id ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.904301
record_format openpolar
institution Open Polar
collection PANGAEA - Data Publisher for Earth & Environmental Science
op_collection_id ftpangaea
language English
topic 108-668
122-761B
144-872C
154-926A
165-1000A
165-999
AGE
Alkalinity
total
Aragonite saturation state
boron isotopes
Calculated
Carbon
inorganic
dissolved
carbonate system
Carbon dioxide
Caribbean Sea
COMPCORE
Composite Core
DRILL
Drilling/drill rig
Event label
Foraminifera
Joides Resolution
Leg108
Leg122
Leg144
Leg154
Leg165
Miocene
Neogene
North Pacific Ocean
Reconstructed
Reference/source
Sample comment
Site
South Atlantic Ocean
South Indian Ridge
South Indian Ocean
Species
spellingShingle 108-668
122-761B
144-872C
154-926A
165-1000A
165-999
AGE
Alkalinity
total
Aragonite saturation state
boron isotopes
Calculated
Carbon
inorganic
dissolved
carbonate system
Carbon dioxide
Caribbean Sea
COMPCORE
Composite Core
DRILL
Drilling/drill rig
Event label
Foraminifera
Joides Resolution
Leg108
Leg122
Leg144
Leg154
Leg165
Miocene
Neogene
North Pacific Ocean
Reconstructed
Reference/source
Sample comment
Site
South Atlantic Ocean
South Indian Ridge
South Indian Ocean
Species
Sosdian, Sindia M
Greenop, Rosanna
Hain, Mathis P
Foster, Gavin L
Pearson, Paul N
Lear, Caroline H
Carbonate scenarios analysis from different sources of Fluid inclusions, CCD reconstruction and boron isotopic seawater reconstructions (Fluid inclusions, CCD, G17 d11Bsw)
topic_facet 108-668
122-761B
144-872C
154-926A
165-1000A
165-999
AGE
Alkalinity
total
Aragonite saturation state
boron isotopes
Calculated
Carbon
inorganic
dissolved
carbonate system
Carbon dioxide
Caribbean Sea
COMPCORE
Composite Core
DRILL
Drilling/drill rig
Event label
Foraminifera
Joides Resolution
Leg108
Leg122
Leg144
Leg154
Leg165
Miocene
Neogene
North Pacific Ocean
Reconstructed
Reference/source
Sample comment
Site
South Atlantic Ocean
South Indian Ridge
South Indian Ocean
Species
format Dataset
author Sosdian, Sindia M
Greenop, Rosanna
Hain, Mathis P
Foster, Gavin L
Pearson, Paul N
Lear, Caroline H
author_facet Sosdian, Sindia M
Greenop, Rosanna
Hain, Mathis P
Foster, Gavin L
Pearson, Paul N
Lear, Caroline H
author_sort Sosdian, Sindia M
title Carbonate scenarios analysis from different sources of Fluid inclusions, CCD reconstruction and boron isotopic seawater reconstructions (Fluid inclusions, CCD, G17 d11Bsw)
title_short Carbonate scenarios analysis from different sources of Fluid inclusions, CCD reconstruction and boron isotopic seawater reconstructions (Fluid inclusions, CCD, G17 d11Bsw)
title_full Carbonate scenarios analysis from different sources of Fluid inclusions, CCD reconstruction and boron isotopic seawater reconstructions (Fluid inclusions, CCD, G17 d11Bsw)
title_fullStr Carbonate scenarios analysis from different sources of Fluid inclusions, CCD reconstruction and boron isotopic seawater reconstructions (Fluid inclusions, CCD, G17 d11Bsw)
title_full_unstemmed Carbonate scenarios analysis from different sources of Fluid inclusions, CCD reconstruction and boron isotopic seawater reconstructions (Fluid inclusions, CCD, G17 d11Bsw)
