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Trapping interference effects of arsenic,antimony and bismuth hydrides in collection of selenium hydride within iridium-modified transversally-heated graphite tube atomizer
Authors:Zuzana Furdí  ková  ,Bohumil Dočekal
Affiliation:1. Department of Environmental Chemistry and Technology, Faculty of Chemistry, Brno University of Technology, Purkyňova 118, CZ-61200 Brno, Czech Republic;2. Institute of Analytical Chemistry of the Academy of Sciences of the Czech Republic v.v.i., Veve?í 97, CZ-60200, Brno, Czech Republic
Abstract:Interference effects of co-generated hydrides of arsenic, antimony and bismuth on trapping behavior of selenium hydride (analyte) within an iridium-modified, transversely heated graphite tube atomizer (THGA) were investigated. A twin-channel hydride generation system was used for independent separate generation and introduction of analyte and interferent hydrides, i.e. in a simultaneous and/or sequential analyte–interferent and interferent–analyte mode of operation. The influence of the analyte and modifier mass, interferent amount, trapping temperature and composition of the gaseous phase was studied. A simple approach for the elimination of mutual interference effects by modification of the gaseous phase with oxygen in a substoichiometric ratio to chemically generated hydrogen is proposed and the suppression of these interference effects is demonstrated. A hypothesis on the mechanism of trapping and mutual interference effects is drawn.
Keywords:Selenium hydride trapping   Arsine   Stibine   Bismuthine interference   Graphite tube atomizer
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