首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >A Chemical Ionization High-Resolution Time-of-Flight Mass Spectrometer Coupled to a Micro Orifice Volatilization Impactor (MOVI-HRToF-CIMS) for Analysis of Gas and Particle-Phase Organic Species
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A Chemical Ionization High-Resolution Time-of-Flight Mass Spectrometer Coupled to a Micro Orifice Volatilization Impactor (MOVI-HRToF-CIMS) for Analysis of Gas and Particle-Phase Organic Species

机译:化学电离高分辨率飞行时间质谱仪,与微孔挥发性撞击器(MOVI-HRToF-CIMS)耦合,用于分析气体和颗粒相有机物

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We describe a new instrument, chemical ionization (CI) high-resolution time-of-flight mass spectrometer (ToFMS) coupled to a micro-orifice volatilization impactor (MOVI-HRToF-CIMS). The MOVI-HRToF-CIMS instrument is unique in that, within a compact fleld-deployable package, it provides (1) quantifiable molecular-level information for both gas and particle-phase organic species on timescales ranging from ≤ 1 s for gases to 10-60 min for particle-phase compounds that can be used to efficiently probe oxidation and secondary organic aerosol (SOA) formation mechanisms, and (2) relative volatility information of the detected compounds simultaneously estimated using the programmed thermal desorption information obtained from the MOVI. We demonstrate the capabilities of a prototype instrument using known test compounds and complex mixtures generated from the oxidation of biogenic and anthropogenic hydrocarbons. We present spectra obtained using both negative and positive ion CI with acetate (CH3C(O)O~-) and protonated water clusters {H3O~+· (H2O)_n), respectively, as reagent ions. The instrument has high mass resolving power (R = 5000 above m/Q 250 Th) and mass accuracy (±20 ppm) enabling estimation of compound elemental composition. Instrument sensitivity in negative ion mode was tested using formic acid as a representative gas-phase compound, and that for particle-phase compounds was tested using palmitic, azelaic, and tricarballylic acids. With a heated MOVI inlet, an ion count rate of ~1S Hz is achieved when sampling 1 pptv (= 1 pmol/mol) of formic acid (or other monocarboxylic acids) under typical operating conditions. This sensitivity translates to detection limits less than 1 ng/m~3 for carboxylic acids in the particle-phase. We also discuss the remaining challenges with this instrument to broadly characterizing gaseous and particulate oxygenated organic compounds in situ.
机译:我们描述了一种新仪器,化学电离(CI)高分辨率飞行时间质谱仪(ToFMS)与微孔挥发冲击器(MOVI-HRToF-CIMS)耦合。 MOVI-HRToF-CIMS仪器的独特之处在于,在紧凑的可现场部署的包装中,它提供了(1)气相和粒子相有机物的定量分子水平信息,时间范围从气体的≤1 s到10对于可用于有效探测氧化和二次有机气溶胶(SOA)形成机理的颗粒相化合物,可在-60分钟内完成;(2)使用从MOVI获得的程序化热脱附信息同时估算被检测化合物的相对挥发性信息。我们演示了使用已知测试化合物和由生物和人为碳氢化合物氧化生成的复杂混合物的原型仪器的功能。我们介绍了分别使用负离子和正离子CI与乙酸盐(CH3C(O)O〜-)和质子化水簇(H3O〜+·(H2O)_n)作为试剂离子获得的光谱。该仪器具有很高的质量分辨能力(在m / Q 250 Th以上,R = 5000)和质量准确度(±20 ppm),能够估算化合物的元素组成。使用甲酸作为代表性的气相化合物测试了负离子模式下的仪器灵敏度,使用棕榈酸,壬二酸和三碳烯丙基酸测试了粒子相化合物的仪器灵敏度。使用加热的MOVI进样口,在典型操作条件下对1 pptv(= 1 pmol / mol)甲酸(或其他一元羧酸)进行采样时,离子计数率约为1S Hz。这种灵敏度转化为颗粒相中羧酸的检测限小于1 ng / m〜3。我们还将讨论该仪器在现场广泛表征气态和颗粒状氧化有机化合物方面所面临的挑战。

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