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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Evolution of clay mineral assemblages in the Tinguiririca geothermal field, Andean Cordillera of central Chile: an XRD and HRTEM-AEM study
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Evolution of clay mineral assemblages in the Tinguiririca geothermal field, Andean Cordillera of central Chile: an XRD and HRTEM-AEM study

机译:智利中部安第斯山脉山脉廷吉里里卡地热田粘土矿物组合的演化:XRD和HRTEM-AEM研究

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摘要

HRTEM textural evidence shows that clay minerals in the Tinguiririca geothermal field (Andean Cordillera, central Chile) are the result of direct alteration of former volcanic glass and minerals by hydrothermal fluids at similar temperatures to the present day. They show the classical pattern of diagenetic transformation from smectite at the top to illite at the bottom, with the progressive formation of corrensite and chlorite. The high fluid/rock ratio, disposability of necessary cations and absence of previous detrital phyllosilicates allow the consideration of this area as a natural laboratory to establish the extreme ideal conditions for very low-T reactions. Transformations from smectite to R1 illite-smectite (I-S) and from these to R3 mixed-layers occur respectively at 80-120 ℃ and 125-180 ℃. In spite of ideal genetic conditions, the new-formed minerals show all the defective character and lack of textural and chemical equilibrium previously described in the literature for diagenetic and hydrothermal low-temperature assemblages. Chemistry of smectite-illite phases evolves basically through a diminution of the pyrophyllitic component toward a theoretical muscovite (Si~(4+) + □ -> Al~(3+)+ K~+). However, a second chemical vector (Si~(4+)+Mg~(2+) → Al~(3+)+Al~(3+)), that is, decreasing of the tschermack component, also contributes to the evolution toward the less Si-more Al rich muscovite in relation to the original smectite. Residual Mg (and Fe) from the latter reaction is consumed in the genesis of chloritic phases. Nevertheless, as a consequence of the lack of chemical equilibrium (probably because of the short time-scale of the geothermal alteration processes), the composition of clay minerals is highly heterogeneous at the level of a single sample. Consequently, the respective fields of smectite, R1 I-S and R3 I-S overlap each other, making the distinction among these three phases impossible based exclusively on chemical data.
机译:HRTEM的结构性证据表明,廷吉里里卡地热田(智利中部安第斯山脉)的粘土矿物是由与今天相似的温度下的热液对前火山玻璃和矿物进行直接改变的结果。它们显示出从顶部的绿土到底部的伊利石的成岩作用的经典模式,并逐渐形成了堇青石和绿泥石。高流体/岩石比,所需阳离子的可处理性以及以前没有碎屑的层状硅酸盐的存在,可以考虑将该区域视为天然实验室,以为T极低的反应建立极端理想的条件。从蒙脱石到R1伊利石-蒙脱石(I-S)以及从这些蒙脱石到R3混合层的转变分别在80-120℃和125-180℃发生。尽管具有理想的遗传条件,但新形成的矿物仍显示出所有缺陷特征,并且缺乏先前在文献中对成岩和热液低温组合物所描述的结构和化学平衡。绿土-伊利石相的化学性质基本上是通过将叶蜡素成分减少为理论白云母(Si〜(4+)+□-> Al〜(3 +)+ K〜+)演变而来的。然而,第二化学载体(Si〜(4 +)+ Mg〜(2+)→Al〜(3 +)+ Al〜(3+)),即tschermack组分的减少,也有助于进化相对于原始蒙脱石,向含硅量少,铝含量高的白云母的方向发展。后者反应中残留的Mg(和Fe)在氯相的发生中被消耗掉。然而,由于缺乏化学平衡(可能是由于地热蚀变过程的时间短),粘土矿物的成分在单个样品的水平上是高度异质的。因此,蒙脱石,R 1 I-S和R 3 I-S的各自的领域彼此重叠,使得不可能仅基于化学数据来区分这三个相。

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  • 作者单位

    Department of Geology and Andean Geothermal Center of Excellence (CEGA), Facultad de Ciencias Fisicas y Matematicas, Universidad de Chile, Plaza Ercilla 803, Santiago, Chile;

    Departamento de Mineralogia y Petrologia and Institute Andaluz de Ciencias de la Tierra, Universidad de Granada-CSIC, Avenida Fuentenueva, 18002 Granada, Spain;

    Department of Geology and Andean Geothermal Center of Excellence (CEGA), Facultad de Ciencias Fisicas y Matematicas, Universidad de Chile, Plaza Ercilla 803, Santiago, Chile;

    Department of Geology and Andean Geothermal Center of Excellence (CEGA), Facultad de Ciencias Fisicas y Matematicas, Universidad de Chile, Plaza Ercilla 803, Santiago, Chile,Energia Andina S.A., Cerro El Plomo 5630, Santiago, Chile;

    Departamento de Mineralogia y Petrologia and Institute Andaluz de Ciencias de la Tierra, Universidad de Granada-CSIC, Avenida Fuentenueva, 18002 Granada, Spain;

    Departamento de Mineralogia y Petrologia and Institute Andaluz de Ciencias de la Tierra, Universidad de Granada-CSIC, Avenida Fuentenueva, 18002 Granada, Spain;

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  • 正文语种 eng
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  • 关键词

    Geothermal alteration; Clay minerals; Reaction progress; XRD; HRTEM-AEM; Andean Cordillera; Chile;

    机译:地热蚀变;粘土矿物;反应进度;XRD;HRTEM-AEM;安第斯山脉智利;

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