Modelling changes in river water quality, and by extension developing river management strategies, has historically been reliant on empirical data collected at relatively low temporal resolutions. With access to data collected at higher temporal resolutions, this study investigated how these new dataset types could be employed to assess the precision and accuracy of two phosphorus (P) load apportionment models (LAMs) developed on lower resolution empirical data. Predictions were made of point and diffuse sources of P across ten different sampling scenarios. Sampling resolution ranged from hourly to monthly through the use of 2000 newly created datasets from high frequency P and discharge data collected from a eutrophic river draining a 9.48...
In 2010, the UK government established the Demonstration Test Catchment (DTC) initiative to evaluate...
peer-reviewedHigh-resolution water quality monitoring indicates recurring elevation of stream phosph...
Publication history: Accepted - 13 September 2022; Published online - 30 September 2022Passive samp...
Modelling changes in river water quality, and by extension developing river management strategies, h...
Excess nutrients in surface waters, such as phosphorus (P) from agriculture, result in poor water qu...
Publication history: Accepted - 26 March 2018; Published online - 14 April 2018.Achieving an opera...
This study reports the use of high-resolution water quality monitoring to assess the influence of ch...
International audienceIn-river phosphorus retention alters the quantity and timings of phosphorus de...
Funding: No funding was provided for this study aside from supervisory support through Harper Adams ...
The uncertainties associated with stream nutrient transport estimates are frequently overlooked and ...
Phosphorus (P) concentration and flow data gathered during the 1990s for a range of British rivers w...
There is a need to model and predict the transfer of phosphorus (P) from land to water, but this is ...
There is a need to model and predict the transfer of phosphorus (P) from land to water, but this is ...
There is a need to model and predict the transfer of phosphorus (P) from land to water, but this is ...
Agricultural diffuse water pollution remains a notable global pressure on water quality, posing risk...
In 2010, the UK government established the Demonstration Test Catchment (DTC) initiative to evaluate...
peer-reviewedHigh-resolution water quality monitoring indicates recurring elevation of stream phosph...
Publication history: Accepted - 13 September 2022; Published online - 30 September 2022Passive samp...
Modelling changes in river water quality, and by extension developing river management strategies, h...
Excess nutrients in surface waters, such as phosphorus (P) from agriculture, result in poor water qu...
Publication history: Accepted - 26 March 2018; Published online - 14 April 2018.Achieving an opera...
This study reports the use of high-resolution water quality monitoring to assess the influence of ch...
International audienceIn-river phosphorus retention alters the quantity and timings of phosphorus de...
Funding: No funding was provided for this study aside from supervisory support through Harper Adams ...
The uncertainties associated with stream nutrient transport estimates are frequently overlooked and ...
Phosphorus (P) concentration and flow data gathered during the 1990s for a range of British rivers w...
There is a need to model and predict the transfer of phosphorus (P) from land to water, but this is ...
There is a need to model and predict the transfer of phosphorus (P) from land to water, but this is ...
There is a need to model and predict the transfer of phosphorus (P) from land to water, but this is ...
Agricultural diffuse water pollution remains a notable global pressure on water quality, posing risk...
In 2010, the UK government established the Demonstration Test Catchment (DTC) initiative to evaluate...
peer-reviewedHigh-resolution water quality monitoring indicates recurring elevation of stream phosph...
Publication history: Accepted - 13 September 2022; Published online - 30 September 2022Passive samp...