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首页> 外文期刊>American Mineralogist >Mineralogy, chemistry, and formation of oxidized biotite in the weathering profile of granitic rocks
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Mineralogy, chemistry, and formation of oxidized biotite in the weathering profile of granitic rocks

机译:花岗岩岩石风化剖面中的矿物学,化学性质和氧化黑云母的形成

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摘要

Biotite was oxidized in deep saprolitic weathering profiles developed on granitic rocks in a humid temperate climate in the Youngju-Andong area of South Korea. The mineralogy and chemistry of these oxidized biotites were characterized by chemical analysis, electron microscopy, X-ray diffraction, thermal analysis, and radiogenic Ar analysis. The results showed that a decrease in the bo-dimension, loss of radiogenic Ar, and formation of vermiculite are fairly well correlated with the degree of oxidation of ferrous iron. The chemical composition of oxidized biotite was modified by a non-stoichiometric removal of interlayer and octahedral cations to compensate for the charge imbalance induced by oxidation of Fe. The pervasive loss of cations and radiogenic Ar suggests their diffusion through oxidizing biotite in a non-expanded state. Iron oxidation and cation loss caused a decrease in the bo-dimension with the formation of discontinuities that acted as conduits for the weathering solutions, resulting in partial vermiculitization (<10%). The Fe oxidation was nearly completed in the lower part of the profile, concomitant with mineralogical and chemical modification to oxidized biotite that persists throughout the profile without further notable modification. Cation release from biotite is governed in early stage by the formation of oxidized biotite, and later by its decomposition.
机译:黑云岩在深温的气候条件下,在韩国Youngju-Andong地区的湿润温带花岗岩质岩石上被深层氧化[sup> 。通过化学分析,电子显微镜,X射线衍射,热分析和放射源Ar分析对这些氧化黑云母的矿物学和化学特征进行了表征。 。结果表明, b o 尺寸的减小,放射源Ar的损失和ver石 的形成与程度有关。 铁的氧化反应通过非化学计量去除层间和八面体 阳离子来修饰氧化黑云母的化学成分,以补偿氧化 引起的电荷不平衡。铁阳离子和放射源性Ar的普遍流失表明 通过未膨胀 状态的氧化黑云母扩散。铁的氧化和阳离子的损失导致 b o 的尺寸减小,并形成了不连续的部分,这些不连续的部分起了作为耐候溶液导管的作用,从而在部分 微粒化中(<10%)。铁的氧化在剖面下部几乎完成,与矿物学和化学修饰成氧化的黑云母,并在整个剖面中持续存在。进一步显着的修饰。 黑云母中阳离子的释放在早期受氧化黑云母的 形成,然后由其分解而控制。

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  • 来源
    《American Mineralogist》 |2003年第3期|00000352-00000364|共13页
  • 作者

    Gi Young Jeong; Hye Bin Kim;

  • 作者单位

    Department of Earth and Environmental Sciences, Andong National University, Andong 760-749, South Korea;

    Department of Earth and Environmental Sciences, Andong National University, Andong 760-749, South Korea;

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