4.7 Article

Internal correction of hafnium oxide spectral interferences and mass bias in the determination of platinum in environmental samples using isotope dilution analysis

Journal

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
Volume 394, Issue 1, Pages 351-362

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-009-2681-4

Keywords

Isotope pattern deconvolution; Platinum; Spectral interference correction; Internal mass bias correction; ICP-MS; Isotope dilution analysis; BCR-723 road dust; Environmental samples

Funding

  1. Ministry of Education and Science (MEC, Madrid, Spain)
  2. European Social Fund
  3. MEC
  4. CICYT [CTQ2006-05722]

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A method has been developed for the accurate determination of platinum by isotope dilution analysis, using enriched Pt-194, in environmental samples containing comparatively high levels of hafnium without any chemical separation. The method is based on the computation of the contribution of hafnium oxide as an independent factor in the observed isotope pattern of platinum in the spiked sample. Under these conditions, the ratio of molar fractions between natural abundance and isotopically enriched platinum was independent of the amount of hafnium present in the sample. Additionally, mass bias was corrected by an internal procedure in which the regression variance was minimised. This was possible as the mass bias factor for hafnium oxide was very close to that of platinum. The final procedure required the measurement of three platinum isotope ratios (192/194, 195/194 and 196/194) to calculate the concentration of platinum in the sample. The methodology has been validated using the reference material BCR-723 road dust and has been applied to different environmental matrices ( road dust, air particles, bulk wet deposition and epiphytic lichens) collected in the Aspe Valley ( Pyrenees Mountains). A full uncertainty budget, using Kragten's spreadsheet method, showed that the total uncertainty was limited only by the uncertainty in the measured isotope ratios and not by the uncertainties of the isotopic composition of platinum and hafnium.

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