...
首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Hydrogeochemistry and geochemical simulations to assess water-rock interactions in complex carbonate aquifers: The case of Aguadulce (SE Spain)
【24h】

Hydrogeochemistry and geochemical simulations to assess water-rock interactions in complex carbonate aquifers: The case of Aguadulce (SE Spain)

机译:评估复杂碳酸盐含水层中水-岩相互作用的水文地球化学和地球化学模拟:以阿瓜杜尔塞为例(西班牙东南部)

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The hydrogeological unit of Aguadulce (Campo de Dalías aquifers, SE Spain) has a complex geometry. This fact, together with a continuous rise in water demand due to intensive agriculture and tourism create problems for groundwater quantity and quality. In this paper classic geochemical tools managed by means of GIS software and geochemical simulations are combined to delineate, identify and locate the possible physicochemical processes acting in the Aguadulce groundwater. Two main aquifers can be distinguished: the carbonate or lower aquifer of Triassic age, and the calcodetritic or upper aquifer of Plio-Quaternary age. Groundwaters from the latter are more saline and, assuming all chlorinity originates from seawater intrusion, the seawater contribution to their composition would be up to 7%. Nevertheless the carbonate aquifer appears not to be homogeneous: it is compartmentalised into 4 zones where different processes explain the different groundwaters compositions. Zone 4 samples (E margin of the carbonate aquifer) resemble those of the Plio-Quaternary aquifer, where calcite precipitation, dolomite and gypsum dissolution and some cation exchange (water-rock interaction) together with seawater-freshwater mixing occur. In contrast, water-rock interaction predominates in zones 1 and 3 of the carbonate aquifer. Moreover, zone 2 samples, located between zones 1 and 3, are explained by water-rock interaction in addition to mixing with Plio-Quaternary aquifer waters. The combination of geochemical simulations with GIS and hydrogeochemical analyses has proven to be effective in identifying and locating the different physicochemical processes in the aquifer areas, thus improving understanding of hydrogeochemistry in complex aquifers.
机译:阿瓜杜尔塞(Campo deDalías含水层,西班牙SE)的水文地质单位具有复杂的几何形状。这一事实,再加上集约化农业和旅游业对水的需求不断增加,给地下水的数量和质量带来了问题。在本文中,结合了通过GIS软件和地球化学模拟管理的经典地球化学工具,以描绘,识别和定位在Aguadulce地下水中可能发生的物理化学过程。可以区分出两个主要的含水层:三叠纪的碳酸盐岩或下含水层,以及上古第四纪的钙钙铁质或上含水层。后者的地下水含盐量更高,并且假设所有氯含量都来自海水入侵,那么海水对其组成的贡献将高达7%。然而,碳酸盐含水层似乎并不是均匀的:它被划分为4个区域,其中不同的过程解释了不同的地下水成分。 4区样品(碳酸盐含水层的E边际)类似于Plio-第四纪含水层的那些,在这里发生了方解石沉淀,白云石和石膏溶解以及一些阳离子交换(水-岩石相互作用)以及海水-淡水混合。相反,在碳酸盐含水层的区域1和3中,水-岩相互作用占主导地位。此外,除了与Plio-第四纪含水层水混合外,还通过水-岩相互作用解释了位于区域1和3之间的区域2样品。事实证明,将地球化学模拟与GIS和水文地球化学分析相结合可有效地识别和定位含水层区域中不同的物理化学过程,从而提高对复杂含水层中水文地球化学的理解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号