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Development of a volatility and polarity separator (VAPS) for volatility- and polarity-resolved organic aerosol measurement

机译:挥发性和极性分离器(VAPS)的开发,用于挥发性和极性分解的有机气溶胶测量

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摘要

Discrepancies between modeled and measured atmospheric organic aerosol (OA) have highlighted the need for in situ instrumentation to better characterize the sources, formation mechanisms, and atmospheric evolution of ambient OA. We have developed the Volatility and Polarity Separator (VAPS) for hourly measurements of volatility- and polarity-resolved OA detected using high-resolution time-of-flight mass spectrometry (HR-ToF-MS). Here, atmospheric OA is inertially impacted onto a collection cell, material is transferred onto a short transfer line located inside a gas chromatography (GC) oven, the oven is heated to provide a first-dimension separation of volatility, then thermally pulsed through a short polar GC column for a second-dimension polarity separation, and finally detected by HR-ToF-MS. This novel instrument increases the mass throughput of ambient OA in comparison to traditional GC due to shorter transfer paths and passivated coatings. Molecular separation resolution is partially sacrificed for this increased mass recovery, but the high-resolution mass spectral data recovers information such as chemical classes and even some individual compounds along with elemental composition to determine aerosol oxidation states. Different techniques for interpreting and representing VAPS data are considered and its applicability to positive matrix factorization (PMF) analysis is demonstrated.Copyright (c) 2016 American Association for Aerosol Research
机译:建模和测量的大气有机气溶胶(OA)之间的差异突出表明,需要就地仪器以更好地表征环境OA的来源,形成机制和大气演化。我们已经开发了挥发性和极性分离器(VAPS),用于每小时测量使用高分辨率飞行时间质谱(HR-ToF-MS)检测到的挥发性和极性分离的OA。在这里,大气OA惯性地撞击到收集池上,材料被转移到位于气相色谱(GC)烘箱内的短传输线上,加热烘箱以提供第一维的挥发性分离,然后通过短脉冲进行热脉冲极性GC色谱柱进行第二维极性分离,最后通过HR-ToF-MS检测。与传统的气相色谱相比,这种新型仪器可提高环境OA的通量,原因是传输路径更短且钝化了涂层。为了提高质量回收率,部分牺牲了分子分离分辨率,但是高分辨率质谱数据可恢复信息,例如化学类别,甚至某些单独的化合物以及元素组成,以确定气溶胶的氧化态。考虑了用于解释和表示VAPS数据的不同技术,并证明了其在正矩阵分解(PMF)分析中的适用性。(c)2016美国喷雾研究协会

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