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A Novel Environmental Quality Criterion for Acidification in Swedish Lakes - An Application of Studies on the Relationship Between Biota and Water Chemistry

机译:瑞典湖泊酸化的新型环境质量判据—生物群与水化学关系研究的应用

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The recovery from acidification has led to the demand for more precise criteria for classification of acidification.The Swedish Environmental Protection Agency has revised Sweden's Ecological Quality Criteria for acidification to improve the correlation between the chemical acidification criteria and biological effects.This paper summarises the most relevant findings from several of the studies commissioned for this revision.The studies included data on water chemistry in 74 reference lakes in southern Sweden with data on fish in 61 of the lakes,as well as data on littoral fauna in 48 lakes.We found that the acidity variable most strongly correlated to the biota was the median pH from the current year.Our results probably do not reflect the mechanisms behind the negative effects of acidity on the biota,but are fully relevant for evaluation of monitoring data.The biogeochemical models used for predicting acidification reference conditions generate a pre-industrial buffering capacity.In order to get an ecologically more relevant criteria for acidification based on pH,we transferred the estimated change in buffering capacity into a corresponding change in pH.A change of 0.4 units was defined as the threshold for acidification.With this criterion a considerably lower number of Swedish lakes were classified as acidified when compared with the present Ecological Quality Criteria.
机译:酸化的恢复导致对更精确的酸化分类标准的需求。瑞典环境保护局修订了瑞典的酸化生态质量标准,以改善化学酸化标准与生物学效应之间的相关性。本文总结了最相关的这项研究委托进行的几项研究的结果。这些研究包括瑞典南部74个参考湖泊的水化学数据,61个湖泊的鱼类数据以及48个湖泊的沿海动物群数据。与生物群最相关的酸度变量是当年的中值pH。我们的结果可能没有反映酸度对生物群的负面影响的机制,但与评估监测数据完全相关。预测酸化参考条件会产生工业化前的缓冲能力。为了获得基于pH值在生态上更相关的酸化标准,我们将估计的缓冲能力变化转换为相应的pH值变化.0.4单位的变化被定义为酸化的阈值。与目前的生态质量标准相比,瑞典的湖泊被归类为酸化的。

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