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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Soil mineral genesis and distribution in a saline lake landscape of the Pantanal Wetland, Brazil
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Soil mineral genesis and distribution in a saline lake landscape of the Pantanal Wetland, Brazil

机译:巴西潘塔纳尔湿地盐湖景观中土壤矿物的产生和分布

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摘要

The origin of the saline lakes in the Pantanal wetland has been classically attributed to processes occurring in past periods. However, recent studies have suggested that saline water is currently forming from evaporative concentration of fresh water, which is provided annually by seasonal floods. Major elements (Ca, Mg, K) and alkalinity appear to be geochemically controlled during the concentration of waters and may be involved in the formation of carbonates and clay minerals around the saline lakes. The mineralogy of soils associated with a representative saline lake was investigated using XRD, TEM-EDS, and ICP-MS in order to identify the composition and genesis of the secondary minerals suspected to be involved in the control of major elements. The results showed that Ca, Mg, and K effectively undergo oversaturation and precipitation as the waters become more saline. These elements are incorporated in the authigenically formed carbonates, smectites, and micas surrounding the saline lake. The control of Ca occurs by precipitation of calcite and dolomite in nodules while Mg and K are mainly involved in the neoformation of Mg-smectites (stevensitic and saponitic minerals) and, probably, iron-enriched micas (ferric-illite) in surface and subsurface horizons. Therefore, our study confirms that the salinity of Pantanal, historically attributed to inheritance from former regimes, has a contribution of current processes.
机译:潘塔纳尔湿地盐湖的起源经典地归因于过去时期的过程。然而,最近的研究表明,盐水是由淡水的蒸发浓缩形成的,淡水的蒸发浓缩每年由季节性洪水提供。主要元素(Ca,Mg,K)和碱度似乎在水的浓缩过程中受到地球化学控制,并且可能与盐湖周围的碳酸盐和粘土矿物形成有关。使用XRD,TEM-EDS和ICP-MS对与代表性盐湖相关的土壤矿物学进行了研究,以确定可能与主要元素控制有关的次生矿物的组成和成因。结果表明,随着海水变得更咸,Ca,Mg和K会有效地过饱和和沉淀。这些元素被合并到盐湖周围自生的碳酸盐,蒙脱石和云母中。钙的控制是通过方解石中的方解石和白云石的沉淀来实现的,而Mg和K主要参与Mg-蒙脱石(硬锰矿和云母矿物)以及可能富含铁的云母(铁-伊利石)的新形成。视野。因此,我们的研究证实潘塔纳尔的盐度在历史上归因于前政权的继承,对当前的进程做出了贡献。

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