Pregled bibliografske jedinice broj: 1139167
Karst bauxite formation during Miocene Climatic Optimum (central Dalmatia, Croatia): mineralogical, compositional and geochronological perspectives
Karst bauxite formation during Miocene Climatic Optimum (central Dalmatia, Croatia): mineralogical, compositional and geochronological perspectives // International journal of earth sciences, 110 (2021), 2899-2922 doi:10.1007/s00531-021-02091-z (međunarodna recenzija, članak, znanstveni)
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Naslov
Karst bauxite formation during Miocene Climatic
Optimum (central Dalmatia, Croatia):
mineralogical, compositional and geochronological
perspectives
Autori
Brlek, Mihovil ; Gaynor, Sean ; Mongelli, Giovanni ; Bauluz, Blanca ; Sinisi, Rosa ; Brčić, Vlatko ; Peytcheva, Irena ; Mišur, Ivan ; Tapster, Simon ; Trinajstić, Nina ; Laita, Elisa ; Yuste, Alfonso ; Šuica, Sanja ; Grizelj, Anita ; Kukoč, Duje ; Schaltegger, Urs
Izvornik
International journal of earth sciences (1437-3254) 110
(2021);
2899-2922
Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni
Ključne riječi
Karst bauxite ; CA-ID-TIMS zircon geochronology ; Maximum depositional age ; Kaolinite and gibbsite ; Miocene Climatic Optimum ; Central Dalmatia
Sažetak
The Miocene Climatic Optimum (MCO) represents a global warm period (approximately 17–14.7 Ma) interrupting a long-term period of Cenozoic cooling. To elucidate if bauxitization took place in southeastern European mid-latitude areas during the MCO, we studied a section of undated massive karst bauxite (Crveni Klanac, CK) in central Dalmatia, Croatia, hosted in Upper Cretaceous limestones and overlain by Miocene Sinj Basin lacustrine deposits. Integrated mineralogical, morphological and geochemical analyses indicate the predominant mineral phases of the homogenous bauxite matrix are authigenic, subhedral to euhedral kaolinite and gibbsite. The in-situ mineralization was a consequence of pedogenic processes, indicating the CK bauxites formed autochthonously. In situ U–Pb zircon ages of the lower, middle and upper parts of the CK bauxite are very similar, dominated by Miocene and Oligocene ages, indicating that they all share similar protolith(s). Subsequent high-precision chemical abrasion-isotope dilution-thermal ionization mass spectrometry (CA-ID-TIMS) analyses indicate a maximum depositional age (MDA) for the pre- bauxitic material of 16.9576 ± 0.021 Ma (2σ uncertainty, incorporating decay constant uncertainty). This MDA, a maximum age of autochthonous bauxitization, coincides with the onset of the MCO. Based on currently available geochronological constraints, the maximum timeframe for CK bauxitization was less than ~ 700 ka, which matches the records of the MCO in paleo- mid-latitude Europe. The potential imprint of pre- 17 Ma bauxitization and contribution of older (i.e., Upper Paleogene) bauxite deposits resedimented to the CK profile, as well as degree of potential parautochthonous origin of the CK bauxites, is yet to be investigated. More than simply aligning with regional and local reconstructions of continental climatic conditions during the onset and the early stages of the MCO, the high degree of autochthony of the CK bauxites provide a precise climatic constraint. For in-situ bauxitization to occur in the southeastern parts of mid-latitude continental Europe, paleoclimatic and paleoenvironmental conditions must have had mean annual temperature greater than 17–22 °C and mean annual precipitation of more than 1100–1200 mm.
Izvorni jezik
Engleski
Znanstvena područja
Geologija
POVEZANOST RADA
Projekti:
UIP-2019-04-7761 - Miocenska sin-riftna evolucija Sjevernohrvatskog bazena (Karpatsko-Panonska regija): “multi-proxy” pristup, korelacija i integriranje sedimentnog i vulkanskog zapisa (PYROSKA) (Brlek, Mihovil, HRZZ - 2019-04) ( CroRIS)
Ustanove:
Hrvatski geološki institut
Profili:
Anita Grizelj
(autor)
Sanja Šuica
(autor)
Vlatko Brčić
(autor)
Nina Trinajstić
(autor)
Mihovil Brlek
(autor)
Duje Kukoč
(autor)
Ivan Mišur
(autor)
Citiraj ovu publikaciju:
Časopis indeksira:
- Current Contents Connect (CCC)
- Web of Science Core Collection (WoSCC)
- Science Citation Index Expanded (SCI-EXP)
- SCI-EXP, SSCI i/ili A&HCI
- Scopus