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Illitization sequence controlled by temperature in volcanic geothermal systems: The Tinguiririca geothermal field, Andean Cordillera, Central Chile

机译:火山地热系统中受温度控制的照明顺序:智利中部安第斯山脉山脉的廷吉里里卡地热田

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摘要

In this research, we have investigated the illitization process in Quaternary calc-alkaline volcanic and volcaniclastic rocks in the active Tinguiririca geothermal field (Andean Cordillera, central Chile). XRD, SEM, and HRTEM/AEM techniques havebeen used to establish the illitization sequence and evaluate the influence of the factors controlling the mineral reaction and kinetics at low temperature (T). Analysed samples were collected through a slimhole core up to 815 m deep in which the T was measured in situ (up to 230 degrees C at the bottom of the drill core). Textural information indicates that the dioctahedral clays have replaced most of the vitreous components. In contrast, plagioclase phenocrysts have only been partially and patchily albitized. The observed replacements imply dissolution-crystallization processes. The illitization sequence detected by XRD is apparently continuous from smectite to R3 I-S through R0 and R1, with a progressive increase in illite layers. HRTEM data show a similar illitization trend. However, the high-resolution images reveal that the clays are more heterogeneous than the XRD patterns suggest, with the coexistence of different types of dioctahedral clays at the sample level. They also indicate that the most abundant dioctahedral clays are smectite, R1 I-S, and illite. Therefore, the XRD patterns are probably the result of a mixture of these phases plus accessory I-S mixed layers with higher ordering (R > 1). Increasing T with depth would enhance the kinetic conditions necessary for illitization and also favour the dissolution of the vitreous K-rich component and, locally the albitization of plagioclases. Both processes release K, which, with the concomitant increase in T and K availability, enhances the crystallization of clays progressively richer in K. Thus, at T <= 85 degrees C smectite crystallizes, at T> 85 degrees C the conditions are appropriate for the crystallization of R1 I-S (with minor smectite + RO I-5), up to T >= 175 degrees C, where illite is the most abundant and relatively stable phase. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们研究了活跃的Tinguiririca地热田(智利中部安第斯山脉)中第四纪钙碱性火山岩和火山碎屑岩的非化作用过程。 XRD,SEM和HRTEM / AEM技术已被用于建立未授权序列,并评估了控制矿物反应和低温(T)动力学的因素的影响。通过深达815 m的细孔岩心收集分析样品,在该井眼中就地测量T(在钻芯底部最高230摄氏度)。纹理信息表明,二面体粘土已取代了大多数玻璃体成分。相比之下,斜​​长石的隐晶石只被部分地和部分地仲裁。观察到的替代物暗示着溶解结晶过程。 XRD检测到的非结晶序列从蒙脱石到R3 I-S到R0和R1显然是连续的,伊利石层逐渐增加。 HRTEM数据显示出类似的非法化趋势。但是,高分辨率图像显示,粘土比XRD模式所暗示的具有更高的异质性,并且样品级别上不同类型的二八面体粘土共存。他们还指出,最丰富的八面体粘土是蒙脱石,R1 I-S和伊利石。因此,XRD图谱可能是这些相加上具有较高顺序(R> 1)的辅助I-S混合层的混合物的结果。随着深度的增加,T会增加进行未必化的动力学条件,也有利于富含玻璃体的K成分的溶解以及斜方肌垂体的局部化。两种方法都释放出K,这随着T和K利用率的增加而增加了逐渐富含K的粘土的结晶。因此,在T <= 85℃时,蒙脱石结晶,在T> 85℃时,该条件适合R1 IS(具有少量蒙脱石+ RO I-5)的结晶,直至T> = 175摄氏度,其中伊利石是最丰富且相对稳定的相。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied clay science》 |2016年第12期|221-234|共14页
  • 作者单位

    Univ Chile, Fac Ciencias Fis & Matemat, Andean Geothermal Ctr Excellence CEGA, Dept Geol, Plaza Ercilla 803, Santiago, Chile|Univ Granada, Dept Didact Ciencias Expt, Campus Univ Ceuta,Calle Cortadura del Valle S-N, Ceuta, Spain;

    Univ Zaragoza, Dept Earth Sci, Pedro Cerbuna 12, Zaragoza, Spain;

    Univ Granada, CSIC, Andalusian Inst Earth Sci, Dept Mineral & Petrol, Fuente Nueva S-N, Granada, Spain;

    Univ Chile, Fac Ciencias Fis & Matemat, Andean Geothermal Ctr Excellence CEGA, Dept Geol, Plaza Ercilla 803, Santiago, Chile;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Illite/smectite; XRD; HRTEM; Active geothermal systems; Andes;

    机译:伊利石/蒙脱石;XRD;HRTEM;活跃地热系统;安第斯山脉;

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