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Impact of rail pressure and biodiesel fueling on the particulate morphology and soot nanostructures from a common-rail turbocharged direct injection diesel engine

机译:轨道压力和生物柴油燃料对共轨涡轮增压直喷柴油机颗粒形态和碳纳米结构的影响

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摘要

An investigation of the impact of rail pressure and biodiesel fueling on exhaust particulate agglomerate morphology and primary particle (soot) nanostructure was conducted with a common-rail turbocharged direct injection diesel engine. The engine was operated at steady state on a dynamometer running at moderate speed with both low (30%) and medium-high (60%) fixed loads, and exhaust particulate was sampled for analysis. The fuels used were ultra-low sulfur diesel and its 20% v/v blends with soybean methyl ester biodiesel. Fuel injection occurred in a single event around top dead center at three different injection pressures. Exhaust particulate samples were characterized with transmission electronic microscopy imaging, scanning mobility particle sizing, thermogravimetric analysis, Raman spectroscopy, and X-ray diffraction analysis. Particulate morphology and oxidative reactivity were found to vary significantly with both rail pressure and biodiesel blend level. Higher biodiesel content led to an increase in the primary particle size and oxidative reactivity but had no impact on nanoscale disorder in the as-received samples. For particulates generated with higher injection pressures, the initial oxidative reactivity increased, but there was no detectable correlation with primary particle size or nanoscale disorder.
机译:研究了共轨涡轮增压直喷柴油机对钢轨压力和生物柴油燃料添加对废气颗粒团聚体形态和一次颗粒(烟灰)纳米结构的影响的研究。发动机在低速(30%)和中高(60%)固定负载下以中等速度运行的测功机上稳定运行,并对排气颗粒进行采样以进行分析。所使用的燃料是超低硫柴油及其与大豆甲酯生物柴油的20%v / v混合物。燃油喷射是在三个不同的喷射压力下,在上止点附近的单个事件中发生的。排气颗粒样品通过透射电子显微镜成像,扫描迁移率粒度测定,热重分析,拉曼光谱和X射线衍射分析进行表征。发现颗粒形貌和氧化反应性随轨道压力和生物柴油掺混物水平显着变化。较高的生物柴油含量会导致初级粒径和氧化反应性增加,但对收到的样品中的纳米级紊乱没有影响。对于以较高的注射压力产生的颗粒,其初始氧化反应性增加,但与初级粒径或纳米级无序之间没有可检测到的相关性。

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