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Publication Modelling impacts of atmospheric deposition and temperature on long-term DOC trends
ECN and the Forest Level II monitoring network are the UK’s only source of information on long-term change in soil water chemistry. In this study, soil solution chemistry data from three upland ECN sites and three UK ICP Forest Level II sites were modelled using the dynamic soil chemistry model, MADOC, which simulates long-term changes in carbon and nitrogen cycling and soil acidity. Results suggest that future dissolved organic carbon (DOC) concentrations may exceed preindustrial levels due to nitrogen pollution, which has implications for drinking water catchment management.
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Biodiversity bounces back
A study recently published in Nature and utilising ECN pollution data collected at Rothamsted, demonstrates that grassland biodiversity recovers once atmospheric nitrogen pollution reduces
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Publication Factors influencing the release of dissolved organic carbon and dissolved forms of nitrogen from a small upland headwater during autumn runoff events
This paper asesses the relative importance of the principal factors influencing the release of dissolved organic carbon (DOC) and dissolved forms of nitrogen (N) from a small upland headwater (the Birnie Burn at Glensaugh) during a sequence of autumn runoff events.
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