A new genetic facies model for deep-water clastic evaporites is presented, based on work carried out on the Messinian Gessoso-solfifera Formation of the northern Apennines during the last 15 years. This model is derived from the most recent siliciclastic turbidite models and describes the downcurrent transformations of a parent flow mainly composed of gypsum clasts. The model allows clearer comprehension of processes controlling the production and deposition of clastic evaporites, representing the most common evaporite facies of the northern Apennines, and the definition of the genetic and stratigraphic relationship with primary shallow-water evaporites formed and preserved in marginal settings. Due to the severe recrystallization processes...
The Messinian Salinity Crisis (MSC) has been an important ecological crisis, occurred in the Mediter...
Messinian evaporates are widely distributed in the Mediterranean Sea as outcropping sediments in sma...
Facies analysis and sequence-stratigraphic techniques allow to define a chronostratigraphic framewor...
A new genetic facies model for deep-water clastic evaporites is presented,based on work carried out ...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
The recent release of a large number of subsurface geological data by the Italian Minister of Econom...
During the Messinian, the southern Apennines thrust belt experienced a period of strong tectonic rea...
IntroductionThe study of the Messinian salinity crisis (MSC) in the Mediterranean has generated a co...
The Mediterranean Sea experienced an extraordinary event at the end of the Miocene, when massive eva...
A careful revisitation of Late Miocene successions of Italian basins carried out in the last ten yea...
The Messinian Salinity Crisis (MSC) has been an important ecological crisis, occurred in the Mediter...
Messinian evaporates are widely distributed in the Mediterranean Sea as outcropping sediments in sma...
Facies analysis and sequence-stratigraphic techniques allow to define a chronostratigraphic framewor...
A new genetic facies model for deep-water clastic evaporites is presented,based on work carried out ...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
A possible deep-water non-evaporitic unit equivalent of the Messinian Lower Evaporites has been reco...
The recent release of a large number of subsurface geological data by the Italian Minister of Econom...
During the Messinian, the southern Apennines thrust belt experienced a period of strong tectonic rea...
IntroductionThe study of the Messinian salinity crisis (MSC) in the Mediterranean has generated a co...
The Mediterranean Sea experienced an extraordinary event at the end of the Miocene, when massive eva...
A careful revisitation of Late Miocene successions of Italian basins carried out in the last ten yea...
The Messinian Salinity Crisis (MSC) has been an important ecological crisis, occurred in the Mediter...
Messinian evaporates are widely distributed in the Mediterranean Sea as outcropping sediments in sma...
Facies analysis and sequence-stratigraphic techniques allow to define a chronostratigraphic framewor...