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Natural iodine-129 as a ground-water tracer

机译:天然碘129作为地下水示踪剂

摘要

Iodine-129 (t ½, 16 My) is a naturally-occurring tracer which can be used to study hydrologic and geologic processes on time scales up to 100 My. Global modelling suggests that the pre-bomb atmospheric ratio ¹²⁹I/I should have been constant in time and space. This ratio is the starting value in ground-water recharge, and subsequent ratio changes are determined by isotope contributions from three sources: recharge water, iodine leached from the formation, and in situ uranium fission. This expected behavior is compared to field study results. Ground-water samples from the Great Artesian Basin, Australia, provide an estimate of the atmospheric equilibrium ratio, 6 x 10⁻¹³. Down-gradient changes in water up to 1 My old suggest that subsurface production can be significant. The usefulness of ¹²⁹I as an indicator of brine source and age is verified in brines collected in and around Louisiana salt domes. The method leads to ages of 7 and 9 My for two brine pockets trapped within Jurassic salt, and 32 to > 40 My for oil-field brines in Miocene sands adjacent to the domes.
机译:Iodine-129(t½,16 My)是天然存在的示踪剂,可用于研究时标高达100 My的水文和地质过程。全局模型表明,炸弹爆炸前的空气比127 I / I在时间和空间上应保持恒定。该比率是地下水补给的起始值,随后的比率变化由三个来源的同位素贡献确定:补给水,地层中浸出的碘和原位铀裂变。将该预期行为与实地研究结果进行比较。来自澳大利亚大自流盆地的地下水样本估计了大气平衡比为6 x 10 13。水的下降梯度变化最大为1。我的古老观点认为地下生产可能很重要。在路易斯安那州盐穹及其附近收集的盐水中证实了125 I作为盐水来源和年龄指标的有用性。该方法导致陷于侏罗纪盐中的两个盐水袋的年龄分别为7和9 My,对于与穹顶相邻的中新世砂岩的油田盐水,年龄为32至> 40 My。

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