Search results for "Mc icp ms"

showing 8 items of 8 documents

Copper supply during the Final Neolithic at the Saint-Blaise/Bains des Dames site (Neuchâtel, Switzerland)

2009

The Saint-Blaise/Bains des Dames stratified site in Neuchâtel, Switzerland, contains several occupations that span the Late through Final Neolithic, including the Horgen, Lüscherz, and Auvernier-Cordé periods. As part of a study on prehistoric metallurgy in western Switzerland, we compare the lead isotope ratios (multicollector inductively coupled plasma mass spectrometer) and elemental compositions (instrumental neutron activation analysis) of the site's numerous copper finds to a database of corresponding measurements for copper ores throughout Europe. The results show a considerable variation in copper compositions present at the site, suggesting complex economic relationships and multip…

010506 paleontologyArcheologyProvenance[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and PrehistoryLead isotope analysischemistry.chemical_element01 natural sciencesPrehistoryFinal Neolithic- Archeometry- Pb isotope analysis - Archeometallurgy - CopperGEO/08 - GEOCHIMICA E VULCANOLOGIA550 Earth sciences & geology0601 history and archaeologyMC-ICP-MSComputingMilieux_MISCELLANEOUSddc:599.90105 earth and related environmental sciences[SHS.ARCHEO] Humanities and Social Sciences/Archaeology and Prehistory060102 archaeologyMc icp msMetal analysisFinal Neolithic06 humanities and the artsMetal analysisArchaeologyCopperGeographychemistryAnthropologyCopper
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In Situ U‐Th‐Pb Dating and Sr‐Nd Isotope Analysis of Bastnäsite by LA‐(MC)‐ICP‐MS

2019

BastnäsiteIn situLaser ablationGeochemistry and PetrologyMc icp msRadiochemistryCarbonatiteGeologyGeologyIsotope analysisGeostandards and Geoanalytical Research
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(Supplement Table S2) Results of 230Th/U-dating

2016

We compared the suitability of two skeletal materials of the Atlantic brain coral Diploria strigosa for 230Th/U-dating: the commonly used bulk material comprising all skeletal elements and the denser theca wall material. Eight fossil corals of presumably Last Interglacial age from Bonaire, southern Caribbean Sea, were investigated, and several sub-samples were dated from each coral. For four corals, both the ages and the activity ratios of the bulk material and theca wall agree within uncertainty. Three corals show significantly older ages for their bulk material than for their theca wall material as well as substantially elevated 232Th content and (230Th/238U) ratios. The bulk material sam…

Hand drillUranium 238Thorium 230 Uranium 238 activity ratioThorium-230/Uranium-238 activity ratioUranium-238Thorium-230/Uranium-238 activity ratio standard deviationAGECenter for Marine Environmental Sciences MARUMMulti collector inductively coupled plasma mass spectrometer MC ICP MSCenter for Marine Environmental Sciences (MARUM)Thorium 232Thorium 232 Uranium 238 activity ratioThorium-232/Uranium-238 activity ratio standard deviationEvent labelCommentUranium 234 Uranium 238 activity ratioUranium-234/Uranium-238 activity ratioDrilling/drill rigAge 230Th/U Thorium-UraniumAge standard deviationDrilling drill rigThorium-232/Uranium-238 activity ratioUranium-234/Uranium-238 activity ratio standard deviationThorium-232230Th U Thorium UraniumEarth System ResearchGroupMulti-collector inductively coupled plasma mass spectrometer (MC-ICP-MS)standard deviation
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NanoSr - A New Carbonate Microanalytical Reference Material for In Situ Strontium Isotope Analysis

2019

The in situ measurement of Sr isotopes in carbonates by MC‐ICP‐MS is limited by the availability of suitable microanalytical reference materials (RMs), which match the samples of interest. Whereas several well‐characterised carbonate reference materials for Sr mass fractions > 1000 µg g−1 are available, there is a lack of well‐characterised carbonate microanalytical RMs with lower Sr mass fractions. Here, we present a new synthetic carbonate nanopowder RM with a Sr mass fraction of ca. 500 µg g−1 suitable for microanalytical Sr isotope research (‘NanoSr’). NanoSr was analysed by both solution‐based and in situ techniques. Element mass fractions were determined using EPMA (Ca mass fraction),…

In situ540 Chemistry and allied sciences551.9Laser ablationMaterials scienceMc icp msStrontium isotopes; Laser ablation; Reference material; Calcium carbonate; Nanopowder; MC‐ICP‐MSRadiochemistryNanopowderGeologyStrontium isotopesLaser ablationIsotopes of strontium550 Geowissenschaftenchemistry.chemical_compoundCalcium carbonateMC‐ICP‐MSchemistry550 Earth sciencesGeochemistry and Petrology540 ChemieCarbonateReference materialMC-ICP-MSCalcium carbonate
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Triple Isotope Fractionation Exponents of Elements Measured by MC-ICP-MS—An Example of Mg

2019

In most chemical reactions, stable isotopes are fractionated in a mass-dependent manner, yielding correlated isotope ratios in elements with three or more stable isotopes. The proportionality between isotope ratios is set by the triple isotope fractionation exponent θ that can be determined precisely for, e.g., sulfur and oxygen by IRMS, but not for metal(loid) elements due to the lower precision of MC-ICP-MS analysis and smaller isotopic variations. Here, using Mg as a test case, we compute a complete metrologically robust uncertainty budget for apparent θ values and, with reference to this, present a new measurement approach that reduces uncertainty on θ values by 30%. T…

