Hydrogen, trace, and ultra-trace element distribution in natural olivines

被引:30
作者
Demouchy, Sylvie [1 ,2 ]
Alard, Olivier [1 ,2 ,3 ]
机构
[1] Univ Montpellier, Geosci Montpellier, F-34095 Montpellier, France
[2] CNRS, F-34095 Montpellier, France
[3] Macquarie Univ, Dept Earth & Planetary Sci, Sydney, NSW 2109, Australia
基金
澳大利亚研究理事会;
关键词
Olivine; Hydrogen; Minor elements; Trace elements; FTIR; LA-ICP-MS; ABLATION ICP-MS; LITHOSPHERIC MANTLE; WATER CONTENTS; SPINEL LHERZOLITE; STORAGE CAPACITY; OXYGEN FUGACITY; POINT-DEFECTS; DIFFUSION; XENOLITHS; MINERALS;
D O I
10.1007/s00410-021-01778-5
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
We investigate the coupling between H, minor, trace, and ultra-trace element incorporations in 17 olivines from ten different locations covering various petrological origins: magmatic, hydrothermal, and mantle-derived context. Concentrations in major element are determined by micro X-ray fluorescence. Minor, trace, and ultra-trace elements are determined by laser ablation inductively coupled plasma mass spectrometry. Hydrogen concentrations are quantified using unpolarized and polarized Fourier transform infrared spectroscopy (FTIR). Forsterite contents (83.2-94.1%) reflect the petrogenetic diversity. Hydrogen concentrations range from 0 to 54 ppm H2O wt. Minor element concentrations (Ni+Mn) range from 3072 to 4333 ppm, and impurities are dominated by Ni, Mn, Ca or B. Total trace element concentrations range from 8.2 to 1473 ppm. Total rare Earth and extended ultra-trace elements concentrations are very low (<0.5 ppm). Magmatic and hydrothermal olivines show the most and least amount of impurities, respectively, and mantle-derived olivines have concentrations between these two extremes. Combined with minor, trace, and ultra-trace element concentrations, the hydrogen concentrations, and FTIR OH bands reflect the point defect diversity imposed by different geological settings. Hydrogen concentrations are inversely correlated with divalent impurities, indicating their competition for vacancies. However, a broad positive correlation is also found between OH bands at 3575 and 3525 cm(-1) and Ti, confirming the existence of Ti-clinohumite-like point defect in mantle olivines. Nonetheless, Ti does not exclusively control hydrogen incorporation in olivine due to the co-existence with other mechanisms, and its effect appears diluted. Our results confirm that hydrogen behaves as a peculiar incompatible element, and furthermore as an opportunistic impurity in olivine.
引用
收藏
页数:25
相关论文
共 130 条
[1]   WATER IN MINERALS - A PEAK IN THE INFRARED [J].
AINES, RD ;
ROSSMAN, GR .
JOURNAL OF GEOPHYSICAL RESEARCH, 1984, 89 (NB6) :4059-4071
[2]   SUBSTANTIAL HYDROGEN SOLUBILITY IN OLIVINE AND IMPLICATIONS FOR WATER STORAGE IN THE MANTLE [J].
BAI, Q ;
KOHLSTEDT, DL .
NATURE, 1992, 357 (6380) :672-674
[3]   Pressure and temperature dependence of H solubility in forsterite: An implication to water activity in the Earth interior [J].
Bali, E. ;
Bolfan-Casanova, N. ;
Koga, K. T. .
EARTH AND PLANETARY SCIENCE LETTERS, 2008, 268 (3-4) :354-363
[4]   Deformation, hydration, and anisotropy of the lithospheric mantle in an active rift: Constraints from mantle xenoliths from the North Tanzanian Divergence of the East African Rift [J].
Baptiste, Virginie ;
Tommasi, Andrea ;
Vauchez, Alain ;
Demouchy, Sylvie ;
Rudnick, Roberta L. .
TECTONOPHYSICS, 2015, 639 :34-55
[5]   From mantle peridotites to hybrid troctolites: Textural and chemical evolution during melt-rock interaction history (Mt. Maggiore, Corsica, France) [J].
Basch, Valentin ;
Rampone, Elisabetta ;
Crispini, Laura ;
Ferrando, Carlotta ;
Ildefonse, Benoit ;
Godard, Marguerite .
LITHOS, 2018, 323 :4-23
[6]   New Olivine Reference Material for In Situ Microanalysis [J].
Batanova, Valentina G. ;
Thompson, Jay M. ;
Danyushevsky, Leonid V. ;
Portnyagin, Maxim V. ;
Garbe-Schoenberg, Dieter ;
Hauri, Erik ;
Kimura, Jun-Ichi ;
Chang, Qing ;
Senda, Ryoko ;
Goemann, Karsten ;
Chauvel, Catherine ;
Campillo, Sylvain ;
Ionov, Dmitri A. ;
Sobolev, Alexander V. .
GEOSTANDARDS AND GEOANALYTICAL RESEARCH, 2019, 43 (03) :453-473
[7]   Trace element analysis of olivine: High precision analytical method for JEOL JXA-8230 electron probe microanalyser [J].
Batanova, Valentina G. ;
Sobolev, Alexander V. ;
Kuzmin, Dmitry V. .
CHEMICAL GEOLOGY, 2015, 419 :149-157
[8]   Distribution of incompatible trace elements between the constituents of spinel peridotite xenoliths: ICP-MS data from the East African Rift [J].
Bedini, RM ;
Bodinier, JL .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1999, 63 (22) :3883-3900
[9]   Abundance and partitioning of OH in a high-pressure magmatic system: Megacrysts from the Monastery kimberlite, South Africa [J].
Bell, DR ;
Rossman, GR ;
Moore, RO .
JOURNAL OF PETROLOGY, 2004, 45 (08) :1539-1564
[10]   Hydroxide in olivine: A quantitative determination of the absolute amount and calibration of the IR spectrum [J].
Bell, DR ;
Rossman, GR ;
Maldener, J ;
Endisch, D ;
Rauch, F .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2003, 108 (B2)