首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Critical loads of acidity for surface waters in south-central Ontario, Canada: regional application of the Steady-State Water Chemistry (SSWC) model
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Critical loads of acidity for surface waters in south-central Ontario, Canada: regional application of the Steady-State Water Chemistry (SSWC) model

机译:加拿大安大略省中南部地区地表水的酸性临界负荷:稳态水化学模型的区域应用

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摘要

Critical loads of acidity and the amount by which these critical loads are exceeded by atmospheric deposition (termed "exceedances") were estimated for 1469 lakes from five regions in south-central Ontario, Canada, using single lake chemistry measurements and sulphur deposition data for the period 1976-1999. Based on the Steady-State Water Chemistry (SSWC) model, four of the five regions had low critical loads, which is consistent with the underlying geology (silicate bedrock) and the thin glacial soils in these regions. Sulphur deposition in the study area showed a clear downward trend over the time period, with a decrease of approximately 50% to current levels of approximately 44 meq.m(-2).year(-1). As a result of the declining deposition, the portion of lakes with critical load exceedances has dropped substantially, from 74-82% in the four sensitive regions in 1976 to 11-26% in 1999. The pentile critical load is typically used as a regional target to account for uncertainties, but also to ensure that a sufficient percentage of lakes are protected (95%). This suggests that further reductions in emissions are required to reduce depositions to approximately 34 meq.m(-2).year(-1) (11 kg S.ha(-1).year(-1)) to prevent critical load exceedance.
机译:根据加拿大安大略省中南部五个地区的1469个湖泊的酸度临界负荷和这些临界负荷被大气沉积所超过的量(称为“超标”),使用单一湖泊化学测量结果和硫沉降数据进行了估算。 1976-1999年。根据稳态水化学(SSWC)模型,五个区域中的四个具有较低的临界载荷,这与这些区域的基础地质学(硅酸盐基岩)和薄薄的冰川土壤一致。研究区域中的硫沉积随时间呈明显下降趋势,与当前水平约44 meq.m(-2).year(-1)相比下降了约50%。由于沉积的减少,超过临界负荷的湖泊部分已大大减少,从1976年的四个敏感地区的74-82%下降到1999年的11-26%。目标既要考虑不确定性,又要确保有足够比例的湖泊得到保护(95%)。这表明需要进一步减少排放量以将沉积物减少至约34 meq.m(-2).year(-1)(11 kg S.ha(-1).year(-1)),以防止超出临界负荷。

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