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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The effect of permafrost, vegetation, and lithology on Mg and Si isotope composition of the Yenisey River and its tributaries at the end of the spring flood
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The effect of permafrost, vegetation, and lithology on Mg and Si isotope composition of the Yenisey River and its tributaries at the end of the spring flood

机译:春季洪水结束时多年冻土,植被和岩性对叶尼西河及其支流的镁和硅同位素组成的影响

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This work focuses on the behavior of the stable Mg and Si isotope compositions of the largest Arctic river, the Yenisey River and 28 of its major and minor tributaries during the spring flood period. Samples were collected along a 1500 km latitudinal profile covering a wide range of permafrost, lithology, and vegetation. Despite significant contrasts in the main physico-geographical, climate, and lithological parameters of the watersheds, the isotope composition of both dissolved Mg and Si was found to be only weakly influenced by the degree of the permafrost coverage, type of vegetation (forest vs. tundra), and lithology (granites, basalts, carbonates or terrigenous rocks). This observation is generally consistent with the lack of chemical uptake of Mg and Si by soil mineral formation and vegetation during the early spring. The radiogenic Sr isotope composition of the Yenisey and its tributaries varied within a narrow range (0.708 <= Sr-87/Sr-86 <= 0.711) reflecting the dominance of Phanerozoic rock weathering and/or atmospheric deposition on these compositions. The Mg and Si isotopic compositions of riverine samples reflect two main processes with distinct isotopic signatures. First, isotopically heavier Mg (delta Mg-26 = -1.0 +/- 0.2 parts per thousand) and isotopically lighter Si (delta Si-30 = 1.0 +/- 0.25 parts per thousand) are added to the waters by river suspended matter dissolution and leaching from vegetation biomass/topsoil litter. Second, isotopically lighter Mg (delta Mg-26 = -1.5 to -1.75 parts per thousand) and isotopically heavier Si (delta Si-30 = 1.75-2.0 parts per thousand) are delivered to the Yenisey's tributaries from deep underground water feeding the rivers via taliks. This lighter Mg and heavier Si isotopic composition is interpreted to originate from Precambrian dolomite dissolution and aluminosilicate dissolution coupled with authigenic mineral precipitation, respectively, in deep underground water reservoirs. Taking account of the isotopic composition evolution over the course of the year established earlier on mono-lithological watersheds of the Yenisey basin, the average annual isotopic signatures of the Yenisey river arriving to the Arctic Ocean are estimated to be delta Mg-26 = -1.58 +/- 0.30 parts per thousand and delta Si-30 = +1.60 +/- 0.25 parts per thousand. As the Yenisey is the largest river feeding the Arctic Ocean and as it samples a large variety of environments and lithologies, these values may be reasonable estimates for the average Mg and Si isotopic composition of the dissolved riverine flux to the Arctic Ocean. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作着眼于春季洪水期间最大的北极河,叶尼西河及其28条主要支流和次要支流的稳定的Mg和Si同位素组成。沿1500 km的纬度剖面采集样品,覆盖了广泛的多年冻土,岩性和植被。尽管该流域的主要物理地理,气候和岩性参数存在显着差异,但已发现溶解的Mg和Si的同位素组成仅受多年冻土覆盖程度,植被类型(森林vs.苔原)和岩性(花岗岩,玄武岩,碳酸盐岩或陆源岩)。该观察结果总体上与早春土壤矿物形成和植被缺乏对镁和硅的化学吸收有关。叶尼西河及其支流的放射性Sr同位素组成在很窄的范围内变化(0.708 <= Sr-87 / Sr-86 <= 0.711),反映了这些古生代岩石风化和/或大气沉积的优势。河流样品的Mg和Si同位素组成反映了具有不同同位素特征的两个主要过程。首先,通过河流悬浮物溶解,将同位素较重的Mg(δMg-26 = -1.0 +/- 0.2千分之一)和同位素较轻的Si(δSi-30 = 1.0 +/- 0.25千分之一)添加到水中和从植被生物量/表层垃圾中浸出。第二,同位素较轻的Mg(δMg-26 = -1.5至-1.75千分之几)和同位素较重的Si(δSi-30 = 1.75-2.0千分之几)是从深层地下水输送到耶尼西支流的通过taliks。较轻的Mg和较重的Si同位素组成被解释为分别源于深层地下水水库中的前寒武纪白云岩溶解和铝硅酸盐溶解以及自生矿物沉淀。考虑到早年在叶尼西盆地单岩性流域上确定的同位素组成演变,估计到达北冰洋的叶尼西河的年均同位素特征为Mg-26 = -1.58 +/- 0.30千分之几和δSi-30 = +1.60 +/- 0.25千分之1。由于叶尼西河是北冰洋的最大河流,并且它对各种各样的环境和岩性进行采样,因此这些值可能是溶解的北冰洋河流通量的平均Mg和Si同位素组成的合理估计。 (C)2016 Elsevier Ltd.保留所有权利。

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