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Desiccation-crack-induced salinization in deep clay sediment

机译:干燥裂纹引起的深部粘土沉积物中的盐渍化

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A study on water infiltration and solute transport in a clayey vadose zone underlying a dairy farm waste source was conducted to assess the impact of desiccation cracks on subsurface evaporation and salinization. The study is based on five years of continuous measurements of the temporal variation in the vadose zone water content and on the chemical and isotopic composition of the sediment and pore water in it. The isotopic composition of water stable isotopes (δsup18/supO and δsup2/supH) in water and sediment samples, from the area where desiccation crack networks prevail, indicated subsurface evaporation down to ~ 3.5 m below land surface, and vertical and lateral preferential transport of water, following erratic preferential infiltration events. Chloride (Clsup−/sup) concentrations in the vadose zone pore water substantially increased with depth, evidence of deep subsurface evaporation and down flushing of concentrated solutions from the evaporation zones during preferential infiltration events. These observations led to development of a desiccation-crack-induced salinization (DCIS) conceptual model. DCIS suggests that thermally driven convective air flow in the desiccation cracks induces evaporation and salinization in relatively deep sections of the subsurface. This conceptual model supports previous conceptual models on vadose zone and groundwater salinization in fractured rock in arid environments and extends its validity to clayey soils in semi-arid environments.
机译:在奶牛场废物源下面的黏性渗流带中进行了水渗透和溶质运移的研究,以评估干燥裂纹对地下蒸发和盐化的影响。这项研究是基于对渗流带水含量随时间变化以及其中沉积物和孔隙水的化学和同位素组成连续五年的测量而得出的。来自干燥裂纹网络盛行的区域的水和沉积物样品中水稳定同位素(δ 18 O和δ 2 H)的同位素组成,表明存在地下蒸发在不规则的优先渗透事件之后,低至陆地表面以下〜3.5 m,并且垂直和横向优先输送水。渗流区孔隙水中的氯化物(Cl − )浓度随深度的增加而显着增加,表明在优先渗透事件中,地下深层蒸发和浓溶液从蒸发区向下冲洗的证据。这些观察结果导致了干燥裂纹诱导的盐化(DCIS)概念模型的发展。 DCIS指出,干燥裂缝中的热驱动对流气流在地下相对较深的部分引起蒸发和盐碱化。该概念模型支持以前关于干旱环境中裂隙岩石中渗流带和地下水盐碱化的概念模型,并将其有效性扩展到半干旱环境中的黏性土壤。

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