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Global subsurface ocean acidification indicators at depth levels of 50, 100, and 200 meters from 1750-01-01 to 2100-12-31 (NCEI Accession 0287573)

This data package contains 10 global subsurface ocean acidification (OA) indicators at standardized depth levels of 50, 100, and 200 meters. The indicators include fugacity of carbon dioxide, pH on the total scale, total hydrogen ion content, free hydrogen ion content, carbonate ion content, aragonite saturation state, calcite saturation state, Revelle Factor, total dissolved inorganic carbon content, and total alkalinity content. They are presented on a global ocean grid of 1° × 1°, as decadal averages spanning from preindustrial conditions (1750) through historical conditions (1850–2010) and projected into five future scenarios defined by Shared Socioeconomic Pathways (SSP1-2.6, SSP2-4.5, SSP3-7.0, and SSP5-8.5) from 2020 to 2100. These OA indicators were generated by following the same approach as described by Jiang et al. (2023) (https://doi.org/10.1029/2022MS003563), and utilized data from 14 Earth System Models (ESMs) from the Coupled Model Intercomparison Project Phase 6 (CMIP6), as well as a gridded data product provided by Lauvset et al. (2016) (https://doi.org/10.5194/essd-8-325-2016).

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Updated: 2024-08-20
Metadata Last Updated: 2024-08-06T09:49:56.479Z
Date Created: N/A
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Dataset Owner: N/A

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Title Global subsurface ocean acidification indicators at depth levels of 50, 100, and 200 meters from 1750-01-01 to 2100-12-31 (NCEI Accession 0287573)
Description This data package contains 10 global subsurface ocean acidification (OA) indicators at standardized depth levels of 50, 100, and 200 meters. The indicators include fugacity of carbon dioxide, pH on the total scale, total hydrogen ion content, free hydrogen ion content, carbonate ion content, aragonite saturation state, calcite saturation state, Revelle Factor, total dissolved inorganic carbon content, and total alkalinity content. They are presented on a global ocean grid of 1° × 1°, as decadal averages spanning from preindustrial conditions (1750) through historical conditions (1850–2010) and projected into five future scenarios defined by Shared Socioeconomic Pathways (SSP1-2.6, SSP2-4.5, SSP3-7.0, and SSP5-8.5) from 2020 to 2100. These OA indicators were generated by following the same approach as described by Jiang et al. (2023) (https://doi.org/10.1029/2022MS003563), and utilized data from 14 Earth System Models (ESMs) from the Coupled Model Intercomparison Project Phase 6 (CMIP6), as well as a gridded data product provided by Lauvset et al. (2016) (https://doi.org/10.5194/essd-8-325-2016).
Modified 2024-08-06T09:49:56.479Z
Publisher Name N/A
Contact N/A
Keywords 0287573 , ARAGONITE SATURATION STATE , CALCITE CONCENTRATION , CARBON - CARBONATE , DISSOLVED INORGANIC CARBON (DIC) , partial pressure of carbon dioxide - water , pH , SALINITY , total alkalinity , WATER TEMPERATURE , carbon dioxide (CO2) gas analyzer , chemical , model output , physical , VARIOUS CHARTERED VESSELS , University of Maryland , University of Maryland , Ocean Carbon and Acidification Data System (OCADS) , US DOC; NOAA; Office of Oceanic and Atmospheric Research; Ocean Acidification Program (OAP) , World-Wide Distribution , oceanography , NA , NA , Ocean Acidification Program (OAP) , Ocean Carbon and Acidification Data System (OCADS) Project , NA , EARTH SCIENCE > OCEANS > OCEAN CHEMISTRY , EARTH SCIENCE > OCEANS > OCEAN CHEMISTRY > ALKALINITY , EARTH SCIENCE > OCEANS > OCEAN CHEMISTRY > CARBON DIOXIDE , EARTH SCIENCE > OCEANS > OCEAN CHEMISTRY > CARBONATE , EARTH SCIENCE > OCEANS > OCEAN CHEMISTRY > INORGANIC CARBON , EARTH SCIENCE > OCEANS > OCEAN CHEMISTRY > PH , EARTH SCIENCE > OCEANS > OCEAN TEMPERATURE > WATER TEMPERATURE , EARTH SCIENCE > OCEANS > SALINITY/DENSITY > SALINITY , Model output , ARAG , CALC , CO3 , DIC , Hfree , Htotal , RF , S , T , TA , pCO2 , pHT , CO2 ANALYZERS > CO2 ANALYZERS , GEOGRAPHIC REGION > GLOBAL OCEAN , Global subsurface ocean , environment , oceans
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