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首页> 外文期刊>Journal of South American earth sciences >Mineralogy and genesis in an alkaline soil system in the southern Pantanal wetland, Brazil
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Mineralogy and genesis in an alkaline soil system in the southern Pantanal wetland, Brazil

机译:巴西南方潘塔纳尔湿地碱土土系中的矿物学和创世纪

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摘要

The genesis of clays in Pantanal soils is influenced by parent material, water seasonality and elevated temperatures, resulting in soils with attributes not so common in other tropical regions. This research aimed to study the genesis of minerals in the clay fraction present in three soil profiles developed from carbonate sediments in Pantanal of the State of Mato Grosso do Sul, Brazil. Three trenches were excavated, and the soils were morphologically described and classified according to WRB in Chernozem (profiles P1 and P3) and Gleysol (P2). In addition, deformed samples from all soil horizons were sampled and used in physical, chemical, and mineralogical analyses. Clay fraction obtained from the diagnostic subsurface horizons of the profiles was submitted to identification of the mineral phases using X-ray diffraction, morphological analysis in a scanning electron microscope and microchemical analysis using energy dispersive X-ray spectroscopy. In the three profiles, the presence of interlayered minerals of kaolinite-smectite and illite-smectite; quartz and calcite in profile P3, was confirmed in the clay fraction. The clays from the three profiles presented high levels of SiO2 (ranging from 35.4 to 56.7%). The clays from profiles P1 and P2 presented high levels of Al2O3 (P1 = 24.6% and P2 = 15.2%), Fe2O3 (P1 = 14.0% and P2 = 11.8%), which suggests the formation of dioctahedral clay and illite rich in Fe. The high levels of MgO (11.1%) and Fe2O3 (7.2%) in clays of the P3 profile indicated the presence of trioctahedral Mg-smectite and illite rich in Fe. In the studied soils, the condition of moderate to imperfect drainage, water from the water table rich in cations and the alkaline environments of soils, constitutes the principal factor responsible for the current dynamics of neoformation of dioctahedral illite rich in Fe and trioctahedral Mg-smectite and dissolution of kaolinite.
机译:爪子土壤中的粘土的起源受母材,水季节性和高温的影响,导致土壤在其他热带地区不太常见。该研究旨在研究从巴西Mato Grosso Do Sul Mato Grosso Do Sul Mato Mato山羊山羊座开发的三种土壤曲线中存在的矿物质的成因。挖掘了三个沟槽,并根据Chernozem(谱P1和P3)和Gleysol(P2)中的WRB形态描述和分类。此外,来自所有土壤视野的变形样品被取样并用于物理,化学和矿物学分析。从曲线的诊断地下视线获得的粘土馏分在使用X射线衍射中鉴定矿物相,在扫描电子显微镜中的形态学分析和使用能量分散X射线光谱进行微型化学分析。在三种型材中,存在高岭土 - 蒙脱石和硅灰石 - 蒙脱石的层间矿物质;在概况P3中的石英和方解石,在粘土级分中确认。来自三种型材的粘土呈现出高水平的SiO 2(范围从35.4〜56.7%)。来自曲线P1和P2的粘土呈现高水平的Al 2 O 3(P1 = 24.6%,P2 = 15.2%),Fe 2 O 3(P1 = 14.0%和P2 = 11.8%),这表明富含DIOctaheDral粘土和富含Fe的硫铁矿的形成。 P3分布的粘土中的高水平MgO(11.1%)和Fe2O3(7.2%)表明存在三胞内海绵体Mg-蒙脱石和富含Fe的illite。在研究的土壤中,中等至缺乏排水的条件,来自阳离子的水位的水和土壤的碱性环境,构成了原则上的主要因素,负责当前的富含二氧化碳硫铁矿的新种动力学和三氧化妇二甲基镁 - 蒙脱石高岭石的溶解。

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