IsotopeStable isotope ratioMc icp msChemistry010401 analytical chemistryAnalytical chemistry010402 general chemistry01 natural sciencesChemical reaction0104 chemical sciencesAnalytical ChemistryIsotope fractionationMagnesium Isotopes Fractionation MC-ICP-MSPhysics::Atomic PhysicsNuclear ExperimentAnalytical Chemistry
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Calcium Carbonate and Phosphate Reference Materials for Monitoring Bulk and Microanalytical Determination of Sr Isotopes

2017

In situ laser ablation analyses rely on the microanalytical homogeneity of reference materials (RMs) and a similar matrix and mass fraction between unknown samples and RMs to obtain reliable results. Suitable carbonate and phosphate RMs for determination of Sr isotope ratios in such materials are limited. Thus, we determined Sr-87/Sr-86 ratios of several carbonate (JCt-1, JCp-1, MACS-1, MACS-3) and phosphate (MAPS-4, MAPS-5, NIST SRM 1400, NIST SRM 1486) international RMs using dissolved samples and two different multi-collector inductively coupled plasma-mass spectrometers (MC-ICP-MS). Our Sr isotope data are in agreement with published data and have an improved measurement precision for s…

MACS-1phosphatesMACS-3LA-MC-ICP-MS010502 geochemistry & geophysics01 natural sciencesNIST SRM 1400carbonate and phosphate reference materialsLA-MC-ICP-MS MC-ICP-MS carbonate and phosphate reference materials JCt-1 JCp-1 MACS-1 MACS-3 MAPS-4 MAPS-5 NIST SRM 1400 NIST SRM 1486NIST SRM 1486chemistry.chemical_compoundGeochemistry and Petrologycalcium carbonateMC-ICP-MSreference material0105 earth and related environmental sciencesLaser ablationIsotopeChemistryMc icp ms010401 analytical chemistryGeologyPhosphateIsotopes of strontiumstrontium isotope0104 chemical sciencesMAPS-4Calcium carbonateJCp-1JCt-1laser ablationMAPS-5Nuclear chemistrymulti-collector inductively coupled plasma-mass spectrometer
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Fast offline data reduction of laser ablation MC-ICP-MS Sr isotope measurements: Via an interactive Excel-based spreadsheet 'SrDR'

2020

Strontium isotopes are applied to a wide range of scientific fields and to different types of sample materials, providing valuable information foremost about provenance and age, but also on diagenetic processes and mixing relationships between different Sr reservoirs. The development of in-situ analytical techniques, such as laser ablation ICP-MS, has improved our understanding of Sr isotope variability in several field of application, because of the possibility to discriminate small-scale changes and their spatial distribution. However, large outputs of Sr isotope data are produced by laser ablation MC-ICP-MS systems, which necessitate of multiple offline steps to correct and assess the da…

StrontiumLaser ablationIsotopeMc icp ms010401 analytical chemistrychemistry.chemical_elementMineralogy010502 geochemistry & geophysics01 natural sciencesIsotopes of strontium0104 chemical sciencesAnalytical Chemistrymc-icpmchemistrylaser ablationEnvironmental sciencedata reductionstrontiumisotopeSpectroscopy0105 earth and related environmental sciencesData reduction
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(Supplementary Table 1) 230Th/U results for stalagmite Cuba Grande (CG) from Pinar del Rio

2010

We present 22 U-series ages for a stalagmite from north-western Cuba based on multi-collector inductively coupled plasma mass spectrometry (MC-ICPMS) and thermal ionisation mass spectrometry (TIMS). Our results reveal that the stalagmite continuously grew within the last ~1400a. Low uranium content of the sample and thus, extremely low 230Th concentrations limit the precision and accuracy of 230Th/U-dating by TIMS. Samples measured by MC-ICPMS show a high variability of 232Th content along the growth axis with some sections significantly affected by initial 230Th from a detrital phase. An a-priori bulk earth ratio for (238U/232Th) cannot be used to accurately account for this initial 230Th.…

Thorium 230 Uranium 238 ratioUranium-234 standard deviationIntegrierte Analyse zwischeneiszeitlicher Klimadynamik INTERDYNAMIKUranium 238Thorium 230 Uranium 238 activity ratioUranium-238Thorium-230/Uranium-238 activity ratio standard deviationAge commentUranium 234Integrierte Analyse zwischeneiszeitlicher Klimadynamik (INTERDYNAMIK)commentAge dateddateddated standard deviationAgeAge dated standard deviationThorium-232 standard deviationThorium-230/Uranium-238 ratioMulti collector inductively coupled plasma mass spectrometer MC ICP MSThorium-230/Thorium-232 activity ratioThorium 232Uranium-238 standard deviationSpeleothem sampleThorium 230 Thorium 232 activity ratioUranium-234/Uranium-238 activity ratioUranium 234 Uranium 238 activity ratioThorium-232DISTANCEEarth System ResearchMulti-collector inductively coupled plasma mass spectrometer (MC-ICP-MS)standard deviationThorium-230/Thorium-232 activity ratio standard deviation
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