The isotopic composition of zinc, palladium, silver, cadmium, tin, and tellurium in acid-etched residues of the Allende meteorite
- Curtin Univ. of Technology, Perth (Australia)
The isotopic and elemental abundances of Zn, Pd, Ag, Cd, Sn, and Te have been measured in three acid-resistant residues extracted from the Allende meteorite. High-efficiency, low-contamination ion-exchange procedures were developed to separate and purify the nanogram amounts of these elements present. Elemental-abundance determinations performed by Mass Spectrometric Isotope Dilution agree with previously published work for similarly derived residues. No isotope anomalies similar to those found for Xe (Xe-HL) in these samples were detected for any of these elements, which is consistent with the residues not being derived directly from the Xe-HL carriers. The lack of major Te-isotope anomalies does not support earlier reports of {sup 126}Te and {sup 130}Te excesses which were measured by neutron activation in similar samples. Small excesses were detected in the minor isotopes of Sn and Te, but these may be due to measurement problems associated with the small ion currents obtained for these samples. Two of the residue solutions contain Cd with up to several percent excesses for {sup 106}Cd and {sup 108}Cd. Interpretations of these results are limited by the unknown nature of the carrier minerals in the residues but may indicate the presence of a p-process component in Allende residues.
- OSTI ID:
- 5921130
- Journal Information:
- Geochimica et Cosmochimica Acta; (USA), Vol. 54:12; ISSN 0016-7037
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
METEORITES
CHEMICAL COMPOSITION
GEOCHEMISTRY
CADMIUM
ELEMENT ABUNDANCE
ION EXCHANGE
ISOTOPE RATIO
PALLADIUM
RESIDUES
SILVER
TELLURIUM
TELLURIUM 126
TELLURIUM 130
TIN
ZINC
ABUNDANCE
CHEMISTRY
ELEMENTS
EVEN-EVEN NUCLEI
INTERMEDIATE MASS NUCLEI
ISOTOPES
METALS
NUCLEI
PLATINUM METALS
SEMIMETALS
STABLE ISOTOPES
TELLURIUM ISOTOPES
TRANSITION ELEMENTS
580000* - Geosciences