Carbon dioxide (CO2) uptake by phytoplankton can significantly reduce the partial pressure of CO2 (pCO2) in lakes and rivers, and thereby CO2 emissions. Presently, it is not known in which inland waters on Earth a significant pCO2 reduction by phytoplankton is likely. Since detailed, comparable carbon budgets are currently not available for most inland waters, we modified a proxy to assess the pCO2 reduction by phytoplankton, originally developed for boreal lakes, for application on a global scale. Using data from 61 rivers and 125 lakes distributed over five continents, we show that a significant pCO2 reduction by phytoplankton is widespread across the temperate and sub-/tropical region, but absent in the cold regions on Earth. More specif...
Inland waters, just as the world's oceans, play an important role in the global carbon cycle. While ...
Carbon dioxide (CO2) transfer from inland waters to the atmosphere, known as CO2 evasion, is a compo...
AbstractApproximately 50% of the photosynthesis on Earth each year occurs in aquatic environments. T...
Carbon dioxide (CO2) uptake by phytoplankton can significantly reduce the partial pressure of CO2 (p...
Water flowing through the landscape transports chemical substances including carbon. Along the way f...
The partial pressure of CO2 (pCO(2)) in lake water, and thus CO2 emissions from lakes are controlled...
Abstract Lakes located in the boreal region are generally supersaturated with carbon dioxide (CO2), ...
The quantity of carbon dioxide (CO2) emissions from inland waters into the atmosphere varies, depend...
Carbon capture and storage due to photosynthesis activities has been proposed as a carbon sink to mi...
Understanding the mechanisms driving carbon dioxide (CO2) concentrations in inland waters is importa...
Inland waters are an essential component of the global carbon cycle as they are very active sites fo...
Lake eutrophication is a pervasive problem globally, particularly serious in agricultural and densel...
Phytoplankton biomass in the world's oceans amounts to only ∽1–2% of the total global plant carbon, ...
The traditional field-based measurements of carbon dioxide (pCO2) for inland waters are a snapshot o...
Lakes (including reservoirs) are an important component of the global carbon (C) cycle, as acknowled...
Inland waters, just as the world's oceans, play an important role in the global carbon cycle. While ...
Carbon dioxide (CO2) transfer from inland waters to the atmosphere, known as CO2 evasion, is a compo...
AbstractApproximately 50% of the photosynthesis on Earth each year occurs in aquatic environments. T...
Carbon dioxide (CO2) uptake by phytoplankton can significantly reduce the partial pressure of CO2 (p...
Water flowing through the landscape transports chemical substances including carbon. Along the way f...
The partial pressure of CO2 (pCO(2)) in lake water, and thus CO2 emissions from lakes are controlled...
Abstract Lakes located in the boreal region are generally supersaturated with carbon dioxide (CO2), ...
The quantity of carbon dioxide (CO2) emissions from inland waters into the atmosphere varies, depend...
Carbon capture and storage due to photosynthesis activities has been proposed as a carbon sink to mi...
Understanding the mechanisms driving carbon dioxide (CO2) concentrations in inland waters is importa...
Inland waters are an essential component of the global carbon cycle as they are very active sites fo...
Lake eutrophication is a pervasive problem globally, particularly serious in agricultural and densel...
Phytoplankton biomass in the world's oceans amounts to only ∽1–2% of the total global plant carbon, ...
The traditional field-based measurements of carbon dioxide (pCO2) for inland waters are a snapshot o...
Lakes (including reservoirs) are an important component of the global carbon (C) cycle, as acknowled...
Inland waters, just as the world's oceans, play an important role in the global carbon cycle. While ...
Carbon dioxide (CO2) transfer from inland waters to the atmosphere, known as CO2 evasion, is a compo...
AbstractApproximately 50% of the photosynthesis on Earth each year occurs in aquatic environments. T...