首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Geological basement control on Rn-222 accumulation as an input function for hydrogeological systems on a loess aquifer, Argentina
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Geological basement control on Rn-222 accumulation as an input function for hydrogeological systems on a loess aquifer, Argentina

机译:RN-222积累的地质基础控制作为黄土地质系统对黄土地理系统的输入功能,阿根廷

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The activity of Rn-222 of the groundwater was measured in different wells in the Pampeano aquifer in southeastern Buenos Aires to assess how the hydrogeological characteristics of the study area, which involves type and depth of the bedrock, aquifer mineralogy and residence time along flowpaths, influences on Rn-222 contents. Water samples, as well as sediment samples, were collected in multilevel piezometers in different sites of the Buenos Aires province for the determination of stable isotopes, Rn-222 concentrations and mineralogical analyses. The identification of uranium-bearing minerals in the loess sediments of the Pampeano aquifer was carried out with a scanning electron microscope allowing identifying zircon and monazite. The Rn-222 was determined with a RAD7 detector, showing a range of activities from 3.1 to 14.9 Bq/L. The results showed a relation between the Rn-222 activity, the depth of the wells, and the proximity of the Precambrian basement. The activity of Rn-222 increases linearly with increasing depth at a rate of 0.09 Bq.L-1 m(-1). However, at the same depth the concentration of Rn-222 in wells near the Precambrian basement showed to be three times higher than the concentrations in the wells that have a Paleozoic bedrock, clearly showing that the proximity of granitoids rocks results in higher concentrations of radon.
机译:地下水的RN-222的活性在东南布宜诺斯航空公司的PampeAno含水层中的不同井中测量,评估研究区域的水文地质特征如何,这涉及基岩,含水层矿物学和沿流动路径的住宿时间的类型和深度,对RN-222内容的影响。在布宜诺斯艾利斯省的不同部位的多级压电仪中收集水样和沉积物样品,用于测定稳定同位素,RN-222浓度和矿物学分析。用扫描电子显微镜进行PampeAno含水层的黄土沉积物中铀矿物的鉴定,允许识别锆石和单桥。用RAD7检测器测定RN-222,显示3.1至14.9 bq / L的一系列活动。结果表明,RN-222活性,孔的深度和前锋地下室的接近之间的关系。 RN-222的活性以0.09bq.L-1M(-1)的速率越来越多的深度增加。然而,在相同的深度,Preambrian地下室附近的孔中RN-222的浓度显示比具有古生代基岩的孔中的浓度高出三倍,清楚地表明岩石的附近导致较高浓度的氡。

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