Transitional High-Al to Intermediate-Cr Podiform Chromitites from Wadi Zikt (Khor Fakkan Block, United Arab Emirates): Evidence for Reactive Melt Percolation during Nascent Forearc Evolution

Abstract Podiform chromitites at Wadi Zikt in the Khor Fakkan Block of the United Arab Emirates constitute a previously undescribed occurrence within the mantle section of the Semail ophiolite. We combine field relations, electron-probe microanalysis, in situ LA–ICP–MS mineral analyzes and whole-rock Fe isotopes to evaluate their origin. Chromian-spinels show wide compositional variability (40.98–51.64 wt.% Cr2O3 and 17.14–26.13 wt.% Al2O3, with Cr# = 0.51–0.67 and Mg# = 0.53–0.72), classifying them as transitional high-Al to intermediate-Cr. Olivine is highly forsteritic (Fo91–95), whereas clinopyroxene exhibits extreme magnesian numbers (Mg# up to 0.96); these highest Mg values may reflect subsolidus Mg–Fe exchange with the abundant coexisting spinel during post-magmatic cooling. Empirical modeling of spinel chemistry yields parental melt compositions (Al2O3 ~13–15 wt%) consistent with mid-ocean ridge basalt (MORB)-like forearc basalts. Trace element systematics indicate that interstitial clinopyroxene did not crystallize from the primary parental melt but rather formed as a product of late-stage reactive porous melt–rock interaction and mantle refertilization. Whole-rock Fe isotope compositions (δ56Fe +0.056 to +0.064‰) are compatible with interaction between basaltic melt and peridotitic mantle. The chemistry of chromian-spinel and associated silicates, along with the occurrence of chromitite pods within dunite envelopes suggest that Wadi Zikt chromitites crystallized in a nascent forearc setting during the onset of Neo-Tethyan subduction, driven by the reactive percolation of asthenospheric forearc basalt melts that were progressively modified by incipient slab-derived aqueous fluids.

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Journal
Lithosphere
Published
2026-10-06
DOI
https://doi.org/10.2113/lithosphere_2026_107
Primary Topic
Geological and Geochemical Analysis
Type
article
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article

Transitional High-Al to Intermediate-Cr Podiform Chromitites from Wadi Zikt (Khor Fakkan Block, United Arab Emirates): Evidence for Reactive Melt Percolation during Nascent Forearc Evolution

Abdel-Rahman Fowler, Rainer Abart, Richard M. Palin, Amr El-Awady et al.
Lithosphere
Geological and Geochemical Analysis
article

Transitional High-Al to Intermediate-Cr Podiform Chromitites from Wadi Zikt (Khor Fakkan Block, United Arab Emirates): Evidence for Reactive Melt Percolation during Nascent Forearc Evolution

Abdel-Rahman Fowler, Rainer Abart, Richard M. Palin, Amr El-Awady, Douaa Fathy, Mabrouk Sami, Theodoros Ntaflos, Ioan V. Sanislav, Hamed Gamaleldien, Bahaa M. Amin, Mostafa R. Abukhadra, Suhail S. Alhejji
article en

Abstract

Abstract Podiform chromitites at Wadi Zikt in the Khor Fakkan Block of the United Arab Emirates constitute a previously undescribed occurrence within the mantle section of the Semail ophiolite. We combine field relations, electron-probe microanalysis, in situ LA–ICP–MS mineral analyzes and whole-rock Fe isotopes to evaluate their origin. Chromian-spinels show wide compositional variability (40.98–51.64 wt.% Cr2O3 and 17.14–26.13 wt.% Al2O3, with Cr# = 0.51–0.67 and Mg# = 0.53–0.72), classifying them as transitional high-Al to intermediate-Cr. Olivine is highly forsteritic (Fo91–95), whereas clinopyroxene exhibits extreme magnesian numbers (Mg# up to 0.96); these highest Mg values may reflect subsolidus Mg–Fe exchange with the abundant coexisting spinel during post-magmatic cooling. Empirical modeling of spinel chemistry yields parental melt compositions (Al2O3 ~13–15 wt%) consistent with mid-ocean ridge basalt (MORB)-like forearc basalts. Trace element systematics indicate that interstitial clinopyroxene did not crystallize from the primary parental melt but rather formed as a product of late-stage reactive porous melt–rock interaction and mantle refertilization. Whole-rock Fe isotope compositions (δ56Fe +0.056 to +0.064‰) are compatible with interaction between basaltic melt and peridotitic mantle. The chemistry of chromian-spinel and associated silicates, along with the occurrence of chromitite pods within dunite envelopes suggest that Wadi Zikt chromitites crystallized in a nascent forearc setting during the onset of Neo-Tethyan subduction, driven by the reactive percolation of asthenospheric forearc basalt melts that were progressively modified by incipient slab-derived aqueous fluids.

LithosphereVol. 2026(4)
University of Vienna (AT), Al Ain University (AE), Khalifa University of Science and Technology (AE), Zagazig University (EG), United Arab Emirates University (AE), King Saud University (SA), University of Oxford (GB), James Cook University (AU), Minia University (EG)
Openalex Percentile: Top 15%
Geological and Geochemical Analysis
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