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Particulate organic and dissolved inorganic carbon stable isotopic compositions in Taylor Valley lakes, Antarctica: the effect of legacy

机译:南极泰勒谷湖中的颗粒有机和溶解无机碳稳定同位素组成:遗留物的影响

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摘要

In perennially ice-covered lakes of Taylor Valley, Antarctica, “legacy”, a carryover of past ecosystem events, has primarily been discussed in terms of nutrient and salinity concentrations and its effect on the current ecology of the lakes. In this study, we determine how residual pools of ancient carbon affect the modern carbon abundance and character in the water columns of Lakes Fryxell, Hoare, and Bonney. We measure the stable carbon isotopic compositions and concentrations of particulate organic carbon (POC) and dissolved inorganic carbon (DIC) in the water column of these lakes over four seasons (1999–2002). These data are presented and compared with all the previously published Taylor Valley lacustrine carbon stable isotopic data. Our results show that the carbon concentrations and isotopic compositions of the upper water columns of those lakes are controlled by modern processes, while the lower water columns are controlled to varying degrees by inherited carbon pools. The water column of the west lobe of Lake Bonney is dominated by exceptionally high concentrations of DIC (55,000–75,000 μmol l−1) reflecting the long period of ice-cover on this lake. The east lobe of Lake Bonney has highly enriched δ13CDIC values resulting from paleo-brine evaporation effects in its bottom waters, while its high DIC concentrations provide geochemical evidence that its middle depth waters are derived from West Lake Bonney during a hydrologically connected past. Although ancient carbon is present in both Lake Hoare and Lake Fryxell, the δ13CDIC values in bottom waters suggest dominance by modern primary productivity-related processes. Anaerobic methanogenesis and methanotrophy are also taking place in the lower water column of Lake Fryxell with enough methane, oxidized anaerobically, to contribute to the DIC pool. We also show how stream proximity and high flood years are only a minor influence on the carbon isotopic values of both POC and DIC. The Taylor Valley lake system is remarkably stable in both inter-lake and intra-lake carbon dynamics. Keywords Carbon isotopes - Dissolved inorganic carbon - Particulate organic carbon - Lakes - Antarctica Handling editor: K. Martens
机译:在南极州泰勒河谷常年被冰覆盖的湖泊中,“遗产”是对过去生态系统事件的延续,主要从营养和盐分浓度及其对湖泊当前生态的影响方面进行了讨论。在这项研究中,我们确定了古碳残留池如何影响弗莱克塞尔湖,霍阿雷湖和邦尼湖水柱中的现代碳丰度和特征。我们测量了四个季节(1999-2002年)这些湖水柱中稳定的碳同位素组成以及颗粒有机碳(POC)和溶解性无机碳(DIC)的浓度。呈现这些数据并将其与所有先前发布的泰勒谷湖碳稳定同位素数据进行比较。我们的结果表明,这些湖泊的上层水柱的碳浓度和同位素组成是由现代过程控制的,而下层水柱则由继承的碳库在不同程度上控制。邦尼湖西瓣的水柱以高浓度的DIC(55,000–75,000μmoll -1 )为主,反映了该湖上长时间的积冰。邦尼湖的东波因其底部水中的古盐水蒸发作用而产生了高度富集的δ 13 C DIC 值,而其高DIC浓度提供了其地球化学证据中深度水域是在过去的水文联系中从西邦尼湖中提取的。尽管Hoare湖和Fryxell湖中都存在着古老的碳,但是底水中的δ 13 C DIC 值表明现代初级生产力相关过程具有优势。厌氧甲烷生成和甲烷氧化也发生在弗莱克塞尔湖的较低水位,其中有足够的甲烷(厌氧地被氧化)形成DIC库。我们还显示了河流接近度和高洪水年对POC和DIC的碳同位素值的影响很小。泰勒谷湖系在湖间和湖内碳动力学方面都非常稳定。关键词碳同位素-溶解的无机碳-颗粒有机碳-湖泊-南极洲处理编辑:K. Martens

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