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Predicting soil acidification trends at Plynlimon using the SAFE model

机译:使用SAFE模型预测Plynlimon的土壤酸化趋势

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The SAFE model has been applied to an acid grassland site, located on base-poor stagnopodzol soils derived from Lower Palaeozoic greywackes. The model predicts that acidification of the soil has occurred in response to increased acid deposition following the industrial revolution. Limited recovery is predicted following the decline in sulphur deposition during the mid to late 1970s. Reducing excess sulphur and NOx deposition in 1998 to 40% and 70% of 1980 levels results in further recovery but soil chemical conditions (base saturation, soil water pH and ANC) do not return to values predicted in pre-industrial times. The SAFE model predicts that critical loads (expressed in terms of the (Ca+Mg+K):Alcrit ratio) for six vegetation species found in acid grassland communities are not exceeded despite the increase in deposited acidity following the industrial revolution. The relative growth response of selected vegetation species characteristic of acid grassland swards has been predicted using a damage function linking growth to soil solution base cation to aluminium ratio. The results show that very small growth reductions can be expected for "acid tolerant" plants growing in acid upland soils. For more sensitive species such as Holcus lanatus, SAFE predicts that growth would have been reduced by about 20% between 1951 and 1983, when acid inputs were greatest. Recovery to c. 90% of normal growth (under laboratory conditions) is predicted as acidic inputs decline.
机译:SAFE模型已应用于酸性草原站点,该站点位于源自下古生代灰黄蜂的基础贫瘠的stagnopodzol土壤上。该模型预测,随着工业革命后酸沉降增加,土壤已经发生酸化。预计在1970年代中期至后期硫磺沉积减少之后,回收率将有限。将1998年过量的硫和NO x 沉积物减少到1980年的40%和70%可以进一步恢复,但是土壤化学条件(碱饱和度,土壤水pH和ANC)不会恢复到预测的值。前工业时代。 SAFE模型预测,尽管沉积酸度增加,但仍未超过在酸性草原群落中发现的六个植被物种的临界负荷(以(Ca + Mg + K):Al crit 比表示)跟随工业革命。使用将生长与土壤溶液的基础阳离子与铝的比例联系起来的损害函数,可以预测酸性草原草地特征的所选植被物种的相对生长响应。结果表明,对于在酸性高地土壤中生长的“耐酸”植物,预期其减幅很小。 SAFE预测,对于更敏感的物种,例如 Holcus lanatus ,当酸的输入量最大时,在1951年至1983年之间,生长将减少约20%。恢复到c。酸性投入下降预计将达到正常增长的90%(在实验室条件下)。

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