IODP Expedition 378 Moisture and Density ...
Moisture and density (MAD) data were acquired on ~10 mL sediment or rock samples by measuring three out of four material parameters: wet (saturated) mass, wet volume, dry mass, and/or dry volume after 24 h drying in a convection oven at 105 degrees C. From the moisture and volume measurements, the f...
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International Ocean Discovery Program
2022
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Online Access: | https://dx.doi.org/10.5281/zenodo.10809972 https://zenodo.org/doi/10.5281/zenodo.10809972 |
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ftdatacite:10.5281/zenodo.10809972 2024-04-28T08:25:00+00:00 IODP Expedition 378 Moisture and Density ... Röhl, Ursula Thomas, Deborah J. Childress, Laurel B. Anagnostou, Eleni Ausín, Blanca Boscolo Galazzo, Flavia Dias, Bruna Borba Brzelinski, Swaantje Dunlea, Ann G. George, Simon C. Haynes, Laura L. Hendy, Ingrid L. Jones, Heather L. Khanolkar, Sonal S. Kitch, Gabriella D. Lee, Hojun Raffi, Isabella Reis, Alex J. Sheward, Rosie M. Sibert, Elizabeth Tanaka, Erika Wilkens, Roy H. Yasukawa, Kazutaka Yuan, Wei Zhang, Qiang Zhang, Yang Drury, Anna J. Hollis, Christopher J. 2022 https://dx.doi.org/10.5281/zenodo.10809972 https://zenodo.org/doi/10.5281/zenodo.10809972 unknown International Ocean Discovery Program https://dx.doi.org/10.14379/iodp.proc.378.2022 https://dx.doi.org/10.5281/zenodo.10809971 Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 International Ocean Discovery Program IODP JOIDES Resolution Expedition 378 Site U1553 South Pacific Paleogene Climate climate and ocean change Campbell Plateau high southern latitude carbon system dynamics Cenozoic climate history high CO2 world chronostratigraphy ocean circulation intermediate water formation hydrologic cycling biological productivity ice sheet dynamics dataset Dataset 2022 ftdatacite https://doi.org/10.5281/zenodo.1080997210.14379/iodp.proc.378.202210.5281/zenodo.10809971 2024-04-02T11:49:05Z Moisture and density (MAD) data were acquired on ~10 mL sediment or rock samples by measuring three out of four material parameters: wet (saturated) mass, wet volume, dry mass, and/or dry volume after 24 h drying in a convection oven at 105 degrees C. From the moisture and volume measurements, the following phase relationships are calculated: wet and dry water content, wet bulk density, dry bulk density, grain density, porosity, and void ratio. The combination of measurements is defined by the submethod chosen: A, B, C, or D. Wet (A, B, or C) and dry (A, B, C, or D) mass is determined using motion-compensated balances. Wet volume is determined either by helium pycnometry (A) or by the sample's geometric dimensions using calipers (A or D). Dry volume (C or D) is measured by helium pycnometry. Submethods A and B are not recommended by IODP. Submethod C is suitable for saturated materials such as fine-grained sediments. Submethod D is suitable for unsaturated porous material such as certain limestones and ... Dataset Ice Sheet DataCite Metadata Store (German National Library of Science and Technology) |
institution |
Open Polar |
collection |
DataCite Metadata Store (German National Library of Science and Technology) |
op_collection_id |
ftdatacite |
language |
unknown |
topic |
International Ocean Discovery Program IODP JOIDES Resolution Expedition 378 Site U1553 South Pacific Paleogene Climate climate and ocean change Campbell Plateau high southern latitude carbon system dynamics Cenozoic climate history high CO2 world chronostratigraphy ocean circulation intermediate water formation hydrologic cycling biological productivity ice sheet dynamics |
spellingShingle |
