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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Genetic constraints on world-class carbonate- and siliciclastic-hosted stratabound fluorite deposits in Burgundy (France) inferred from mineral paragenetic sequence and fluid inclusion studies
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Genetic constraints on world-class carbonate- and siliciclastic-hosted stratabound fluorite deposits in Burgundy (France) inferred from mineral paragenetic sequence and fluid inclusion studies

机译:从矿物滑移序列和流体包裹研究中推断出世界级碳酸盐和硅质托管型氟岩萤石矿物矿床的遗传限制

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摘要

Stratabound fluorite deposits occur at the unconformity between the Variscan crystalline basement and the Mesozoic sandstone, conglomerate, limestone, and dolomite rocks of the Morvan Massif in central Burgundy. This study describes their petrographic characteristics in an attempt to determine the nature and temperature of mineralizing fluids in order to better understand the fluid migrations that led to massive stratabound fluorite deposition. The general paragenesis encompasses two major mineralizing events causing a succession of fluorite, barite, and quartz in all deposits. The two mineralizing events were preceded by two corrosion (dissolution or karstification) events affecting both the dolomite host rock at Pierre-Perthuis and Marigny-sur-Yonne and the limestone host rock at Courcelles-Fremoy with the creation of 1-10 m cavities and microscopic vugs. At Antully, the blocky calcite initially cementing the sandstone was partially dissolved. Microthermomenic data on aqueous two-phase inclusions attest to CaCl2-rich fluids giving rise to fluorite deposition in the Pierre-Perthuis, Courcelles-Fremoy, and Antully deposits. Homogenization temperatures range from 80 to 100 degrees C at Pierre-Perthuis and Courcelles-Fremoy, with sporadically higher temperatures. The range of CaCl2 contents is 6.5-15 wt.% at Pierre-Perthuis, 1.7-9.4 wt.% at Courcelles-Fremoy, and 1.6-16.3 wt.% at Antully. The thermal history of the northwestern Morvan, compiled from organic matter, clay minerals and apatite fission track data indicates that the temperatures in fluorite and barite are higher than the maximum temperature recorded in sediments. This implies deep ascendant hydrothermal brine circulation during the Early Cretaceous. The impermeable cap rock retained the ascendant hydrothermal brine and allowed the deposition of massive fluorite stratabound mineralizations. (C) 2015 Elsevier B.V. All rights reserved.
机译:斯特拉目州氟岩沉积物发生在伯克尼迪莫尔沃斯·麦克风的杂漆晶体地下室和中生代砂岩,集团,石灰石和白云石岩石之间的不整合。本研究描述了他们的岩体特征,以确定矿化流体的性质和温度,以便更好地理解导致巨大的燧石沉积的流体迁移。一般寄生植入包括两个主要的矿化事件,导致所有沉积物中的萤石,重晶体和石英。前面的两种矿化事件是影响Pierre-Perthuis和Marigny-Sur-yonne的白云石主体岩石的两种腐蚀(溶解或岩溶)事件,并且在Courcelles-Fremoy的石灰石宿主岩石中的创建和1-10米显微镜Vugs。在托利的情况下,最初巩固砂岩的块状方解石部分溶解。在富含CaCl2的富含CaCl2的液体中的微热烯丙基数据,其在皮埃尔 - 珀尔(Perthuis),Courcelles-Fremoy和托沉积物中产生萤石沉积。均匀化温度范围为Pierre-Perthuis和Courcelles-Fremoy的80至100摄氏度,均匀的温度较高。 CaCl2含量的范围为6.5-15重量%。Pierre-Perthuis,1.7-9.4重量%的Courcelles-Fremoy,1.6-16.3重量%。从有机物质编制的摩尔沃坦西北摩尔瓦的热历史,粘土矿物质和磷灰石裂变轨迹数据表明萤石和重晶体的温度高于沉积物中记录的最高温度。这意味着在早期白垩纪期间的深层热水盐水循环。不透水的帽岩保留了上升水热盐水,并允许沉积大规模的萤石划线矿化。 (c)2015 Elsevier B.v.保留所有权利。

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