HLY1002_Averaged
Models project the Arctic Ocean will become undersaturated with respect to carbonate minerals in the next decade. Recent field results indicate parts may already be undersaturated in late summer months, when ice melt is at its greatest extent. However, few comprehensive datasets of carbonate system...
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USGS Science Data Catalog
2012
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Online Access: | https://search.dataone.org/view/b3f55dc9-4e58-47e3-b71c-6d46727d8ae0 |
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dataone:b3f55dc9-4e58-47e3-b71c-6d46727d8ae0 2024-11-03T19:44:54+00:00 HLY1002_Averaged Lisa L. Robbins Kimberly K. Yates Matthew D. Gove Paul O. Knorr Jonathan Wynn Robert H. Byrne Xuewu Liu ENVELOPE(-168.8,-119.1,82.5,53.9) 2012-01-01T00:00:00Z https://search.dataone.org/view/b3f55dc9-4e58-47e3-b71c-6d46727d8ae0 unknown USGS Science Data Catalog Ocean Acidification pCO2 total carbon carbon flux pH Salinity Temperature assessments water column features chemical analysis chemical oceanography ocean acidification marine chemistry Arctic Ocean Canada Basin Alaska Canada Dataset 2012 dataone:urn:node:USGS_SDC 2024-11-03T19:10:18Z Models project the Arctic Ocean will become undersaturated with respect to carbonate minerals in the next decade. Recent field results indicate parts may already be undersaturated in late summer months, when ice melt is at its greatest extent. However, few comprehensive datasets of carbonate system parameters in the Arctic Ocean exist. Researchers from the U.S. Geological Survey (USGS) and University of South Florida (USF) collected high-resolution measurements of pCO2, pH, total dissolved inorganic carbon (DIC), total alkalinity (TA), and carbonate (CO3-2) from the Chukchi Sea and Canada Basin that fill critical information gaps concerning Arctic carbon variability. A Multiparameter Inorganic Carbon Analyzer (MICA) was used to collect over 22,000 measurements of air and sea pCO2, pH, and DIC along a 9,450-km trackline during August 2010. In addition, 240 discrete surface water samples were taken. These data are being used to characterize and model regional pCO2, pH, and carbonate mineral saturation state. A high-resolution, three-dimensional map of these results will be presented. Dataset Arctic Arctic Ocean canada basin Chukchi Chukchi Sea Ocean acidification Alaska USGS Science Data Catalog (via DataONE) Arctic Arctic Ocean Canada Chukchi Sea ENVELOPE(-168.8,-119.1,82.5,53.9) |
institution |
Open Polar |
collection |
USGS Science Data Catalog (via DataONE) |
op_collection_id |
dataone:urn:node:USGS_SDC |
language |
unknown |
topic |
Ocean Acidification pCO2 total carbon carbon flux pH Salinity Temperature assessments water column features chemical analysis chemical oceanography ocean acidification marine chemistry Arctic Ocean Canada Basin Alaska Canada |
spellingShingle |
Ocean Acidification pCO2 total carbon carbon flux pH Salinity Temperature assessments water column features chemical analysis chemical oceanography ocean acidification marine chemistry Arctic Ocean Canada Basin Alaska Canada Lisa L. Robbins Kimberly K. Yates Matthew D. Gove Paul O. Knorr Jonathan Wynn Robert H. Byrne Xuewu Liu HLY1002_Averaged |
topic_facet |
Ocean Acidification pCO2 total carbon carbon flux pH Salinity Temperature assessments water column features chemical analysis chemical oceanography ocean acidification marine chemistry Arctic Ocean Canada Basin Alaska Canada |
description |
Models project the Arctic Ocean will become undersaturated with respect to carbonate minerals in the next decade. Recent field results indicate parts may already be undersaturated in late summer months, when ice melt is at its greatest extent. However, few comprehensive datasets of carbonate system parameters in the Arctic Ocean exist. Researchers from the U.S. Geological Survey (USGS) and University of South Florida (USF) collected high-resolution measurements of pCO2, pH, total dissolved inorganic carbon (DIC), total alkalinity (TA), and carbonate (CO3-2) from the Chukchi Sea and Canada Basin that fill critical information gaps concerning Arctic carbon variability. A Multiparameter Inorganic Carbon Analyzer (MICA) was used to collect over 22,000 measurements of air and sea pCO2, pH, and DIC along a 9,450-km trackline during August 2010. In addition, 240 discrete surface water samples were taken. These data are being used to characterize and model regional pCO2, pH, and carbonate mineral saturation state. A high-resolution, three-dimensional map of these results will be presented. |
format |
Dataset |
author |
Lisa L. Robbins Kimberly K. Yates Matthew D. Gove Paul O. Knorr Jonathan Wynn Robert H. Byrne Xuewu Liu |
author_facet |
Lisa L. Robbins Kimberly K. Yates Matthew D. Gove Paul O. Knorr Jonathan Wynn Robert H. Byrne Xuewu Liu |
author_sort |
Lisa L. Robbins |
title |
HLY1002_Averaged |
title_short |
HLY1002_Averaged |
title_full |
HLY1002_Averaged |
title_fullStr |
HLY1002_Averaged |
title_full_unstemmed |
HLY1002_Averaged |
title_sort |
hly1002_averaged |
publisher |
USGS Science Data Catalog |
publishDate |
2012 |
url |
https://search.dataone.org/view/b3f55dc9-4e58-47e3-b71c-6d46727d8ae0 |
op_coverage |
ENVELOPE(-168.8,-119.1,82.5,53.9) |
long_lat |
ENVELOPE(-168.8,-119.1,82.5,53.9) |
geographic |
Arctic Arctic Ocean Canada Chukchi Sea |
geographic_facet |
Arctic Arctic Ocean Canada Chukchi Sea |
genre |
Arctic Arctic Ocean canada basin Chukchi Chukchi Sea Ocean acidification Alaska |
genre_facet |
Arctic Arctic Ocean canada basin Chukchi Chukchi Sea Ocean acidification Alaska |
_version_ |
1814732003478601728 |