Middle Aptian Orbitolinid limestones in Belgrade (Serbia): microfacies and depositional environment

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Middle Aptian Orbitolinid limestones in Belgrade (Serbia): microfacies and depositional environment. / Đorđević, Bojana ; Gawlick, Hans-Jürgen; Djerić, Nevenka et al.
in: Geologia Croatica, Jahrgang 76.2023, Nr. 3, 16.10.2023, S. 147-156.

Publikationen: Beitrag in FachzeitschriftArtikelForschung(peer-reviewed)

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Đorđević B, Gawlick HJ, Djerić N, Schlagintweit F, Radonjić M. Middle Aptian Orbitolinid limestones in Belgrade (Serbia): microfacies and depositional environment. Geologia Croatica. 2023 Okt 16;76.2023(3):147-156. doi: 10.4154/gc.2023.09

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Đorđević, Bojana ; Gawlick, Hans-Jürgen ; Djerić, Nevenka et al. / Middle Aptian Orbitolinid limestones in Belgrade (Serbia) : microfacies and depositional environment. in: Geologia Croatica. 2023 ; Jahrgang 76.2023, Nr. 3. S. 147-156.

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@article{01932d17fcaa4a25a8c72c9341949355,
title = "Middle Aptian Orbitolinid limestones in Belgrade (Serbia): microfacies and depositional environment",
abstract = "Lower Cretaceous (Aptian) shallow-marine limestones with intercalated polymictic conglomerates were investigated with respect to their biostratigraphic age and their microfacies. They are the younger part of the generally carbonate-siliciclastic Lower Cretaceous deep-water (max. few hundred metres) turbiditic sequences (“Paraflysch”) of the so-called East Vardar zone in the Belgrade area. The biostratigraphic age of the limestones was determined by orbitolinid foraminifera: the co-occurrence of Dictyoconus? pachymarginalis SCHROEDER and Mesorbitolina texana (ROEMER) besides various other microfossils suggest a biostratigraphic age of this shallow- marine limestone succession as middle Aptian (Gargasian). Radiolarite components in the conglomerates are Triassic in age and were derived from the obducted Middle Triassic to Middle Jurassic Neo-Tethys ophiolites and/or their ophiolitic m{\'e}langes on the wider Adria plate. From both the first precise biostratigraphic age dating as middle Aptian combined with microfacies analysis of these shallow-marine limestones and the component spectrum in the intercalated conglomerates, it can be concluded that the Lower Cretaceous turbiditic “Paraflysch” succession was deposited on the eastern rim of the Dinarides. The results will allow a better comparison of the different Lower Cretaceous sedimentary successions deposited on the eastern margin of the Dinarides.",
keywords = "Orbitolinidae,, Microfacies, Early Cretaceous,, Dinarides",
author = "Bojana {\D}or{\d}evi{\'c} and Hans-J{\"u}rgen Gawlick and Nevenka Djeri{\'c} and Felix Schlagintweit and Milo{\v s} Radonji{\'c}",
year = "2023",
month = oct,
day = "16",
doi = "10.4154/gc.2023.09",
language = "English",
volume = "76.2023",
pages = "147--156",
journal = "Geologia Croatica",
publisher = "Institute of Geology",
number = "3",

}

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TY - JOUR

T1 - Middle Aptian Orbitolinid limestones in Belgrade (Serbia)

T2 - microfacies and depositional environment

AU - Đorđević, Bojana

AU - Gawlick, Hans-Jürgen

AU - Djerić, Nevenka

AU - Schlagintweit, Felix

AU - Radonjić, Miloš

PY - 2023/10/16

Y1 - 2023/10/16

N2 - Lower Cretaceous (Aptian) shallow-marine limestones with intercalated polymictic conglomerates were investigated with respect to their biostratigraphic age and their microfacies. They are the younger part of the generally carbonate-siliciclastic Lower Cretaceous deep-water (max. few hundred metres) turbiditic sequences (“Paraflysch”) of the so-called East Vardar zone in the Belgrade area. The biostratigraphic age of the limestones was determined by orbitolinid foraminifera: the co-occurrence of Dictyoconus? pachymarginalis SCHROEDER and Mesorbitolina texana (ROEMER) besides various other microfossils suggest a biostratigraphic age of this shallow- marine limestone succession as middle Aptian (Gargasian). Radiolarite components in the conglomerates are Triassic in age and were derived from the obducted Middle Triassic to Middle Jurassic Neo-Tethys ophiolites and/or their ophiolitic mélanges on the wider Adria plate. From both the first precise biostratigraphic age dating as middle Aptian combined with microfacies analysis of these shallow-marine limestones and the component spectrum in the intercalated conglomerates, it can be concluded that the Lower Cretaceous turbiditic “Paraflysch” succession was deposited on the eastern rim of the Dinarides. The results will allow a better comparison of the different Lower Cretaceous sedimentary successions deposited on the eastern margin of the Dinarides.

AB - Lower Cretaceous (Aptian) shallow-marine limestones with intercalated polymictic conglomerates were investigated with respect to their biostratigraphic age and their microfacies. They are the younger part of the generally carbonate-siliciclastic Lower Cretaceous deep-water (max. few hundred metres) turbiditic sequences (“Paraflysch”) of the so-called East Vardar zone in the Belgrade area. The biostratigraphic age of the limestones was determined by orbitolinid foraminifera: the co-occurrence of Dictyoconus? pachymarginalis SCHROEDER and Mesorbitolina texana (ROEMER) besides various other microfossils suggest a biostratigraphic age of this shallow- marine limestone succession as middle Aptian (Gargasian). Radiolarite components in the conglomerates are Triassic in age and were derived from the obducted Middle Triassic to Middle Jurassic Neo-Tethys ophiolites and/or their ophiolitic mélanges on the wider Adria plate. From both the first precise biostratigraphic age dating as middle Aptian combined with microfacies analysis of these shallow-marine limestones and the component spectrum in the intercalated conglomerates, it can be concluded that the Lower Cretaceous turbiditic “Paraflysch” succession was deposited on the eastern rim of the Dinarides. The results will allow a better comparison of the different Lower Cretaceous sedimentary successions deposited on the eastern margin of the Dinarides.

KW - Orbitolinidae,

KW - Microfacies

KW - Early Cretaceous,

KW - Dinarides

U2 - 10.4154/gc.2023.09

DO - 10.4154/gc.2023.09

M3 - Article

VL - 76.2023

SP - 147

EP - 156

JO - Geologia Croatica

JF - Geologia Croatica

IS - 3

ER -