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Iorphology-Dependent Water Budgets and Nutrient Fluxes in Arctic Thaw Ponds

机译:北极融化池塘中与形态有关的水平衡和养分通量

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Thaw ponds on the Arctic Coastal Plain of Alaska are productive ecosystems, providing habitat and food resources for many fish and bird species. Permafrost in this region creates unique pond morphologies: deep troughs, shallow low-centred polygons (LCPs) and larger coalescent ponds. By monitoring seasonal trends in pond volume and chemistry, we evaluated whether pond morphology and size affect water temperature and desiccation, and nitrogen (N) and phosphorus (P) fluxes. Evaporation was the largest early-summer water flux in all pond types. LCPs dried quickly and displayed high early-summer nutrient concentrations and losses. Troughs consistently received solute-rich subsurface inflows, which accounted for 12 to 42 per cent of their volume and may explain higher P in the troughs. N to P ratios increased and ammonium concentrations decreased with pond volume, suggesting that P and inorganic N availability may limit ecosystem productivity in older, larger ponds. Arctic summer temperatures will likely increase in the future, which may accelerate mid-summer desiccation. Given their morphology, troughs may remain wet, become warmer and derive greater nutrient loads from their thawing banks. Overall, seasonal- to decadal-scale warming may increase ecosystem productivity in troughs relative to other Arctic Coastal Plain ponds. Copyright © 2014 John Wiley & Sons, Ltd.
机译:阿拉斯加北极沿海平原上的解冻池塘是生产性生态系统,为许多鱼类和鸟类提供了栖息地和食物资源。该地区的多年冻土形成独特的池塘形态:深槽,浅低中心多边形(LCP)和较大的聚结池塘。通过监测池塘体积和化学成分的季节性趋势,我们评估了池塘的形态和大小是否会影响水温和干燥度以及氮(N)和磷(P)的通量。蒸发是所有池塘类型中最大的初夏水通量。 LCP迅速干燥,并表现出较高的初夏养分浓度和损失。槽始终接收富含溶质的地下流入物,占其体积的12%至42%,可能解释了槽中较高的P。氮与磷的比例随着池塘容量的增加而增加,铵盐浓度降低,这表明磷和无机氮的利用率可能会限制较大的老式池塘的生态系统生产力。未来夏季北极夏季温度可能会升高,这可能会加速仲夏干燥。鉴于其形态,食槽可能保持湿润,变暖并从解冻的堤岸吸收更多的养分。总体而言,相对于其他北极沿海平原池塘,季节到年代际变暖可能会增加水槽内的生态系统生产力。版权所有©2014 John Wiley&Sons,Ltd.

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