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首页> 外文期刊>Atmospheric environment >Measurement of atmospheric monoaromatic hydrocarbons using differential optical absorption spectroscopy: Comparison with on-line gas chromatography measurements in urban air
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Measurement of atmospheric monoaromatic hydrocarbons using differential optical absorption spectroscopy: Comparison with on-line gas chromatography measurements in urban air

机译:使用差分光学吸收光谱法测量大气单芳烃:与城市空气中在线气相色谱法测量的比较

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摘要

A Long Path DOAS system (GIST LP-DOAS) developed by GIST has been used to simultaneously measure atmospheric monoaromatic hydrocarbons (MAHC) and other trace compounds. The validity of GIST LP-DOAS in measuring atmospheric MAHC was tested over 740m beam paths at an urban site in Seoul, Korea, during two field campaigns held in February 2003. In order to remove the effects of interfering compounds (such as oxygen, ozone, and sulfur dioxide), two oxygen optical density spectra at two path lengths and the reference spectra of sulfur dioxide and ozone were incorporated in the fitting procedure for the determination of MAHC. The mean concentrations of NIAHC measured with LP-DOAS system during the measurement period were 0.77 (benzene), 3.68 (toluene), 0.41 (p-xylene), and 0. 54 ppbv (m-xylene), respectively. The results of our LP-DOAS measurements were compared with those obtained by a collocated on-line Gas Chromatography (on-line GC) system. The concept of a percent difference (PD) and linear regression methods were employed to explain the bias structure between LP-DOAS and on-line GC. The results of this comparative analysis indicated that both systems exhibited strong compatibility with relatively good correlation. According to our correlation analysis between PD values and meteorological parameters, the compatibility between the two systems increased under the conditions of improved visibility and meteorological homogeneity (wind speed > 1.3 ms(-1)). Based on our study, it is concluded that the LP-DOAS system can be used to provide reliable information on both mixing ratios and temporal distribution characteristics of MAHC in urban air. © 2005 Elsevier Ltd. All rights reserved.
机译:由GIST开发的长径DOAS系统(GIST LP-DOAS)已用于同时测量大气单芳烃(MAHC)和其他痕量化合物。在2003年2月举行的两次野外活动中,在韩国首尔的一个城市站点的740m光束路径上测试了GIST LP-DOAS在测量大气MAHC方面的有效性。为了消除干扰性化合物(如氧气,臭氧等)的影响,和二氧化硫),在确定MAHC的拟合过程中纳入了两个光程长度处的两个氧光密度光谱以及二氧化硫和臭氧的参考光谱。在测量期间,使用LP-DOAS系统测量的NIAHC的平均浓度分别为0.77(苯),3.68(甲苯),0.41(对二甲苯)和0. 54 ppbv(间二甲苯)。将我们的LP-DOAS测量结果与通过并置的在线气相色谱仪(在线GC)系统获得的结果进行了比较。采用百分比差异(PD)和线性回归方法的概念来解释LP-DOAS和在线GC之间的偏差结构。该比较分析的结果表明,两个系统都显示出强兼容性,并且具有相对良好的相关性。根据我们对PD值与气象参数之间的相关性分析,在提高能见度和气象均匀性(风速> 1.3 ms(-1))的条件下,两个系统之间的兼容性得到了提高。根据我们的研究,可以得出结论,LP-DOAS系统可用于提供有关城市空气中MAHC的混合比和时间分布特征的可靠信息。 &复制; 2005 Elsevier Ltd.保留所有权利。

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