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dc.contributor.authorAmelynck, C.
dc.contributor.authorSchoon, N.
dc.contributor.authorDhooghe, F.
dc.date2013
dc.date.accessioned2016-03-25T11:11:10Z
dc.date.available2016-03-25T11:11:10Z
dc.identifier.urihttps://orfeo.belnet.be/handle/internal/2897
dc.descriptionChemical Ionization Mass Spectrometry (CI-MS) techniques are appropriate for the determination of volatile organic compound (VOC) emissions from terrestrial vegetation, provided that these compounds have unique analytical ions. In practice, however, many plant volatiles, and mainly those emitted by the isoprenoid and lipoxygenase biochemical pathways, have CI product ions at overlapping m/z values. In this paper, Selected Ion Flow Tube (SIFT) gas phase ion chemistry studies of several series of plant volatile classes using H3O+ and NO+ reagent ions, which have provided the kinetic and mechanistic parameters required for plant volatile quantification by SIFT-MS, are reviewed. The available information has been gathered into tables which allow the reader to decide which analytical ions are best monitored to quantify specific biogenic VOC emissions by SIFT-MS in the presence of interfering compounds. Some typical examples of interferences and how they can be resolved are subsequently given. The reviewed ion chemistry, obtained under SIFT conditions, is also relevant to the analysis of biogenic VOC emissions by Proton Transfer Reaction - Mass Spectrometry (PTR-MS).
dc.languageeng
dc.titleSIFT Ion chemistry studies underpinning the measurement of volatile organic compound emissions by vegetation
dc.typeArticle
dc.subject.frascatiChemical sciences
dc.audienceScientific
dc.subject.freeGreen leaf volatiles
dc.subject.freePTR-MS
dc.subject.freeSIFT-MS
dc.subject.freeisoprenoids
dc.subject.freeplant volatiles
dc.subject.freeproton transfer reaction mass spectrometry
dc.subject.freeselected ion flow tube mass spectrometry
dc.source.titleCurrent Analytical Chemistry
dc.source.volume9
dc.source.issue4
dc.source.page540-549
Orfeo.peerreviewedYes
dc.identifier.scopus2-s2.0-84930885836


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