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Integrated approach to assess the environmental impact of mining activities: estimation of the spatial distribution of soil contamination (Panasqueira mining area, Central Portugal)

机译:评估采矿活动对环境的影响的综合方法:估计土壤污染的空间分布(葡萄牙中部帕纳斯奎拉(Panasqueira)采矿区)

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摘要

Through the years, mining and beneficiation processes in Panasqueira Sn-W mine (Central Portugal) produced large amounts of As-rich mine wastes laid up in huge tailings and open-air impoundments (Barroca Grande and Rio tailings) that are the main source of pollution in the surrounding area once they are exposed to the weathering conditions leading to the formation of acid mine drainage (AMD) and consequently to the contamination of the surrounding environments, particularly soils. The active mine started the exploration during the nineteenth century. This study aims to look at the extension of the soil pollution due to mining activities and tailing erosion by combining data on the degree of soil contamination that allows a better understanding of the dynamics inherent to leaching, transport, and accumulation of some potential toxic elements in soil and their environmental relevance. Soil samples were collected in the surrounding soils of the mine, were digested in aqua regia, and were analyzed for 36 elements by inductively coupled plasma mass spectrometry (ICP-MS). Selected results are that (a) an association of elements like Ag, As, Bi, Cd, Cu, W, and Zn strongly correlated and controlled by the local sulfide mineralization geochemical signature was revealed; (b) the global area discloses significant concentrations of As, Bi, Cd, and W linked to the exchangeable and acid-soluble bearing phases; and (c) wind promotes the mechanical dispersion of the rejected materials, from the milled waste rocks and the mineral processing plant, with subsequent deposition on soils and waters. Arsenic-and sulfide-related heavy metals (such as Cu and Cd) are associated to the fine materials that are transported in suspension by surface waters or associated to the acidic waters, draining these sites and contaminating the local soils. Part of this fraction, especially for As, Cd, and Cu, is temporally retained in solid phases by precipitation of soluble secondary minerals (through the precipitation of hydrated metal sulfates) in warm, dry periods, but such minerals are easily dissolved during rainy periods. Climate is an important instability factor, and the hot and dry summers and cold, rainy, and windy winters in this region are physical phenomena that enhance the good receptivity of these soils to retain some of the metals present in the primary and also the secondary mineralogy. Considering the obtained results from both the sequential chemical extraction and the environmental risk assessment according to the risk assessment code, Ag, Cd, Cu, and Zn are classified with very high risk while As is classified with medium risk.
机译:多年来,Panasqueira Sn-W矿山(葡萄牙中部)的采矿和选矿过程产生了大量富含As的矿山废物,这些废物被堆积在巨大的尾矿和露天矿场(Barroca Grande和Rio尾矿)中,是这些矿的主要来源。一旦它们暴露于风化条件下,就会对周围环境造成污染,从而导致酸性矿井排水(AMD)的形成,并因此而污染周围环境,尤其是土壤。活跃的矿山始于19世纪。这项研究旨在通过结合土壤污染程度的数据来研究采矿活动和尾矿侵蚀造成的土壤污染扩展,从而更好地了解土壤中某些潜在有毒元素的浸出,运输和积累所固有的动力学。土壤及其环境相关性。在矿井周围土壤中收集土壤样品,在王水中进行消化,然后通过电感耦合等离子体质谱法(ICP-MS)分析36种元素。选定的结果是:(a)揭示了由局部硫化物矿化地球化学特征强烈关联和控制的元素,如Ag,As,Bi,Cd,Cu,W和Zn的结合; (b)全球范围内发现与可交换的和酸溶的承载相有关的砷,铋,镉和钨的浓度很高; (c)风促使磨碎的废石和矿物加工厂中的废料机械分散,随后沉积在土壤和水上。与砷和硫化物有关的重金属(例如Cu和Cd)与细粉物质相关,这些细粉物质通过悬浮水被地表水运输或与酸性水相关联,从而排干这些部位并污染当地土壤。该馏分的一部分,特别是对于砷,镉和铜,在温暖,干燥的时期内通过可溶性次生矿物质的沉淀(通过水合金属硫酸盐的沉淀)而暂时保留在固相中,但是在雨季,这些矿物质很容易溶解。 。气候是一个重要的不稳定性因素,该地区炎热干燥的夏季以及寒冷,多雨和多风的冬季是一种物理现象,可增强这些土壤的吸收能力,以保留初级和次级矿物学中存在的某些金属。考虑到根据风险评估代码从连续化学提取和环境风险评估中获得的结果,Ag,Cd,Cu和Zn被分类为非常高风险,而As被分类为中等风险。

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