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Some limitations in using 222Rn to assess river–groundwater interactions: the case of Castel di Sangro alluvial plain (central Italy)

机译:使用222 Rn评估河流与地下水相互作用的一些限制:Castel di Sangro冲积平原(意大利中部)

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摘要

222Rn was used to assess river–groundwater interactions within Castel di Sangro alluvial aquifer (Italy). The effectiveness of results obtained through this indicator was verified by also analyzing δ18O, major ions and temperature in both surface and groundwater, and carrying out piezometric head monitoring and discharge measurements. Hydrogeological investigations suggested that the river infiltrates into the aquifer in the south-eastern aquifer portion, while groundwater discharges into the river in the north-eastern portion. The latter phenomenon is supported by 222Rn data. Nevertheless, flow-through conditions cause the modelled discharge along this river reach, estimated by 222Rn data in a degassing-corrected two-component mixing model, to be greater than the measured discharge. Concerning river infiltration into the aquifer, δ18O, major ions and temperature data show that the river contribution is negligible in terms of aquifer recharge. Thus, the observed increase in 222Rn concentration in that portion of the aquifer is due to the enrichment process caused by infiltration of rainwater (222Rn free) which flows from the local divide area. Hence, in the study site, the use of only 222Rn to predict river–groundwater interactions causes some estimation inaccuracies and it must be coupled with other hydrochemical and hydrogeological parameters to gain a thorough understanding of such interactions.
机译:222 Rn用于评估Castel di Sangro冲积含水层(意大利)内的河水相互作用。通过分析地表水和地下水中的δ18O,主要离子和温度,并进行压头监测和排放测量,验证了通过该指标获得的结果的有效性。水文地质调查表明,河流渗透到东南含水层部分的含水层中,而地下水则排放到东北含水层中的河流中。 222 Rn数据支持后一种现象。尽管如此,流通条件仍导致在经除气校正的两组分混合模型中由222 Rn数据估计的沿该河段的模拟流量大于实测流量。关于河流入含水层的δ18O,主要离子和温度数据表明,从含水层补给的角度看,河流的贡献可以忽略不计。因此,在该含水层的那部分中观察到的222 Rn浓度的增加是由于从局部分隔区流出的雨水(不含222 Rn)的渗入引起的富集过程。因此,在研究现场,仅使用222 Rn来预测河水与地下水的相互作用会引起一些估计的误差,因此必须将其与其他水化学和水文地质参数结合起来才能全面了解这种相互作用。

著录项

  • 来源
    《Hydrogeology Journal》 |2008年第4期|701-712|共12页
  • 作者单位

    Dipartimento di Scienze Ambientali Seconda Università degli Studi di Napoli via Vivaldi 43 81100 Caserta Italy;

    Groundwater Research Center Università degli Studi del Molise Contrada Fonte Lappone 86090 Pesche (IS) Italy;

    Dipartimento di Scienze Ambientali Seconda Università degli Studi di Napoli via Vivaldi 43 81100 Caserta Italy;

    Centro di Ricerca ENEA Casaccia via Anguillarese 301 00060 S. Maria di Galeria Rome Italy;

    APAT Agenzia per la Protezione dell’Ambiente e per i Servizi Tecnici Servizio di Metrologia Ambientale via di Castel Romano 100 00128 Rome Italy;

    IAEA Agency’s Laboratories Seibersdorf Chemistry Unit 2444 Seibersdorf Austria;

    Groundwater Research Center Università degli Studi del Molise Contrada Fonte Lappone 86090 Pesche (IS) Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Radon; Natural tracers; Groundwater/surface-water relations; Alluvial aquifer; Italy;

    机译:on;自然示踪剂;地下水/地表水关系;冲积层;意大利;

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