title_sort carbonate scenarios analysis from different sources of fluid inclusions, ccd reconstruction and boron isotopic seawater reconstructions (fluid inclusions, ccd, g17 d11bsw)
publisher PANGAEA
publishDate 2019
url https://doi.pangaea.de/10.1594/PANGAEA.904301
https://doi.org/10.1594/PANGAEA.904301
op_coverage MEDIAN LATITUDE: 5.190975 * MEDIAN LONGITUDE: -110.673433 * SOUTH-BOUND LATITUDE: -16.737000 * WEST-BOUND LONGITUDE: 115.535000 * NORTH-BOUND LATITUDE: 16.553700 * EAST-BOUND LONGITUDE: -20.927000 * DATE/TIME START: 1986-04-13T00:00:00 * DATE/TIME END: 1996-02-02T22:30:00 * MINIMUM ELEVATION: -3610.0 m * MAXIMUM ELEVATION: -915.9 m
long_lat ENVELOPE(115.535000,-20.927000,16.553700,-16.737000)
geographic Indian
Pacific
geographic_facet Indian
Pacific
genre South Atlantic Ocean
genre_facet South Atlantic Ocean
op_relation https://doi.org/10.1594/PANGAEA.904186
Badger, Marcus P S; Lear, Caroline H; Pancost, Richard D; Foster, Gavin L; Bailey, Trevor R; Leng, Melanie J; Abels, Hemmo A (2013): CO2 drawdown following the middle Miocene expansion of the Antarctic Ice Sheet. Paleoceanography, 28(1), 42-53, https://doi.org/10.1002/palo.20015
Bartoli, Gretta; Hönisch, Bärbel; Zeebe, Richard E (2011): Atmospheric CO2 decline during the Pliocene intensification of Northern Hemisphere glaciations. Paleoceanography, 26(4), PA4213, https://doi.org/10.1029/2010PA002055
Chalk, Thomas B; Hain, Mathis P; Foster, Gavin L; Rohling, Eelco J; Sexton, Philip F; Badger, Marcus P S; Cherry, Soraya G; Hasenfratz, Adam P; Haug, Gerald H; Jaccard, Samuel L; Martínez‐García, Alfredo; Pälike, Heiko; Pancost, Richard D; Wilson, Paul A (2017): Causes of ice age intensification across the Mid-Pleistocene Transition. Proceedings of the National Academy of Sciences, 114(50), 13114-13119, https://doi.org/10.1073/pnas.1702143114
Foster, Gavin L; Lear, Caroline H; Rae, James W B (2012): The evolution of pCO2, ice volume and climate during the middle Miocene. Earth and Planetary Science Letters, 341-344, 243-254, https://doi.org/10.1016/j.epsl.2012.06.007
Greenop, Rosanna; Foster, Gavin L; Wilson, Paul A; Lear, Caroline H (2014): Middle Miocene climate instability associated with high‐amplitude CO2 variability. Paleoceanography, 29(9), 845-853, https://doi.org/10.1002/2014PA002653
Greenop, Rosanna; Hain, Mathis P; Sosdian, Sindia M; Oliver, Kevin I C; Goodwin, Philip; Chalk, Thomas B; Lear, Caroline H; Wilson, Paul A; Foster, Gavin L (2017): A record of Neogene seawate d11B reconstructed from paired d11B analyses on benthic and planktic foraminifera. Climate of the Past, 13(2), 149-170, https://doi.org/10.5194/cp-13-149-2017
Hönisch, Bärbel; Hemming, N Gary; Archer, David E; Siddall, Mark; McManus, Jerry F (2009): Atmospheric Carbon Dioxide Concentration Across the Mid-Pleistocene Transition. Science, 324(5934), 1551-1554, https://doi.org/10.1126/science.1171477
Horita, Juske; Zimmermann, Heide; Holland, Heinrich D (2002): Chemical evolution of seawater during the Phanerozoic. Geochimica et Cosmochimica Acta, 66(21), 3733-3756, https://doi.org/10.1016/S0016-7037(01)00884-5
