Boron determinations of silicate reference rocks by the isotope dilution method in a high-background environment
Author:
Affiliation:
1. Earthquake Research Institute, The University of Tokyo, Japan
Publisher
Geochemical Society of Japan
Subject
Geochemistry and Petrology,Geophysics
Link
https://www.jstage.jst.go.jp/article/geochemj/55/1/55_2.0614/_pdf
Reference19 articles.
1. Chaussidon, M. and Jambon, A. (1994) Boron content and isotopic composition of oceanic basalts: Geochemical and cosmochemical implications. Earth Planet. Sci. Lett. 121, 277–291.
2. D’Orazio, M. (1998) Boron determination in twenty one silicate rock reference materials by isotope dilution ICP-MS. Geostand. Newslett. 23, 21–29.
3. Gotan, K., Nakai, S. and Matsuzaki, H. (2008) Determination of 9Be in geological standard samples, JA-2 and JB-2, and of 9Be and 10Be in a basaltic rock sample for evaluation of uncertainty involved in 10Be/9Be ratio measurements. Geochem. J. 42, 305–308.
4. Imai, N., Terashima, S., Itoh, S. and Ando, A. (1995) 1994 compilation of analytical data for minor and trace-elements in 17 GSJ geochemical reference samples, igneous rock series. Geostand. Newslett. 19, 135–213.
5. Ishikawa, T. and Nakamura, E. (1992) Boron isotope geochemistry of the oceanic crust from DSDP/ODP Hole 504B. Geochim. Cosmochim. Acta 56, 1633–1639.
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1. In-Depth Method Investigation for Determination of Boron in Silicate Samples Using an Improved Boron–Mannitol Complex Digestion Method by Inductively Coupled Plasma Mass Spectrometry;Molecules;2023-01-03
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