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Experimental Analysis of Diesel Engine Fueled with E-Diesel Produced from Madhuca Indica Flowers with the Addition of an Ignition Improver

机译:用Madhuca indica花卉生产柴油机燃料的实验分析,添加点火改进剂

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Experimental investigations were carried out to study the effect of the addition of an ignition improver with a bioethanol diesel emulsion, on the performance and emission behavior of a single-cylinder, 4-stroke, air-cooled, direct-injection (DI) diesel engine, with a rated power of 4.4 kW at a constant speed of 1500 rpm. Bioethanol was produced from the madhuca indica flower, which is proposed as a new feed stock. 15% bioethanol was emulsified with 84% diesel on a volume basis with the help of a surfactant of 1% to get the emulsion named as BDE15. The ignition improver used in the experimentation was diethyl ether (DEE) whose cetane number is greater than 125. 1% and 2% of DEE was added to the bioethanol diesel emulsion named as BDE+DEE1% and BDE+DEE2% respectively. The performance and emission results of the engine fueled with BDE15, with BDE+DEE1% and BDE+DEE2% were compared with those of diesel operation, and are presented in the paper. The results showed that BDE15 with or without the ignition improver, showed a lower thermal efficiency and higher brake specific energy consumption than that of diesel operation. The oxides of nitrogen (NO) emission was found to be lower for BDE15, but smoke was found to be higher compared to that of diesel and BDE15 with ignition improver throughout the engine operation. With the addition of the ignition improver, the NO emission decreased at full load compared to that of diesel. There is a reduction in smoke emission with addition of ignition improver compared to that of BDE15 and diesel operation in the entire engine operation.
机译:进行实验研究,以研究用生物乙醇柴油乳液添加点火改进剂的效果,对单缸,4行程,风冷,直喷(DI)柴油发动机的性能和排放行为,额定功率为4.4 kW,恒定速度为1500 rpm。生物乙醇是由Madhuca indica花生产的,该花是一种新的饲料股票。借助于1%的表面活性剂,在体积基础上用84%的柴油乳化15%的生物乙醇乳化,得到称为BDE15的乳液。在实验中使用的点火改进剂是乙醚(DEE),其十六烷数量大于125.分别将其作为BDE + DE1%和BDE + DE2%的生物乙醇柴油乳液加入1%和2%。与BDE15加油的发动机的性能和排放结果与BDE + DEE1%和BDE + DEE2%进行了比较,并在纸上提出。结果表明,具有或没有点火改进器的BDE15显示出低于柴油操作的热效率和更高的制动能量消耗。发现氮气(NO)发射的氧化物较低,但与柴油和BDE15相比,发现烟雾较高,在整个发动机操作中具有点火改进剂。随着点火改进剂的添加,与柴油相比,没有排放在满载中减少。与BDE15和整个发动机操作中的BDE15和柴油操作相比,烟雾发射减少了烟雾排放。

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