首页> 外文期刊>Journal of Cleaner Production >Particle number, size distribution, carbons, polycyclic aromatic hydrocarbons and inorganic ions of exhaust particles from a diesel bus fueled with biodiesel blends
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Particle number, size distribution, carbons, polycyclic aromatic hydrocarbons and inorganic ions of exhaust particles from a diesel bus fueled with biodiesel blends

机译:掺有生物柴油混合物的柴油客车废气颗粒的数量,尺寸分布,碳,多环芳烃和无机离子

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The primary purpose of this study is to evaluate effects of waste-cooking-oil biodiesel on the particle number (PN), size distribution and particulate-phase compositions including organic carbon (OC), elemental carbon (EC), polycyclic aromatic hydrocarbons (PAHs), N-alkanes, fatty acids and inorganic ions from a diesel bus. Experiments were conducted based on chassis dynamometer with three biodiesel blends at 5%, 10% and 20% by volume, i.e., B5, B10 and B20: and a petroleum diesel D100 was used as a baseline. Results showed that the biodiesel resulted in a reduction in the PN emission, and this reduction increased linearly with the biodiesel ratio. For B20, the reduction in PN emission reached 42.2% in comparison with D100. The particle size distribution indicated that the utilization of the biodiesel increased the proportion of nucleation mode particles, and correspondingly diminished the proportion of accumulation mode particles. Compared with D100, 14.8%, 21.2% and 27.6% reduction in the OC emission was observed for B5, B10 and B20, whereas the EC emission increased slightly, consequently, the ratio OC/EC presented a declining trend. The PAHs, dominated by 3- and 4- rings ones, as well as their toxic equivalent were also reduced with the biodiesel. Additionally, using biodiesel led to lower N-alkanes and fatty acids emissions in the particles, and the reduction of emissions showed a decreased and increased trend with the biodiesel ratio, respectively. In terms of the inorganic ions in the particles, the Cl-, NO2-, NO3-, SO42-, as well as the Na+, NH4+, K+ and Ca2+ emissions were increased with the biodiesel. To sum up, the refining of biodiesel from waste cooking oil is a cleaner production, and as an alternative fuel to petroleum diesel, the biodiesel is also environment-friendly. (C) 2019 Published by Elsevier Ltd.
机译:这项研究的主要目的是评估烹饪用油生物柴油对颗粒数(PN),粒度分布和颗粒相组成的影响,包括有机碳(OC),元素碳(EC),多环芳烃(PAHs) ),来自柴油客车的正构烷烃,脂肪酸和无机离子。基于底盘测功机进行实验,其中三种生物柴油混合物的体积百分比分别为5%,10%和20%,即B5,B10和B20:以石油柴油D100为基准。结果表明,生物柴油导致PN排放量减少,并且该减少量随生物柴油比例线性增加。与D100相比,B20的PN排放减少量达到42.2%。粒度分布表明,生物柴油的利用增加了成核模式颗粒的比例,并相应地减少了积累模式颗粒的比例。与D100相比,B5,B10和B20的OC排放量分别降低了14.8%,21.2%和27.6%,而EC排放量略有增加,因此OC / EC之比呈下降趋势。生物柴油还可以减少以三环和四环为主的多环芳烃及其毒性当量。此外,使用生物柴油可降低颗粒中的N-烷烃和脂肪酸排放量,并且排放量的减少分别显示出生物柴油比率的减少和增加趋势。就颗粒中的无机离子而言,生物柴油会增加Cl-,NO2-,NO3-,SO42-以及Na +,NH4 +,K +和Ca2 +的排放。综上所述,从废食油中提炼生物柴油是一种清洁生产,并且作为石油柴油的替代燃料,生物柴油也是环保的。 (C)2019由Elsevier Ltd.发布

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