Journal of Analytical Atomic Spectrometry · 2013 · 20 citations · 31 references
EngineeringAir QualityLaser AblationChemistryEarth ScienceAnalytical InstrumentationCalibrationAtmospheric ScienceOptical DiagnosticsAerosol SamplingAnalytical ChemistryIsotope RatiosLaser-based SensorInstrumentationElemental CharacterizationAir SamplingRadiation MeasurementNatural SciencesSpectroscopyIsotope Ratio DeterminationMass SpectrometryConventional Laser Ablation
Isotope ratio determination in solids sampled in air under atmospheric pressure using laser ablation with direct introduction into an ICPMS was carried out. The results obtained on the metal brass, and two minerals galena and zircon are reported in this manuscript. The samples were ablated in air and the laser-generated aerosol was aspirated into a gas exchange device (GED), where the air was replaced with Ar and transported into a multicollector-inductively coupled plasma mass spectrometer (MC-ICPMS). To demonstrate the capability of this sampling method, the results were compared to the results obtained using conventional laser ablation (LA)-MC-ICPMS in helium in a sealed cell. Data show that comparable in-run (0.03–1.61%) and external (0.002–0.254%) precisions can be obtained. The accuracy (0.000–0.192%) of both methods was also comparable. However, the atmospheric sampling method gave lower intensities, by up to a factor of 5. Visualization of the aerosol extraction indicates that some material was lost prior to gas exchange. However, this method is suitable for isotopic determination of bulk materials for samples which are too large to fit into an ablation cell or too valuable to be cut into smaller pieces.
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Hf and Lu isotopic reference values for the zircon standard 91500 by MC-ICP-MS
Arnaud Goolaerts, Nadine Mattielli, Jeroen de Jong et al. · Chemical Geology · 2004 · 282 citations
I. Horn, Friedhelm von Blanckenburg · Spectrochimica Acta Part B Atomic Spectroscopy · 2007 · 246 citations