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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Chemical weathering across the western foreland of the Greenland Ice Sheet
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Chemical weathering across the western foreland of the Greenland Ice Sheet

机译:在格陵兰冰盖西部的西部化学风化

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Proglacial streams deliver melt water and chemical weathering products, including nutrients and radiogenic isotopes, from continental ice sheets to the ocean. Weathering products are also delivered to the ocean in non-glacial streams that form following ice sheet retreat and are disconnected from ice sheet meltwater by hydrologic divides. If weathering reactions differ in non-glacial and proglacial stream catchments, the streams could deliver different types and magnitudes of solutes to the ocean, depending on relative discharge volumes. Unlike proglacial streams, however, little is known of non-glacial stream solute compositions or discharge. Here we show specific discharges are similar from a proglacial stream draining the Greenland Ice Sheet (GrIS) with several streams disconnected from the ice sheet. We also evaluate weathering reactions across a 170-km transect in western Greenland that contains one proglacial stream draining the GrIS, and two coastal (ice distal) and three inland (ice proximal) areas with non-glacial streams. Non-glacial streams exhibit solute compositions and offsets between dissolved and bedload Sr isotope ratios that indicate weathering increases toward the coast with exposure age and precipitation. Major element mass balance calculations show weathering reactions shift from predominately carbonic acid weathering of carbonate minerals inland near the ice sheet to predominately sulfuric acid weathering of carbonate minerals near the coast. Strontium concentrations and isotopic ratios of the proglacial stream reflect mixing of at least two subglacial sources and minor in-stream weathering that consumes CO2. About 5 times less CO2 is consumed per liter in the proglacial than inland non-glacial streams; however, arid conditions inland suggest limited discharge from the ungauged inland streams leads to less total CO2 weathering than proglacial stream. One coastal area consumes less CO2 per liter than the proglacial stream and another coastal are
机译:Prooglacial Streams将熔融水和化学风化产品提供,包括营养物质和辐射性同位素,从大陆冰盖到海洋。风化产品还送到海洋中,以非冰水流,形成冰盖撤退后,通过水文分界与冰盖熔融水断开。如果风化反应在非冰川和前透明流流域的不同之处,则该流可以根据相对放电体积提供对海洋的不同类型和大小的溶质。然而,与前透晶流不同,少于冰川流溶质组合物或出院。在这里,我们展示了特定的放电类似于排出格陵兰冰盖(GRIS)的ProGlacial流类似于与冰盖断开连接的几个溪流。我们还评估了格陵兰西部横跨西陵地区170公里的横断面的风化反应,其中包含一个排放GRIS的一个翻译流,以及两个沿海(冰)和三个内陆(冰近端)区域,具有非冰川流。非冰川流在溶解和床单Sr同位素比之间表现出溶质组合物和偏移,其表明风化与暴露年龄和沉淀的沿海沿海地。主要元素质量平衡计算显示岩石矿物在冰块附近的碳酸盐矿物的主要碳酸碳酸风化的风化反应,以主要是碳酸盐矿物靠近海岸附近的硫酸风化。锶浓度和平原物流的同位素比例反映了至少两种底纤维源和少量碎风化的混​​合,消耗CO 2。在Proglacial中每升比内陆非冰川溪流量少约5倍的二氧化碳;然而,干旱条件内陆建议从未凝固的内陆溪流排放有限,导致总二氧化碳的总二氧化碳较少,而不是proglacial流。一个沿海地区每升消耗较少的二氧化碳,而不是Proglacial Stream,另一个沿海

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