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Soil and wetland salinization in the framework of the Danube-Tisza Interfluve hydrogeologic type section

机译:多瑙河-蒂萨河流域水文地质类型剖面框架内的土壤和湿地盐渍化

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摘要

Abstract udThe Danube-Tisza Interfluve has an agricultural economy but is plagued by severe problems of soil and wetland salinization. The objective of the study was to determine the source of the salts and the controls and mechanism of their distribution. For the Danube-Tisza Interfluve two different groundwater flow regimes, namely a gravity-driven meteoric fresh water regime and an overpressured saline water one, were identified within the framework of the Danube-Tisza Hydrogeologic Type Section (Mádl-Szőnyi and Tóth 2009). It was also recognized that the salts originate partly from the basin sediments and partly from the basin basement. The latter contains NaCl-type water with 10000–38000 mgL−1 total dissolved solid content. The vertical flow through conductive faults and the cross-formational ascent of the deep waters, combined with the gravitational systems’ geometry and the flow-channeling effect of the near-surface rocks, explain the pattern of soil salinization and the contrasting chemistry between the wetlands of Danube Valley and the Ridge Region.ud
机译:摘要 ud多瑙河-蒂萨河沟渠有农业经济,但受到土壤和湿地盐碱化的严重问题的困扰。该研究的目的是确定盐的来源以及其分布的控制和机理。在多瑙河-蒂萨水文地质类型剖面的框架内(Mádl-SzőnyiandTóth2009),确定了多瑙河-蒂萨河道间的两种不同的地下水流状态,即重力驱动的淡水状态和超压盐水。人们还认识到,盐的一部分来自盆地沉积物,一部分来自盆地地下室。后者包含NaCl型水,总溶解固体含量为10000–38000 mgL-1。通过导电断层的垂直流和深水的横向构造上升,结合重力系统的几何形状和近地表岩石的流导效应,解释了土壤盐渍化的模式以及湿地之间的化学对比多瑙河谷和山脊地区。 ud

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