A simple determination of whole-rock major- and trace-element composition for peridotite by micro-XRF spectrometer and ICP-MS using fused-glass bead
Author:
Affiliation:
1. Atmosphere and Ocean Research Institute, The University of Tokyo
2. Department of Earth and Planetary Sciences, Tokyo Institute of Technology
3. Graduate School of Human and Environmental Studies, Kyoto University
Publisher
Geochemical Society of Japan
Subject
Geochemistry and Petrology,Geophysics
Link
https://www.jstage.jst.go.jp/article/geochemj/54/2/54_2.0587/_pdf
Reference46 articles.
1. Akizawa, N., Arai, S. and Tamura, A. (2012) Behavior of MORB magmas at uppermost mantle beneath a fast-spreading axis: an example from Wadi Fizh of the northern Oman ophiolite. Contrib. Mineral. Petrol. 164, 601–625.
2. Akizawa, N., Tamura, A., Fukushi, K., Yamamoto, J., Mizukami, M., Python, M. and Arai, S. (2016a) High-temperature hydrothermal activities around suboceanic Moho: an example from diopsidite and anorthosite in Wadi Fizh, Oman ophiolite. Lithos 263, 66–87.
3. Akizawa, N., Ozawa, K., Tamura, A., Michibayashi, K. and Arai S. (2016b) Three-dimensional evolution of melting, heat and melt transfer in ascending mantle beneath a fast-spreading ridge segment constrained by trace elements in clinopyroxene from concordant dunites and host harzburgites of the Oman ophiolite. J. Petrol. 57, 777–814.
4. Akizawa, N., Miyake, A., Ishikawa, A., Tamura, A., Terada, Y., Uesugi, K., Takeuchi, A., Arai, S., Tanaka, C., Igami, Y., Suzuki, K. and Kogiso, T. (2017) Metasomatic PGE mobilization by carbonatitic melt in the mantle: evidence from sub-μm-scale sulfide-carbonaceous glass inclusion in Tahitian harzburgite xenolith. Chem. Geol. 475, 87–104.
5. Canil, D. (2002) Vanadium in peridotites, mantle redox and tectonic environments: Archean to present. Earth Planet. Sci. Lett. 195, 75–90.
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