...
首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Improved atmospheric trace gas measurements with an aircraft-based tandem mass spectrometer: Ion identification by mass-selected fragmentation studies
【24h】

Improved atmospheric trace gas measurements with an aircraft-based tandem mass spectrometer: Ion identification by mass-selected fragmentation studies

机译:使用基于飞机的串联质谱仪改进的大气痕量气体测量:通过质量选择的碎片研究鉴定离子

获取原文
获取原文并翻译 | 示例

摘要

We have built and employed an aircraft-borne triple quadrupole mass spectrometer (TQMS) for fragmentation studies of mass-selected ions in the upper troposphere and lower stratosphere. The fragmentation studies included both ambient and artificially produced ions relevant for the measurement of atmospheric trace gases by ion molecule reaction mass spectrometry (IMRMS) and led to an unambiguous identification of the chemical composition of important ions used for IMRMS-measurements. Among these are the product ions of ion molecule reactions of CO3- (H2O)(n) and H3O+(H2O)(n) ions with HNO3, SO2, acetone, HCN, and methyl cyanide. These reactions have been studied in the laboratory, aid ions having the same masses as the expected product ions have been previously observed in atmospheric IMRMS spectra. The present fragmentation studies are the first to actually identify the chemical composition of these ions during aircraft measurements in the upper troposphere and lower stratosphere and demonstrate that these ions can reliably be used for atmospheric trace gas measurements. Furthermore, the fragmentation studies gave indications for the existence and the possible identification of previously unknown ions. Among these the tentative identification of CO3-H2O2 offers the possibility for sensitive measurements of H2O2 by IMRMS. The fragmentation studies were accompanied by IMRMS measurements of atmospheric trace gases using the TQMS. Altitude profiles of HNO3, SO2, and lower limits for H2O2 are shown. [References: 46]
机译:我们已经建立并采用了机载三重四极杆质谱仪(TQMS)进行对流层和平流层下部质量选择离子的碎片研究。碎片研究包括与通过离子分子反应质谱法(IMRMS)测量大气痕量气体有关的环境离子和人工产生的离子,从而明确确定了用于IMRMS测量的重要离子的化学组成。其中有CO3-(H2O)(n)和H3O +(H2O)(n)离子与HNO3,SO2,丙酮,HCN和甲基氰的离子分子反应的产物离子。这些反应已在实验室进行了研究,辅助离子的质量与预期的产物离子相同,此前已在大气IMRMS光谱中观察到。目前的碎片研究是第一个在对流层和平流层较低的飞机测量过程中真正鉴定出这些离子的化学成分,并证明这些离子可以可靠地用于大气痕量气体的测量。此外,碎片研究为先前未知离子的存在和可能的鉴定提供了指示。在这些之中,对CO3-H2O2的初步鉴定为通过IMRMS灵敏地测量H2O2提供了可能性。使用TQMS进行碎片研究的同时,还对大气中痕量气体进行了IMRMS测量。显示了HNO3,SO2的高度分布图和H2O2的下限。 [参考:46]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号