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首页> 外文期刊>Sedimentary geology >Effect of aragonite to calcite transformation on the geochemistry and dating accuracy of speleothems. An example from Castanar Cave, Spain
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Effect of aragonite to calcite transformation on the geochemistry and dating accuracy of speleothems. An example from Castanar Cave, Spain

机译:文石向方解石转变对蛇麻草的地球化学和测年精度的影响。西班牙Castanar Cave的一个例子

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摘要

Aragonite speleothems are increasingly being used as high-resolution climate proxies; however, aragonite is unstable and susceptible to diagenetic transformation into calcite leading to mineralogical, textural and geochemical alterations that have not been fully investigated. To provide some insights to these modifications, this study combines stable isotope geochemistry and U-series dating with petrological observations and EMPA elemental analyses to characterize a stalagmite from Castanar Cave (Caceres, Spain) that shows primary aragonite diagenetically altered and with reverse ages. The diagenetic processes include recrystallization to calcite, micritization and dissolution. Characterization and interpretation of the chemistry and nature of the waters from which the aragonite precipitated, and of the ones that subsequently formed the calcite, indicates that both polymorphs formed from the same fluids. These fluids hydrochemically evolved from an "aragonite mode" to a "calcite mode" along a diagenetic path within the sample. The results show that during transformation the system stayed close in one of the stages, and open in the other with the same textural result. Reverse ages are found either in the recrystallized areas or in the primary aragonite, caused by two different U-remobilization mechanisms, U-leaching due to flowing waters on the surface, and U-loss during the transformation process. These results highlight the complex behavior of speleothems during diagenesis and the impact on the geochemical information of the primary and secondary phases, and thus the importance of petrological and geochemical characterization of speleothems for paleoclimatic studies. Crown Copyright (C) 2019 Published by Elsevier B.V. All rights reserved.
机译:文石假山蛇眼越来越多地用作高分辨率气候代理。然而,文石是不稳定的,容易成岩转变为方解石,导致矿物,构造和地球化学变化,目前尚未进行充分研究。为了提供对这些修饰的一些见解,本研究将稳定的同位素地球化学和U系列测年与岩石学观测和EMPA元素分析相结合,以表征来自Castanar Cave(西班牙卡塞雷斯)的石笋,该石笋显示出原钠钙榴石呈辉光岩性改变并具有逆龄。成岩过程包括重结晶为方解石,微晶化和溶解。对文石从其沉淀的水以及随后形成方解石的水的化学性质和性质进行表征和解释,表明这两种多晶型物都是由相同的流体形成的。这些流体沿样品内的成岩路径从“ ar石模式”演变为“方解石模式”。结果表明,在转换过程中,系统在一个阶段中保持关闭状态,而在另一个阶段中保持打开状态,并且具有相同的纹理结果。在重结晶区或原生文石中发现了逆龄,这是由于两种不同的U迁移机制,由于表面流动的水导致的U浸出以及转化过程中的U损失引起的。这些结果突出说明了斑节煤在成岩过程中的复杂行为以及对初级和次要阶段的地球化学信息的影响,因此突出了斑节煤的岩石学和地球化学特征对于古气候研究的重要性。官方版权(C)2019由Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Sedimentary geology》 |2019年第4期|41-54|共14页
  • 作者单位

    CNRS, Stn Ecol Theor & Expt, UMR 5321, F-09200 Moulis, France|UCM, CSIC, Inst Geociencias, Fac Ciencias Geol,Dept Mineral & Petrol, Madrid 28040, Spain;

    UCM, CSIC, Inst Geociencias, Fac Ciencias Geol,Dept Mineral & Petrol, Madrid 28040, Spain;

    Univ Newcastle, Sch Environm & Life Sci, Callaghan, NSW 2308, Australia;

    UCM, CSIC, Inst Geociencias, Fac Ciencias Geol,Dept Mineral & Petrol, Madrid 28040, Spain;

    Univ Melbourne, Sch Geog, Melbourne, Vic 3010, Australia|Univ Savoie Mont Blanc, UMR 5204 CNRS, Lab EDYTEM, F-73376 Le Bourget Du Lac, France;

    Univ Melbourne, Sch Earth Sci, Melbourne, Vic 3010, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Speleothems; Aragonite; Calcite; Diagenesis; U/Th dating; Geochemistry;

    机译:ele煤;文石;方解石;成岩作用;U / Th定年;地球化学;

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