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首页> 外文期刊>Atmospheric environment >Effects on aerosol size distribution of polycyclic aromatic hydrocarbons from the heavy-duty diesel generator fueled with feedstock palm-biodiesel blends
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Effects on aerosol size distribution of polycyclic aromatic hydrocarbons from the heavy-duty diesel generator fueled with feedstock palm-biodiesel blends

机译:棕榈-生物柴油混合燃料对重型柴油发电机组多环芳烃气溶胶粒径分布的影响

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摘要

Biodiesels are promoted as alternatives to fossil fuels and their applications in diesel engine have been studied extensively. However, the size distribution of polycyclic aromatic hydrocarbons (PAHs) and generator particulate material (GPM) emitted from heavy-duty diesel generator fueled with biodiesel blends has seldom been addressed. Seven different biodiesel blends with volume fractions of biodiesel ranging from 0% to 30% were studied. Experimental results indicate that the mean reductions of sum of PAHi/GPM_(0.056-18) (generator particulate material with aerodynamic diameter 0.056-18 μm) and BaP_(eq)i [=(ben-zo[a]pyrene equivalent)i]/GPM_(0.056-18) of B5, B10, B15, B20, B25 and B30 are (-8.21%. -5.72%), (-36.7%, -29.7%), (-1.25%, 2.32%), (16.2%, 18.6%), (33.4%, 35.0%) and (40.5%, 42.4), respectively, compared with B0. Both PAHi/GPMi and BaP_(eq)i/GPMi in stage 1 (0.056 - 0.166 μm) and stage 2 (0.166 - 0.31 μm) of all test fuels are higher than those in the other stages due to higher specific surface area of smaller particles. It is also observed that there are more highly toxic PAHs in stage 2. It should be noticed that the trend of particle-phase PAH contents is different from the trend of particle-phase PAH concentration and opposite to the trend of total GPM_(0.056-18) emission. The differences are due to a higher number of particles with diameters between 0.056 and 0.31 μm. The above results indicate that fuel blends with less than 15% biodiesel would increase PAH content at particle size between 0.056 and 0.31 μm. Therefore, the blending fraction should be between 15% and 30%. Moreover, particle-size control is needed in future emission regulations which would necessitate further improvements in combustion quality. Besides, researches on health effects of biodiesel blends are needed as well.
机译:促进了生物柴油作为化石燃料的替代品,并广泛研究了其在柴油机中的应用。但是,很少涉及由生物柴油混合物作为燃料的重型柴油发电机排放的多环芳烃(PAH)和发电机颗粒材料(GPM)的尺寸分布。研究了七种不同的生物柴油混合物,其中生物柴油的体积分数范围为0%至30%。实验结果表明,PAHi / GPM_(0.056-18)(空气动力学直径为0.056-18μm的发电机颗粒材料)和BaP_(eq)i的平均减少量[=(苯并偶氮[a] py当量] i] B5,B10,B15,B20,B25和B30的/ GPM_(0.056-18)为(-8.21%。-5.72%),(-36.7%,-29.7%),(-1.25%,2.32%),(与B0相比,分别为16.2%,18.6%),(33.4%,35.0%)和(40.5%,42.4)。所有测试燃料的第1阶段(0.056-0.166μm)和第2阶段(0.166-0.31μm)的PAHi / GPMi和BaP_(eq)i / GPMi均比其他阶段的燃料高,这是因为较小的较高比表面积粒子。还观察到在阶段2中毒性更高的PAHs。应该注意的是,颗粒相PAH含量的趋势不同于颗粒相PAH浓度的趋势,而与总GPM_(0.056- 18)发射。差异是由于直径在0.056至0.31μm之间的颗粒数量较多。以上结果表明,生物柴油含量低于15%的燃料共混物在颗粒大小介于0.056和0.31μm之间时会增加PAH含量。因此,混合比例应在15%至30%之间。此外,在未来的排放法规中需要控制粒度,这将有必要进一步提高燃烧质量。此外,还需要研究生物柴油混合物对健康的影响。

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