首页> 外文期刊>Mass Spectrometry Reviews >MASS SPECTROMETRY OF ATMOSPHERIC AEROSOLS-RECENT DEVELOPMENTS AND APPLICATIONS. PART II: ON-LINE MASS SPECTROMETRY TECHNIQUES
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MASS SPECTROMETRY OF ATMOSPHERIC AEROSOLS-RECENT DEVELOPMENTS AND APPLICATIONS. PART II: ON-LINE MASS SPECTROMETRY TECHNIQUES

机译:大气气溶胶质谱法的最新进展和应用。第二部分:在线质谱分析技术

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摘要

Many of the significant advances in our understanding of atmospheric particles can be attributed to the application of mass spectrometry. Mass spectrometry provides high sensitivity with fast response time to probe chemically complex particles. This review focuses on recent developments and applications in the field of mass spectrometry of atmospheric aerosols. In Part II of this two-part review, we concentrate on real-time mass spectrometry techniques, which provide high time resolution for insight into brief events and diurnal changes while eliminating the potential artifacts acquired during long-term filter sampling. In particular, real-time mass spectrometry has been shown recently to provide the ability to probe the chemical composition of ambient individual particles <30 nm in diameter to further our understanding of how particles are formed through nucleation in the atmosphere. Further, transportable real-time mass spectrometry techniques are now used frequently on ground-, ship-, and aircraft-based studies around the globe to further our understanding of the spatial distribution of atmospheric aerosols. In addition, coupling aerosol mass spectrometry techniques with other measurements in series has allowed the in situ determination of chemically resolved particle effective density, refractive index, volatility, and cloud activation properties.
机译:在我们对大气颗粒的理解中,许多重要的进步可以归因于质谱的应用。质谱仪具有高灵敏度和快速响应时间,可探测化学复杂的颗粒。这篇综述着重于大气气溶胶质谱领域的最新发展和应用。在这个由两部分组成的回顾的第二部分中,我们将重点介绍实时质谱技术,该技术提供了高分辨力,可用于洞悉短暂事件和日变化,同时消除了在长期过滤器采样过程中获得的潜在伪像。特别是,最近已显示出实时质谱分析技术能够探测直径小于30 nm的周围单个粒子的化学成分,以进一步了解如何通过大气中的成核形成粒子。此外,全球各地的地面,船舶和飞机研究都经常使用可运输的实时质谱技术,以加深我们对大气气溶胶空间分布的理解。此外,将气溶胶质谱技术与其他串联测量方法结合使用,可以就地确定化学分辨颗粒的有效密度,折射率,挥发性和云团活化特性。

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