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Effect of n-butanol and diethyl ether as oxygenated additives on combustion-emission-performance characteristics of a multiple cylinder diesel engine fuelled with diesel-jatropha biodiesel blend

机译:正丁醇和乙醚作为含氧添加剂对柴油-麻疯树生物柴油混合燃料多缸柴油机燃烧排放性能的影响

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摘要

Jatropha biodiesel is considered as one of the most prospective renewable energy sources of Malaysia in recent years. Hence, an investigation was conducted for the improvement of jatropha biodiesel-diesel blend with the addition of 5-10 n-butanol and diethyl ether by vol. which are commonly known as oxygenated cold starting additive. Engine tests were conducted at variable speed, ranging from 1000 rpm to 3000 rpm at constant 80 N m torque on a 4-cylinder turbocharged indirect injection diesel engine. Engine performance parameters like brake specific fuel consumption, brake specific energy consumption, brake thermal efficiency and engine emissions like carbon monoxide, unburned hydrocarbons, nitrogen oxide and smoke opacity were measured. Performance and exhaust emissions variation of the modified blends from the baseline fuel (jatropha biodiesel-diesel blend) were compared for the assessment of the improvement quantitatively. In-cylinder pressure diagram of all the test fuels were acquired and the heat release rate analysis was conducted at different operating conditions to explore the features of combustion mechanism and correlate them with the performance and emission characteristics to acquire better understanding of the scenario. However, in a nut-shell, the investigation reveals the potential of n-butanol and diethyl ether to be used as the additive of jatropha biodiesel-diesel blend in the context of combustion, performance and emission characteristics. (C) 2015 Elsevier Ltd. All rights reserved.
机译:近年来,麻风树生物柴油被认为是马来西亚最具前景的可再生能源之一。因此,进行了研究,以提高麻疯树生物柴油-柴油共混物的含量,通过添加5-10体积%的正丁醇和乙醚。通常称为氧化冷启动添加剂。在4缸涡轮增压间接喷射柴油发动机上以恒定的80 N m扭矩在1000 rpm至3000 rpm的可变速度下进行了发动机测试。测量了发动机性能参数,例如制动比燃料消耗,制动比能量消耗,制动热效率以及发动机排放物,例如一氧化碳,未燃烧的碳氢化合物,氮氧化物和烟的不透明度。比较了来自基准燃料(麻疯树生物柴油-柴油混合物)的改性混合物的性能和废气排放变化,以定量评估改进。获取所有测试燃料的缸内压力图,并在不同工况下进行放热率分析,以探索燃烧机理的特征,并将其与性能和排放特性相关联,以更好地了解这种情况。然而,简而言之,研究表明在燃烧,性能和排放特性的背景下,正丁醇和乙醚可用作麻疯树生物柴油-柴油混合物的添加剂的潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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