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Impact of Waste Cooking Oil Biodiesel on Performance, Exhaust Emission and Combustion Characteristics in a Light-Duty Diesel Engine

机译:废物烹饪油生物柴油对轻型柴油发动机性能,废气排放及燃烧特性的影响

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The idea of using biodiesel as substitute fuel for fossil diesel is promising. The boom in biodiesel, however, has raised increasing concern about food shortage throughout the world and may translate into a food crisis. To avoid using food resources for fuel purposes, huge emphasis is currently being put on shifting to alternative non-food feedstocks including waste cooking oils. This study investigated the effects of biodiesel derived from waste palm oil-based cooking oil on performance, exhaust emissions and combustion characteristics in a light duty compression ignition engine. A total of three sets of fuel blends were studied: 10%, 20% and 30% volumetric blends (B10, B20 and B30) of waste cooking oil methyl ester (WME) with fossil diesel. In this study, the experimental work was carried out with a single cylinder, four-stroke, direct injection compression ignition engine. The experiments were conducted under constant torque of 20 Nm and at five different engine speeds. The results for performance, emissions and combustion were compared with those achieved with baseline diesel. Improvements in brake thermal efficiency (BTE) could be found for some of the biodiesel fuel blends and were higher than those for diesel fuel. It was observed that most of the pollutant emissions were reduced to some extent with WME fuels in the blends. The cylinder pressure profiles for WME fuel blends were comparable with those for baseline diesel, but some variations in peak pressure were observed. The study revealed that the engine performance, emissions and combustion for an engine fueled with WME fuel blends are comparable to those of engines run on baseline diesel.
机译:使用生物柴油作为化石柴油的替代燃料的想法很有希望。然而,生物柴油的繁荣提高了世界各地粮食短缺的越来越关注,并可转化为粮食危机。为避免使用食物资源进行燃料目的,目前正在换档换算换油,包括废料烹饪油的替代非食品原料。本研究调查了生物柴油衍生自废棕榈油的烹饪油来对轻型压缩点火发动机的性能,废气排放和燃烧特性的影响。研究了三组燃料共混物:用化石柴油的废物烹饪油甲酯(WME)的10%,20%和30%的体积混合物(B10,B20和B30)。在该研究中,实验工作用单个汽缸,四冲程直接喷射压缩点火发动机进行。实验在20nm的恒定扭矩下进行,并以五种不同的发动机速度进行。将性能,排放和燃烧的结果与基线柴油达到的效果进行了比较。可以找到制动热效率(BTE)的改进,用于一些生物柴油共混物,并且高于柴油燃料的燃料。观察到,大多数污染物排放在一定程度上含有混合物中的WME燃料。 WME燃料混合物的气缸压力曲线与基线柴油的燃料混合物相当,但观察到峰值压力的一些变化。该研究表明,用WME燃料混合物燃料的发动机的发动机性能,排放和燃烧与基线柴油在基线柴油上运行的发动机相当。

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