The groundwater system in the mountainous area of Semmering, Austria, was studied by environmental tracers in several karst springs. The tracers used included stable isotopes ((18)O, (2)H), tritium ((3)H) and chlorofluorocarbons (CFCs). The tracers provided valuable information in regard to (1) the mean altitude of the spring catchment areas; (2) the residence time and age distribution of the spring waters; and (3) the interconnection of the springs to a sinkhole. The combination of the stable isotopic data and the topography/geology provided the estimates of the mean altitudes of the catchment areas. Based on the stable isotopic data the recharge temperature of the spring waters was estimated. The smoothing of precipitation's isotopic signal in spring discharge provided information on the minimum transit time of the spring waters. Due to short observation time, (3)H data alone cannot be used for describing the mean residence time of the karst waters. CFCs, though useful in recognizing the co-existence of young (post-1993) water with old (CFC-free) water, could not be used to resolve age distribution models. It is shown in this article, however, that the combined use of tritium and CFCs can provide a better assessment of models to account for different groundwater age distributions. In Appendix A, a simplified method for collecting groundwater samples for the analysis of CFCs is described. The method provides a real facilitation for fieldwork. Test data are given for this sampling method in regard to potential contamination by atmospheric CFCs.

译文

通过环境示踪剂在几个喀斯特温泉中研究了奥地利塞默灵山区的地下水系统。使用的示踪剂包括稳定同位素 ((18)O,(2)H),tri ((3)H) 和氯氟烃 (cfc)。示踪剂提供了有关以下方面的宝贵信息 :( 1) 春季集水区的平均海拔; (2) 泉水的停留时间和年龄分布; (3) 泉水与天坑的相互连接。稳定的同位素数据和地形/地质的结合提供了集水区平均海拔高度的估计。根据稳定的同位素数据,估算了泉水的补给温度。春季排放中降水同位素信号的平滑提供了有关春季水最小通过时间的信息。由于观测时间短,(3)H数据不能单独用于描述岩溶水域的平均停留时间。氟氯化碳虽然有助于识别年轻 (1993后) 水与旧 (不含氟氯化碳) 水的共存,但不能用于解决年龄分布模型。但是,本文表明,tri和cfc的结合使用可以更好地评估模型,以说明不同的地下水年龄分布。在附录A中,描述了一种用于收集地下水样品以分析cfc的简化方法。该方法为实地工作提供了真正的便利。给出了这种采样方法的测试数据,涉及大气中氟氯化碳的潜在污染。

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