Hydrogen in nominally anhydrous upper-mantle minerals concentration levels and implications
Jannick Ingrin,Henrik Skogby +1 more
305
TL;DR: In this article, it was shown that hydrogen saturation in the upper mantle is highly unprobable and that the maximum average amount of hydrogen stored in the nominally anhydrous minerals of the upper manifold is around 600 ppm H 2 O.
read more
Abstract: Several of the supposedly anhydrous major minerals of the upper mantle have been shown to regularly contain small amounts of hydrogen. The concentrations measured in the most important minerals obtained from mantle xenoliths are, expressed in ppm H 2 O, 100-1300 for clinopyroxene, 60-650 for orthopyroxene, 0- 140 for olivine and 1-200 for garnet. Hydrogen is normally structurally incorporated as hydroxyl ions, and in many cases the hydrogen ions seem to act as charge compensators associated with point defects, such as metal vacancies or substitution by mono- or trivalent cations. The determination of the exact amount of hydrogen stored in these nominally anhydrous upper mantle minerals is a key-step toward quantification of the water content of the mantle, as well as understanding of its internal water cycle. For instance, a concentration of 100 ppm H 2 O homogeneously distributed within the upper mantle above 410 km depth is approximately equivalent to a 100 m water layer at the Earth9s surface. However, the relatively fast kinetics of dehydrogenation with concomitant oxidation of iron within these minerals, implies that hydrogen as well as Fe 3+ concentrations in equilibrium with mantle conditions might be different from those measured from recovered xenolith samples. High-pressure experimental measurements of hydrogen solubility as a function of PH 2 O show a trend similar to the hydrogen contents of natural samples, with hydrogen saturation levels that decrease following the mineral series: diopside > enstatite > olivine > pyrope. Except pyrope, these minerals may incorporate more than 1000 ppm H 2 O. Based on recent data of water solubility, stability and partitioning, we suggest that an entire upper mantle saturated in hydrogen is highly unprobable and that the maximum average amount of hydrogen stored in the nominally anhydrous minerals of the upper mantle is around 600 ppm H 2 O. Despite the important progress achieved during the last years, our knowledge of the concentration of hydrogen stored as point defects in the mantle above 410 km is still too poorly constrained. The importance of nominally anhydrous minerals for the water budget of the upper mantle is now well established but still awaits complete quantification.
read more
Chat with Paper
AI Agents for this Paper
Find similar papers on Google Scholar, PubMed and Arxiv
Write a critical review of this paper
Analyze citations of this paper to find unaddressed research gaps
Citations
The Dabie-Sulu orogenic peridotites: Progress and key issues
TL;DR: In this article, the authors present a re-score of 5.50~1.75 (FMQ=5.75), where 5.75 is the maximum score of the first round.
38
Geochemistry and trace element behaviors of eclogite during its exhumation in the Xitieshan terrane, North Qaidam UHP belt, NW China
TL;DR: Based on their bulk-rock TiO 2 -contents, the eclogites can be subdivided into a high-Ti group (TiO 2 ǫ> 2%) and a low-Ti groups (Ti O 2 e Nd (T ) and restricted I Sr values) and therefore provide further evidence for the formation of the protoliths of the ECLogites in an oceanic environment as discussed by the authors.
37
Water, Life, and Planetary Geodynamical Evolution
P. van Thienen,Karim Benzerara,Doris Breuer,Cedric Gillmann,Stéphane Labrosse,Ph. Lognonné,Tilman Spohn +6 more
TL;DR: In this paper, the authors review these processes, their mutual interactions, and the role life plays in regulating or modulating them, and show that life plays an important role in regulating these processes.
Water solubility and diffusivity in olivine: its role in planetary tectonics
Klaus Regenauer-Lieb,Thomas Kohl +1 more
TL;DR: In this paper, water is shown to control the style of tectonics of a planetary lithosphere by switching on highly localized weak faulting instead of a broad, slow creeping flow.
37
Regional heterogeneity in the water content of the Cenozoic lithospheric mantle of Eastern China
Yan-Tao Hao,Yan-Tao Hao,Qun-Ke Xia,Qun-Ke Xia,Zu-Bing Jia,Qi-Chao Zhao,Pei Li,Pei Li,Min Feng,Shao-Chen Liu +9 more
TL;DR: The major and trace elements and H2O contents of peridotite xenoliths hosted by the Cenozoic basalts in Northeast China (NEC) were evaluated using electron microprobe, laser-ablation inductively coupled plasma-mass spectrometry and Fourier transform infrared spectroscopy, respectively as mentioned in this paper.
36
References
Serpentine Stability to Mantle Depths and Subduction-Related Magmatism
Peter Ulmer,V. Trommsdorff +1 more
TL;DR: Results of high-pressure experiments on samples of hydrated mantle rocks show that the serpentine mineral antigorite is stable to ∼720�C at 2 gigapascals, to ∼690 �C at 3 gigapascalals, and to ∼620�C to 5 gigapASCals.
1.1K
Correlation of O-H Stretching Frequencies and O-H O Hydrogen Bond Lengths in Minerals
TL;DR: In this article, a correlation of O-H stretching frequencies (from infrared spectroscopy) with O…O and H…O bond lengths (from structural data) of minerals was established.
962
Water in Earth's Mantle: The Role of Nominally Anhydrous Minerals
David R. Bell,George R. Rossman +1 more
TL;DR: Nominally anhydrous minerals constitute a significant reservoir for mantle hydrogen, possibly accommodating all water in the depleted mantle and providing a possible mechanism to recycle water from Earth's surface into the deep mantle.
956
Solubility of water in the α, β and γ phases of (Mg,Fe)2SiO4
TL;DR: In this paper, the solubility of hydroxyl in the α, β and γ phases of (Mg,Fe)2SiO4 was investigated by hydrothermally annealing single crystals of San Carlos olivine.
940
Rheology of synthetic olivine aggregates: Influence of grain size and water
TL;DR: In this paper, the influence of grain size and water content on the high-temperature plasticity of olivine aggregates was studied, using a gas medium high-pressure deformation apparatus.
855