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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Improved Methods for Performing Multivariate Analysis and Deriving Background Spectra in Atmospheric Open-Path FT-IR Monitoring
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Improved Methods for Performing Multivariate Analysis and Deriving Background Spectra in Atmospheric Open-Path FT-IR Monitoring

机译:在大气开放路径FT-IR监测中执行多元分析和导出背景光谱的改进方法

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Open-path Fourier transform infrared spectrometry (OP/FT-IR) may improve the temporal and spatial resolution in air pollutant measurements compared to conventional sampling methods. However, a successful OP/FT-IR operation requires an experienced analyst to resolve chemical interference as well as to derive a suitable background spectrum. The present study aims at developing a systematic method of handling the OP/FT-IR derived spectra for the measurement of photochemical oxidants and volatile organic compounds (VOCs) in urban areas. A classical least-squares (CLS) method, the most frequently used regression method in OP/FT-IR, is modified to constrain all the analyzed chemical species concentrations within a physically reasonable range. This new CLS method, named constrained CLS, may save the effort of predetermining the chemical species to be analyzed. A new background spectrum generation method is also introduced to more efficiently handle chemical interferences. Finally, CLS is shown to be prone to propagating errors in the case that a few data points contain a significant amount of error. The L1-norm minimization method reduces this error propagation to considerably increase the stability compared to CLS. The presently developed analysis software based on these approaches is compared with the other conventional CLS method using an artificially made single-beam spectrum as well as a field single-beam spectrum.
机译:与常规采样方法相比,开放路径傅里叶变换红外光谱(OP / FT-IR)可以改善空气污染物测量中的时间和空间分辨率。但是,成功的OP / FT-IR操作需要经验丰富的分析师来解决化学干扰以及获得合适的背景光谱。本研究旨在开发一种处理OP / FT-IR衍生光谱的系统方法,用于测量城市地区的光化学氧化剂和挥发性有机化合物(VOC)。对经典最小二乘(CLS)方法(OP / FT-IR中最常用的回归方法)进行了修改,以将所有分析的化学物质浓度限制在物理上合理的范围内。这种称为约束CLS的新CLS方法可以节省预先确定要分析的化学物质的工作量。还引入了新的背景光谱生成方法以更有效地处理化学干扰。最后,在少数数据点包含大量错误的情况下,CLS易于传播错误。与CLS相比,L1范数最小化方法减少了此错误传播,从而大大提高了稳定性。将基于这些方法的当前开发的分析软件与使用人工制作的单束光谱以及现场单束光谱的其他常规CLS方法进行比较。

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