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首页> 外文期刊>Bulletin of the Korean Chemical Society >First Simultaneous Visualization of SO2 and NO2 Plume Dispersions using Imaging Differential Optical Absorption Spectroscopy
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First Simultaneous Visualization of SO2 and NO2 Plume Dispersions using Imaging Differential Optical Absorption Spectroscopy

机译:使用成像差分光学吸收光谱仪同时同时可视化SO2和NO2的羽流分散

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摘要

Imaging Differential Optical Absorption Spectroscopy (Imaging-DOAS) has been utilized in recent years to provide slant column density (SCD) distributions of several trace gas species in the plume. The present study introduces a new method using Imaging-DOAS data to determine two-dimensional plume structure from the plume emissions of power plant in conditions of negligible aerosol effects on radiative transfer within the plume. We demonstrates for the first time that two-dimensional distributions of sulfur dioxide (SO2) and nitrogen dioxide (NO2) in power plant emissions can be determined simultaneously in terms of SCD distribution. The SO2 SCD values generally decreased with increasing distance from the stack and with distance from the center of the plume. Meanwhile, high NO2 SCD was observed at locations several hundred meters away from the first stack due to the ratio change of NO to NO2 in NOx concentration, attributed to the NO oxidation by O3. The results of this study show the capability of the fmaging-DOAS technique as a tool to estimate plume dimensions in power plant emissions.
机译:近年来,已利用成像差分光吸收光谱法(Imaging-DOAS)提供羽状流中几种痕量气体物种的倾斜柱密度(SCD)分布。本研究介绍了一种新的方法,该方法使用Imaging-DOAS数据在可忽略的气溶胶对烟羽内辐射传递的条件下,从发电厂的烟羽排放中确定二维烟羽结构。我们首次证明,可以根据SCD分布同时确定电厂排放物中二氧化硫(SO2)和二氧化氮(NO2)的二维分布。 SO2 SCD值通常随着与烟囱距离的增加以及与烟羽中心距离的增加而降低。同时,由于NOx浓度被O3氧化所致,由于NOx浓度中NO与NO2的比例变化,在距第一个烟囱数百米的位置观察到了较高的NO2 SCD。这项研究的结果表明,fmaging-DOAS技术可作为估算电厂排放中烟羽尺寸的工具。

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