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Coupling Filter-Based Thermal Desorption Chemical lonization Mass Spectrometry with Liquid Chromatography/Electrospray lonization Mass Spectrometry for Molecular Analysis of Secondary Organic Aerosol

机译:基于滤光片的热解吸化学液相色谱法质谱法与液相色谱/电喷雾隔离质谱分子分子分析二次有机气溶胶

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摘要

Filter-based thermal desorption (F-TD) techniques, such as the filter inlet for gases and aerosols, are widely employed to investigate the molecular composition and physicochemical properties of secondary organic aerosol (SOA). Here, we introduce an enhanced capability of F-TD through the combination of a customized F-TD inlet with chemical ionization mass spectrometry (CIMS) and ultraperformance liquid chromatography/electrospray ionization mass spectrometry (UPLC/ES1-MS). The utility of F-TD/CIMS + UPLC/ESI-MS is demonstrated by application to α-pinene ozonolysis SOA for which increased filter aerosol mass loading is shown to slow the evaporation rates of deposited compounds. Evidence for oligomer decomposition producing multimode F-TD/CIMS thermograms is provided by the measurement of the mass fraction remaining of monomeric and dimeric α-pinene oxidation products on the filter via UPLC/ESI-MS. In situ evaporation of aerosol particles suggests that M-pinene-derived hydroperoxides are thermally labile; thus, analysis of particle-phase (hydro)peroxides via F-TD may not be appropriate. A synthesized pinene-derived dimer ester (C_(20)H_(32)O_5) is found to be thermally stable up to 200 °C, whereas particle-phase dimers (C_(19)H_(30)O_5) are observed to form during F-TD analysis via thermally induced condensation of synthesized pinene-derived alcohols and diacids. The complementary F-TD/CIMS + UPLC/ESI-MS method offers previously inaccessible insight into the molecular composition and thermal desorption behavior of SOA that both clarifies and expands on analysis via traditional F-TD techniques.
机译:基于滤波器的热解吸(F-Td)技术,例如气体和气溶胶的过滤器入口,广泛用于研究二次有机气溶胶(SOA)的分子组成和物理化学性质。在这里,我们通过使用化学电离质谱(CIMS)和超细电离电离质谱(UPLC / ES1-MS)的定制F-TD入口的组合引入F-Td的增强能力。通过施用施加到α-泛烯臭氧溶解SOA的F-TD / CIMS + UPLC / ESI-MS的效用显示出增加过滤器气溶胶质量荷载量,以减缓沉积化合物的蒸发速率。通过通过UPLC / ESI-MS在过滤器上测量剩余的单体和二聚体α-焦烯氧化产物的质量分数,提供了多模F-TD / CIMS热图提供了多模F-TD / CIMS热图的证据。原位蒸发气溶胶颗粒表明M-PINENE衍生的氢过氧化物是热不稳定的;因此,通过F-Td的粒子相(Hydro)过氧化物的分析可能不合适。发现合成的针烯 - 衍生的二聚体酯(C_(20)H_(32)O_5)热稳定至200℃,而观察颗粒 - 相二聚体(C_(19)H_(30)O_5)形成在F-TD分析期间通过热诱导的合成的泛烯衍生的醇和二酸的缩合。互补的F-TD / CIMS + UPLC / ESI-MS方法提供了以前无法通过传统F-TD技术阐明和扩展SOA的分子组成和热解吸行为的识别。

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  • 来源
    《Environmental Science & Technology》 |2020年第20期|13238-13248|共11页
  • 作者单位

    Division of Geological and Planetary Sciences California Institute of Technology Pasadena California 91125 United States;

    Division of Chemistry and Chemical Engineering California Institute of Technology Pasadena California 91125 United States;

    Division of Geological and Planetary Sciences California institute of Technology Pasadena California 91125 United States;

    Division of Chemistry and Chemical Engineering and Division of Engineering and Applied Science California Institute of Technology Pasadena California 91125 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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