1. Lakes worldwide are in rapid change because of direct or indirect climate impacts. In boreal areas, the increased concentrations of dissolved organic matter (DOM) are profoundly affecting light climate and productivity in multiple ways. Photochemical and microbial mineralisation of DOM are major sources of CO2 in these lakes. It has been suggested that this CO2 could potentially promote primary production and offset negative impacts of increased light attenuation. 2. A synoptic survey of 76 Scandinavian lakes along gradients of DOM and total phosphorus (TP) revealed a major negative impact of DOM on primary production and algal biomass primarily related to light attenuation, whilst a strong positive impact of TP. The negative impact of D...
The trophic state of lakes is commonly defined by the concentration of nutrients in the water column...
The global carbon cycle is intimately linked with the earth’s climate system. Knowledge about carbon...
Abstract Global change impacts important environmental drivers for pelagic gross primary production ...
Many lakes worldwide are supersaturated with CO2, making them net emitters of CO2 to the atmosphere....
Many boreal lakes are experiencing an increase in concentrations of terrestrially derived dissolved ...
Dissolved organic carbon (DOC) limits primary production in lakes when present at high concentration...
The partial pressure of CO2 (pCO(2)) in lake water, and thus CO2 emissions from lakes are controlled...
Many surface waters across the boreal region are browning due to increased concentrations of colored...
Widespread increases in dissolved organic matter (DOM) concentration across northern lakes can alter...
Allochthonous organic carbon is increasing and leading to browning of freshwaters in the northern he...
Algae are primary producers, a major component of the aquatic foodweb, and changes in primary produc...
Colored dissolved organic matter (CDOM) absorbs a substantial fraction of photosynthetically active ...
Anthropogenic activities are increasing inorganic nitrogen (N) loadings to lakes in the northern hem...
Climate warming is predicted to affect northern lake food webs in two ways: (1)directly via changes ...
Global change affects gross primary production (GPP) in benthic and pelagic habitats of northern lak...
The trophic state of lakes is commonly defined by the concentration of nutrients in the water column...
The global carbon cycle is intimately linked with the earth’s climate system. Knowledge about carbon...
Abstract Global change impacts important environmental drivers for pelagic gross primary production ...
Many lakes worldwide are supersaturated with CO2, making them net emitters of CO2 to the atmosphere....
Many boreal lakes are experiencing an increase in concentrations of terrestrially derived dissolved ...
Dissolved organic carbon (DOC) limits primary production in lakes when present at high concentration...
The partial pressure of CO2 (pCO(2)) in lake water, and thus CO2 emissions from lakes are controlled...
Many surface waters across the boreal region are browning due to increased concentrations of colored...
Widespread increases in dissolved organic matter (DOM) concentration across northern lakes can alter...
Allochthonous organic carbon is increasing and leading to browning of freshwaters in the northern he...
Algae are primary producers, a major component of the aquatic foodweb, and changes in primary produc...
Colored dissolved organic matter (CDOM) absorbs a substantial fraction of photosynthetically active ...
Anthropogenic activities are increasing inorganic nitrogen (N) loadings to lakes in the northern hem...
Climate warming is predicted to affect northern lake food webs in two ways: (1)directly via changes ...
Global change affects gross primary production (GPP) in benthic and pelagic habitats of northern lak...
The trophic state of lakes is commonly defined by the concentration of nutrients in the water column...
The global carbon cycle is intimately linked with the earth’s climate system. Knowledge about carbon...
Abstract Global change impacts important environmental drivers for pelagic gross primary production ...