首页> 外文期刊>International Journal of Earth Sciences >Imprints of hydrocarbon-bearing basinal fluids on a karst system:mineralogical and fluid inclusion studies from the Buda Hills,Hungary
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Imprints of hydrocarbon-bearing basinal fluids on a karst system:mineralogical and fluid inclusion studies from the Buda Hills,Hungary

机译:喀斯特系统上含烃盆地流体的印记:匈牙利布达山的矿物学和流体包裹体研究

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摘要

Calcite veins and related sulphate-sulphide mineralisation are common in the Buda Hills. Also, abundant hypogenic caves are found along fractures filled with these minerals pointing to the fact that young cave-forming fluids migrated along the same fractures as the older mineralising fluids did. The studied vein-filling paragenesis consists of calcite, barite, fluorite and sulphides. The strike of fractures is consistent-NNW-SSE- concluding a latest Early Miocene maximum age for the formation of fracture-filling minerals. Calcite crystals contain coeval primary, hydrocarbon-bearing- and aqueous inclusions indicating that also hydrocarbons have migrated together with the mineralising fluids. Hydrocarbon inclusions are described here for the first time from the Buda Hills. Mixed inclusions, i.e., petroleum with 'water-tail', were also detected, indicating that transcrystalline water migration took place. The coexistence of aqueous and petroleum inclusions permitted to establish the entrapment temperature (80℃) and pressure (85 bar) of the fluid and thus also the thickness of sediments, having been eroded since latest Early Miocene times, was calculated (800 m). Low salinity of the fluids (<1.7 NaCl eq. wt%) implies that hydrocarbon-bearing fluids were diluted by regional karst water. FT-IR investigations revealed that CO_2 and CH_4 are associated with hydrocarbons. Groundwater also contains small amounts of HC and related gases on the basin side even today. Based on the location of the paleo- and recent hydrocarbon indications, identical migration pathways were reconstructed for both systems. Hydrocarbon-bearing fluids are supposed to have migrated north-westward from the basin east to the Buda Hills from the Miocene on.
机译:在布达山中,方解石脉和相关的硫酸盐-硫化物矿化很常见。同样,在充满这些矿物的裂缝中发现了丰富的假山洞,这表明一个事实,即年轻的洞穴形成流体沿着与较老的矿化流体相同的裂缝迁移。研究的脉生共生包括方解石,重晶石,萤石和硫化物。裂缝的走向是一致的-NNW-SSE-包括形成裂缝填充矿物的最新中新世最大年龄。方解石晶体含有同时代的初生,含烃和含水包裹体,表明烃也与矿化液一起迁移。此处首次从布达山描述了烃包裹体。还检测到混合夹杂物,即带有“水尾”的石油,表明发生了跨晶水迁移。计算了含水和石油夹杂物的共存关系,可以确定流体的包裹温度(80℃)和压力(85 bar),从而可以确定自最近中新世以来被侵蚀的沉积物厚度(800 m)。流体的盐度低(<1.7 NaCl eq。wt%)意味着含烃流体被区域岩溶水稀释。 FT-IR研究表明,CO_2和CH_4与碳氢化合物有关。即使在今天,地下水在流域也含有少量的HC和相关气体。根据古烃和新近烃指示的位置,为这两个系统重建了相同的迁移途径。含烃流体应该从中新世以来从盆地东部向西北方向迁移到布达山。

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  • 来源
    《International Journal of Earth Sciences》 |2012年第2期|p.429-452|共24页
  • 作者单位

    Department of Physical and Applied Geology, Eotvos Lorand University, Pazmany P. s. 1/c, Budapest 1117, Hungary Department of Mineralogy, Eotvos Lorand University, Pazmany P. s. 1/c, Budapest 1117, Hungary Geological, Geophysical and Space Science Research Group of the Hungarian Academy of Sciences, Pazmany P. s. 1/c, Budapest 1117, Hungary;

    Department of Physical and Applied Geology, Eotvos Lorand University, Pazmany P. s. 1/c, Budapest 1117, Hungary;

    Department of Physical and Applied Geology, Eotvos Lorand University, Pazmany P. s. 1/c, Budapest 1117, Hungary;

    Universite de Lorraine, CNRS, G2R Laboratory, BP 70239, 54506 Vandoeuvre-les-Nancy, France;

    Department of Physical and Applied Geology, Eotvos Lorand University, Pazmany P. s. 1/c, Budapest 1117, Hungary Department of Mineralogy, Eotvos Lorand University, Pazmany P. s. 1/c, Budapest 1117, Hungary;

    ENI Exploration and Production Division, Via Emilia 1, 20097 San Donato Milanese, Italy;

    Separation Science Research and Education Laboratory, Eotvos Lorand University, Pazmany P. s. I/a, Budapest 1117, Hungary;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    calcite; petroleum inclusion; hydrocarbon migration; miocene; buda thermal karst; pannonian basin;

    机译:方解石石油包裹体油气运移中新世布达热岩溶;潘诺尼盆地;

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