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Transport and fate of ammonium and its impact on uranium and other trace elements at a former uranium mill tailing site

机译:铵的运输和归宿及其对铀矿和其他微量元素的影响

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摘要

The remediation of ammonium-containing groundwater discharged from uranium mill tailing sites is a difficult problem facing the mining industry. The Monument Valley site is a former uranium mining site in the southwest US with both ammonium and nitrate contamination of groundwater. In this study, samples collected from 14 selected wells were analyzed for major cations and anions, trace elements, and isotopic composition of ammonium and nitrate. In addition, geochemical data from the U.S. Department of Energy (DOE) database were analyzed. Results showing oxic redox conditions and correspondence of isotopic compositions of ammonium and nitrate confirmed the natural attenuation of ammonium via nitrification. Moreover, it was observed that ammonium concentration within the plume area is closely related to concentrations of uranium and a series of other trace elements including chromium, selenium, vanadium, iron, and manganese. It is hypothesized that ammonium-nitrate transformation processes influence the disposition of the trace elements through mediation of redox potential, pH, and possibly aqueous complexation and solid-phase sorption. Despite the generally relatively low concentrations of trace elements present in groundwater, their transport and fate may be influenced by remediation of ammonium or nitrate at the site.
机译:从铀厂尾矿排放的含铵地下水的修复是采矿业面临的难题。纪念碑谷遗址以前是美国西南部的铀矿开采场,地下水被铵和硝酸盐污染。在这项研究中,分析了从14个选定的井中收集的样品中的主要阳离子和阴离子,微量元素以及铵和硝酸盐的同位素组成。此外,还分析了来自美国能源部(DOE)数据库的地球化学数据。显示有氧氧化还原条件以及铵和硝酸盐的同位素组成相对应的结果证实了硝化作用使铵自然衰减。此外,观察到烟羽区域内的铵浓度与铀和一系列其他微量元素(包括铬,硒,钒,铁和锰)的浓度密切相关。据推测,硝酸铵的转化过程会通过氧化还原电势,pH值以及可能的水络合和固相吸附作用来影响痕量元素的沉积。尽管地下水中微量元素的浓度通常相对较低,但该地点的铵盐或硝酸盐补救措施可能会影响其运输和命运。

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