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Development of climatic and vegetation conditions and the geochemical and isotopic composition in the Franconian Albvorland aquifer system

机译:法兰克Albvorland含水层系统中气候和植被条件的发展以及地球化学和同位素组成

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摘要

The impact of climatic and vegetation conditions over the past 15 Ka on the chemical composition and C-14 dating of ground water from the Franconian Albvorland aquifer system is discussed. Seven groundwaters over a flow distance of 25.5 km are investigated. Groundwater dating is made by C-14 Of dissolved inorganic carbon (DIC) and aqueous fulvic acid as well as O-18. C-14 dating via fulvic acid gives groundwater ages consistent with climatic and vegetation records and variations in the groundwater composition. No correction for geochemical processes is required, since under these geochemical conditions fulvic acid remains stable over this time period and how-distance. On the other hand,C-14 dating via DIC requires correction of the C-14 value due to perturbation by different geochemical processes. Up to a groundwater how distance of approximately 17 km and an age of about 10 Ka, the C-14 dating by DIC shows considerable dependence on the C-14-correction model applied. Beyond this groundwater age,C-14-DIC dating results in an overestimation by two to three C-14 half-lives (T-1/2=5730 a). This deviation may result from different groundwater recharge conditions at the end of the past glaciation and geochemical processes acting on DIC that cannot be adequately characterized. The present study has implications for humic substance mediated transport of pollutants in natural aquatic systems over long time periods. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 34]
机译:讨论了过去15 Ka的气候和植被条件对Franconian Albvorland含水层系统中地下水的化学组成和C-14年代的影响。研究了75.5公里的流动距离内的七个地下水。地下水测年是由C-14溶解的无机碳(DIC)和黄腐酸水溶液以及O-18制成的。通过黄腐酸进行的C-14测年可得出与气候和植被记录以及地下水组成变化一致的地下水年龄。不需要对地球化学过程进行校正,因为在这些地球化学条件下,富里夫酸在这段时间和间隔内保持稳定。另一方面,通过DIC进行C-14测年需要校正C-14的值,这是由于不同地球化学过程的干扰。 DIC测算的C-14距地下水约17 km,年龄约10 Ka,显示出对所应用的C-14校正模型的极大依赖。在这个地下水时代之后,C-14-DIC测年导致高估了2至3个C-14半衰期(T-1 / 2 = 5730 a)。这种偏差可能是由于过去冰川期结束时地下水补给条件不同以及作用于DIC的地球化学过程无法得到充分表征所致。本研究对腐殖质介导的污染物在自然水生系统中的长期迁移具有重要意义。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:34]

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