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Origin and mobility of humic colloids in the Gorleben aquifer system

机译:Gorleben含水层系统中腐殖胶体的起源和迁移

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摘要

The origin and mobility of humic colloids in the Gorleben aquifer system have been examined. For this purpose, the distribution of humic colloids and relevant hydrological and geochemical parameters were examined. An investigation area was selected where sediments have been disturbed by salt dome uplift and glacial events. It is shown that, on a local scale, considerable groundwater movement and intermixing takes place from the surface down to the salt dome. Consequently no effective separation of groundwater layers occurs. Two different humic colloid sources are identified: influx from the humus horizon with recharge water and continuous in situ generation via mineralization of sedimentary organic carbon (SOC). The in situ generation leads to groundwaters with humic colloid concentrations approaching 0.4 g/L, compared to concentrations of less than 0.005 g/L in recharge waters. Young groundwaters (no C-14 decay detected) between approximately 50 and 200 m depth exhibit these highly elevated humic colloid concentrations. At greater depth, salt brines are found with low humic colloid concentrations. This can be attributed to precipitation of humic acid and/or hampering of the in situ generation process due to the high salt content. There is no indication of retention or decomposition of humic colloids. The fate of in situ generated humic colloids cannot be precisely evaluated due to analytical limitations and insufficient understanding of groundwater movement. (C) 1999 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:在戈尔本含水层系统中,腐殖质胶体的起源和流动性已得到检验。为此,检查了腐殖质胶体的分布以及相关的水文和地球化学参数。选择了一个调查区,在该调查区中,盐穹隆和冰川事件扰动了沉积物。结果表明,在局部范围内,从地表一直到盐穹顶都有大量的地下水运移和混合。因此,没有有效分离地下水层。确定了两种不同的腐殖质胶体来源:从腐殖质层中注入补给水,以及通过沉积有机碳(SOC)的矿化作用连续进行原位生成。与补给水中的浓度小于0.005 g / L相比,原位生成导致腐殖胶体浓度接近0.4 g / L的地下水。大约50至200 m深度的年轻地下水(未检测到C-14衰减)显示出这些高度升高的腐殖质胶体浓度。在更深的地方,发现盐水中腐殖质胶体浓度低。这可能归因于腐殖酸的沉淀和/或由于高盐含量而阻碍了原位生成过程。没有迹象表明腐殖胶体会保留或分解。由于分析的局限性和对地下水运动的了解不足,无法精确评估原位产生的腐殖质胶体的命运。 (C)1999 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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