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Insights into combined radiogenic and stable strontium isotopes as tracers for weathering processes in subglacial environments.

机译:深入研究结合放射源和稳定的锶同位素作为冰下环境中风化过程的示踪剂。

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摘要

This study reports stable and radiogenic strontium isotope behaviour in the dissolved load and suspended sediments from the subglacial outflow of the Lemon Creek glacier (Juneau Ice Field, Alaska) over a single melt season. In situ measurements (discharge, total alkalinity, pH and conductivity) are combined with elemental concentrations, X-ray diffraction (XRD) analysis and radiogenic strontium isotope measurements to interpret the variations observed in stable strontium isotopic ratios.\ud\udThe stable Sr isotope composition (88Sr/86Sr ratio expressed as δ88/86Sr, ‰) of the dissolved load averages 0.31 ± 0.05‰, and is heavier than both the suspended sediment 0.18 ± 0.03‰, as well as local bedrocks ~ 0.20 to 0.26‰. We attribute the enrichment of heavier isotopes in the dissolved load to the uptake of lighter Sr isotopes by secondary weathering minerals, driving the dissolved load to heavier values. X-ray diffraction (XRD) analysis confirms the presence of clays in the suspended sediments and thermodynamic modelling suggests the presence of iron oxy-hydroxide phases. Although it is not possible to completely rule out the effect of dissolution of primary minerals in controlling Sr isotopic compositions of the dissolved load, our data indicate that the extent of secondary mineral formation likely plays a significant role. The preferential weathering of minerals such as biotite (consistent with the mineralogical assemblages found in the suspended sediments), as well as the potential presence of radiogenic calcites from metacarbonates (derived from the Yukon-Tanana terrain), may be driving the small seasonal shifts in 87Sr/86Sr of the dissolved load to more radiogenic compositions, from 87Sr/86Sr(DL) = 0.71048 to 0.710647.\ud\udUsing the combination of stable and radiogenic strontium isotopes to investigate weathering processes shows that radiogenic Sr isotopes provide information regarding weathering of primary phases. While the stable Sr isotope data appear to record information regarding the extent of secondary mineral formation, where secondary minerals incorporate the light isotopes, driving the dissolved load to heavy values.
机译:这项研究报告了柠檬河冰川(阿拉斯加朱诺冰场)冰川下流出的溶解负荷和悬浮沉积物中在单个融化季节中稳定且有放射性锶锶的行为。将原位测量(放电,总碱度,pH和电导率)与元素浓度,X射线衍射(XRD)分析和放射性锶同位素测量结合起来,以解释在稳定的锶同位素比中观察到的变化。\ ud \ ud稳定的Sr同位素溶解负荷的平均组成(88Sr / 86Sr比表示为δ88/ 86Sr,‰)平均为0.31±0.05‰,并且比悬浮沉积物0.18±0.03‰和局部基岩的重约0.20至0.26‰。我们将溶解负荷中较重同位素的富集归因于二次风化矿物对较轻的Sr同位素的吸收,从而将溶解负荷推至较重的值。 X射线衍射(XRD)分析证实了悬浮沉积物中粘土的存在,热力学模型表明羟基氧化铁相的存在。尽管不可能完全排除主要矿物的溶解对控制溶解负荷的Sr同位素组成的影响,但我们的数据表明,次要矿物的形成程度可能起着重要作用。黑云母等矿物的优先风化(与悬浮沉积物中发现的矿物学组合相一致),以及潜在的来自代谢产物的放射状方解石的存在(源自于育空塔纳纳地区),可能推动了该地区的小季节变化。从87Sr / 86Sr(DL)= 0.71048到0.710647溶解到更多放射源组合物中的87Sr / 86Sr初级阶段。尽管稳定的Sr同位素数据似乎记录了有关次生矿物质形成程度的信息,但次生矿物质掺入了轻同位素,从而将溶解的负荷推高了值。

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