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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Real time in situ chemical characterization of sub-micron organic aerosols using Direct Analysis in Real Time mass spectrometry (DART-MS): The effect of aerosol size and volatility
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Real time in situ chemical characterization of sub-micron organic aerosols using Direct Analysis in Real Time mass spectrometry (DART-MS): The effect of aerosol size and volatility

机译:使用实时质谱直接分析(DART-MS)对亚微米有机气溶胶进行实时原位化学表征:气溶胶大小和挥发性的影响

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摘要

Direct Analysis in Real Time (DART) mass spectrometry is an atmospheric pressure ionization technique suitable for in situ chemical analysis of organic aerosols. Here, mass spectra are obtained by introducing a stream of nanometer-sized aerosols into the ionization region, which is an open space between the ion source and the atmospheric inlet of mass spectrometer. Model single component aerosols are used to show how the aerosol size and volatility influence the measured ion signals at different DART gas temperatures. The results show that for equivalent aerosol mass concentrations, the ion signal scales with particle surface area, with smaller diameter oleic acid aerosols yielding higher ion signals relative to larger diameter aerosols. For the aerosols of the same size, but different vapor pressures, the ion signal is larger for more volatile succinic acid aerosols than less volatile adipic and suberic acid particles. From the measured changes in aerosol size, produced by the DART source, the radial probing depth for these model aerosols range from 1 to 10 nm, the magnitude of which depends upon the physiochemical properties of the aerosols and DART gas temperature. An aerosol evaporation model reveals that the ion signal is correlated with changes in aerosol size and depends upon the total quantity of evaporated aerosol mass, consistent with a mechanism in which gas-phase molecules are first desorbed from the aerosol surface prior to ionization. The results of this work serve as a basis for future investigations of the mass spectra, ionization pathways, and probing depth of the aerosols using DART.
机译:实时直接分析(DART)质谱是一种大气压电离技术,适用于有机气溶胶的原位化学分析。在这里,质谱是通过将纳米级气溶胶流引入电离区域而获得的,电离区域是离子源与质谱仪大气入口之间的开放空间。使用模型单组分气溶胶来显示气溶胶的大小和挥发性如何影响在不同DART气体温度下测得的离子信号。结果表明,对于等效的气溶胶质量浓度,离子信号随颗粒表面积而缩放,相对于较大直径的气溶胶,较小直径的油酸气溶胶会产生较高的离子信号。对于相同大小但蒸气压不同的气溶胶,对于挥发性较高的琥珀酸气溶胶,其离子信号要比挥发性较小的己二酸和辛二酸颗粒大。从DART源产生的气溶胶尺寸变化的测量值来看,这些模型气溶胶的径向探测深度为1到10 nm,其大小取决于气溶胶的理化特性和DART气体温度。气溶胶蒸发模型揭示离子信号与气溶胶尺寸的变化相关,并且取决于蒸发的气溶胶质量的总量,这与在电离之前首先从气溶胶表面解吸气相分子的机理一致。这项工作的结果为将来使用DART进行质谱,电离途径和气溶胶探测深度的研究奠定了基础。

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