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Molecular Characterization of Atmospheric Organic Aerosol by Mass Spectrometry

机译:质谱法分子表征大气有机气溶胶

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Atmospheric aerosol, particulate matter suspended in the air we breathe, exerts a strong impact on our health and the environment. Controlling the amount of particulate matter in air is difficult, as there are many ways particles can form by both natural and anthropogenic processes. We gain insight into the sources of particulate matter through chemical composition measurements. A substantial portion of atmospheric aerosol is organic, and this organic matter is exceedingly complex on a molecular scale, encompassing hundreds to thousands of individual compounds that distribute between the gas and particle phases. Because of this complexity, no single analytical technique is sufficient. However, mass spectrometry plays a crucial role owing to its combination of high sensitivity and molecular specificity. This review surveys the various ways mass spectrometry is used to characterize atmospheric organic aerosol at a molecular level, tracing these methods from inception to current practice, with emphasis on current and emerging areas of research. Both offline and online approaches are covered, and molecular measurements with them are discussed in the context of identifying sources and elucidating the underlying chemical mechanisms of particle formation. There is an ongoing need to improve existing techniques and develop new ones if we are to further advance our knowledge of how to mitigate the unwanted health and environmental impacts of particles.
机译:大气气溶胶,颗粒物质悬浮在我们呼吸的空气中,对我们的健康和环境产生强烈影响。控制空气中的颗粒物质的量很困难,因为有许多方式可以通过天然和人为过程形成颗粒。通过化学成分测量,我们深入了解颗粒物质来源。大部分大气气溶胶是有机的,并且这种有机物在分子尺度上非常复杂,包括数百至数千个在气体和颗粒之间分布的单独化合物。由于这种复杂性,没有单一的分析技术就足够了。然而,由于其具有高敏感性和分子特异性的组合,质谱法发挥着至关重要的作用。该综述调查质谱法用于以分子水平表征大气有机气溶胶的各种方式,将这些方法追溯到目前的实践中,重点是当前和新兴的研究领域。离线和在线方法都被覆盖,并且在识别来源的背景下讨论了它们的分子测量并阐明颗粒形成的潜在化学机制。如果我们进一步推进如何利用如何减轻粒子的不受欢迎的健康和环境影响,持续需要改善现有技术并开发新技术。

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