International Ocean Discovery Program IODP JOIDES Resolution Expedition 378 Site U1553 South Pacific Paleogene Climate climate and ocean change Campbell Plateau high southern latitude carbon system dynamics Cenozoic climate history high CO2 world chronostratigraphy ocean circulation intermediate water formation hydrologic cycling biological productivity ice sheet dynamics Röhl, Ursula Thomas, Deborah J. Childress, Laurel B. Anagnostou, Eleni Ausín, Blanca Boscolo Galazzo, Flavia Dias, Bruna Borba Brzelinski, Swaantje Dunlea, Ann G. George, Simon C. Haynes, Laura L. Hendy, Ingrid L. Jones, Heather L. Khanolkar, Sonal S. Kitch, Gabriella D. Lee, Hojun Raffi, Isabella Reis, Alex J. Sheward, Rosie M. Sibert, Elizabeth Tanaka, Erika Wilkens, Roy H. Yasukawa, Kazutaka Yuan, Wei Zhang, Qiang Zhang, Yang Drury, Anna J. Hollis, Christopher J. IODP Expedition 378 Moisture and Density ... |
topic_facet |
International Ocean Discovery Program IODP JOIDES Resolution Expedition 378 Site U1553 South Pacific Paleogene Climate climate and ocean change Campbell Plateau high southern latitude carbon system dynamics Cenozoic climate history high CO2 world chronostratigraphy ocean circulation intermediate water formation hydrologic cycling biological productivity ice sheet dynamics |
description |
Moisture and density (MAD) data were acquired on ~10 mL sediment or rock samples by measuring three out of four material parameters: wet (saturated) mass, wet volume, dry mass, and/or dry volume after 24 h drying in a convection oven at 105 degrees C. From the moisture and volume measurements, the following phase relationships are calculated: wet and dry water content, wet bulk density, dry bulk density, grain density, porosity, and void ratio. The combination of measurements is defined by the submethod chosen: A, B, C, or D. Wet (A, B, or C) and dry (A, B, C, or D) mass is determined using motion-compensated balances. Wet volume is determined either by helium pycnometry (A) or by the sample's geometric dimensions using calipers (A or D). Dry volume (C or D) is measured by helium pycnometry. Submethods A and B are not recommended by IODP. Submethod C is suitable for saturated materials such as fine-grained sediments. Submethod D is suitable for unsaturated porous material such as certain limestones and ... |
format |
Dataset |
author |
Röhl, Ursula Thomas, Deborah J. Childress, Laurel B. Anagnostou, Eleni Ausín, Blanca Boscolo Galazzo, Flavia Dias, Bruna Borba Brzelinski, Swaantje Dunlea, Ann G. George, Simon C. Haynes, Laura L. Hendy, Ingrid L. Jones, Heather L. Khanolkar, Sonal S. Kitch, Gabriella D. Lee, Hojun Raffi, Isabella Reis, Alex J. Sheward, Rosie M. Sibert, Elizabeth Tanaka, Erika Wilkens, Roy H. Yasukawa, Kazutaka Yuan, Wei Zhang, Qiang Zhang, Yang Drury, Anna J. Hollis, Christopher J. |
author_facet |
Röhl, Ursula Thomas, Deborah J. Childress, Laurel B. Anagnostou, Eleni Ausín, Blanca Boscolo Galazzo, Flavia Dias, Bruna Borba Brzelinski, Swaantje Dunlea, Ann G. George, Simon C. Haynes, Laura L. Hendy, Ingrid L. Jones, Heather L. Khanolkar, Sonal S. Kitch, Gabriella D. Lee, Hojun Raffi, Isabella Reis, Alex J. Sheward, Rosie M. Sibert, Elizabeth Tanaka, Erika Wilkens, Roy H. Yasukawa, Kazutaka Yuan, Wei Zhang, Qiang Zhang, Yang Drury, Anna J. Hollis, Christopher J. |
author_sort |
Röhl, Ursula |
title |
IODP Expedition 378 Moisture and Density ... |
title_short |
IODP Expedition 378 Moisture and Density ... |
title_full |
IODP Expedition 378 Moisture and Density ... |
title_fullStr |
IODP Expedition 378 Moisture and Density ... |
title_full_unstemmed |
IODP Expedition 378 Moisture and Density ... |
title_sort |
iodp expedition 378 moisture and density ... |
publisher |
International Ocean Discovery Program |
publishDate |
2022 |
url |
https://dx.doi.org/10.5281/zenodo.10809972 https://zenodo.org/doi/10.5281/zenodo.10809972 |
genre |
Ice Sheet |
genre_facet |
Ice Sheet |
op_relation |
https://dx.doi.org/10.14379/iodp.proc.378.2022 https://dx.doi.org/10.5281/zenodo.10809971 |
op_rights |
Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 |
op_doi |
https://doi.org/10.5281/zenodo.1080997210.14379/iodp.proc.378.202210.5281/zenodo.10809971 |
_version_ |
1797584969603743744 |