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Changes in point and diffuse source phosphorus inputs to the River Frome (Dorset, UK) from 1966 to 2006
Authors:Michael J Bowes  Jim T Smith  Colin Neal
Affiliation:a Centre for Ecology and Hydrology, Maclean Building, Crowmarsh Gifford, Wallingford, Oxfordshire, OX10 8BB, UK
b School of Earth and Environmental Sciences, Burnaby Building, University of Portsmouth, Portsmouth PO1 3QL, UK
c Wessex Water Services Ltd., Claverton Down, Bath, BA2 7WW, UK
Abstract:Changes in the relationship between soluble reactive phosphorus (SRP) concentration and river flow between 1966 and 2006 were assessed for the River Frome, UK using the recently developed Load Apportionment Model. The resulting source load estimates gave good agreement with known changes within the catchment. The model indicated an increase in point source contribution to the total river load from 46% to 62% between 1970 and 1985. This corresponded with the population increase within the catchment during that time. The predicted mean SRP load was highest between 1996 and 2000 (30 t y− 1), with 49% coming from point sources. Despite no lowering in population or major changes in agricultural practice, the model predicted a reduced load of 18.1 t y− 1 for the period 2001 to 2005, due mainly to a decrease in point source inputs from 14.6 t y− 1 to 6.1 t y− 1 (equivalent to 34% of the total load). This prediction matches the major improvements in sewage treatment that occurred within the catchment in 2002. This study thus provides a major validation of the Load Apportionment Model. The model provides an effective and rapid method of determining past changes in phosphorus sources, based entirely on the P concentration - flow relationship: critically, it does not require any historical information on land use, fertiliser application rates, topography, soil types and sewage inputs. Further decreases in SRP concentration in the River Frome during the algal growing season would be best achieved by further reductions of STW inputs.
Keywords:Eutrophication  Source apportionment  Agriculture  Sewage  Nutrient  Load Apportionment Model  Chalk stream  Long term monitoring
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