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El-Raouf, Amr Abd, Doğru, Fikret, Bilici, Özgür, Azab, Islam, Taşci, Sait, Jiang, Lincheng, Abdelrahman, Kamal, Fnais, Mohammed S., Amer, Omar (2024) Combining Remote Sensing Data and Geochemical Properties of Ultramafics to Explore Chromite Ore Deposits in East Oltu Erzurum, Turkey. Minerals, 14 (11). doi:10.3390/min14111116

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Reference TypeJournal (article/letter/editorial)
TitleCombining Remote Sensing Data and Geochemical Properties of Ultramafics to Explore Chromite Ore Deposits in East Oltu Erzurum, Turkey
JournalMinerals
AuthorsEl-Raouf, Amr AbdAuthor
Doğru, FikretAuthor
Bilici, ÖzgürAuthor
Azab, IslamAuthor
Taşci, SaitAuthor
Jiang, LinchengAuthor
Abdelrahman, KamalAuthor
Fnais, Mohammed S.Author
Amer, OmarAuthor
Year2024Volume<   14   >
Issue<   11   >
URL
DOIdoi:10.3390/min14111116Search in ResearchGate
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Mindat Ref. ID17674620Long-form Identifiermindat:1:5:17674620:1
GUID0
Full ReferenceEl-Raouf, Amr Abd, Doğru, Fikret, Bilici, Özgür, Azab, Islam, Taşci, Sait, Jiang, Lincheng, Abdelrahman, Kamal, Fnais, Mohammed S., Amer, Omar (2024) Combining Remote Sensing Data and Geochemical Properties of Ultramafics to Explore Chromite Ore Deposits in East Oltu Erzurum, Turkey. Minerals, 14 (11). doi:10.3390/min14111116
Plain TextEl-Raouf, Amr Abd, Doğru, Fikret, Bilici, Özgür, Azab, Islam, Taşci, Sait, Jiang, Lincheng, Abdelrahman, Kamal, Fnais, Mohammed S., Amer, Omar (2024) Combining Remote Sensing Data and Geochemical Properties of Ultramafics to Explore Chromite Ore Deposits in East Oltu Erzurum, Turkey. Minerals, 14 (11). doi:10.3390/min14111116
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Abstract/NotesThe present research’s main objective was to apply thorough exploration approaches that combine remote sensing data with geochemical sampling and analysis to predict and identify potential chromitite locations in a complex geological site, particularly in rugged mountainous terrain, and differentiate the ultramafic massif containing chromitite orebodies from other lithologies. The ultramafic massif forming the mantle section of the Kırdağ ophiolite, located within the Erzurum–Kars Ophiolite Zone and emerging in the east of Oltu district (Erzurum, NE Turkey), was selected as the study area. Optimum index factor (OIF), false-color composite (FCC), decorrelation stretch (DS), band rationing (BR), minimum noise fraction (MNF), and principal and independent component analyses (PCA-ICA) were performed to differentiate the lithological features and identify the chromitite host formations. The petrography, mineral chemistry, and whole-rock geochemical properties of the harzburgites, which are the host rocks of chromitites in the research area, were evaluated to verify and confirm the remote sensing results. In addition, detailed petrographic properties of the pyroxenite and chromitite samples are presented. The results support the existence of potential chromitite formations in the mantle section of the Kırdağ ophiolite. Our remote sensing results also demonstrate the successful detection of the spectral anomalies of this ultramafic massif. The mineral and whole-rock geochemical features provide clear evidence of petrological processes, such as partial melting and melt–peridotite interactions during the harzburgite formation. The chromian spinels’ Cr#, Mg#, Fe3+, Al2O3, and TiO2 concentrations indicate that the harzburgite formed in a fore-arc environment. The Al2O3 content and Mg# of the pyroxenes and the whole-rock Al2O3/MgO ratio and V contents of the harzburgite are also compatible with these processes. Consequently, the combined approaches demonstrated clear advantages over conventional chromitite exploration techniques, decreasing the overall costs and supporting the occurrence of chromite production at the site.

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LocalityCitation Details
Kırdağ ophiolite, Şenkaya District, Erzurum Province, Turkey

Mineral Occurrences

LocalityMineral(s)
Kırdağ ophiolite, Şenkaya District, Erzurum Province, Turkey Chert, Chrome-Spinel (of Dana), Chromite, Chromitite, Clinopyroxene Subgroup, Conglomerate, Dolerite, Dunite, Gabbro, Granitoid, Harzburgite, Limestone, Mudstone, Olivine Group, Ophiolite, Orthopyroxene Subgroup, Peridotite, Pyroxenite, Radiolarite, Sandstone, Serpentine Subgroup, Serpentinite, Shale, Siltstone, Spinel, Tuff, Wehrlite


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