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The influence of gleyzation on the chemical composition of the lysimetric water and the physicochemical properties of the parent rocks: A model experiment

机译:胶凝化对溶积水化学成分和母岩理化性质的影响:模型实验

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The influence of gleyzation and sulfate reduction on lysimetric waters collected from different heavy-textured soil-forming rocks (river alluvium, loess-like clays, and lacustrine-alluvial deposits) is considered. Under the stagnant-percolative water regime, the gleyzation caused the acidification of the waters (by 1.5-2.5 pH units); the intense removal of iron, calcium, and silica; a drastic decrease of the base saturation; and an increase in the hydrolytic (total) acidity. The content of mobile aluminum in the soils, as compared to the parent rock, increased by tens of times; under a stagnant water regime, the changes in the physicochemical soil properties were less significant or absent. The maximum removal of iron was found from the river alluvium followed by that from the loess-like clay and saline lacustrine alluvium. Unlike the other elements, the greater removal of silica was observed not at the beginning of the experiment (as in the case with iron and calcium) but at its end. A preliminary conclusion was suggested that the considerable increase of the silica concentration in the lysimetric water after the long-term effect of gleying under the stagnant-percolative water regime was related to the destruction of aluminosilicates.
机译:考虑了凝结和硫酸盐还原对从不同质地较重的土壤形成岩石(河流冲积,黄土样粘土和湖相冲积沉积物)收集的溶水的影响。在停滞-渗水状态下,混凝作用引起水的酸化(1.5-2.5 pH单位)。大量去除铁,钙和二氧化硅;基本饱和度急剧下降;并增加了水解(总)酸度。与母岩相比,土壤中活动铝的含量增加了数十倍;在停水状态下,土壤理化性质的变化不那么显着或不存在。河流冲积物中铁的​​去除量最大,其次是黄土样粘土和盐湖相冲积物中的铁去除量。与其他元素不同,观察到的二氧化硅去除率更高不是在实验开始时(如铁和钙的情况),而是在实验结束时。初步结论表明,在停滞-渗水条件下,长期的水化作用后,溶解水中二氧化硅浓度的显着增加与硅铝酸盐的破坏有关。

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