首页> 外文会议>US Combustion Meeting; 20070325-28; San Diego,CA(US) >Comparisons of Sub-micron Participate Structures Emitted from a Diesel Engine, a Gasoline Engine, and a Power Plant
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Comparisons of Sub-micron Participate Structures Emitted from a Diesel Engine, a Gasoline Engine, and a Power Plant

机译:柴油机,汽油机和发电厂排放的亚微米参与结构的比较

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Combustion-generated fine paniculate matter is linked to a variety of adverse effects on the environment and human health. Characterizations of the size, shape, structure and chemical composition of such harmful particulate pollutants are essential to monitor, regulate and model their transport, toxic, optical, chemical and deposition properties. In this study, particulates emitted from three combustion sources are investigated in order to identify key similarities and differences in their physical characteristics and compositions. In particular, a 6-cylinder medium duty compression-ignition engine burning number 2 diesel fuel, a single-cylinder spark-ignition engine fueled by isooctane, and a local utility power plant burning coal/woodchip mixtures are considered. Direct sampling methods are employed to extract particulates from the exhaust plumes onto microscope grids without any sample preparations or manipulations. The samples are then analyzed with high-resolution transmission electron microscopy, energy dispersive x-ray spectroscopy, and electron diffraction method. Physical sizes and morphologies, chemical compositions, crystalline properties, and fine internal structures are determined and compared. The present experimental findings provide scientific guidance for the identification of particulate source in heavily polluted areas and for the improvement of emission reduction strategies.
机译:燃烧产生的细颗粒物质与对环境和人类健康的各种不利影响有关。此类有害颗粒污染物的大小,形状,结构和化学组成的表征对于监测,调节和模拟其传输,有毒,光学,化学和沉积特性至关重要。在这项研究中,对三个燃烧源排放的颗粒物进行了研究,以确定其物理特性和组成方面的关键相似点和不同点。特别是考虑了使用2号柴油的6缸中负荷压燃式发动机,用异辛烷为燃料的单缸火花点火式发动机以及燃烧煤/木片混合物的当地公用事业电厂。直接采样方法用于将废气中的颗粒物提取到显微镜格栅上,而无需任何样品准备或操作。然后用高分辨率透射电子显微镜,能量色散X射线光谱和电子衍射法分析样品。确定并比较了物理尺寸和形态,化学组成,晶体性质和精细的内部结构。本实验结果为确定严重污染地区的颗粒物来源和改进减排策略提供了科学指导。

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