智利中部河流的地球化学:区分采矿、岩性和物理风化的影响

IF 1.7 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Aquatic Geochemistry Pub Date : 2019-03-20 DOI:10.1007/s10498-019-09350-1
J. Viers, S. Carretier, Y. Auda, O. S. Pokrovsky, P. Seyler, F. Chabaux, V. Regard, V. Tolorza, G. Herail
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引用次数: 4

摘要

在稳定的反气旋期间(2008年10月),对智利纬度30°-38°的几条河流进行了采样。首先,我们的目标是评估鲜为人知的智利中部河流的溶解化学成分(主要和微量元素)。其次,我们使用共惯性分析(见doldec和Chessel in Freshw Biol 31:27 - 294, 1994)来探索元素浓度与环境参数[盆地表面积(km2)/采矿活动(%)/平均高度(m)/流域平均坡度(%)/植被覆盖面、沉积岩、火山沉积岩、火山岩、花岗岩/侵蚀速率(mm/年)]之间的可能关系。从整体上看,主要元素的富集可以用混合硅酸盐和碳酸盐以及蒸发岩性的强烈控制来解释。统计处理表明,廷吉里里卡、卡恰波尔、阿空加瓜、乔阿帕、伊拉佩尔和利马里的金属和类金属负荷最高,可以解释为这些流域最上部的采矿活动和/或较高的地球化学背景。事实上,在真正的采矿影响和更高的地球化学背景之间仍然很难破译。即使这些河流可能受到AMD过程的影响,这些流域的大小也能够通过支流的碱性特征来稀释AMD水,从而诱导酸中和并降低金属和类金属的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Geochemistry of Chilean Rivers Within the Central Zone: Distinguishing the Impact of Mining, Lithology and Physical Weathering

Several rivers of Chile from the latitude 30°–38° have been sampled during a stable anticyclonic period (October 2008). Firstly, our aim was to evaluate the dissolved chemical composition (major and trace elements) of poorly known central Chilean rivers. Secondly, we used a co-inertia analysis (see Dolédec and Chessel in Freshw Biol 31:277–294, 1994) to explore the possible relationships between the concentrations of elements and the environmental parameters [surface of the basin (km2)/mining activity (%)/average height (m)/watershed mean slope (%)/% of the surface covered by vegetation, sedimentary rocks, volcano-sedimentary rocks, volcanic rocks, granitoid rocks/erosion rate (mm/year)]. Globally, the major elements concentration could be explained by a strong control of mixed silicate and carbonate and evaporate lithology. The statistical treatment reveals that the highest metal and metalloids loads of Tinguiririca, Cachapoal, Aconcagua, Choapa, Illapel and Limari could be explained by the contribution of the mining activities in the uppermost part of these watersheds and/or by the higher geochemical background. Indeed, it remains difficult to decipher between a real mining impact and a higher geochemical background. Even if these rivers could be impacted by AMD process, the size of these watersheds is capable of diluting AMD waters by the alkaline character of tributaries that induce acid neutralization and decrease the level of metals and metalloids.

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来源期刊
Aquatic Geochemistry
Aquatic Geochemistry 地学-地球化学与地球物理
CiteScore
4.30
自引率
0.00%
发文量
6
审稿时长
1 months
期刊介绍: We publish original studies relating to the geochemistry of natural waters and their interactions with rocks and minerals under near Earth-surface conditions. Coverage includes theoretical, experimental, and modeling papers dealing with this subject area, as well as papers presenting observations of natural systems that stress major processes. The journal also presents `letter''-type papers for rapid publication and a limited number of review-type papers on topics of particularly broad interest or current major controversy.
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