Lemarchand, Damien; Gaillardet, Jérôme; Lewin, E; Allègre, Claude J (2002): Boron isotope systematics in large rivers: implications for the marine boron budget and paleo-pH reconstruction over the Cenozoic. Chemical Geology, 190(1-4), 123-140, https://doi.org/10.1016/S0009-2541(02)00114-6
Martínez-Botí, Miquel Àngel; Foster, Gavin L; Chalk, Thomas B; Rohling, Eelco J; Sexton, Philip F; Lunt, Daniel J; Pancost, Richard D; Badger, Marcus P S; Schmidt, Daniela N (2015): Plio-Pleistocene climate sensitivity evaluated using high-resolution CO2 records. Nature, 518(7537), 49-54, https://doi.org/10.1038/nature14145
Pälike, Heiko; Lyle, Mitchell W; Nishi, Hiroshi; Raffi, Isabella; Ridgwell, Andy; Gamage, Kusali; Klaus, Adam; Acton, Gary D; Anderson, Louise; Backman, Jan; Baldauf, Jack G; Beltran, Catherine; Bohaty, Steven M; Bown, Paul R; Busch, William H; Channell, James E T; Chun, Cecily O J; Delaney, Margaret Lois; Dewang, Pawan; Dunkley Jones, Tom; Edgar, Kirsty M; Evans, Helen F; Fitch, Peter; Foster, Gavin L; Gussone, Nikolaus; Hasegawa, Hitoshi; Hathorne, Ed C; Hayashi, Hiroki; Herrle, Jens O; Holbourn, Ann E; Hovan, Steven A; Hyeong, Kiseong; Iijima, Koichi; Ito, Takashi; Kamikuri, Shin-Ichi; Kimoto, Katsunori; Kuroda, Junichiro; Leon-Rodriguez, Lizette; Malinverno, Alberto; Moore, Theodore C; Murphy, Brandon; Murphy, Daniel P; Nakamur, Hideto; Ogane, Kaoru; Ohneiser, Christian; Richter, Carl; Robinson, Rebecca S; Rohling, Eelco J; Romero, Oscar E; Sawada, Ken; Scher, Howie D; Schneider, Leah; Sluijs, Appy; Takata, Hiroyuki; Tian, Jun; Tsujimoto, Akira; Wade, Bridget S; Westerhold, Thomas; Wilkens, Roy H; Williams, Trevor J; Wilson, Paul A; Yamamoto, Yuhji; Yamamoto, Shinya; Yamazaki, Toshitsugu; Zeebe, Richard E (2012): A Cenozoic record of the equatorial Pacific carbonate compensation depth. Nature, 488, 609-614, https://doi.org/10.1038/nature11360
Seki, Osamu; Foster, Gavin L; Schmidt, Daniela N; Mackensen, Andreas; Kawamura, Kimitaka; Pancost, Richard D (2010): Alkenone and boron based Pliocene pCO2 records. Earth and Planetary Science Letters, 292(1-2), 201-211, https://doi.org/10.1016/j.epsl.2010.01.037
Sosdian, Sindia M; Greenop, Rosanna; Hain, Mathis P; Foster, Gavin L; Pearson, Paul N; Lear, Caroline H (2018): Constraining the evolution of Neogene ocean carbonate chemistry using the boron isotope pH proxy. Earth and Planetary Science Letters, 498, 362-376, https://doi.org/10.1016/j.epsl.2018.06.017
https://doi.pangaea.de/10.1594/PANGAEA.904301
https://doi.org/10.1594/PANGAEA.904301
op_rights CC-BY-4.0: Creative Commons Attribution 4.0 International
Access constraints: unrestricted
info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.1594/PANGAEA.90430110.1594/PANGAEA.90418610.1002/palo.2001510.1029/2010PA00205510.1073/pnas.170214311410.1016/j.epsl.2012.06.00710.1002/2014PA00265310.5194/cp-13-149-201710.1126/science.117147710.1016/S0016-7037(01)00884-510.1016/S0009-
_version_ 1800738357835202560
