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The Formation of Dunite Channels within Harzburgite in the Wadi Tayin Massif, Oman Ophiolite: Insights from Compositional Variability of Cr-Spinel and Olivine in Holes BA1B and BA3A, Oman Drilling Project

  • Giuseppe Cocomazzi
  • , Giovanni Grieco
  • , Paola Tartarotti
  • , Micol Bussolesi
  • , Federica Zaccarini
  • , Laura Crispini
  • ,  Oman Drilling Project Science Team
  • Universität Mailand
  • Università degli Studi di Genova
  • Oman Drilling Project Science Team

Publikation: Beitrag in FachzeitschriftArtikelForschungBegutachtung

Abstract

Holes BA1B and BA3A were drilled into the Wadi Tayin Massif, southern ophiolite complex of Oman, a fragment of the Tethyan oceanic lithosphere obducted onto the Arabian continent. Within the sequence, we have studied a portion of the shallow mantle, composed mainly of strongly serpentinised harzburgite that embeds dunitic levels, the biggest being over 150 m thick. The formation of thick dunitic channels, already approached via published structural and mathematical models, is here investigated with a mineral chemistry approach. We focused on Cr-spinel, the only widespread phase preserved during serpentinization, whose TiO2 content displays a wide variability from low in harzburgite, (TiO2 < 0.25 wt. %), typical of non-metasomatised ophiolite mantle, to moderately high in dunite (TiO2 < 1.10 wt. %) characterizing a rock/melt interactions. The high variability of TiO2, accompanied by similar patterns of Cr# and Mg# is observed, in a fractal pattern, at all scales of investigation, from the whole channel scale to the single thin section, where it affects even single grain zonings. Our results suggest that the over 150 m thick dunite channel here investigated was formed by coalescence of different scale melt channels and reaction zones with different sizes, confirming the published structural model.

OriginalspracheEnglisch
Aufsatznummer167
Seitenumfang16
FachzeitschriftMinerals
Jahrgang10.2020
Ausgabenummer2
DOIs
PublikationsstatusVeröffentlicht - 13 Feb. 2020

Bibliographische Notiz

Funding Information:
Acknowledgments: This study has benefited from discussions with Fernando Camara Artigas and Giulio Borghini. Special thanks are due to Andrea Risplendente for technical assistance with the electron microprobe. This research used samples and/or data provided by the Oman Drilling Project. The Oman Drilling Project (OmanDP) has been possible through co‐mingled funds from the International Continental Scientific Drilling Project (ICDP; Kelemen, Matter, Teagle Lead PIs), the Sloan Foundation–Deep Carbon Observatory (Grant 2014‐ 3‐01, Kelemen PI), the National Science Foundation (NSF‐EAR‐1516300, Kelemen lead PI), NASA–Astrobiology Institute (NNA15BB02A, Templeton PI), the German Research Foundation (DFG: KO 1723/21‐1, Koepke PI), the Japanese Society for the Promotion of Science (JSPS no:16H06347, Michibayashi PI; and KAKENHI 16H02742, Takazawa PI), the European Research Council (Adv: no.669972; Jamveit PI), the Swiss National Science Foundation (SNF:20FI21_163073, Früh‐Green PI), JAMSTEC, the TAMU‐JR Science Operator and contributions from the Sultanate of Oman Ministry of Regional Municipalities and Water Resources, the Oman Public

Publisher Copyright:
© 2020 by the authors. Licensee MDPI, Basel, Switzerland.

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