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Measurements of fugitive emission using the solar occultation flux (SOF) method

机译:使用太阳掩星通量(SOF)方法测量逃逸排放

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The SOF method is an emerging remote sensing technique based on measuring infrared intensity of solar spectra from a mobile platform (car, boat). From the infrared solar spectra, utilizing known absorption features and with a good knowledge of wind profile, the total mass of ethylene, propylene, alkanes and several other species along the path of the solar light can be retrieved. The method is today used to screen and quantify VOC emissions from industrial conglomerates down to sub-areas in individual plants. The SOF method is usually combined with mobile DOAS by which it is possible to measure also SO_2, NO_2 and formaldehyde. The SOF method has been applied in several larger campaigns in both Europe and the US and in more than 70 individual plant surveys over the last 10 years. In the various campaign studies it has been found that the measured emissions obtained with SOF are 5-10 times higher than the reported emission obtained by standard calculation methods. For instance in studies in Houston, TexAQS 2006 and campaigns 2009 and 2011, it was shown that the industrial releases of alkenes for the Houston Galveston area, on average, were 10 times higher than what was reported. For alkanes the discrepancy factor was about 8.
机译:SOF方法是一种新兴的遥感技术,它基于测量来自移动平台(汽车,船上)的太阳光谱的红外强度。从红外太阳光谱中,利用已知的吸收特征并充分了解风廓线,可以检索沿太阳光路径的乙烯,丙烯,烷烃和其他几种物质的总质量。今天,该方法用于筛选和量化从工业集团到单个工厂子区域的VOC排放。 SOF方法通常与移动式DOAS结合使用,通过该方法也可以测量SO_2,NO_2和甲醛。在过去的十年中,SOF方法已在欧洲和美国的数个大型项目中应用,并在70多个工厂调查中得到应用。在各种运动研究中,已经发现用SOF获得的测量排放量是通过标准计算方法获得的报告排放量的5-10倍。例如,在休斯敦进行的研究,TexAQS 2006以及2009年和2011年的竞选活动中,结果表明,休斯敦加尔维斯顿地区的烯烃工业释放量平均比报道的要高10倍。对于烷烃,差异因子约为8。

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