梅拉马露天矿充填水化学地层分析 II:参数和要素

IF 2.8 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Ricardo Juncosa, Jorge Delgado, José Luis Cereijo
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引用次数: 0

摘要

第一篇文章题为 "Meirama 露天矿充填的水化学地层分析 I. 监测与充填"(Juncosa 等人,《环境科学污染研究》,20(11):7520-7533,2013 年):监测和充填"(Juncosa 等人,Environ Sci Pollut Res 20(11):7520-7533,2013 年)一文中,介绍了老梅拉玛矿坑(西班牙西北部)的充填过程以及样本采集和分析方法。同样,文章还介绍了填充和填充后过程中温度、pH 值、溶解氧、铁和锰的变化情况。第二篇文章介绍了填充期(2008-2016 年)和填充后(2016-2019 年)其他主要成分和营养物质的时间演变。在湖泊中点监测到的垂直剖面的某些高度(湖面、相对于湖面的前 2 米深度(2 mbs)、湖面 59 米处和湖底(2 米处))继续进行上述文章中开始的分析。正如填充过程中所解释的那样,在水面附近形成了不变的化学跃层和季节性热跃层。因此,分析范围不仅包括湖底和湖面,还包括发现化学跃层的中间点。根据所进行的分析,可以证实最表层的水域(80 米)符合流域的地质和河流环境,因此储存的水不需要进行特殊的物理化学处理。然而,在更深的水层,缺氧过程正在发展,这是湖底甲烷化之前的一个步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrochemical stratigraphic analysis of the filling of the Meirama open pit mine II: parameters and elements

In the first article, entitled “Hydrochemical stratigraphic analysis of the filling of the Meirama open pit mine I: Monitoring and filling” (Juncosa et al. Environ Sci Pollut Res 20(11):7520–7533, 2013), the filling process of the old Meirama mining pit (NW Spain), as well as the methodology used in the sample collection and analysis, was described. Likewise, the evolution of the temperature, pH, dissolved oxygen, iron, and manganese in the filling and postfilling processes are shown. This second article presents the temporal evolution of other major components and nutrients during the filling period (2008–2016) and postfilling period (2016–2019). The continuation of the analysis initiated in the aforementioned article is done at certain heights of the vertical profiles monitored at the midpoint of the lake (the surface, the first 2 m of depth with respect to the surface (2 mbs), at 59 masl, and at the bottom (2 masl)). As explained in the filling process, an invariant chemocline and a seasonal thermocline near the water surface are formed. Therefore, the analysis encompasses not only the bottom and surface of the lake but also includes an intermediate point where the chemocline is found. Based on the analysis carried out, it has been possible to verify that the most superficial waters (80 m) are in line with the geological and fluvial environment of the basin, so that the stored waters do not need a special physicochemical treatment. However, at deeper levels, anoxization processes are developing, a step prior to the methanization of the lake bottom.

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来源期刊
Environmental Earth Sciences
Environmental Earth Sciences 环境科学-地球科学综合
CiteScore
5.10
自引率
3.60%
发文量
494
审稿时长
8.3 months
期刊介绍: Environmental Earth Sciences is an international multidisciplinary journal concerned with all aspects of interaction between humans, natural resources, ecosystems, special climates or unique geographic zones, and the earth: Water and soil contamination caused by waste management and disposal practices Environmental problems associated with transportation by land, air, or water Geological processes that may impact biosystems or humans Man-made or naturally occurring geological or hydrological hazards Environmental problems associated with the recovery of materials from the earth Environmental problems caused by extraction of minerals, coal, and ores, as well as oil and gas, water and alternative energy sources Environmental impacts of exploration and recultivation – Environmental impacts of hazardous materials Management of environmental data and information in data banks and information systems Dissemination of knowledge on techniques, methods, approaches and experiences to improve and remediate the environment In pursuit of these topics, the geoscientific disciplines are invited to contribute their knowledge and experience. Major disciplines include: hydrogeology, hydrochemistry, geochemistry, geophysics, engineering geology, remediation science, natural resources management, environmental climatology and biota, environmental geography, soil science and geomicrobiology.
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