spelling ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.904301 2024-06-02T08:14:29+00:00 Carbonate scenarios analysis from different sources of Fluid inclusions, CCD reconstruction and boron isotopic seawater reconstructions (Fluid inclusions, CCD, G17 d11Bsw) Sosdian, Sindia M Greenop, Rosanna Hain, Mathis P Foster, Gavin L Pearson, Paul N Lear, Caroline H MEDIAN LATITUDE: 5.190975 * MEDIAN LONGITUDE: -110.673433 * SOUTH-BOUND LATITUDE: -16.737000 * WEST-BOUND LONGITUDE: 115.535000 * NORTH-BOUND LATITUDE: 16.553700 * EAST-BOUND LONGITUDE: -20.927000 * DATE/TIME START: 1986-04-13T00:00:00 * DATE/TIME END: 1996-02-02T22:30:00 * MINIMUM ELEVATION: -3610.0 m * MAXIMUM ELEVATION: -915.9 m 2019 text/tab-separated-values, 15366 data points https://doi.pangaea.de/10.1594/PANGAEA.904301 https://doi.org/10.1594/PANGAEA.904301 en eng PANGAEA https://doi.org/10.1594/PANGAEA.904186 Badger, Marcus P S; Lear, Caroline H; Pancost, Richard D; Foster, Gavin L; Bailey, Trevor R; Leng, Melanie J; Abels, Hemmo A (2013): CO2 drawdown following the middle Miocene expansion of the Antarctic Ice Sheet. Paleoceanography, 28(1), 42-53, https://doi.org/10.1002/palo.20015 Bartoli, Gretta; Hönisch, Bärbel; Zeebe, Richard E (2011): Atmospheric CO2 decline during the Pliocene intensification of Northern Hemisphere glaciations. Paleoceanography, 26(4), PA4213, https://doi.org/10.1029/2010PA002055 Chalk, Thomas B; Hain, Mathis P; Foster, Gavin L; Rohling, Eelco J; Sexton, Philip F; Badger, Marcus P S; Cherry, Soraya G; Hasenfratz, Adam P; Haug, Gerald H; Jaccard, Samuel L; Martínez‐García, Alfredo; Pälike, Heiko; Pancost, Richard D; Wilson, Paul A (2017): Causes of ice age intensification across the Mid-Pleistocene Transition. Proceedings of the National Academy of Sciences, 114(50), 13114-13119, https://doi.org/10.1073/pnas.1702143114 Foster, Gavin L; Lear, Caroline H; Rae, James W B (2012): The evolution of pCO2, ice volume and climate during the middle Miocene. Earth and Planetary Science Letters, 341-344, 243-254, https://doi.org/10.1016/j.epsl.2012.06.007 Greenop, Rosanna; Foster, Gavin L; Wilson, Paul A; Lear, Caroline H (2014): Middle Miocene climate instability associated with high‐amplitude CO2 variability. Paleoceanography, 29(9), 845-853, https://doi.org/10.1002/2014PA002653 Greenop, Rosanna; Hain, Mathis P; Sosdian, Sindia M; Oliver, Kevin I C; Goodwin, Philip; Chalk, Thomas B; Lear, Caroline H; Wilson, Paul A; Foster, Gavin L (2017): A record of Neogene seawate d11B reconstructed from paired d11B analyses on benthic and planktic foraminifera. Climate of the Past, 13(2), 149-170, https://doi.org/10.5194/cp-13-149-2017 Hönisch, Bärbel; Hemming, N Gary; Archer, David E; Siddall, Mark; McManus, Jerry F (2009): Atmospheric Carbon Dioxide Concentration Across the Mid-Pleistocene Transition. Science, 324(5934), 1551-1554, https://doi.org/10.1126/science.1171477 Horita, Juske; Zimmermann, Heide; Holland, Heinrich D (2002): Chemical evolution of seawater during the Phanerozoic. Geochimica et Cosmochimica Acta, 66(21), 3733-3756, https://doi.org/10.1016/S0016-7037(01)00884-5 Lemarchand, Damien; Gaillardet, Jérôme; Lewin, E; Allègre, Claude J (2002): Boron isotope systematics in large rivers: implications for the marine boron budget and paleo-pH reconstruction over the Cenozoic. Chemical Geology, 190(1-4), 123-140, https://doi.org/10.1016/S0009-2541(02)00114-6 Martínez-Botí, Miquel Àngel; Foster, Gavin L; Chalk, Thomas