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A Comparison of Loch Chemistry from 1955 and 1999 in the Cairngorms,N.E. Scotland
Authors:Helliwell  R. C.  Wright  R. F.  Evans  C. D.  Jenkins  A.  Ferrier  R. C.
Affiliation:(1) Macaulay Land Use Research Institute, Craigiebuckler, Aberdeen, U.K.;(2) Norwegian Institute for Water Research, Kjelsås, Oslo, Norway;(3) Centre for Ecology and Hydrology, Wallingford, Oxon, U.K
Abstract:The Cairngorms in north-east Scotland is remote from pollutant sources although it currently receives ca. 10 kg ha1 yr1 S and ca. 11 kg ha1 yr1 N deposition from the atmosphere.In 1955, 15 lochs (lakes) at a range of altitudes were sampled and analysed for major ion concentrations. A new survey of these and an additional 23 lochs and their catchment soils was conducted in 1999 to determine the impact of acid deposition, and the changes in loch chemistry since the 1955 survey. The bedrock geology of this region has a strong influence on the loch chemistry. Surface waters were generally more acidic in high altitude areas due to predominantly poorly buffered, thin alpine soils developed on granitic parent material (mean acid neutralising capacity (ANC) for 23 lochs = 30 mgreq L1). At lower altitudes where the geology is dominated by Dalradian metamorphic rocks surface waters are comparatively base rich and have higher ANC (mean ANC for 15 lochs = 157 mgreq L1). Surface water nitrate concentrations show a negative relationship with soil C:N status, in that higher nitrate only occurs at low soil C:N ratios. A comparison of data for 1955 and 1999 shows that sulphate concentrations are significantly lower (67.8 and 47.5 mgreq L1, respectively), and pH has improved (pH 5.6 and 5.9) in response to decreased S deposition since the mid 1970s. However, mean nitrate concentrations were found to increase from 2.48 mgr>eq L1 in 1955 to 5.65 mgreq L1 in 1999. Differences in the sampling and laboratory methods from 1955 and 1999 are acknowledged in the interpretation of data.
Keywords:acidification  catchment attributes  geology  Scotland  surface water chemistry
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