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CO2 concentrations in perennially ice-covered lakes of Taylor Valley, Antarctica

机译:南极泰勒河谷常年被冰覆盖的湖泊中的二氧化碳浓度

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Lakes in Taylor Valley, southern Victoria Land,Antarctica, are unusual in that they areperennially covered by a 3–5 m thick ice layer.Previous work on gas concentrations in theselakes has shown that the surface waters aresupersaturated with respect to O2,N2O, as well as the noble gases. Our datashow that the dissolved CO2 (CO2(aq))concentrations, calculated from pH andΣCO2, can be highly undersaturatedat shallow depths of the lakes. CO2partial pressure values (pCO2) are as lowas 10−4.3 atm and 10−4.2 atm in theeast and west lobes of Lake Bonney,respectively, and 10−3.8 atm in LakeHoare. CO2(aq) depletion occurred only inthe uppermost part of the water column, inassociation with elevated primary productivity(PPR). The upward diffusion of CO2(aq)from the aphotic zone, and the annual input ofCO2 via glacial meltwater can notreplenish the amount of CO2(aq) annuallylost to primary productivity in the uppermostmeters of the water column. Calcification is alimited source of CO2(aq), since the lakesare undersaturated with respect to calcitethrough portions of the austral summer.Preliminary respiration rates have been used toobtain an annual inorganic carbon balance.Further down in the water column, at the sitesof the deep-water maximum in primary production(PPRmax), which in Lakes Bonney andFryxell is associated with nutrient gradients,CO2(aq) is not undersaturated. A largeupward flux from CO2-supersaturatedaphotic waters provides a surplus ofCO2(aq) at the PPRmax. Lake Fryxell,unlike the other lakes, is supersaturated withCO2(aq) throughout the entire water column.
机译:南极维多利亚州南部的泰勒河谷的湖泊常年被3–5 m厚的冰层覆盖,因此与众不同。先前对这些湖中气体浓度的研究表明,地表水相对于O2是过饱和的 ,N2 O以及稀有气体。我们的数据表明,从pH和ΣCO2计算得出的溶解的CO2 (CO2(aq))浓度在湖泊浅层深度可能会高度不饱和。邦尼湖的东,西两瓣的CO2分压值(pCO2 )分别低至10−4.3 atm和10−4.2 atm,低至10−3.8 at LakeHoare中的atm。 CO2(aq)耗竭仅发生在水柱的最上部,与初级生产力(PPR)升高相关。 CO2(aq)从无光带向上扩散,每年通过冰川融化水输入的CO2 无法弥补每年损失的CO2(aq)到最高生产力的最高水平。水柱。钙化是CO2(aq)的有限来源,因为相对于南方夏季方解石的部分湖泊而言,湖泊是不饱和的。已使用初步呼吸速率获得了年度无机碳平衡。在Bonney和Fryxell湖中,初级生产的深水最大值(PPRmax )的位置与养分梯度有关,而CO2(aq)并未饱和。来自CO2 过饱和无光水的大通量在PPRmax 处提供了过量的CO2(aq)。与其他湖泊不同,Fryxell湖在整个水柱中都充满了CO2(aq)

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