Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation

Benthic foraminifera were studied from four gravity cores that penetrated Holocene marine sediments in the Marmara Sea. Morphogroup and assemblage analyses reveal that the Holocene sea-level rise did not result in a catastrophic flooding event as proposed by W.B.F. Ryan and others, whereby well-oxyg...

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Main Authors: Kaminski, MA, Aksu, A, Box, M, Hiscott, RN, Filipescu, S, Al-Salameen, M
Format: Article in Journal/Newspaper
Language:unknown
Published: ELSEVIER SCIENCE BV 2002
Subjects:
Online Access:http://discovery.ucl.ac.uk/8811/
id ftucl:oai:eprints.ucl.ac.uk.OAI2:8811
record_format openpolar
spelling ftucl:oai:eprints.ucl.ac.uk.OAI2:8811 2023-05-15T18:01:14+02:00 Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation Kaminski, MA Aksu, A Box, M Hiscott, RN Filipescu, S Al-Salameen, M 2002-10-15 http://discovery.ucl.ac.uk/8811/ unknown ELSEVIER SCIENCE BV MAR GEOL , 190 (1-2) 165 - 202. (2002) Marmara Sea Gateway Black Sea Holocene benthic foraminifera DISSOLVED-OXYGEN AEGEAN SEA SHELF CIRCULATION INDEX OCEAN Article 2002 ftucl 2016-09-01T22:19:03Z Benthic foraminifera were studied from four gravity cores that penetrated Holocene marine sediments in the Marmara Sea. Morphogroup and assemblage analyses reveal that the Holocene sea-level rise did not result in a catastrophic flooding event as proposed by W.B.F. Ryan and others, whereby well-oxygenated, saline Mediterranean waters rapidly inundated a low-lying low salinity 'Black Sea Lake' at similar to7.15 ka (popularly known as the 'Noah's Flood Hypothesis'). Rather, the benthic foraminiferal data confirm the hypothesis that the Dardanelles sill was breached by the Mediterranean at similar to 12 ka, allowing saline waters to penetrate the Marmara Sea. These saline waters reached the level of the Bosphorus sill at similar to 9.5 ka, but were unable to penetrate into the Black Sea until after similar to 9.1 ka because of the persistent strong outflow of brackish to fresh water from the Black Sea. The initial colonisation of the Marmara Sea by benthic foraminifera is essentially synchronous with the re-establishment of marine connections through the Dardanelles Strait at similar to 12 ka. By similar to 10 ka, Ammonia-dominated faunas developed on the strait-exit delta (Delta1) at the southern end of the Bosphorus, and at similar to 9.1 ka the appearance of fully marine species documents the establishment of a more stratified water column over Delta1. Finally, the increase in abundance of planktonic foraminifera at the southern exit of the Bosphorus after similar to 6.1 ka reflects a decreased volume of outflow water from the Black Sea. Quantitative analysis of benthic foraminiferal morphogroups reveals that the oxygen content of subhalocline water was low (below similar to 1.5 ml/l) throughout the Holocene, and the occurrence of sapropel sediment in the deeper part of the basin suggests bottom waters may have been anoxic at times. After similar to 4.5 ka, an increase in benthic foraminiferal oxic morphotypes suggests a reduction in Black Sea outflow and weakening of the halocline. The strong and persistent stratification of the water column in the Marmara Sea throughout the Holocene is entirely incompatible with the 'Noah's Flood Hypothesis'. (C) 2002 Elsevier Science B.V. All rights reserved. Article in Journal/Newspaper Planktonic foraminifera University College London: UCL Discovery
institution Open Polar
collection University College London: UCL Discovery
op_collection_id ftucl
language unknown
topic Marmara Sea Gateway
Black Sea
Holocene
benthic foraminifera
DISSOLVED-OXYGEN
AEGEAN SEA
SHELF
CIRCULATION
INDEX
OCEAN
spellingShingle Marmara Sea Gateway
Black Sea
Holocene
benthic foraminifera
DISSOLVED-OXYGEN
AEGEAN SEA
SHELF
CIRCULATION
INDEX
OCEAN
Kaminski, MA
Aksu, A
Box, M
Hiscott, RN
Filipescu, S
Al-Salameen, M
Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation
topic_facet Marmara Sea Gateway
Black Sea
Holocene
benthic foraminifera
DISSOLVED-OXYGEN
AEGEAN SEA
SHELF
CIRCULATION
INDEX
OCEAN
description Benthic foraminifera were studied from four gravity cores that penetrated Holocene marine sediments in the Marmara Sea. Morphogroup and assemblage analyses reveal that the Holocene sea-level rise did not result in a catastrophic flooding event as proposed by W.B.F. Ryan and others, whereby well-oxygenated, saline Mediterranean waters rapidly inundated a low-lying low salinity 'Black Sea Lake' at similar to7.15 ka (popularly known as the 'Noah's Flood Hypothesis'). Rather, the benthic foraminiferal data confirm the hypothesis that the Dardanelles sill was breached by the Mediterranean at similar to 12 ka, allowing saline waters to penetrate the Marmara Sea. These saline waters reached the level of the Bosphorus sill at similar to 9.5 ka, but were unable to penetrate into the Black Sea until after similar to 9.1 ka because of the persistent strong outflow of brackish to fresh water from the Black Sea. The initial colonisation of the Marmara Sea by benthic foraminifera is essentially synchronous with the re-establishment of marine connections through the Dardanelles Strait at similar to 12 ka. By similar to 10 ka, Ammonia-dominated faunas developed on the strait-exit delta (Delta1) at the southern end of the Bosphorus, and at similar to 9.1 ka the appearance of fully marine species documents the establishment of a more stratified water column over Delta1. Finally, the increase in abundance of planktonic foraminifera at the southern exit of the Bosphorus after similar to 6.1 ka reflects a decreased volume of outflow water from the Black Sea. Quantitative analysis of benthic foraminiferal morphogroups reveals that the oxygen content of subhalocline water was low (below similar to 1.5 ml/l) throughout the Holocene, and the occurrence of sapropel sediment in the deeper part of the basin suggests bottom waters may have been anoxic at times. After similar to 4.5 ka, an increase in benthic foraminiferal oxic morphotypes suggests a reduction in Black Sea outflow and weakening of the halocline. The strong and persistent stratification of the water column in the Marmara Sea throughout the Holocene is entirely incompatible with the 'Noah's Flood Hypothesis'. (C) 2002 Elsevier Science B.V. All rights reserved.
format Article in Journal/Newspaper
author Kaminski, MA
Aksu, A
Box, M
Hiscott, RN
Filipescu, S
Al-Salameen, M
author_facet Kaminski, MA
Aksu, A
Box, M
Hiscott, RN
Filipescu, S
Al-Salameen, M
author_sort Kaminski, MA
title Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation
title_short Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation
title_full Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation
title_fullStr Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation
title_full_unstemmed Late Glacial to Holocene benthic foraminifera in the Marmara Sea: implications for Black Sea-Mediterranean Sea connections following the last deglaciation
title_sort late glacial to holocene benthic foraminifera in the marmara sea: implications for black sea-mediterranean sea connections following the last deglaciation
publisher ELSEVIER SCIENCE BV
publishDate 2002
url http://discovery.ucl.ac.uk/8811/
genre Planktonic foraminifera
genre_facet Planktonic foraminifera
op_source MAR GEOL , 190 (1-2) 165 - 202. (2002)
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