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首页> 外文期刊>Biogeochemistry >Freeze-thaw cycles of Arctic thaw ponds remove colloidal metals and generate low-molecular-weight organic matter
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Freeze-thaw cycles of Arctic thaw ponds remove colloidal metals and generate low-molecular-weight organic matter

机译:北极解冻池的冻融循环消除胶体金属并产生低分子量的有机物

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摘要

High-latitude boreal and arctic surface/inland waters contain sizeable reservoirs of dissolved organic matter (DOM) and trace elements (TE), which are subject to seasonal freezing. Specifically, shallow ponds and lakes in the permafrost zone often freeze solid, which can lead to transformations in the colloidal and dissolved fractions of DOM and TE. Here, we present results from experimental freeze-thaw cycles using iron (Fe)- and DOM-rich water from thaw ponds situated in Stordalen and Storflaket palsa mires in northern Sweden. After ten cycles of freezing, 85% of Fe and 25% of dissolved organic carbon (DOC) were removed from solution in circumneutral fen water (pH 6.9) but a much smaller removal of Fe and DOC (& 7%) was found in acidic bog water (pH 3.6). This removal pattern was consistent with initial supersaturation of fen water with respect to Fe hydroxide and a lack of supersaturation with any secondary mineral phase in the bog water. There was a nearly two- to threefold increase in the low-molecular-weight (LMW) fraction of organic carbon (OC) and several TEs caused by the repeated freeze-thaw cycles. Future increases in the freeze-thaw frequency of surface waters with climate warming may remove up to 25% of DOC in circumneutral organic-rich waters. Furthermore, an increase of LMW OC may result in enhanced carbon dioxide losses from aquatic ecosystems since this fraction is potentially more susceptible to biodegradation.
机译:高纬度的北极和北极表面/内陆水域含有可溶解的有机物(DOM)和痕量元素(TE)的大量储存器,其受季节性冷冻。具体而言,多年冻土区中的浅池塘和湖泊经常冻结固体,这可能导致Dom和Te的胶体和溶解级分中的转化。在这里,我们使用Iron(Fe)的实验冻融循环和来自瑞典北部的Stordalen和Storflaket Palsa Mires的铁路池塘的实验冻融循环的结果。在冻结的十个循环中,将85%的Fe和25%的溶解有机碳(DOC)从圆周芳株水(pH6.9)中除去溶液,但除去Fe和Doc(& 7%)较小。发现在酸性沼水中(pH3.6)。这种去除模式与FEN水相对于Fe氢氧化物的初始过饱和,并且缺乏堵塞水中的任何次级矿物相的过饱和。有机碳(OC)的低分子量(LMW)和由重复的冻融循环引起的几种特斯的几乎有两点升高。随着气候变暖的地表水域的冻融频率的未来增加可能会在含铅有机物的水域中消除高达25%的Doc。此外,LMW OC的增加可能导致水生态系统的二氧化碳损失增强,因为该部分可能更容易生物降解。

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