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Effects of broadleaf woodland cover on stream water chemistry and risk assessments of streamwater acidification in acid-sensitive catchments in the UK

机译:在英国对酸敏感的流域,阔叶林地覆盖对溪流水化学的影响和溪流酸化的风险评估

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Streamwater was sampled at high flows from 14 catchments with different (0-78%) percentages of broadleaf woodland cover in acid-sensitive areas in the UK to investigate whether woodland cover affects streamwater acidification. Significant positive correlations were found between broadleaf woodland cover and streamwater NO_3 and Al concentrations. Streamwater NO_3 concentrations exceeded non-marine SO_4 in three catchments with broadleaf woodland cover ≥50% indicating that NO_3 was the principal excess acidifying ion in the catchments dominated by woodland. Comparison of calculated streamwater critical loads with acid deposition totals showed that 11 of the study catchments were not subject to acidification by acidic deposition. Critical loads were exceeded in three catchments, two of which were due to high NO_3 concentrations in drainage from areas with large proportions of broadleaved woodland. The results suggest that the current risk assessment methodology should protect acid-sensitive catchments from potential acidification associated with broadleaf woodland expansion.
机译:在英国酸敏感地区的14个集水区中,阔叶林地的百分比不同(0-78%),以高流量对溪流进行了采样,以调查林地的覆盖度是否影响溪水的酸化。阔叶林地覆盖物与溪水NO_3和Al浓度之间存在显着的正相关。在阔叶林地覆盖率≥50%的三个流域中,河流水中NO_3的浓度超过了非海洋SO_4,表明NO_3是林地为主的流域中主要的过量酸化离子。计算出的河水临界负荷与酸沉降总量的比较表明,有11个研究流域没有通过酸沉降进行酸化。在三个流域中超过了临界负荷,其中两个是由于阔叶林比例较大的地区的排水中NO_3浓度高所致。结果表明,当前的风险评估方法应保护对酸敏感的流域,使其免受与阔叶林地扩张相关的潜在酸化的影响。

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