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Particulate matter, carbon emissions and elemental compositions from a diesel engine exhaust fuelled with diesel-biodiesel blends

机译:柴油机-生物柴油混合燃料排放的柴油机废气中的颗粒物,碳排放量和元素组成

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A comparative morphological analysis was performed on the exhaust particles emitted from a Cl engine using different blending ratios of palm biodiesel at several operating conditions. It was observed from this experiment; peak particle concentration for PB10 at 1200 rpm is 1.85E + 02 and at 1500 rpm is 2.12E + 02. A slightly smaller amount of volatile material has found from the biodiesel samples compared to the diesel fuel sample. Thermogravimetric analysis (TGA) showed that the amount of volatile material in the soot from biodiesel fuels was slightly lower than that of diesel fuel. PB20 biodiesel blends reduced maximum 11.26% of volatile matter from the engine exhaust, while PB10 biodiesel blend reduced minimum 5.53% of volatile matter. On the other hand, the amount of fixed carbon from the biodiesel samples was slightly higher than diesel fuel. Analysis of carbon emissions, palm biodiesel (PB10) reduced elemental carbon (EC) was varies 0.75%-18%, respectively. Similarly, the emission reduction rate for PB20 was varies 11.36%-23.46% respectively. While, organic carbon (OC) emission rates reduced for PB20 was varied 13.7-49% respectively. Among the biodiesel blends, PB20 exhibited highest oxygen (0), sulfur (S) concentration and lowest silicon (Si) and iron (Fe) concentration. Scanning electron microscope (SEM) images for PB20 showed granular structure particulates with bigger grain sizes compared to diesel. Particle diameter increased under the 2100-2400 rpm speed condition and it was 8.70% higher compared to the low speed conditions. Finally, the results indicated that the composition and degree of unsaturation of the methyl ester present in biodiesel, play an important role in the chemical composition of particulate matter emissions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在几种操作条件下,使用棕榈生物柴油的不同混合比,对从Cl发动机排放的排气颗粒进行了比较形态分析。从该实验中观察到; PB10在1200 rpm时的最大颗粒浓度为1.85E + 02,在1500 rpm时为2.12E +02。与柴油燃料样品相比,从生物柴油样品中发现的挥发性物质略少。热重分析(TGA)表明,生物柴油燃料烟灰中的挥发性物质含量略低于柴油燃料。 PB20生物柴油混合物最多可减少发动机排气中的挥发性物质的11.26%,而PB10生物柴油混合物最多可减少5.53%的挥发性物质。另一方面,来自生物柴油样品的固定碳量略高于柴油燃料。分析碳排放量,棕榈生物柴油(PB10)还原的元素碳(EC)分别变化0.75%-18%。同样,PB20的减排量变化分别为11.36%-23.46%。而PB20降低的有机碳(OC)排放率分别变化了13.7-49%。在生物柴油混合物中,PB20表现出最高的氧(0),硫(S)浓度和最低的硅(Si)和铁(Fe)浓度。 PB20的扫描电子显微镜(SEM)图像显示,与柴油相比,颗粒结构的颗粒具有更大的粒度。在2100-2400 rpm转速条件下,粒径增加,与低速条件相比,粒径增加了8.70%。最后,结果表明生物柴油中存在的甲酯的组成和不饱和度在颗粒物排放的化学组成中起着重要作用。 (C)2015 Elsevier Ltd.保留所有权利。

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