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
【24h】

Effect of aragonite to calcite transformation on the geochemistry and dating accuracy of speleothems. An example from Castanar Cave, Spain

机译:金属石对方解石转化对斯派科的地球化学和约会准确性的影响。来自西班牙Castanar Cave的一个例子

获取原文
获取原文并翻译 | 示例
           

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:金色的斯派比斯越来越多地被用作高分辨率的气候代理;然而,化石是不稳定的并且易于对方解石的成岩转化,导致矿物学,纹理和地球化学改变尚未完全调查。为了对这些修改提供一些见解,本研究结合了稳定的同位素地球化学和U形序列约会与岩石学观察和EMPA元素分析,以表征来自Castanar洞穴(Caceres,Spain)的石笋,其显示初级结构型成岩性和逆转。成岩方法包括结晶至方解石,微观化和溶解。在沉淀的水域和随后形成方解石的水化学和性质的表征和解释表明两种多晶型物由相同的流体形成。这些流体沿着样品内的成岩路径从“化石模式”到“方解石模式”中的液体流化。结果表明,在转换期间,系统在其中一个阶段保持靠近,并以相同的纹理结果打开。在重结晶区域或初级结构中发现反向年龄,由两种不同的U形测量机制引起的,由于表面流动的水域,U型浸出,以及在转化过程中的U损失。这些结果突出了成岩作用期间Speleothems的复杂行为及对初级和二期的地球化学信息的影响,从而重要性,岩石疗法思科和地球化学表征的重要性。皇家版权(c)2019由elestvier b.v出版。保留所有权利。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号