高的热效率。然而,这些优点是柴油发动机氮和烟雾排放的氧化物引起严重的环境问题。废物烹饪油和其他不可食用油(Mahua Oil,Karanja油,麻风手机)在延长柴油发动机延长时造成一些问题。问题归因于其高粘度和低挥发性。这些问题可以通过酯交换方法最小化,该方法是在碱催化剂存在下存在于植物油和醇中的甘油三酯之间的可逆反应,以生产通常称为生物柴油和甘油的单烷基酯。生物柴油的分子量是柴油的三分之一,因此具有低粘度。评估生物柴油的燃料性能,并与柴油的燃料性能进行比较。这些特性包括比重,密度,粘度,倾点,闪点,火点等。然后将生物柴油与柴油混合在各种体积比例中,以制备在单个汽缸柴油发动机中测试的许多试验燃料,以研究各种发动机性能参数并比较柴油的那些。结果表明,具有B60混合物,最高制动器特定燃料消耗和用纯生物柴油的废气温度的最高制动热效率。

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