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首页> 外文期刊>Modeling Earth Systems and Environment >Geophysical and geochemical alteration of rocks in granitic profiles during intense weathering in southern Purulia district, West Bengal, India
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Geophysical and geochemical alteration of rocks in granitic profiles during intense weathering in southern Purulia district, West Bengal, India

机译:印度西孟加拉邦普留利亚南部地区强烈风化期间花岗岩剖面岩石的地球物理和地球化学变化

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Purulia district of West Bengal is geologically dominated mostly by Proterozic hard granite gneiss rocks including soft phyllite and mica schist of Singhbhum group as part of Chotanagpur plateau. Present study aims to understand the nature of geophysical and geochemical weathering processes for characterization of granitic crust as well as the geochemical ways of this alteration. During the field study 14 rocks and soils samples were collected from three sections of each weathering profile in three different blocks namely, Manbazar-I, Manbazar-II and Banduan. The samples were collected along the roads cuts, natural and other man-made exposures and restricted mostly within the exposed layers of the respective profiles. The samples were analyses in sieve for particle size distribution and in X-ray diffraction for mineralogical alteration. The thin section of selected samples were analysed under polarized optical microscope for understanding the nature of physical and chemical changes in parent rocks.From sieve analysis, the cumulative particle sizedistribution show that the size of weathered materials gradually reduces from saprolite to overlying soils in every profile. Mineralogical analysis by XRD shows that feldspar, muscovite, quartz and biotite are the primary minerals which are intensely weathered and have undergone some geochemical processes except quartz, to form some secondary clay minerals like montmorillonite, kaolinite and illite in the overlying soil. Optical microscopic analysis reveals that transformation of primary minerals to secondary clay minerals significantly reduced the rocks strength which leads the rocks disintegrate into smaller particles. Finally, the results show that there is an abundance of montmorillonite and altered primary minerals with gravel materials in the profiles are liable for further weathering to develop a mature soil.
机译:西孟加拉邦的Purulia地区在地质上主要由Proterozic硬花岗岩片麻岩构成,其中包括Chotanagpur高原一部分的Singhbhum组软云母和云母片岩。本研究旨在了解表征花岗岩壳的地球物理和地球化学风化过程的性质以及这种改变的地球化学方式。在野外研究期间,从三个不同区块(即Manbazar-I,Manbazar-II和Banduan)的每个风化剖面的三个部分收集了14个岩石和土壤样本。沿道路切割,自然和其他人为暴露方式收集样品,且样品大部分限制在相应轮廓的暴露层内。样品在筛子中进行粒度分布分析,在X射线衍射中进行矿物学变化分析。通过偏振光学显微镜对选定样品的薄片进行分析,以了解母岩物理和化学变化的性质。通过筛分分析,累积的粒径分布表明,风化物质的尺寸在每个剖面中都从腐泥土逐渐变薄为覆土。 XRD的矿物学分析表明,长石,白云母,石英和黑云母是强烈风化的主要矿物,除了石英外还经历了一些地球化学过程,在上层土壤中形成了蒙脱石,高岭石和伊利石等次生粘土矿物。光学显微镜分析表明,主要矿物向次要粘土矿物的转化显着降低了岩石的强度,从而导致岩石分解成较小的颗粒。最后,结果表明,那里有大量的蒙脱石,并且剖面中的碎石材料中含有碎石的蚀变矿物易于进一步风化以形成成熟的土壤。

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