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首页> 外文期刊>Ambio: A Journal of the Human Environment >Terrestrial Ecosystem Recovery - Modelling the Effects of Reduced Acidic Inputs and Increased Inputs of Sea-salts Induced by Global Change
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Terrestrial Ecosystem Recovery - Modelling the Effects of Reduced Acidic Inputs and Increased Inputs of Sea-salts Induced by Global Change

机译:陆地生态系统恢复-模拟全球变化引起的酸性输入减少和海盐输入增加带来的影响

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摘要

The reduced emissions of acidifying sulfur and nitrogen in Europe since the late 1970s will be further reduced when the Gothenburg protocol is fully implemented by 2010. Here we address the consequences for the recovery of acidified terrestrial ecosystems using the acidification model MAGIC applied to 3 large-scale "clean rain" experiments, the so-called roof experiments at Risdalsheia, Norway; Gardsjon, Sweden, and Klosterhede, Denmark. Implementation of the Gothenburg protocol will initiate recovery of the soils at all 3 sites by rebuilding base saturation. The rate of recovery is small and base saturation increases less than 5 percent over the next 30 years. A climate-induced increase in storm severity will increase the sea-salt input to the ecosystems. This will provide additional base cations to the soils and more than double the rate of the recovery, but also lead to strong acid pulses following high sea-salt inputs as the deposited base cations exchange with the acidity stored in the soil. Future recovery of soils and runoff at acidified catchments will thus depend on the amount and rate of reduction of acid deposition, and in the case of systems near the coast, the frequency and intensity of sea-salt episodes as well.
机译:当哥德堡议定书于2010年全面实施后,自1970年代末以来欧洲减少的酸化硫和氮的排放量将进一步减少。在这里,我们使用MAGIC酸化模型对3个大型海洋生物系统的酸化陆地生态系统进行恢复,以解决其后果。大规模的“清洁降雨”实验,即挪威Risdalsheia的所谓屋顶实验;瑞典的Gardsjon和丹麦的Klosterhede。哥德堡协议的实施将通过重建基础饱和度来启动所有3个地点的土壤恢复。回收率很小,并且在未来30年中,基础饱和度增加不到5%。由气候引起的风暴强度的增加将增加向生态系统的海盐输入。这将为土壤提供额外的碱性阳离子,并使回收率增加一倍以上,而且由于沉积的碱性阳离子与土壤中储存的酸度交换,在输入大量海盐后还会导致强烈的酸脉冲。因此,酸化流域未来土壤的恢复和径流将取决于酸沉降减少的量和速率,对于沿海地区的系统,还取决于海盐发作的频率和强度。

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