Javascript must be enabled to continue!
Early Turonian Shallow Marine Red Beds on the Levant Carbonate Platform (Jordan), Southern Tethys
View through CrossRef
Abstract:
A one-meter-thick marine red bed (Cretaceous oceanic red beds, CORBs) is reported from Early Turanian sediments associated with the Levant carbonate platform in central Jordan. These CORBs are of regional significance, in that deposits similar in facies and age are present in various sections of the Levant carbonate platform farther southwest in the Sinai. The red bed represents a rare shallow marine counterpart to the widely known deeper marine CORBs. The onset of sedimentation of these brick-red marls in a shallow sea (shallow subtidal) of the southern Tethys margin is shown to be synchronous with the Tethys-wide onset of marine red beds in oceanic settings in the latest Early Turonian. The transition into red marls marks a significant change in sedimentation from marly, gypsum-rich clay, representing lowstand deposits below, into a sequence including massive platform limestone beds forming a transgressive systems tract above the red bed. The sedimentary conditions on the Levant platform during red-bed deposition show some similarities to its deeper marine counterparts on the Northern Tethys margin: they are related to strongly fluctuating sedimentation rates, and they follow periods of high marine productivity, which occurred in the aftermath of OAE2. It is obvious that both strong synsedimentary fluctuations in water depth and accumulation rate and significant early and late evaporite diagenesis influenced the investigated section, so the cause of the red coloring is likely to be not solely a synsedimentary feature. The time-equivalent onset of shallow marine red beds and deep marine red beds in the Early Turonian indicates that both share common global prerequisites regardless of the paleobathymetry.
Key Words: Cretaceous oceanic red beds, diagenesis, shallow marine, Levant carbonate platform, Turonian
SEPM Society for Sedimentary Geology
Title: Early Turonian Shallow Marine Red Beds on the Levant Carbonate Platform (Jordan), Southern Tethys
Description:
Abstract:
A one-meter-thick marine red bed (Cretaceous oceanic red beds, CORBs) is reported from Early Turanian sediments associated with the Levant carbonate platform in central Jordan.
These CORBs are of regional significance, in that deposits similar in facies and age are present in various sections of the Levant carbonate platform farther southwest in the Sinai.
The red bed represents a rare shallow marine counterpart to the widely known deeper marine CORBs.
The onset of sedimentation of these brick-red marls in a shallow sea (shallow subtidal) of the southern Tethys margin is shown to be synchronous with the Tethys-wide onset of marine red beds in oceanic settings in the latest Early Turonian.
The transition into red marls marks a significant change in sedimentation from marly, gypsum-rich clay, representing lowstand deposits below, into a sequence including massive platform limestone beds forming a transgressive systems tract above the red bed.
The sedimentary conditions on the Levant platform during red-bed deposition show some similarities to its deeper marine counterparts on the Northern Tethys margin: they are related to strongly fluctuating sedimentation rates, and they follow periods of high marine productivity, which occurred in the aftermath of OAE2.
It is obvious that both strong synsedimentary fluctuations in water depth and accumulation rate and significant early and late evaporite diagenesis influenced the investigated section, so the cause of the red coloring is likely to be not solely a synsedimentary feature.
The time-equivalent onset of shallow marine red beds and deep marine red beds in the Early Turonian indicates that both share common global prerequisites regardless of the paleobathymetry.
Key Words: Cretaceous oceanic red beds, diagenesis, shallow marine, Levant carbonate platform, Turonian.
Related Results
Carbonate Depositional Sequences and Systems Tracts—Responses of Carbonate Platforms to Relative Sea-Level Changes
Carbonate Depositional Sequences and Systems Tracts—Responses of Carbonate Platforms to Relative Sea-Level Changes
Abstract
Standard carbonate facies models are widely used to interpret paleoenvironments, but they do not address how carbonate platforms are affected by relative...
Intercontinental correlation of organic carbon and carbonate stable isotope records: evidence of climate and sea‐level change during the Turonian (Cretaceous)
Intercontinental correlation of organic carbon and carbonate stable isotope records: evidence of climate and sea‐level change during the Turonian (Cretaceous)
AbstractCarbon (δ13Corg, δ13Ccarb) and oxygen (δ18Ocarb) isotope records are presented for an expanded Upper Cretaceous (Turonian–Coniacian) hemipelagic succession cored in the cen...
How far south did Cenozoic tropical carbonate platforms develop in the South Atlantic Ocean?
How far south did Cenozoic tropical carbonate platforms develop in the South Atlantic Ocean?
Tropical carbonate platforms accompanied the latitudinal shifts of the tropical belt throughout the Cenozoic. Their flat-topped geometries were influenced by a variety of processes...
The Cenomanian-Turonian oceanic anoxic event (OAE-2) and continuous drowning up to the Santonian of the Western Valles-San Luis Potosi Platform, Central to Eastern Mexico: Biostratigraphy, chemostratigraphy and paleoenvironments
The Cenomanian-Turonian oceanic anoxic event (OAE-2) and continuous drowning up to the Santonian of the Western Valles-San Luis Potosi Platform, Central to Eastern Mexico: Biostratigraphy, chemostratigraphy and paleoenvironments
The Upper Cretaceous stratigraphic succession in the western part of the Valles-San Luis Potosi Platform (central to eastern Mexico) reflect the interaction between various paleo-o...
Sequence Stratigraphy of Aggrading and Backstepping Carbonate Shelves, Oligocene, Central Kalimantan, Indonesia
Sequence Stratigraphy of Aggrading and Backstepping Carbonate Shelves, Oligocene, Central Kalimantan, Indonesia
Abstract
Four major Oligocene carbonate sequences were studied in the Teweh area of Central Kalimantan, Indonesia, to better understand how they might serve as re...
Biostratigraphy and paleoenvironment of the Cenomanian/Turonian boundary interval based on foraminifera from Valles-San Luis Potosi Platform, Mexico
Biostratigraphy and paleoenvironment of the Cenomanian/Turonian boundary interval based on foraminifera from Valles-San Luis Potosi Platform, Mexico
Lithologic and foraminiferal analysis from the western part of the Valles–San Luis Potosi platform reflect a sea-level rise suggesting that the platform was drowned at the Cenoman...
Early Cretaceous Tectonics and Evolution of the Tibetan Plateau
Early Cretaceous Tectonics and Evolution of the Tibetan Plateau
AbstractSelected geological data on Early Cretaceous strata, structures, magmatic plutons and volcanic rocks from the Kunlun to Himalaya Mountains reveal a new view of the Early Cr...
Laser In Situ U–Pb Isotope Dating of Carbonate Rocks in Weijia Guyot in the Western Pacific Ocean and Its Geological Significance
Laser In Situ U–Pb Isotope Dating of Carbonate Rocks in Weijia Guyot in the Western Pacific Ocean and Its Geological Significance
Shallow-water carbonate rocks constitute a crucial component of large guyots, arising in distinct environments and harboring valuable insights into the evolutionary stages of seamo...

