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首页> 外文期刊>Water >Peatlands as Filters for Polluted Mine Water?—A Case Study from an Uranium-Contaminated Karst System in South Africa Part III: Quantifying the Hydraulic Filter Component
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Peatlands as Filters for Polluted Mine Water?—A Case Study from an Uranium-Contaminated Karst System in South Africa Part III: Quantifying the Hydraulic Filter Component

机译:泥炭地作为矿井水污染的过滤器?-以南非一个受铀污染的喀斯特系统为例的研究(第三部分):水力过滤器组件的量化

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As Part III of a four-part series on the filter function of peat for uranium (U), this paper focuses on the hydraulic component of a conceptual filter model introduced in Part II. This includes the quantification of water flow through the wetland as a whole, which was largely unknown and found to be significantly higher that anticipated. Apart from subaquatic artesian springs associated with the underlying karst aquifer the higher flow volumes were also caused by plumes of polluted groundwater moving laterally into the wetland. Real-time, quasi-continuous in situ measurements of porewater in peat and non-peat sediments indicate that rising stream levels (e.g., during flood conditions) lead to the infiltration of stream water into adjacent peat deposits and thus allow for a certain proportion of flood water to be filtered. However, changes in porewater quality triggered by spring rains may promote the remobilization of possibly sorbed U.
机译:作为关于泥炭对铀(U)的过滤功能的四部分系列的第三部分,本文重点介绍了第二部分中介绍的概念性过滤器模型的液压组件。这包括量化流经整个湿地的水量,这在很大程度上是未知的,并且发现比预期的要高得多。除了与下面的岩溶含水层相关的亚水体自流泉外,较高的流量还由被污染的地下水羽流横向进入湿地引起。泥炭和非豆类沉积物中孔隙水的实时,准连续原位测量表明,水位上升(例如在洪水条件下)导致溪水渗入相邻的泥炭沉积物中,因此允许一定比例的泥沙沉积。洪水要过滤。但是,春季降雨引发的孔隙水质量变化可能会促进可能吸收的铀的迁移。

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