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The classification of chemical weathering of basic igneous rocks with respect to mineralogical composition and pedogeochemical conditions

机译:基本矿物火成岩化学风化的矿物学组成和地球化学条件分类

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摘要

The chemical composition of superficially weathered layers in mafic rocks (MR) is studied. Proceeding from the chemical effect of MR weathering, three types of weathering are distinguished, which arise from the chemico-mineralogical composition of rocks: (1) timaferric weathering, typical of cenotypal (unchanged) rocks, with Ti, Mn, Fe, and Mg accumulating residually in weathering products; (2) balanced chemical weathering, typical for the paleotypal (hypogenically alter, and containing rock-forming phyllosilicates) rocks, with chemical composition of weathered and fresh rocks almost equivalent; (3) amorphous fersialitic weathering, typical noncrystalline MR, nonsilicate forms of Al, Fe, and Si being relatively accumulated. As shown here, soil weathering is qualitatively similar in genetically different soils, geochemically different horizons, and different bioclimatic provinces of the boreal zone. The chemical results of weathering essentially differ only in the stable reduction conditions of weathering.
机译:研究了镁铁质岩石(MR)中表面风化层的化学成分。从MR风化的化学作用出发,可以区分出三种类型的风化,这是由岩石的化学矿物学组成引起的:(1)替马铁风化,典型的表型(未变质)岩石,具有Ti,Mn,Fe和Mg残留在风化产物中; (2)均衡的化学风化作用,典型的古生(低成因蚀变,并含有成岩的层状硅酸盐)岩石,风化的和新鲜的岩石的化学成分几乎相等; (3)非晶铁素体风化,典型的非晶MR,Al,Fe和Si的非硅酸盐形式相对积累。如此处所示,在遗传上不同的土壤,地球化学上不同的地平线以及寒带的不同生物气候省份,土壤风化在质量上是相似的。风化的化学结果本质上仅在风化的稳定还原条件上不同。

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