(Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ...

he early late Cretaceous (Cenomanian–early Turonian) is thought to have been one of the warmest periods of the Phanerozoic. This period was characterised by tropical sea surface temperatures of up to 36 °C and a pole-to-equator-gradient of less than 10 °C. The subsequent Turonian–Maastrichtian was c...

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Main Authors: Linnert, Christian, Mutterlose, Jörg, Herrle, Jens O
Format: Dataset
Language:English
Published: PANGAEA 2011
Subjects:
Online Access:https://dx.doi.org/10.1594/pangaea.778272
https://doi.pangaea.de/10.1594/PANGAEA.778272
id ftdatacite:10.1594/pangaea.778272
record_format openpolar
spelling ftdatacite:10.1594/pangaea.778272 2024-09-15T18:22:53+00:00 (Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ... Linnert, Christian Mutterlose, Jörg Herrle, Jens O 2011 text/tab-separated-values https://dx.doi.org/10.1594/pangaea.778272 https://doi.pangaea.de/10.1594/PANGAEA.778272 en eng PANGAEA https://dx.doi.org/10.1016/j.palaeo.2010.12.001 Creative Commons Attribution 3.0 Unported https://creativecommons.org/licenses/by/3.0/legalcode cc-by-3.0 Event label Sample code/label DEPTH, sediment/rock Nannofossil zone Nannofossils Diversity, simple Shannon Diversity Index Evenness of species Ahmuellerella octoradiata Ahmuellerella regularis Amphizygus brooksii Bukrylithus ambiguus Chiastozygus antiquus Chiastozygus bifarius Chiastozygus litterarius Chiastozygus platyrhethus Chiastozygus synquadriperforatus Chiastozygus trabalis Loxolithus armilla Misceomarginatus pleniporus Neocrepidolithus sp. Placozygus fibuliformis Placozygus cf. fibuliformis Reinhardtites anthophorus Reinhardtites levis Reinhardtites cf. levis Staurolithites ellipticus Staurolithites cf. gausorhethium Staurolithites flavus Staurolithites imbricatus Staurolithites mielnicensis Staurolithites mutterlosei Staurolithites sp. Tegumentum stradneri Tranolithus minimus Tranolithus orionatus Zeugrhabdotus bicrescenticus Zeugrhabdotus biperforatus Zeugrhabdotus diplogrammus Zeugrhabdotus embergeri Zeugrhabdotus elegans Zeugrhabdotus erectus Zeugrhabdotus noeliae Zeugrhabdotus praesigmoides Zeugrhabdotus sigmoides Zeugrhabdotus scutula Zeugrhabdotus spp. Zygodiscus tunisiensis Eiffellithus eximius Eiffellithus cf. eximius dataset Supplementary Dataset Dataset 2011 ftdatacite https://doi.org/10.1594/pangaea.77827210.1016/j.palaeo.2010.12.001 2024-08-01T10:57:41Z he early late Cretaceous (Cenomanian–early Turonian) is thought to have been one of the warmest periods of the Phanerozoic. This period was characterised by tropical sea surface temperatures of up to 36 °C and a pole-to-equator-gradient of less than 10 °C. The subsequent Turonian–Maastrichtian was characterised by a continuous climatic cooling, peaking in the Maastrichtian. This climatic cooling and the resulting palaeoceanographic changes had an impact on planktic primary producer communities including calcareous nannofossils. In order to gain a better understanding of these Cenomanian–Maastrichtian palaeoceanographic changes, calcareous nannofossils have been studied from the proto North Atlantic (Goban Spur, DSDP Sites 549, 551). In order to see potential differences between open oceanic and shelf dwelling nannofossils, the data from Goban Spur have been compared to findings from the European shelf (northern Germany).A total of 77 samples from Goban Spur were studied for calcareous nannofossils revealing ... : Supplement to: Linnert, Christian; Mutterlose, Jörg; Herrle, Jens O (2011): Late Cretaceous (Cenomanian–Maastrichtian) calcareous nannofossils from Goban Spur (DSDP Sites 549, 551): Implications for the palaeoceanography of the proto North Atlantic. Palaeogeography, Palaeoclimatology, Palaeoecology, 15(3+4), 507-528 ... Dataset North Atlantic DataCite
institution Open Polar
collection DataCite
op_collection_id ftdatacite
language English
topic Event label
Sample code/label
DEPTH, sediment/rock
Nannofossil zone
Nannofossils
Diversity, simple
Shannon Diversity Index
Evenness of species
Ahmuellerella octoradiata
Ahmuellerella regularis
Amphizygus brooksii
Bukrylithus ambiguus
Chiastozygus antiquus
Chiastozygus bifarius
Chiastozygus litterarius
Chiastozygus platyrhethus
Chiastozygus synquadriperforatus
Chiastozygus trabalis
Loxolithus armilla
Misceomarginatus pleniporus
Neocrepidolithus sp.
Placozygus fibuliformis
Placozygus cf. fibuliformis
Reinhardtites anthophorus
Reinhardtites levis
Reinhardtites cf. levis
Staurolithites ellipticus
Staurolithites cf. gausorhethium
Staurolithites flavus
Staurolithites imbricatus
Staurolithites mielnicensis
Staurolithites mutterlosei
Staurolithites sp.
Tegumentum stradneri
Tranolithus minimus
Tranolithus orionatus
Zeugrhabdotus bicrescenticus
Zeugrhabdotus biperforatus
Zeugrhabdotus diplogrammus
Zeugrhabdotus embergeri
Zeugrhabdotus elegans
Zeugrhabdotus erectus
Zeugrhabdotus noeliae
Zeugrhabdotus praesigmoides
Zeugrhabdotus sigmoides
Zeugrhabdotus scutula
Zeugrhabdotus spp.
