Shao Limin, Griffiths Peter R
Department of Chemistry, University of Idaho, Moscow, Idaho 83844-2343, USA.
Anal Chem. 2007 Mar 1;79(5):2118-24. doi: 10.1021/ac062042x. Epub 2007 Jan 24.
We report the application of target factor analysis (TFA) to the identification of trace analytes in open-path Fourier transform infrared (OP/FT-IR) spectra. Results showed that for components such as methane and ammonia, for which the path-integrated concentration was greater than approximately 100 ppm.m, TFA yielded results that closely match corresponding reference spectra. Furthermore, it was shown that the rotation of certain eigenvectors allowed the presence of trace analytes to be recognized when the SNR of these molecules in individual spectra was below 1.0, even though no prior knowledge that a particular molecule was present in the atmosphere being monitored was available. The presence of the analyte was confirmed by conventional TFA. The presence of ethanol and ozone was observed in OP/FT-IR spectra measured at certain locations near dairy and hog farms in this way. No band that could be assigned to either analyte could be observed in any of the spectra in the data set. The application of TFA to OP/FT-IR spectra had the advantage that no preprocessing, e.g., compensation of water line absorption or baseline correction, is needed.
我们报告了目标因子分析(TFA)在开放路径傅里叶变换红外(OP/FT-IR)光谱中痕量分析物识别方面的应用。结果表明,对于诸如甲烷和氨等路径积分浓度大于约100 ppm·m的组分,TFA得出的结果与相应的参考光谱非常匹配。此外,研究表明,当单个光谱中这些分子的信噪比低于1.0时,某些特征向量的旋转能够识别痕量分析物的存在,即便事先并不知道在被监测的大气中存在特定分子。分析物的存在通过传统TFA得到了证实。通过这种方式,在奶牛场和养猪场附近的某些地点测量的OP/FT-IR光谱中观察到了乙醇和臭氧的存在。在数据集中的任何光谱中均未观察到可归因于任何一种分析物的谱带。TFA应用于OP/FT-IR光谱的优势在于无需进行诸如水线吸收补偿或基线校正等预处理。