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Climate and permafrost effects on the chemistry and ecosystems of High Arctic Lakes

机译:气候和多年冻土对高北极湖化学和生态系统的影响

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摘要

Permafrost exerts an important control over hydrological processes in Arctic landscapes and lakes. Recent warming and summer precipitation has the potential to alter water availability and quality in this environment through thermal perturbation of near surface permafrost and increased mobility of previously frozen solutes to Arctic freshwaters. We present a unique thirteen-year record (2003–16) of the physiochemical properties of two High Arctic lakes and show that the concentration of major ions, especially SO4 2−, has rapidly increased up to 500% since 2008. This hydrochemical change has occurred synchronously in both lakes and ionic ratio changes in the lakes indicate that the source for the SO4 2− is compositionally similar to terrestrial sources arising from permafrost thaw. Record summer temperatures during this period (2003–16) following over 100 years of warming and summer precipitation in this polar desert environment provide likely mechanisms for this rapid chemical change. An abrupt limnological change is also reflected in the otolith chemistry and improved relative condition of resident Arctic char (Salvelinus alpinus) and increased diatom diversity point to a positive ecosystem response during the same period.
机译:多年冻土对北极景观和湖泊的水文过程具有重要的控制作用。最近的变暖和夏季降水有可能通过近地表永久冻土的热扰动以及先前冻结的溶质向北极淡水的流动性增加而改变该环境中的水供应和水质。我们提供了两个高北极湖的十三年(2003-16年)的独特物理化学特性记录,并显示主要离子(尤其是SO4 2-)的浓度已迅速提高至500%自2008年以来。这两个湖泊的水化学变化同步发生,湖泊中离子比率的变化表明SO4 2-−sup>的来源在结构上与永久冻土融化相似。经过100多年的变暖之后,这段时期(2003-16年)的夏季气温创下纪录,而在这种极地沙漠环境中的夏季降水为这种快速化学变化提供了可能的机制。耳石化学的突然变化也反映在耳石化学上,居民北极红点鲑(Salvelinus alpinus)相对条件的改善和硅藻多样性的增加也表明同一时期的生态系统反应积极。

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