Quantitative Determination of Gaseous Alkanes Adsorbed on Filter Paper During PM2.5 Sampling

I. Ueta, T. Koyama, Katsunori Sumiya, Yoshihiro Saito
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引用次数: 1

Abstract

Atmospheric gaseous alkanes adsorbed onto filter paper during sampling of particulate matter with a diameter less than 2.5 μm (PM2.5) were quantitatively evaluated. Air samples were collected using a high-volume air sampler equipped with a PM2.5 impactor. For the determination of gaseous alkanes adsorbed onto the filter paper, two filter papers were introduced into a air sampler. The PM and gaseous compounds were collected on the upstream filter. Part of the gaseous compounds passed through the upstream filter and were also adsorbed onto the downstream filter. The adsorbed alkanes were eluted using ultrasonication with dichloromethane, and subsequently determined using gas chromatography-mass spectrometry. In this study, the gaseous n-alkanes C13-C30 were determined from the downstream filter, and the adsorption profiles of these gaseous alkanes varied with air sampling volumes. The adsorption and evaporation profiles of the alkanes were also investigated using deuterium alkanes.
PM2.5取样过程中滤纸吸附气态烷烃的定量测定
对直径小于2.5 μm (PM2.5)的颗粒物取样过程中吸附在滤纸上的气态烷烃进行了定量评价。使用配备PM2.5冲击器的大容量空气采样器收集空气样本。为了测定吸附在滤纸上的气态烷烃,在空气采样器中引入了两张滤纸。PM和气态化合物在上游过滤器上收集。部分气态化合物通过上游过滤器,也被吸附到下游过滤器上。吸附的烷烃用二氯甲烷超声洗脱,随后用气相色谱-质谱法测定。在本研究中,从下游过滤器中测定了气态正构烷烃C13-C30,这些气态正构烷烃的吸附曲线随空气采样量的变化而变化。用氘烷烃考察了烷烃的吸附和蒸发特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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