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首页> 外文期刊>AAPG Bulletin >Massive dolomitization of a pinnacle reef in the Lower Devonian West Point Formation (Gaspe Peninsula, Quebec): An extreme case of hydrothermal dohmitization through fault-focused circulation of magmatic fluids
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Massive dolomitization of a pinnacle reef in the Lower Devonian West Point Formation (Gaspe Peninsula, Quebec): An extreme case of hydrothermal dohmitization through fault-focused circulation of magmatic fluids

机译:泥盆纪下西点组(魁北克Gaspe半岛)顶峰礁的大规模白云石化:通过岩浆流体的断层聚焦循环发生的热液白云石化的极端情况

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摘要

Devonian pinnacle reefs of the West Point Formation in Gaspe Peninsula (eastern Canada) were built on paleotectonic highs in a foreland basin. Of the nine pinnacles known in outcrop, one is dolomitized and occurs at the junction of two Acadian faults. The petrography of the dolomitized facies has revealed the presence of three dolomite phases and one late calcite cement. A first dolomite phase of small crystals is volumetrically minor; the following dolomite phase dominates and consists of centimeter-size replacive saddle dolomite crystals that contain fluid inclusions with homogenization temperatures ranging between 301 and 382°C. The third dolomite consists of millimeter- to centimeter-size saddle dolomite crystals that fill late fractures; this phase is characterized by lower temperature fluid inclusions (159-171°C). A lower temperature calcite phase (107-123°C) fills some voids. Fluid inclusions are saline (8.7 to 13.3 wt.% NaCl_(equiv)). The dolomite and calcite phases are characterized by very negative δ~(18) O_(VPDB) (Vienna Peedee belemnite) values (between -19 and -14‰) and negative δ~(13) C_(VPDB) values (between -8 and -1‰). The replacive saddle dolomite phase originated from a fluid with very positive δ~(18)O_(VSMOW) (Vienna standard mean ocean water] values (+8‰), whereas the following dolomite and calcite precipitated from fluids with lower δ~(18) O_(VSMOW) values (+3.4 and +4.5‰). We propose that fault-focused circulation of magmatic fluids is responsible for the very high-temperature massive dolomite replacement of the calcite host, and high-temperature burial fluids later used fractures to circulate in the dolomitized host to precipitate late dolomite and calcite. Regionally, hydrocarbon migration is recognized at the time of late calcite cementation.
机译:加斯佩半岛(加拿大东部)西点组的泥盆纪石峰礁建在前陆盆地的古构造高点上。在露头已知的九个顶峰中,一个被白云石化并出现在两个阿卡迪亚断层的交界处。白云石化相的岩石学显示存在三个白云岩相和一个晚方解石水泥。小晶体的第一白云石相在体积上较小。接下来的白云石相占主导地位,由厘米级的替换鞍状白云石晶体组成,晶体中含有流体包裹体,均质温度在301至382°C之间。第三种白云石由毫米至厘米大小的鞍状白云石晶体组成,可填充后期裂缝。此阶段的特征是流体包裹体温度较低(159-171°C)。较低温度的方解石相(107-123°C)填充了一些空隙。流体包含物为盐水(8.7至13.3 wt。%NaCl_(当量))。白云岩和方解石相的特征是δ〜(18)O_(VPDB)(维也纳皮德贝莱蒙石)值非常负(-19至-14‰)和δ〜(13)C_(VPDB)负值(-8之间)和-1‰)。替代性鞍状白云石相来自δ〜(18)O_(VSMOW)(维也纳标准平均海水)值(+ 8‰)非常正的流体,而随后的白云石和方解石则来自δ〜(18)较低的流体。 )O_(VSMOW)值(+3.4和+ 4.5‰),我们认为以断层为重点的岩浆流体循环是方解石主体的高温大块白云石置换的原因,而高温埋葬液后来又使用了裂缝在白云石化主体中循环,沉淀出晚白云岩和方解石,在区域内,在晚方解石胶结时识别出烃运移。

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