We present high-resolution autonomous measurements of carbon dioxide partial pressure p(CO2) taken in situ at the Porcupine Abyssal Plain sustained Observatory (PAP-SO) in the northeast Atlantic (49° N, 16.5° W; water depth of 4850 m) for the period 2010–2012. Measurements of p(CO2) made at 30 m depth on a sensor frame are compared with other autonomous biogeochemical measurements at that depth (including chlorophyll a fluorescence and nitrate concentration data) to analyse weekly to seasonal controls on p(CO2) flux in the inter-gyre region of the North Atlantic. Comparisons are also made with in situ regional time series data from a ship of opportunity and mixed layer depth (MLD) measurements from profiling Argo floats. There is a persiste...
A coupled biogeochemical-physical ocean model is used to study the seasonal and long–term variations...
The North Atlantic Ocean plays a major role in climate change not least due to its importance in CO2...
A temporally and spatially resolved estimate of the global surface-ocean CO2 partial pressure field ...
We present high-resolution autonomous measurements of carbon dioxide partial pressure p(CO2) taken i...
A 2-year record of mixed layer measurements of CO2 partial pressure (pCO2), nitrate, and other physi...
In this study we present hydrography, biogeochemistry and sediment trap observations between 2003 an...
The ocean is currently a significant net sink for anthropogenically remobilised CO2, taking up aroun...
A monthly survey of the partial pressure of CO2 (pCO2) was carried in the Southern Bight of the Nort...
The accumulation of anthropogenic CO2 emissions in the atmosphere has been buffered by the absorptio...
A coupled biogeochemical-physical ocean model is used to study the seasonal and long–term variations...
We present a 3-year multidisciplinary biogeochemical data set taken in situ at the Porcupine Abyssal...
The North Atlantic Ocean is the most intense marine sink for anthropogenic carbon dioxide (CO2) in t...
A coupled biogeochemical-physical ocean model is used to study the seasonal and long–term variations...
The North Atlantic is a substantial sink for anthropogenic CO2. Understanding the mechanisms driving...
This is the final version. Available from American Geophysical Union (AGU) / Wiley via the DOI in th...
A coupled biogeochemical-physical ocean model is used to study the seasonal and long–term variations...
The North Atlantic Ocean plays a major role in climate change not least due to its importance in CO2...
A temporally and spatially resolved estimate of the global surface-ocean CO2 partial pressure field ...
We present high-resolution autonomous measurements of carbon dioxide partial pressure p(CO2) taken i...
A 2-year record of mixed layer measurements of CO2 partial pressure (pCO2), nitrate, and other physi...
In this study we present hydrography, biogeochemistry and sediment trap observations between 2003 an...
The ocean is currently a significant net sink for anthropogenically remobilised CO2, taking up aroun...
A monthly survey of the partial pressure of CO2 (pCO2) was carried in the Southern Bight of the Nort...
The accumulation of anthropogenic CO2 emissions in the atmosphere has been buffered by the absorptio...
A coupled biogeochemical-physical ocean model is used to study the seasonal and long–term variations...
We present a 3-year multidisciplinary biogeochemical data set taken in situ at the Porcupine Abyssal...
The North Atlantic Ocean is the most intense marine sink for anthropogenic carbon dioxide (CO2) in t...
A coupled biogeochemical-physical ocean model is used to study the seasonal and long–term variations...
The North Atlantic is a substantial sink for anthropogenic CO2. Understanding the mechanisms driving...
This is the final version. Available from American Geophysical Union (AGU) / Wiley via the DOI in th...
A coupled biogeochemical-physical ocean model is used to study the seasonal and long–term variations...
The North Atlantic Ocean plays a major role in climate change not least due to its importance in CO2...
A temporally and spatially resolved estimate of the global surface-ocean CO2 partial pressure field ...