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Analytical Method for Measuring Cosmogenic S-35 in Natural Waters

机译:天然水体中宇宙性S-35的测定方法

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Cosmogenic sulfur-35 in water as dissolved sulfate ((SO4)-S-35) has successfully been used as an intrinsic hydrologic tracer in low-SO4, high-elevation basins. Its application in environmental waters containing high SO4 concentrations has been limited because only small amounts of SO4 can be analyzed using current liquid scintillation counting (LSC) techniques. We present a new analytical method for analyzing large amounts of BaSO4 for S-35. We quantify efficiency gains when suspending BaSO4 precipitate in Inta-Gel Plus cocktail) purify BaSO4 precipitate to remove dissolved organic matter, Mitigate interference of radium-226 and its daughter products by selection of high purity barium chloride, and optimize LSC counting parameters for S-35 determination in larger masses of BaSO4. Using this improved procedure, we achieved counting efficiencies that are comparable to published LSC techniques despite a 10-fold increase in the SO4 sample load. SO4 35 was successfully measured in high SO4 surface waters and groundwaters containing low ratios of S-35 activity to SO4 mass demonstrating that this new analytical method expands the analytical range of (SO4)-S-35 and broadens the utility of (SO4)-S-35 as an intrinsic tracer in hydrologic settings.
机译:水中溶解有硫的硫酸盐((SO4)-S-35)具有宇宙性,已成功地将其用作低SO4高海拔盆地中的内在水文示踪剂。由于使用当前的液体闪烁计数(LSC)技术只能分析少量SO4,因此它在含SO4浓度高的环境水中的应用受到了限制。我们提出了一种新的分析方法,用于分析S-35的大量BaSO4。我们量化了将BaSO4沉淀物悬浮在Inta-Gel Plus鸡尾酒中时的效率增益)纯化BaSO4沉淀物以去除溶解的有机物,通过选择高纯度氯化钡来减轻Ra-226及其子产品的干扰,并优化S-的LSC计数参数35在较大质量的BaSO4中的测定。使用这种改进的程序,尽管SO4样品量增加了10倍,我们仍获得了与已发布的LSC技术相当的计数效率。在高SO4地表水和含S-35活性与SO4质量比率低的地下水中成功测量了SO4 35,这表明这种新的分析方法扩大了(SO4)-S-35的分析范围并扩展了(SO4)- S-35作为水文环境中的固有示踪剂。

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