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Early diagenetic dolomitization and dedolomitization of Late Jurassic and earliest Cretaceous platform carbonates: A case study from the Jura Mountains (NW Switzerland, E France)

机译:侏罗纪晚期和最早的白垩纪台地碳酸盐岩的早期成岩白云石化和去白云岩化作用:以侏罗山为例(瑞士西北,法国)

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摘要

Early diagenetic dolomitization is a common feature in cyclic shallow-water carbonates throughout the geologic record. After their generation, dolomites may be subject to dedolomitization (re-calcification of dolomites), e.g. by contact with meteoric water during emersion. These patterns of dolomitization and subsequent dedolomitization frequently play a key role in unravelling the development and history of a carbonate platform. On the basis of excellent outcrops, detailed logging and sampling and integrating sedimentological work, high-resolution sequence stratigraphic interpretations, and isotope analyses (O, C), conceptual models on early diagenetic dolomitization and dedolomitization and their underlying mechanisms were developed for the Upper Jurassic / Lower Cretaceous Jura platform in north-western Switzerland and eastern France. Three different types of early diagenetic dolomites and two types of dedolomites were observed. Each is defined by a distinct petrographic/isotopic signature and a distinct spatial distribution pattern. Different types of dolomites are interpreted to have been formed by different mechanisms, such as shallow seepage reflux, evaporation on tidal flats, and microbially mediated selective dolomitization of burrows. Depending on the type of dolomite, sea water with normal marine to slightly enhanced salinities is proposed as dolomitizing fluid. Based on the data obtained, the main volume of dolomite was precipitated by a reflux mechanism that was switched on and off by high-frequency sea-level changes. It appears, however, that more than one dolomitization mechanism was active (pene)contemporaneously or several processes alternated in time. During early diagenesis, percolating meteoric waters obviously played an important role in the dedolomitization of carbonate rocks that underlie exposure surfaces. Cyclostratigraphic interpretation of the sedimentary succession allows for estimates on the timing of early diagenetic (de)dolomitization. These results are an important step towards a better understanding of the link between high-frequency, probably orbitally forced, sea-level oscillations and early dolomitization under Mesozoic greenhouse conditions.
机译:在整个地质记录中,早期成岩白云石化作用是环状浅水碳酸盐岩的共同特征。生成白云石后,可对其进行去脱硅作用(白云石的再钙化),例如出土时与流星水接触。这些白云石化和随后的去云石化模式通常在阐明碳酸盐岩平台的发展和历史方面起着关键作用。在优良的露头,详细的测井和取样以及沉积学研究成果,高分辨率层序地层解释和同位素分析(O,C)的基础上,为上侏罗统开发了早期成岩白云石化和去白云岩化的概念模型及其潜在机理。 /瑞士西北部和法国东部的下白垩统侏罗平台。观察到了三种不同类型的早期成岩白云岩和两种类型的脱云母岩。每个都由不同的岩相/同位素特征和不同的空间分布模式定义。不同类型的白云岩被解释为是由不同的机制形成的,例如浅层渗流,潮滩上的蒸发以及微生物介导的洞穴的选择性白云石化。根据白云石的类型,有人建议将具有正常海洋盐度或略微增加盐度的海水作为白云石化流体。根据获得的数据,白云石的主要体积是通过回流机制沉淀的,该回流机制是通过高频海平面变化来打开和关闭的。但是,似乎同时存在一种以上的白云石化机制是活跃的(烯),或者是几个过程在时间上交替出现。在早期成岩过程中,渗流的水明显在暴露表面下的碳酸盐岩的去离子作用中起了重要作用。沉积层序的旋回地层学解释可以估算早期成岩作用(去白云岩化作用)的时间。这些结果是迈向更好地了解中生代温室条件下高频(可能是轨道强迫的)海平面振荡与早期白云石化之间联系的重要一步。

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    Rameil, Niels;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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