Carbonate and siliciclastic sedimentation in an active tectonic setting: Miocene of the north-western Red Sea rift, Egypt

Author(s):  
B. H. Purser ◽  
P. Barrier ◽  
C. Montenat ◽  
F. Orszag-Sperber ◽  
P. Ott D’Estevou ◽  
...  
2021 ◽  
Author(s):  
Anna Makushkina ◽  
Benoit Tauzin ◽  
Meghan Miller ◽  
Hrvoje Tkalcic ◽  
Hans Thybo

<p>Large-scale topography is thought to be mainly controlled by active tectonic processes. Fennoscandia is located far from any active tectonic setting and yet includes a mountain range along its passive North Atlantic margin. Models proposed to explain the origin of these enigmatic mountains are based on glacial isostatic adjustments, delamination, long-term isostatic equilibration, and dynamic support from the mantle, yet no consensus has been reached. We show that topography along the continental margin of Fennoscandia may be influenced by its deep structure. Fennoscandia formed by amalgamation of Proterozoic and Archean continental blocks; using both S- and P-receiver functions, we discovered that the Fennoscandian lithosphere still retains the original structural heterogeneity and its western margin is composed of three distinct blocks. The southern and northern blocks have relatively thin crust (~40-45 km), while the central block has thick crust (~60 km) that most likely was formed by crustal stacking during the Proterozoic amalgamation. The boundaries of the blocks continue into the oceanic crust as two major structural zones of the North-East Atlantic, suggesting that the Fennoscandian amalgamation structures determined the geometry of the ocean opening.  We found no evidence for mountain root support or delamination in the areas of high topography that could be related with mountain formation. Instead, our results suggest that both crustal and lithospheric heterogeneity of Fennoscandia along the continental margin might have a control on geodynamic forces that support the rise of Scandinavian mountains. </p>


2002 ◽  
Vol 90 (6) ◽  
Author(s):  
A. Choukri ◽  
J.-L. Reyss ◽  
O.K. Hakam ◽  
J. C. Plaziat

SummaryIn this work, radiochemical analysis results of 126 unrecrystallized coral samples from the Egyptian shoreline of northwestern Red Sea and 120 fossil mollusk shell samples from the Atlantic coast of Moroccan High Atlas at the North of Agadir City in Morocco are presented and discussed. The coral samples were collected in Egypt from the emerged coral reef terraces over 500 km from The Ras Gharib-Ras Shukeir depression (28°10') in the north to Wadi Lahami (north of Ras Banas, 24°10') in the south. The fossil mollusk shells were collected in Morocco from Agadir-Harbour in the south to Tamri village in the north extending over about 50 km. The statistical distributions of results (For corals,For mollusk shells, except for Holocene sea level,


Zootaxa ◽  
2012 ◽  
Vol 3447 (1) ◽  
pp. 56 ◽  
Author(s):  
FRANCESCA BENZONI ◽  
FABRIZIO STEFANI

A new zooxanthellate reef-dwelling scleractinian coral species, Porites fontanesii sp. nov. (Scleractinia, Poritidae), is de-scribed. The examined material was collected from the Southern Red Sea, the Gulf of Tadjoura, and the Gulf of Aden.Porites fontanesii sp. nov. was most frequently observed along the Yemen south Red Sea and the north-western Gulf ofAden coasts. Although a complete molecular phylogeny of Porites is not available yet, the relationships between P. fon-tanesii sp. nov. and twenty other species of the genus were explored through analysis of the available rDNA sequences.Porites fontanesii sp. nov. was seen to be a distinct species basal to, and well divergent from, one of the two main clades so far identified in the genus rDNA phylogeny.


2021 ◽  
Vol 168 (6) ◽  
Author(s):  
Alice E. Webb ◽  
Aschwin H. Engelen ◽  
Jessica Bouwmeester ◽  
Inge van Dijk ◽  
Esmee Geerken ◽  
...  

2021 ◽  
Vol 2 (2) ◽  
pp. 297-306
Author(s):  
Gehad Abdelrahman ◽  
Fedekar Madkour ◽  
Mohamed Hassan ◽  
Mohamed Abu El-Regal

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