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首页> 外文期刊>Atmospheric chemistry and physics >Technical note: Relating functional group measurements to carbon types for improved model-measurement comparisons of organic aerosol composition
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Technical note: Relating functional group measurements to carbon types for improved model-measurement comparisons of organic aerosol composition

机译:技术说明:将功能群测量与碳类型相关,以改善有机气溶胶组合物的模型测量比较

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Functional group (FG) analysis provides a means by which functionalization in organic aerosol can be attributed to the abundances of its underlying molecular structures. However, performing this attribution requires additional, unobserved details about the molecular mixture to provide constraints in the estimation process. We present an approach for conceptualizing FG measurements of organic aerosol in terms of its functionalized carbon atoms. This reformulation facilitates estimation of mass recovery and biases in popular carbon-centric metrics that describe the extent of functionalization (such as oxygen to carbon ratio, organic mass to organic carbon mass ratio, and mean carbon oxidation state) for any given set of molecules and FGs analyzed. Furthermore, this approach allows development of parameterizations to more precisely estimate the organic carbon content from measured FG abundance. We use simulated photooxidation products of alpha-pinene secondary organic aerosol previously reported by Ruggeri et al. (2016) and FG measurements by Fourier transform infrared (FT-IR) spectroscopy in chamber experiments by Sax et al. (2005) to infer the relationships among molecular composition, FG composition, and metrics of organic aerosol functionalization. We find that for this simulated system, similar to 80% of the carbon atoms should be detected by FGs for which calibration models are commonly developed, and similar to 7% of the carbon atoms are undetectable by FT-IR analysis because they are not associated with vibrational modes in the infrared. Estimated biases due to undetected carbon fraction for these simulations are used to make adjustments in these carbon-centric metrics such that model-measurement differences are framed in terms of unmeasured heteroatoms (e.g., in hydroperoxide and nitrate groups for the case studied in this demonstration). The formality of this method provides framework for extending FG analysis to not only model-measurement but also instrument intercomparisons in other chemical systems.
机译:官能团(FG)分析提供了一种方法,通过其中有机气溶胶中的官能化可以归因于其底层分子结构的丰度。然而,执行该归属需要额外的关于分子混合物的未观察到细节,以提供估计过程中的约束。我们提出了一种在其官能化的碳原子方面概念概念性的有机气溶胶的FG测量。该重构有助于估算流行以碳中为中心的质量恢复和偏差,所述碳中以碳为中心的指标描述了任何给定分子的官能化(例如氧气与碳比,有机碳质质量比和平均碳氧化态)和FGS分析。此外,这种方法允许开发参数化以更精确地估计来自测量的FG丰度的有机碳含量。我们使用先前通过Ruggeri等人报道的α-叉烯二次有机气溶胶的模拟光氧化产物。 (2016)和傅立叶变换红外(FT-IR)光谱法通过SAX等人进行傅立叶变换红外(FT-IR)光谱法。 (2005)推断分子组合物,FG组合物和有机气溶胶官能化度量之间的关系。我们发现,对于这种模拟系统,类似于80%的碳原子应通过校准模型通常开发的FGS检测,并且类似于7%的碳原子被FT-IR分析不可检测到,因为它们没有相关在红外线中具有振动模式。由于这些模拟的未检测到的碳级分引起的估计偏差用于在这些以上碳的度量中进行调整,使得模型 - 测量差异在未测量的杂原子(例如,在本示范中研究的氢过氧化物和硝酸盐组中)框架。该方法的形式提供了延伸FG分析的框架,不仅是模型测量,还提供了其他化学系统中的仪器对参数。

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