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Simultaneous reduction of NO-smoke-CO2 emission in a biodiesel engine using low-carbon biofuel and exhaust after-treatment system

机译:使用低碳生物燃料和废气后处理系统,同时减少生物柴油发动机中NO烟气中的CO2排放

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The present work focuses on the simultaneous reduction of NO-smoke-CO2 emission in a Karanja oil methyl ester (KOME)-fueled single-cylinder compression ignition engine by using low-carbon biofuel with exhaust after-treatment system. Replacement of KOME for diesel reduced smoke emission by 3% but resulted in increase of NO emission and CO2 emission by 13 and 35% at 100% load condition. In order to reduce CO2 emission, tests were conducted with a blend of KOME and orange seed oil (OSO), a low-carbon fuel on equal volume basis (50-50). At the same operating conditions, compared to KOME, 27% reduction in CO2 emission and 5% reduction in smoke emission were observed. However, a slight increase in NO emission was observed. To achieve simultaneous reduction of NO-smoke-CO2 emissions, three catalysts, namely monoethanolamine, zeolite and activated carbon, were selected for exhaust after-treatment system and tested with optimum KOME-OSO blend. KOME-OSO + zeolite showed a great potential in simultaneous reduction of NO-smoke-CO2 emissions. NO, smoke and CO2 emissions were simultaneously reduced by about 15% for each emission compared to diesel at 100% load condition. The effect of exhaust after-treatment system with KOME-OSO blend on combustion, performance and other emission parameters is discussed in detail in this study. Fourier transform infrared spectrometry analysis and testing were done to identify the absorbance characteristics of zeolite material.
机译:目前的工作集中在通过使用低碳生物燃料和排气后处理系统,同时减少由Karanja油甲酯(KOME)提供燃料的单缸压缩点火发动机中的NO烟气CO2排放。在100%的负载条件下,用KOME代替柴油可减少3%的烟尘排放,但会导致NO和CO2排放分别增加13%和35%。为了减少CO2排放,使用了KOME和橙色种子油(OSO)的混合物进行了测试,该混合物是基于等体积(50-50)的低碳燃料。与KOME相比,在相同的运行条件下,CO2排放减少了27%,烟气排放减少了5%。然而,观察到NO排放略有增加。为了同时减少NO烟气中的CO2排放,选择了三种催化剂,即单乙醇胺,沸石和活性炭作为废气后处理系统,并使用了最佳的KOME-OSO共混物进行了测试。 KOME-OSO +沸石具有同时减少NO烟气CO2排放的巨大潜力。与100%负载条件下的柴油相比,每种排放的NO,烟尘和CO2排放量同时减少了约15%。本研究详细讨论了含KOME-OSO混合物的排气后处理系统对燃烧,性能和其他排放参数的影响。进行了傅里叶变换红外光谱分析和测试,以鉴定沸石材料的吸收特性。

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