Late Aptian carbonate platform evolution and controls (south Tethys, Tunisia): response to sea-level oscillations, palaeo-environmental changes and climate

Author:

Ben Chaabane NajehORCID,Khemiri Fares,Soussi Mohamed,Belhaj Taher Ilef

Publisher

Springer Science and Business Media LLC

Subject

Paleontology,Stratigraphy,Geology

Reference87 articles.

1. Al-Husseini MI, Matthews RK (2010) Tuning Late Barremian–Aptian Arabian Plate and global sequences with orbital periods. GeoArabia Spec Publ 4:199–228

2. Alnazghah MH, Bádenas B, Pomar L, Aurell M, Morsilli M (2013) Facies heterogeneity at interwell-scale in a carbonate ramp, Upper Jurassic, NE Spain. Mar Pet Geol. https://doi.org/10.1016/j.marpetgeo.2013.03.004

3. Andres MS, Sumner DY, Reid RP, Swart PK (2006) Isotopic fingerprints of microbial respiration in aragonite from Bahamian stromatolites. Geology 34:973–976

4. Aurell M, Bádenas B, Bosence DWJ, Waltham DA (1998) Carbonate production and offshore transport on a Late Jurassic carbonate ramp (Kimmeridgian, Iberian basin, NE Spain): evidence from outcrops and computer modelling. In: Wright VP, Burchette TP (eds) Carbonate ramps, vol 149. Geol Soc London Spec Publication, pp 137–161

5. Ben Chaabane N (2019) Aptian-Early Albian carbonate platform development of Serdj Bargou and adjacent domains (Atlas Tunisia): surface-subsurface stratigraphy; sedimentology and depositional models; sequence stratigraphy and reservoir characterization. Thesis on geologic sciences (unpublished). University of Tunis El Manar, p 444

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