Subterranean estuaries (STEs) are important biogeochemical land–sea interfaces, where fresh groundwater mixes with seawater in coastal aquifers. However, the sources of dissolved organic matter (DOM) and the connection of its molecular-level processing to pore water chemistry and redox conditions in these ecosystems are still not well understood. We studied the cycling of DOM in the STE of an intertidal sandy beach of the North Sea on spatial and seasonal scales. Ultrahigh-resolution mass spectrometry was used to identify thousands of DOM molecular formulae. These data were interpreted in the context of inorganic pore water chemistry, stable carbon isotope composition of solid-phase extracted (SPE) DOM and chemical tracers for bioavailable ...
In order to evaluate the importance of coastal sandy sediments and their contribution to carbon, nut...
In order to evaluate the importance of coastal sandy sediments and their contribution to carbon, nut...
During seawater circulation in permeable intertidal sands, organic matter degradation alters the com...
Subterranean estuaries (STEs) are important biogeochemical land–sea interfaces, where fresh groundwa...
Seawater circulation in permeable coastal sediments is driven by tidal changes in hydraulic gradient...
Seawater circulation in permeable coastal sediments is driven by tidal changes in hydraulic gradient...
Advective flows of seawater and fresh groundwater through coastal aquifers form a unique ecohydrolog...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
Dissolved organic matter (DOM) in marine sediment pore waters derives largely from decomposition of ...
Iron that precipitates under aerobic conditions in natural aquatic systems scavenges dissolved organ...
In order to evaluate the importance of coastal sandy sediments and their contribution to carbon, nut...
In order to evaluate the importance of coastal sandy sediments and their contribution to carbon, nut...
During seawater circulation in permeable intertidal sands, organic matter degradation alters the com...
Subterranean estuaries (STEs) are important biogeochemical land–sea interfaces, where fresh groundwa...
Seawater circulation in permeable coastal sediments is driven by tidal changes in hydraulic gradient...
Seawater circulation in permeable coastal sediments is driven by tidal changes in hydraulic gradient...
Advective flows of seawater and fresh groundwater through coastal aquifers form a unique ecohydrolog...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
International audienceHigh-energy tidal beaches are exposed to strong physical forcings. The submari...
Dissolved organic matter (DOM) in marine sediment pore waters derives largely from decomposition of ...
Iron that precipitates under aerobic conditions in natural aquatic systems scavenges dissolved organ...
In order to evaluate the importance of coastal sandy sediments and their contribution to carbon, nut...
In order to evaluate the importance of coastal sandy sediments and their contribution to carbon, nut...
During seawater circulation in permeable intertidal sands, organic matter degradation alters the com...