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Challenges in assessing biological recovery from acidification in Swedish lakes

机译:评估瑞典湖泊酸化生物回收率方面的挑战

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摘要

Since the 1980s, Swedish lakes have in general become less acidified. Assessment of biological recovery is, however, hampered by poor pre-acidification data, confounding effects of climate change, and few lakes with annual sampling of fish and other organisms. Only three critically acidified, but non-limed, lakes had two decades of fish monitoring. The lakes had not yet recovered to pre-industrial chemical targets. Fish had low species richness compared to other organism groups. Roach (Rutilus rutilus) and/or European perch (Perca fluviatilis) were the dominant fish species, and the acid-sensitive roach had been lost from one of the lakes. Calcium decreased, possibly approaching pre-acidification concentrations, but exceeded minimum levels needed to sustain some Daphnia species. High or increasing levels of total organic carbon, likely due to reduced acidification and climate change, might influence the biological communities in unexpected ways, for example, facilitating more frequent occurrence of the invasive algae Gonyostomum semen.Electronic supplementary materialThe online version of this article (doi:10.1007/s13280-014-0559-y) contains supplementary material, which is available to authorized users.
机译:自1980年代以来,瑞典湖泊的酸化程度通常降低。但是,由于不良的预酸化数据,气候变化的混杂影响以及几乎没有对鱼类和其他生物进行年度采样的湖泊,对生物恢复的评估受到了阻碍。只有三个临界酸化但非石灰的湖泊进行了二十年的鱼类监测。湖泊尚未恢复到工业化前的化学目标。与其他生物体相比,鱼类的物种丰富度较低。蟑螂(Rutilus rut​​ilus)和/或欧洲鲈鱼(Perca fluviatilis)是主要鱼类,对酸敏感的蟑螂已经从其中一个湖泊中消失。钙减少,可能接近酸化前的浓度,但超过维持某些水蚤物种所需的最低水平。总有机碳含量高或增高(可能是由于酸化减少和气候变化减少)可能以意想不到的方式影响生物群落,例如,促进侵入性藻类Gonyostomum精液的更频繁发生。电子补充材料本文的在线版本( doi:10.1007 / s13280-014-0559-y)包含补充材料,授权用户可以使用。

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