B; Rohling, Eelco J; Sexton, Philip F; Lunt, Daniel J; Pancost, Richard D; Badger, Marcus P S; Schmidt, Daniela N (2015): Plio-Pleistocene climate sensitivity evaluated using high-resolution CO2 records. Nature, 518(7537), 49-54, https://doi.org/10.1038/nature14145 Pälike, Heiko; Lyle, Mitchell W; Nishi, Hiroshi; Raffi, Isabella; Ridgwell, Andy; Gamage, Kusali; Klaus, Adam; Acton, Gary D; Anderson, Louise; Backman, Jan; Baldauf, Jack G; Beltran, Catherine; Bohaty, Steven M; Bown, Paul R; Busch, William H; Channell, James E T; Chun, Cecily O J; Delaney, Margaret Lois; Dewang, Pawan; Dunkley Jones, Tom; Edgar, Kirsty M; Evans, Helen F; Fitch, Peter; Foster, Gavin L; Gussone, Nikolaus; Hasegawa, Hitoshi; Hathorne, Ed C; Hayashi, Hiroki; Herrle, Jens O; Holbourn, Ann E; Hovan, Steven A; Hyeong, Kiseong; Iijima, Koichi; Ito, Takashi; Kamikuri, Shin-Ichi; Kimoto, Katsunori; Kuroda, Junichiro; Leon-Rodriguez, Lizette; Malinverno, Alberto; Moore, Theodore C; Murphy, Brandon; Murphy, Daniel P; Nakamur, Hideto; Ogane, Kaoru; Ohneiser, Christian; Richter, Carl; Robinson, Rebecca S; Rohling, Eelco J; Romero, Oscar E; Sawada, Ken; Scher, Howie D; Schneider, Leah; Sluijs, Appy; Takata, Hiroyuki; Tian, Jun; Tsujimoto, Akira; Wade, Bridget S; Westerhold, Thomas; Wilkens, Roy H; Williams, Trevor J; Wilson, Paul A; Yamamoto, Yuhji; Yamamoto, Shinya; Yamazaki, Toshitsugu; Zeebe, Richard E (2012): A Cenozoic record of the equatorial Pacific carbonate compensation depth. Nature, 488, 609-614, https://doi.org/10.1038/nature11360 Seki, Osamu; Foster, Gavin L; Schmidt, Daniela N; Mackensen, Andreas; Kawamura, Kimitaka; Pancost, Richard D (2010): Alkenone and boron based Pliocene pCO2 records. Earth and Planetary Science Letters, 292(1-2), 201-211, https://doi.org/10.1016/j.epsl.2010.01.037 Sosdian, Sindia M; Greenop, Rosanna; Hain, Mathis P; Foster, Gavin L; Pearson, Paul N; Lear, Caroline H (2018): Constraining the evolution of Neogene ocean carbonate chemistry using the boron isotope pH proxy. Earth and Planetary Science Letters, 498, 362-376, https://doi.org/10.1016/j.epsl.2018.06.017 https://doi.pangaea.de/10.1594/PANGAEA.904301 https://doi.org/10.1594/PANGAEA.904301 CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess 108-668 122-761B 144-872C 154-926A 165-1000A 165-999 AGE Alkalinity total Aragonite saturation state boron isotopes Calculated Carbon inorganic dissolved carbonate system Carbon dioxide Caribbean Sea COMPCORE Composite Core DRILL Drilling/drill rig Event label Foraminifera Joides Resolution Leg108 Leg122 Leg144 Leg154 Leg165 Miocene Neogene North Pacific Ocean Reconstructed Reference/source Sample comment Site South Atlantic Ocean South Indian Ridge South Indian Ocean Species Dataset 2019 ftpangaea https://doi.org/10.1594/PANGAEA.90430110.1594/PANGAEA.90418610.1002/palo.2001510.1029/2010PA00205510.1073/pnas.170214311410.1016/j.epsl.2012.06.00710.1002/2014PA00265310.5194/cp-13-149-201710.1126/science.117147710.1016/S0016-7037(01)00884-510.1016/S0009- 2024-05-07T23:45:53Z Dataset South Atlantic Ocean PANGAEA - Data Publisher for Earth & Environmental Science Indian Pacific ENVELOPE(115.535000,-20.927000,16.553700,-16.737000)