The Cenomanian-Turonian boundary in the northwestern part of the Adriatic Carbonate Platform (Cicarija Mtn., Istria, Croatia): characteristics and implications

被引:16
作者
Brcic, Vlatko [1 ]
Glumac, Bosiljka [2 ]
Fucek, Ladislav [1 ]
Grizelj, Anita [1 ]
Horvat, Marija [1 ]
Posilovic, Hrvoje [1 ]
Misur, Ivan [1 ]
机构
[1] Croatian Geol Survey, Dept Geol, Sachsova 2, Zagreb 10000, Croatia
[2] Smith Coll, Dept Geosci, Northampton, MA 01063 USA
关键词
Cenomanian-Turonian; OAE2; Adriatic Carbonate Platform (AdCP); Cicarija Mtn; Sv. Duh Formation; Glauconite; OCEANIC ANOXIC EVENT; SEA-LEVEL RISE; ORBITAL TIME-SCALE; ISOTOPE STRATIGRAPHY; BONARELLI EVENT; OAE2; SEDIMENTARY; EVOLUTION; FACIES; RECORD;
D O I
10.1007/s10347-017-0499-7
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The Cenomanian-Turonian boundary (CTB) in the Cicarija Mountain region (northern Istria, Croatia) is characterized by calcisphere limestone successions with a firmground and glauconite horizon, bioturbated intervals, tempestites, and slumped structures as well as microbially laminated and organic-rich interbeds deposited in the northwestern part of the intra-Tethyan Adriatic Carbonate Platform (AdCP). Compilation of the results from three studied sections (Vodice-Jelovica, Martinjak and Planik) of litho-, bio-, and microfacies analyses, X-ray diffraction, SEM, EDS, and stable isotope analyses allowed reconstruction of marine paleoenvironmental conditions during this time period. Shallow-marine carbonate deposits of the Milna Formation underlie a drowned-platform succession of the Sveti (Sv.) Duh Formation. The contact between these two formations is sharp and commonly marked by slumped deposits. The Sv. Duh Formation consists of about 100 m of calcisphere wackestone enriched in organic matter. The results of preliminary delta C-13 and delta O-18 stable isotope analyses indicate the influence of the global Oceanic Anoxic Event (OAE2) on the deposition of this carbonate succession. Anoxic and hypoxic conditions in the water column lead to major changes in the shallow-marine carbonate system of the AdCP. Numerous benthic foraminifera declined during that time, but planktonic foraminifera and calcareous dinoflagellates diversified and expanded greatly. The results of this research provide new insights into the character of the CTB interval in this part of the Tethyan realm. Local and regional synsedimentary tectonics combined with global upper Cretaceous sea-level dynamics allows the correlation of the investigated deeper-marine lithostratigraphic units with OAE2.
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