Javascript must be enabled to continue!
Major controls of base flow soluble reactive phosphorus losses in humid temperate headwater streams
View through CrossRef
<p>Long-term Soluble Reactive Phosphorus (SRP) monitoring in headwater streams in central Europe revealed a seasonal pattern of SRP concentrations during low flow periods, with highest concentrations in summer and lowest in winter. These seasonal concentration amplitudes often exceed the eutrophication threshold during the summer eutrophication-sensitive period. It is assumed that temperature dependent biogeochemical processes control the underlying P release mechanism, where redox processes may be responsible for this increase. Several studies have highlighted the crucial role of reactive zones such as riparian wetlands in controlling solute export regimes. Moreover especially in forest headwater streams, in-stream assimilatory uptake shows a distinct seasonal behaviour because of varying shading conditions. This can also lead to seasonal SRP amplitudes. Furthermore sorption and desorption processes are temperature dependent which may alter in-stream SRP release during the year.</p><p>Often SRP concentrations are higher in agricultural streams than in more pristine headwaters. It is not clear how land use (e.g. P status of soils) may impact the baseline SRP concentrations and which factors control the seasonal change in SRP stream concentration (riparian groundwater heads and redox processes, temperature, in-stream release and uptake processes). Therefore the objective of this study is to disentangle land use impacts from hydrological and biogeochemical controls of low flow SRP losses.&#160; A comparative study on seasonal SRP concentration patterns will be presented comprising around 53 long term monitored headwater catchments in humid temperate climate of northern Europe and the United States. Based on hydrological and SRP headwater signals and catchment properties, P release processes are discussed. The results of the study will allow to target SRP mitigation strategies based on knowledge of the dominating control of SRP loss from headwater streams.&#160;</p>
Title: Major controls of base flow soluble reactive phosphorus losses in humid temperate headwater streams
Description:
<p>Long-term Soluble Reactive Phosphorus (SRP) monitoring in headwater streams in central Europe revealed a seasonal pattern of SRP concentrations during low flow periods, with highest concentrations in summer and lowest in winter.
These seasonal concentration amplitudes often exceed the eutrophication threshold during the summer eutrophication-sensitive period.
It is assumed that temperature dependent biogeochemical processes control the underlying P release mechanism, where redox processes may be responsible for this increase.
Several studies have highlighted the crucial role of reactive zones such as riparian wetlands in controlling solute export regimes.
Moreover especially in forest headwater streams, in-stream assimilatory uptake shows a distinct seasonal behaviour because of varying shading conditions.
This can also lead to seasonal SRP amplitudes.
Furthermore sorption and desorption processes are temperature dependent which may alter in-stream SRP release during the year.
</p><p>Often SRP concentrations are higher in agricultural streams than in more pristine headwaters.
It is not clear how land use (e.
g.
P status of soils) may impact the baseline SRP concentrations and which factors control the seasonal change in SRP stream concentration (riparian groundwater heads and redox processes, temperature, in-stream release and uptake processes).
Therefore the objective of this study is to disentangle land use impacts from hydrological and biogeochemical controls of low flow SRP losses.
&#160; A comparative study on seasonal SRP concentration patterns will be presented comprising around 53 long term monitored headwater catchments in humid temperate climate of northern Europe and the United States.
Based on hydrological and SRP headwater signals and catchment properties, P release processes are discussed.
The results of the study will allow to target SRP mitigation strategies based on knowledge of the dominating control of SRP loss from headwater streams.
&#160;</p>.
Related Results
Fish Communities of Tropical Headwater Streams Under Multiple Land-use Influence
Fish Communities of Tropical Headwater Streams Under Multiple Land-use Influence
The intensive development of agricultural activities can be a major threat to the extinction of fish fauna in the tropical headwater streams of Borneo Island. Insufficient informat...
Headwater streams as major interfaces for greenhouse gas emissions in agricultural landscapes
Headwater streams as major interfaces for greenhouse gas emissions in agricultural landscapes
Accurate estimates of greenhouse gas (GHG) emissions from agricultural landscapes are essential to guide effective climate mitigation measures. While CO₂ dominates riverine GHG flu...
Effects of Soil Conditioners on Absorption of phosphorus by waxy corn and Phosphorus Transformation in High Phosphorus Soils
Effects of Soil Conditioners on Absorption of phosphorus by waxy corn and Phosphorus Transformation in High Phosphorus Soils
In this experiment, the effects of different types of conditioners and their application on the absorption and transformation of phosphorus in high phosphorus soils in facilities w...
The loss of phosphorus from sandy soils
The loss of phosphorus from sandy soils
Leaching losses of phosphorus were measured in seven field trials. .Phosphorus was broadcast as superphosphate. Soils used were mostly loamy sands. Losses from the top 4 in. layer ...
Assessing flow intermittence in France under climate change
Assessing flow intermittence in France under climate change
<p>With climate change, perennial headwater streams are expected to become intermittent and intermittent rivers to dry more often due to more severe droughts, placing...
Rural land cover management reverses urban humid heat effects across climates
Rural land cover management reverses urban humid heat effects across climates
While urban humid heat is a major concern, adaptation strategies often overlook the surrounding rural land management. How rural land cover changes modulate urban humid heat by alt...
Fertilizer phosphorus in some Finnish soils
Fertilizer phosphorus in some Finnish soils
In the present paper it is tried to trace the fate of fertilizer phosphorus in soil by comparing the analyses of soils from treated and untreated plots of field trials. This indire...
Impact of headwater streams on N2O emissions from agricultural catchments
Impact of headwater streams on N2O emissions from agricultural catchments
Mineral and organic fertilization is estimated to be responsible for 70% of N2O emissions worldwide, a greenhouse gas which is approximately 270 times more potent than CO2. N2O emi...