Zygodiscus tunisiensis
Eiffellithus eximius
Eiffellithus cf. eximius
spellingShingle Event label
Sample code/label
DEPTH, sediment/rock
Nannofossil zone
Nannofossils
Diversity, simple
Shannon Diversity Index
Evenness of species
Ahmuellerella octoradiata
Ahmuellerella regularis
Amphizygus brooksii
Bukrylithus ambiguus
Chiastozygus antiquus
Chiastozygus bifarius
Chiastozygus litterarius
Chiastozygus platyrhethus
Chiastozygus synquadriperforatus
Chiastozygus trabalis
Loxolithus armilla
Misceomarginatus pleniporus
Neocrepidolithus sp.
Placozygus fibuliformis
Placozygus cf. fibuliformis
Reinhardtites anthophorus
Reinhardtites levis
Reinhardtites cf. levis
Staurolithites ellipticus
Staurolithites cf. gausorhethium
Staurolithites flavus
Staurolithites imbricatus
Staurolithites mielnicensis
Staurolithites mutterlosei
Staurolithites sp.
Tegumentum stradneri
Tranolithus minimus
Tranolithus orionatus
Zeugrhabdotus bicrescenticus
Zeugrhabdotus biperforatus
Zeugrhabdotus diplogrammus
Zeugrhabdotus embergeri
Zeugrhabdotus elegans
Zeugrhabdotus erectus
Zeugrhabdotus noeliae
Zeugrhabdotus praesigmoides
Zeugrhabdotus sigmoides
Zeugrhabdotus scutula
Zeugrhabdotus spp.
Zygodiscus tunisiensis
Eiffellithus eximius
Eiffellithus cf. eximius
Linnert, Christian
Mutterlose, Jörg
Herrle, Jens O
(Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ...
topic_facet Event label
Sample code/label
DEPTH, sediment/rock
Nannofossil zone
Nannofossils
Diversity, simple
Shannon Diversity Index
Evenness of species
Ahmuellerella octoradiata
Ahmuellerella regularis
Amphizygus brooksii
Bukrylithus ambiguus
Chiastozygus antiquus
Chiastozygus bifarius
Chiastozygus litterarius
Chiastozygus platyrhethus
Chiastozygus synquadriperforatus
Chiastozygus trabalis
Loxolithus armilla
Misceomarginatus pleniporus
Neocrepidolithus sp.
Placozygus fibuliformis
Placozygus cf. fibuliformis
Reinhardtites anthophorus
Reinhardtites levis
Reinhardtites cf. levis
Staurolithites ellipticus
Staurolithites cf. gausorhethium
Staurolithites flavus
Staurolithites imbricatus
Staurolithites mielnicensis
Staurolithites mutterlosei
Staurolithites sp.
Tegumentum stradneri
Tranolithus minimus
Tranolithus orionatus
Zeugrhabdotus bicrescenticus
Zeugrhabdotus biperforatus
Zeugrhabdotus diplogrammus
Zeugrhabdotus embergeri
Zeugrhabdotus elegans
Zeugrhabdotus erectus
Zeugrhabdotus noeliae
Zeugrhabdotus praesigmoides
Zeugrhabdotus sigmoides
Zeugrhabdotus scutula
Zeugrhabdotus spp.
Zygodiscus tunisiensis
Eiffellithus eximius
Eiffellithus cf. eximius
description he early late Cretaceous (Cenomanian–early Turonian) is thought to have been one of the warmest periods of the Phanerozoic. This period was characterised by tropical sea surface temperatures of up to 36 °C and a pole-to-equator-gradient of less than 10 °C. The subsequent Turonian–Maastrichtian was characterised by a continuous climatic cooling, peaking in the Maastrichtian. This climatic cooling and the resulting palaeoceanographic changes had an impact on planktic primary producer communities including calcareous nannofossils. In order to gain a better understanding of these Cenomanian–Maastrichtian palaeoceanographic changes, calcareous nannofossils have been studied from the proto North Atlantic (Goban Spur, DSDP Sites 549, 551). In order to see potential differences between open oceanic and shelf dwelling nannofossils, the data from Goban Spur have been compared to findings from the European shelf (northern Germany).A total of 77 samples from Goban Spur were studied for calcareous nannofossils revealing ... : Supplement to: Linnert, Christian; Mutterlose, Jörg; Herrle, Jens O (2011): Late Cretaceous (Cenomanian–Maastrichtian) calcareous nannofossils from Goban Spur (DSDP Sites 549, 551): Implications for the palaeoceanography of the proto North Atlantic. Palaeogeography, Palaeoclimatology, Palaeoecology, 15(3+4), 507-528 ...
format Dataset
author Linnert, Christian
Mutterlose, Jörg
Herrle, Jens O
author_facet Linnert, Christian
Mutterlose, Jörg
Herrle, Jens O
author_sort Linnert, Christian
title (Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ...
title_short (Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ...
title_full (Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ...
title_fullStr (Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ...
title_full_unstemmed (Appendix) Late Cretaceous calcareous nannofossils of DSDP Holes 80-549 and 80-551 ...
title_sort (appendix) late cretaceous calcareous nannofossils of dsdp holes 80-549 and 80-551 ...
publisher PANGAEA
publishDate 2011
url https://dx.doi.org/10.1594/pangaea.778272
https://doi.pangaea.de/10.1594/PANGAEA.778272
genre North Atlantic
genre_facet North Atlantic
op_relation https://dx.doi.org/10.1016/j.palaeo.2010.12.001
op_rights Creative Commons Attribution 3.0 Unported
https://creativecommons.org/licenses/by/3.0/legalcode
cc-by-3.0
op_doi https://doi.org/10.1594/pangaea.77827210.1016/j.palaeo.2010.12.001
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