High-precision ru isotopic measurements by multi-collector ICP-MS

被引:19
作者
Becker, H [1 ]
Dalpe, C [1 ]
Walker, RJ [1 ]
机构
[1] Univ Maryland, Dept Geol, College Pk, MD 20740 USA
关键词
D O I
10.1039/b200596d
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Ruthenium isotopic data for a pure Aldrich ruthenium nitrate solution obtained using a Nu Plasma multi collector inductively coupled plasma-mass spectrometer (MC-ICP-MS) shows excellent agreement (better than 1 epsilon unit = 1 part in 104) with data obtained by other techniques for the mass range between 96 and 101 amu. External precisions are at the 0.5-1.7 epsilon level (2sigma). Higher sensitivity for MC ICP-MS compared to negative thermal ionization mass spectrometry (N-TIMS) is offset by the uncertainties introduced by relatively large mass discrimination and instabilities in the plasma source-ion extraction region that affect the long-term reproducibility. Large mass bias correction in ICP mass spectrometry demands particular attention to be paid to the choice of normalizing isotopes. Because of its position in the mass spectrum and the large mass bias correction, obtaining precise and accurate abundance data for Ru-104 by MC-ICP-MS remains difficult. Internal and external mass bias correction schemes in this mass range may show similar shortcomings if the isotope of interest does not lie within the mass range covered by the masses used for normalization. Analyses of meteorite samples show that if isobaric interferenees from Mo are sufficiently large (Ru/Mo < 10(4)), uncertainties on the Mo interference correction propagate through the mass bias correction and yield inaccurate results for Ru isotopic compositions: Second-order linear corrections may be used to correct for these inaccuracies, but such results are generally less precise than N-TIMS data.
引用
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页码:775 / 780
页数:6
相关论文
共 13 条
[1]  
BECKER H, 2000, LUN PLAN SCI 33 C HO
[2]  
BECKER H, UNPUB CHEM GEOL
[3]  
BECKER HC, UNPUB
[4]   A new variable dispersion double-focusing plasma mass spectrometer with performance illustrated for Pb isotopes [J].
Belshaw, NS ;
Freedman, PA ;
O'Nions, RK ;
Frank, M ;
Guo, Y .
INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 1998, 181 :51-58
[5]   NONSPECTROSCOPIC INTERELEMENT INTERFERENCES IN INDUCTIVELY COUPLED PLASMA MASS-SPECTROMETRY [J].
GILLSON, GR ;
DOUGLAS, DJ ;
FULFORD, JE ;
HALLIGAN, KW ;
TANNER, SD .
ANALYTICAL CHEMISTRY, 1988, 60 (14) :1472-1474
[6]   Measurement of the atomic weight of ruthenium by negative thermal ionization mass spectrometry [J].
Huang, M ;
Masuda, A .
ANALYTICAL CHEMISTRY, 1997, 69 (06) :1135-1139
[7]   ISOTOPIC DETERMINATIONS OF RHENIUM AND OSMIUM IN METEORITES BY USING FUSION, DISTILLATION AND IONEXCHANGE SEPARATIONS [J].
MORGAN, JW ;
WALKER, RJ .
ANALYTICA CHIMICA ACTA, 1989, 222 (02) :291-300
[8]   ON THE ISOTOPIC COMPOSITION OF RUTHENIUM IN THE ALLENDE AND LEOVILLE CARBONACEOUS CHONDRITES [J].
POTHS, H ;
SCHMITTSTRECKER, S ;
BEGEMANN, F .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1987, 51 (05) :1143-1149
[9]   THE ISOTOPIC COMPOSITION AND ATOMIC-WEIGHT OF MOLYBDENUM [J].
QILU ;
MASUDA, A .
INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 1994, 130 (1-2) :65-72
[10]   CA ISOTOPE FRACTIONATION ON EARTH AND OTHER SOLAR-SYSTEM MATERIALS [J].
RUSSELL, WA ;
PAPANASTASSIOU, DA ;
TOMBRELLO, TA .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1978, 42 (08) :1075-1090