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The Multi-Wavelength Absorption Analyzer (MWAA) Model as a Tool for Source and Component Apportionment Based on Aerosol Absorption Properties: Application to Samples Collected in Different Environments

机译:多波长吸收分析仪(MWAA)模型作为基于气溶胶吸收特性的源和组分分配工具:在不同环境中收集的样品中的应用

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摘要

The multi-wavelength absorption analyzer model (MWAA model) was recently proposed to provide a source (fossil fuel combustion vs. wood burning) and a component (black carbon BC vs. brown carbon BrC) apportionment of babs measured at different wavelengths, and to provide the BrC Ångström Absorption exponent (αBrC). This paper shows MWAA model performances and issues when applied to samples impacted by different sources. To this aim, the MWAA model was run on samples collected at a rural (Propata) and an urban (Milan) site in Italy during the winter period. Lower uncertainties on αBrC and a better correlation of the BrC absorption coefficient (babsBrC) with levoglucosan (tracer for wood burning) were obtained in Propata (compared to Milan). Nevertheless, the correlation previously mentioned improved, especially in Milan, when providing a priori information on αBrC to MWAA. Possible reasons for this improvement could be the more complex mixture of sources present in Milan and the aging processes, which can affect aerosol composition, particle mixing, and size distribution. OC and EC source apportionment showed that wood burning was the dominating contributor to the carbonaceous fractions in Propata, whereas a more complex situation was detected in Milan. Simultaneous babs(BC) apportionment and EC measurements allowed MAC determination, which gave analogous results at the two sites.
机译:最近提出了多波长吸收分析仪模型(MWAA模型),以提供在不同波长下测量的babs的来源(化石燃料燃烧与木材燃烧)和成分(黑碳BC与棕色碳BrC)的分配,并且提供BrCÅngström吸收指数(αBrC)。本文显示了MWAA模型在应用于受不同来源影响的样本时的性能和问题。为此,在冬季期间,对意大利农村(Propata)和城市(米兰)站点收集的样本运行了MWAA模型。在Propata(与米兰相比)中,αBrC的不确定性较低,BrC吸收系数(babsBrC)与左旋葡聚糖(木材燃烧示踪剂)的相关性更好。然而,当提供有关αBrC的先验信息给MWAA时,先前提到的相关性得到了改善,尤其是在米兰。进行此改进的可能原因可能是米兰中存在的各种来源的混合物更加复杂,并且老化过程可能会影响气溶胶成分,颗粒混合和尺寸分布。 OC和EC的源解析显示,木材燃烧是Propata碳质组分的主要来源,而在米兰,情况更为复杂。同时进行babs(BC)分配和EC测量可确定MAC,这在两个位点都给出了相似的结果。

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