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Performance and emission characteristics of diesel engine fueled with diesel, bio diesel and additives

机译:用柴油,生物柴油和添加剂燃料柴油机的性能和排放特性

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The present experimental work is carried out to improve the performance and emission characteristics of biofuel blend proportion-1 [diesel (80 %)-biodiesel (20 %) (Corn biodiesel)]. Comparative analysis is done for addition of Corn biodiesel (denoted as CB) and aluminium oxide nano-particle (Al_2O_3) at various concentrations. Diesel and CB with 25 ppm Al_2O_3, denoted as DCB-1, DCB with 50 ppm Al_2O_3, denoted as DCB -2, Proportion-2 [Diesel 70% and CB 30%] with 25 ppm and 50 ppm Al_2O_3, denoted as DCB-3 and denoted as DCB-4, respectively are selected as fuels for this work. The above-mentioned procedure is followed for making cerium oxide nano-particle biofuel blend proportions. Experimental results obtained shows that, Diesel addition in Corn biodiesel with Al_2O_3 resulted in raised HC(Hydrocarbon), CO (Carbon monoxide), CO2 (Carbon dioxide) and BSFC (Brake specific fuel consumption) with decreased NOx (Oxides of nitrogen). The high latent heat evaporation and Low temperature combustion (LTC) of blend is the reason for these values. Further addition of Al_2O_3 particles in DCB resulted in increase in NOx and smoke with lowered HC, CO, CO2 and BSFC in both cases. This could be attributed to enhanced surface area to volume ratio of mixture during rapid combustion process, higher catalytic combustion and reduced evaporation. At higher engine loads, the peak pressure of DCB-1 is highest and that of DCB-2 is lowest. Maximum heat release rate of DCB-1 is highest and DCB-3 is lowest. DCB blends with additives Al_2O_3 resulted in formation of higher particulate matter (PM), however, at engine loads of 75 % and 100 %, DCB-1 blend displayed lowered PM. Overall results shows that, DCB-1 and DCB-3 gives comparatively higher engine performance, better combustion and lower emissions.
机译:进行本实验工作,以改善生物燃料混合比例-1 [柴油机(80%) - 生物柴油(20%)(玉米生物柴油)]的性能和排放特性。在各种浓度下添加玉米生物柴油(表示为Cb)和氧化铝纳米颗粒(Al_2O_3)的比较分析。柴油和CB具有25ppm Al_2O_3,表示为DCB-1,具有50ppm Al_2O_3的DCB,表示为DCB-2,比例-2 [柴油70%和CB 30%],具有25ppm和50ppm Al_2O_3,表示为DCB- 3并分别表示为DCB-4,选择为此工作的燃料。遵循上述过程,用于制备氧化铈纳米粒子生物燃料混合比例。得到的实验结果表明,玉米生物柴油中的柴油加入与Al_2O_3导致升高的HC(烃类),CO(一氧化碳),CO 2(二氧化碳)和BSFC(二氧化碳)和BSFC(制动特定燃料消耗),NOx降低(氮气的氧化物)。共混物的高潜热蒸发和低温燃烧(LTC)是这些值的原因。在两种情况下,在DCB中进一步加入DCB中的Al_2O_3颗粒导致NOx和烟雾中降低的HC,CO,CO 2和BSFC。这可能归因于在快速燃烧过程中增强表面积与混合物的体积比,催化燃烧较高并降低蒸发。在更高的发动机负载下,DCB-1的峰值压力最高,DCB-2的峰值压力最低。 DCB-1的最大热释放速率最高,DCB-3最低。 DCB与添加剂Al_2O_3混合物导致形成更高的颗粒物质(PM),然而,在75%和100%的发动机负载下,DCB-1混合物显示下PM。总体结果表明,DCB-1和DCB-3提供了相对较高的发动机性能,更好的燃烧和较低的排放。

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