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Natural organic matter in urban aerosols: Comparison between water and alkaline soluble components using excitation-emission matrix fluorescence spectroscopy and multiway data analysis

机译:城市气溶胶中的天然有机物:使用激发发射矩阵荧光光谱法和多路数据分析比较水和碱溶性成分

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摘要

Understanding the complexity of Natural Organic Matter (NOM) in atmospheric aerosols has remained an important goal for the atmospheric research community. This work employs a Parallel Factor Model (PARAFAC) with Alternating Least Squares (ALS) algorithm to decompose and further compare sets of excitation-emission matrices fluorescence spectra of Water-soluble and Alkaline-soluble Organic Matter (WSOM and ASOM, respectively), sequentially extracted from urban aerosols collected during different seasons. The PARAFAC-ALS modelling identified three components in both WSOM and ASOM, whose maximum intensities follow a clear seasonal trend and which are likely to represent the dominant fluorescent moieties in NOM from urban aerosols. The PARAFAC-ALS modelling also indicated differences between the colder and warmer seasons in the fluorescence map of one WSOM component, which contrast with the results obtained for the ASOM, where the fluorescence signatures were found to be constant along the seasons, suggesting that the ASOM may have an in situ origin.
机译:理解大气气溶胶中天然有机物(NOM)的复杂性仍然是大气研究界的重要目标。这项工作采用并行因子模型(PARAFAC)和交替最小二乘(ALS)算法来依次分解和进一步比较水溶性和碱性可溶性有机物(分别为WSOM和ASOM)的激发-发射矩阵荧光光谱集从不同季节收集的城市气溶胶中提取。 PARAFAC-ALS模型确定了WSOM和ASOM中的三个成分,它们的最大强度遵循明显的季节性趋势,并且很可能代表了城市气溶胶NOM中的主要荧光部分。 PARAFAC-ALS模型还显示了一种WSOM组分的荧光图中冷季和暖季之间的差异,这与ASOM获得的结果相反,在ASOM中发现荧光特征在整个季节中是恒定的,这表明ASOM可能有原产地。

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