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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 >Development of lithium attachment mass spectrometry - knudsen effusion and chemical ionisation mass spectrometry (KEMS, CIMS)
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Development of lithium attachment mass spectrometry - knudsen effusion and chemical ionisation mass spectrometry (KEMS, CIMS)

机译:锂附着质谱的研制 - Knudsen积分和化学电离质谱(KEMS,CIMS)

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摘要

Lithium ion attachment mass spectrometry provides a non-specific, non-fragmenting, sensitive and robust method for the detection of volatile species in the gas phase. The design, manufacture and results of lithium based ion attachment ionisation sources for two different mass spectrometry systems are presented. In this study trace gas analysis is investigated using a modified Chemical Ionization Mass Spectrometer (CIMS) and vapour pressure measurements are made using a modified Knudsen Effusion Mass Spectrometer (KEMS). In the Li+ CIMS, where the Li+ ionization acts a soft and unselective ionization source, limits of detection of 0.2 ppt for formic acid, 15 ppt for nitric acid and 120 ppt for ammonia were achieved, allowing for ambient measurements of such species at atmospherically relevant concentrations. In the first application of Lithium ion attachment in ultra-high vacuum (UHV), vapor pressures of various atmospherically relevant species were measured with the adapted KEMS, giving measured values equivalent to previous results from electron impact KEMS. In the Li+ KEMS vapour pressures < 10-3 mbar can be measured without any fragmentation, as is seen with the initial electron impact (EI) set up, allowing the vapor pressure of individual components within mixtures to be determined.
机译:锂离子连接质谱法提供了用于检测气相中的挥发性物种的非特异性,非碎片化,灵敏和鲁棒方法。介绍了两个不同质谱系统的锂基离子连接电离源的设计,制造和结果。在该研究中,使用改性的化学电离质谱仪(CIMS)研究了痕量气体分析,并且使用改性的Chaudsen积分质谱仪(KEM)进行蒸气压测量。在Li + CIM中,在Li +电离作用软和不可选择的电离源的情况下,对甲酸的0.2 pPT检测的限值,硝酸15个PPT和120ppt用于氨,允许在大气相关的情况下进行这些物种的环境测量浓度。在超高真空(UHV)中的锂离子附着的第一次应用中,用适应的KEMS测量各种大气相关物种的蒸汽压力,使测量值等同于电子冲击KEM的先前结果。在Li + Kems中,蒸汽压力<10-3毫巴可以在没有任何碎片的情况下测量,如所设定的初始电子撞击(EI)所见,允许确定混合物中各个组分的蒸气压。

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