Mass Spectrometer Characterization of Halogen Gases in Air at Atmospheric Pressure

We have developed a new interface for a commercial ion trap mass spectrometer equipped with APCI capable of real-time measurements of gaseous compounds with limits of detection on the order of pptv. The new interface has been tested using the detection of Br2 and Cl2 over synthetic seawater ice at a...

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Veröffentlicht in:Analytical chemistry (Washington) 2005-03, Vol.77 (5), p.1467-1472
Hauptverfasser: Ivey, Michelle M, Foster, Krishna L
Format: Artikel
Sprache:eng
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Zusammenfassung:We have developed a new interface for a commercial ion trap mass spectrometer equipped with APCI capable of real-time measurements of gaseous compounds with limits of detection on the order of pptv. The new interface has been tested using the detection of Br2 and Cl2 over synthetic seawater ice at atmospheric pressure as a model system. A mechanical pump is used to draw gaseous mixtures through a glass manifold into the corona discharge area, where the molecules are ionized. Analysis of bromine and chlorine in dry air show that ion intensity is affected by the pumping rate and the position of the glass manifold. The mass spectrometer signals for Br2 are linear in the 0.1−10.6 ppbv range, and the estimated 3σ detection limit is 20 pptv. The MS signals for Cl2 are linear in the 0.2−25 ppbv range, and the estimated 3σ detection limit is 1 ppbv. This new interface advances the field of analytical chemistry by introducing a practical modification to a commercially available ion trap mass spectrometer that expands the available methods for performing highly specific and sensitive measurements of gases in air at atmospheric pressure.
ISSN:0003-2700
1520-6882
DOI:10.1021/ac0487707