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The effect of changes in natural and anthropogenic deposition on modelling recovery from acidification

机译:自然和人为沉积的变化对酸化模型恢复的影响

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The multi-layer dynamic soil chemistry SAFE model was used to study the dynamics of recovery in the F1 catchment at Lake G?rdsj?n, Sweden. The influence of (1) sulphate adsorption, and (2) changes in marine deposition, on model predictions of recovery was studied. Sulphate adsorption/desorption in SAFE is modeled by an isotherm in which sulphate adsorption is dependent on both the sulphate concentration and the pH in the soil solution. This isotherm was parameterised for the B-horizon of F1 for the sulphate concentration range 10–260 m mol-1 and the pH range 3.8–5.0. Sulphate adsorption/desorption as the only soil process involving sulphate is adequate to predict sulphate in run-off at F1. Adding the process caused time-delays in sulphate concentration in run-off of only 1-2 years, which was much shorter than previously seen in the adjacent G1 catchment. The location of Lake G?rdsj?n, approximately 15 km inland from the Swedish west coast, ensures that the marine deposition to the area is high. Model output showed that the temporal variation in marine deposition has a considerable impact on the run-off chemistry. Such changes in marine deposition are difficult to foresee and their influence on modelled run-off chemistry can be large when soils start to recover as the previously high concentrations of anthropogenic sulphate in the soil solution decrease. style="line-height: 20px;">Keywords: climate change, dynamic modelling, run-off chemistry, sea-salt effect, soil and water acidification, sulphate adsorption
机译:运用多层动态土壤化学SAFE模型研究了瑞典Grdsj?n湖F1流域的恢复动力学。研究了(1)硫酸盐吸附和(2)海洋沉积物变化对采收率模型预测的影响。 SAFE中硫酸盐的吸附/解吸是通过等温线模拟的,其中硫酸盐的吸附取决于土壤溶液中硫酸盐的浓度和pH。对于硫酸盐浓度范围为10–260 m mol -1 和pH范围为3.8–5.0的F1的B横坐标,该等温线参数化。硫酸盐吸附/解吸是唯一涉及硫酸盐的土壤过程,足以预测F1径流中的硫酸盐。加上这一过程后,径流中硫酸盐浓度的时间延迟仅为1-2年,这比之前在相邻的G1流域所见的时间要短得多。 G?rdsj?n湖的位置距瑞典西海岸内陆约15公里,可确保该区域的海洋沉积量很高。模型输出表明,海洋沉积物的时间变化对径流化学有很大影响。这种海洋沉积物的变化很难预见,当土壤开始恢复时,由于先前土壤溶液中高浓度的人为硫酸盐含量降低,它们对模拟径流化学的影响可能很大。 style =“ line -height:20px;“> 关键字:气候变化,动态建模,径流化学,海盐效应,土壤和水酸化,硫酸盐吸附

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