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Acidification and recovery of aquatic ecosystems in south central Ontario, Canada: regional application of the MAGIC model

机译:加拿大安大略省中南部水生生态系统的酸化和恢复:MAGIC模型的区域应用

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The dynamic model MAGIC was applied to 25 lakes in south-central Ontario, Canada using a regional modelling methodology. Soil and lake water chemistry for each lake catchment was simulated for the period 1850–2050. Sulphate (SO42–) deposition forecasts were derived from recently proposed emission reductions, which correspond roughly to a 50% reduction in SO42– deposition by 2010 from the 2000 baseline. Changes in SO42– deposition had a significant impact on lake chemistry. Simulated lake water chemistry showed a recovery potential under the current deposition scenario; by 2050 concentration levels recovered to values predicted for the early 1900s. Moreover, simulated future lake water chemistry showed significant recovery compared to 1975 levels. However, although regional simulations predict that base cation losses have decreased in recent years, soils in the region will continue to acidify with Ca2+ losses dominating depletion of the exchangeable pool. Base cation losses from the exchangeable pool are currently buffering lakes against the impacts of acid deposition; ultimately base cation inputs into the lakes will decrease as exchangeable base cation pools become depleted. Further emission reductions are necessary to ensure continued recovery from acidification. style="line-height: 20px;">Keywords: regional dynamic model, sulphate, acid neutralising capacity, critical loads, lake chemistry, soil base saturation
机译:使用区域建模方法,将动态模型MAGIC应用于加拿大安大略省中南部的25个湖泊。在1850-2050年期间模拟了每个湖泊流域的土壤和湖泊水化学性质。硫酸盐(SO 4 2 – )的沉积预测是根据最近提出的减排量得出的,其排放量大致相当于SO 4 <从2000年的基准到2010年sup> 2 – 沉积。 SO 4 2-沉积的变化对湖泊化学有重要影响。模拟的湖水化学显示了在当前沉积情况下的恢复潜力;到2050年,浓度水平恢复到1900年代初期的预测值。此外,与1975年的水平相比,模拟的未来湖泊水化学显示出显着的恢复。但是,尽管区域模拟预测近年来碱性阳离子的损失有所减少,但该地区的土壤将继续以Ca 2 + 损失为主的可酸化消耗。可交换池中的碱性阳离子流失目前正在缓冲湖泊以抵御酸沉积的影响;最终,随着可交换碱性阳离子池的枯竭,湖泊中的碱性阳离子输入将减少。必须进一步减少排放量,以确保能够从酸化中持续回收。 style =“ line-height:20px;”> 关键字:区域动态模型,硫酸盐,酸中和能力,关键负荷,湖泊化学,土壤基础饱和度

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