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矿区酸性排水对三个矿区(葡萄牙西南部)淡水溪流水生物学的影响:一种统计方法。

Acid Mine Drainage Effects in the Hydrobiology of Freshwater Streams from Three Mining Areas (SW Portugal): A Statistical Approach.

机构信息

Department of Geosciences, GeoBioTec-Geobiosciences, Geotechnologies and Geoengineering Research Center, Campus de Santiago, University of Aveiro, 3810-193 Aveiro, Portugal.

Department of Mining, Mechanic, Energetic and Construction Engineering, Higher Technical School of Engineering, University of Huelva, 21007 Huelva, Spain.

出版信息

Int J Environ Res Public Health. 2022 Aug 30;19(17):10810. doi: 10.3390/ijerph191710810.

Abstract

Aljustrel, Lousal and S. Domingos mines are located in the Iberian Pyrite Belt (IPB), one of the greatest massive sulfide ore deposits worldwide. These mines' surrounding streams are affected by Acid Mine Drainage (AMD). The main purpose of this study was to understand AMD influence in the water quality and diatom behavior. Thus, waters and diatoms were sampled in 6 sites from the 3 selected mines on winter and summer of 2016. The highest concentrations were found in acidic sites: A3 (Aljustrel-Al, Cd, Cu, Fe and Zn (and lowest pH)) and L1 (Lousal-As, Mn, Ca, Mg, SO and conductivity). The most abundant diatom species was with 100% of dominance in A3 and S1 acidic sites, which puts in evidence this species adaptation to AMD harsh conditions. Multivariate cluster analysis allowed us to reinforce results from previous studies, where spatial differences were more relevant than seasonal ones. In 12 years (2004-2016), and with many transformations undertaken (re-opening and rehabilitation), there is a conservative behavior in the biological species (diatoms) and physicochemical concentrations (metals, pH and sulfates) from these three mining sites. This type of biogeochemical diagnosis is necessary for the sustainable use of these waters and the prevention of the polluting process, aimed to protect the water ecosystem and its biodiversity.

摘要

阿尔茹斯特雷尔、路易萨尔和圣多明各矿位于伊比利亚黄铁矿带(IPB),这是世界上最大的块状硫化物矿床之一。这些矿周围的溪流受到酸性矿山排水(AMD)的影响。本研究的主要目的是了解 AMD 对水质和硅藻行为的影响。因此,2016 年冬季和夏季在这三个选定的矿山的 6 个地点采集了水样和硅藻。在酸性最强的地点 A3(Aljustrel-Al,Cd,Cu,Fe 和 Zn(和最低 pH 值))和 L1(Lousal-As,Mn,Ca,Mg,SO 和电导率)发现了最高浓度。最丰富的硅藻物种是,在 A3 和 S1 酸性地点的优势率为 100%,这表明该物种适应了 AMD 的恶劣条件。多元聚类分析使我们能够加强先前研究的结果,其中空间差异比季节性差异更为重要。在 12 年(2004-2016 年)期间,由于进行了许多转型(重新开放和修复),这三个采矿区的生物物种(硅藻)和物理化学浓度(金属、pH 值和硫酸盐)都表现出保守行为。这种生物地球化学诊断对于这些水的可持续利用和污染过程的预防是必要的,旨在保护水生态系统及其生物多样性。

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