scholarly journals DIATOM ALGAE FROM THE MIDDLE AND LATE HOLOCENE SEDIMENTS OF THE AZOV SEA AS THE INDICATORS OF THE SEA LEVEL OSCILLATION

2017 ◽  
Vol 13 (4) ◽  
pp. 83-92 ◽  
Author(s):  
G.V. Kovaleva ◽  
◽  
K.V. Dyuzhova ◽  
A.E. Zolotareva ◽  
◽  
...  
2021 ◽  
Vol 9 (9) ◽  
pp. 1012
Author(s):  
Ibrahim Ghandour ◽  
Hamad Al-Washmi ◽  
Athar Khan ◽  
Ammar Mannaa ◽  
Mohammed Aljahdali ◽  
...  

This study utilizes lithofacies characteristics, petrographic, XRD, and stable isotope data of Al-Mejarma beachrocks, Red Sea, Saudi Arabia, to interpret its depositional setting, origin of cement, and coastal evolution. The beachrock is 1.15 m thick, medium to very coarse-grained sandstone with scattered granules. It shows massive to graded bedding, horizontal, ripple, and shore parallel to slightly oblique planar cross-laminations, with a remarkable absence of bioturbation. It was deposited by shore-parallel longshore currents in a relatively high-energy beach environment. The framework comprises quartz, feldspars, and lithic fragments admixed with biogenic remains of algae, mollusca, foraminifera, corals, and echinoids. They are cemented by high magnesium calcite in the form of isopachous rims and pore-filling blades, and rarely, as a meniscus bridge. The mean values of δ18OVPDB and δ13CVPDB are 0.44‰ and 3.65‰, respectively, suggesting a seawater origin for the cement. The framework composition, facies geometry, and association with back-barrier lagoon impose a deposition as a shoreface-beach barrier through two stages corresponding to the middle and late Holocene. The first stage attests landward migrating sediment accumulation and rapid marine cementation. The sediments stored offshore during the early and middle Holocene humid periods migrated landward from offshore and alongshore by onshore waves and longshore drift during the middle and late Holocene sea-level highstand. They were cemented to form beachrock and subsequently emerged as the late Holocene sea-level fell.


CATENA ◽  
2016 ◽  
Vol 143 ◽  
pp. 187-200 ◽  
Author(s):  
Marcelo Cancela Lisboa Cohen ◽  
Rubén José Lara ◽  
Elvira Cuevas ◽  
Eneilis Mulero Oliveras ◽  
Leonel Da Silveira Sternberg

The Holocene ◽  
2018 ◽  
Vol 28 (9) ◽  
pp. 1452-1466 ◽  
Author(s):  
Ana Rodríguez-Pérez ◽  
Ana María Blázquez ◽  
Jordi Guillem ◽  
Juan Usera

The sedimentological and micropaleontological analysis of three mechanical cores in the marshland of Almenara (Valencian Community, Spain) has allowed the reconstruction of the Holocene evolution of this wetland. The cold and dry 8.2-ka event might be represented in Almenara by a massive carbonate precipitation bed, upon which mid- and late-Holocene sediments were subsequently deposited. The direct influence of sea-level changes has been recorded in the two cores (S-4 and S-5) located near the marsh barrier, at 400–450 m from the current coastline. The maximum flood area during MIS 1 (last 11,600 years) is represented in these cores by sediments indicative of different littoral subenvironments (shoreface, foreshore, backshore). These sediments contain typically littoral marine foraminiferal species such as Ammonia beccarii, Rosalina globularis, Asterigerinata mamilla, Adelosina longirostra, Cibicidoides lobatulus, Elphidium macellum, and Bolivina pseudoplicata. The base of these littoral sedimentary materials has been dated as 5480 and 5580 cal. yr BP. At this moment, the inner area (core S-7) was occupied by a restricted oligohaline marsh subject to water-table fluctuations and with scarce individuals of brackish water foraminifera, such as Ammonia tepida, Haynesina germanica, or Cribroelphidium excavatum, that in more recent times (since at least 1700 cal. yr BP) gradually evolved to a palustrine area.


2017 ◽  
Author(s):  
David J. Mallinson ◽  
◽  
Stephen J. Culver ◽  
Eduardo Leorri ◽  
Ryan Mulligan

2021 ◽  
pp. 102002
Author(s):  
Toshiaki Irizuki ◽  
Jun Takahashi ◽  
Koji Seto ◽  
Hiroaki Ishiga ◽  
Yuki Fujihara ◽  
...  

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