首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Track of fluid paleocirculation in dolomite host rock at regional scale by the Anisotropy of Magnetic Susceptibility (AMS): An example from Aptian carbonates of La Florida, Northern Spain
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Track of fluid paleocirculation in dolomite host rock at regional scale by the Anisotropy of Magnetic Susceptibility (AMS): An example from Aptian carbonates of La Florida, Northern Spain

机译:磁化率各向异性(AMS)对白云岩基质岩石流体古循环的区域性追踪:以西班牙北部拉弗洛里德的碳酸盐岩为例

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The present study aims to apply the AMS method (Anisotropy of Magnetic Susceptibility) at a regional scale to track the fluid circulation direction that has produced an iron metasomatism within pre-existing dolomite host rock. The Urgonian formations hosting the Zn-Pb mineralizations in La Florida (Cantabria, northern Spain) have been taken as target for this purpose. Sampling was carried out, in addition to ferroan dolomite host rock enclosing the Zn-Pb mineralizations, in dolomite host rock and limestone to make the comparison possible between magnetic signals from mineralized rocks, where fluid circulation occurred, and their surrounding formations. AMS study was coupled with petrofabric analysis carried out by texture goniometry, Scanning Electron Microscopy (SEM) observations and also Shape Preferred Orientation (SPO) statistics. SEM observations of ferroan dolomite host rock illustrate both bright and dark grey ribbons corresponding respectively to Fe enriched and pure dolomites. SPO statistics applied on four images from ferroan dolomite host rock give a well-defined orientation of ribbons related to the intermediate axis of magnetic susceptibility K-2. For AMS data, two magnetic fabrics are observed. The first one is observed in ferroan dolomite host rock and characterized by a prolate ellipsoid of magnetic susceptibility with a vertical magnetic lineation. The magnetic susceptibility carrier is Fe-rich dolomite. These features are probably acquired during metasomatic fluid circulations. In Fe-rich dolomite host rock, (c) axes are vertical. As a rule, (0001) planes (i.e. planes perpendicular to (c) axes) are isotropic with respect to crystallographic properties. So, the magnetic anisotropy measured in this plane should reflect crystallographic modification due to fluid circulation. This is confirmed by the texture observed using the SEM. Consequently, AMS results show a dominant NE-SW elongation interpreted as the global circulation direction and a NW-SE secondary elongation that we have considered as sinuosities of the fluid trajectory. The second type of magnetic fabric is essentially observed in the limestone and characterized by an oblate form of the ellipsoid of magnetic susceptibility, a horizontal magnetic foliation and mixed magnetic susceptibility carriers. it is interpreted as a sedimentary fabric.
机译:本研究的目的是在区域范围内应用AMS方法(磁化率各向异性)来跟踪在已经存在的白云岩基质岩石中产生铁交代作用的流体循环方向。为此目的,将拉弗罗里达州(西班牙北部坎塔布里亚)Zn-Pb矿化的Urgonian地层作为目标。除了包围Zn-Pb矿化的铁锰白云岩基质岩外,还在白云岩基质岩和石灰岩中进行了采样,以使发生流体循环的矿化岩石的磁信号与其周围的地层进行比较。 AMS研究与通过质地测角法,扫描电子显微镜(SEM)观察以及形状优选取向(SPO)统计进行的石油织物分析相结合。亚铁白云岩基质岩石的SEM观察结果表明,亮带和暗灰色带分别对应于富铁和纯白云岩。 SPO统计数据应用于来自铁锰白云岩基质岩石的四幅图像,给出了与磁化率K-2中间轴有关的色带的明确方向。对于AMS数据,观察到两个磁性织物。第一个在铁锰白云岩基质岩中观察到,其特征是扁化的磁化率呈椭球状,并带有垂直磁线。磁化率载体是富铁白云石。这些特征可能是在交代流体循环中获得的。在富铁白云岩主岩中,(c)轴是垂直的。通常,(0001)平面(即垂直于(c)轴的平面)相对于晶体学性质是各向同性的。因此,在此平面中测得的磁各向异性应反映由于流体循环引起的晶体学变化。这可以通过使用SEM观察到的织构来确认。因此,AMS结果表明,主要的NE-SW伸长率被解释为整体循环方向,而NW-SE的二次伸长率被我们视为流体轨迹的正弦。第二类磁性织物主要在石灰岩中观察到,其特征是扁球形的磁化率椭圆形,水平磁叶化和混合的磁化率载体。它被解释为沉积织物。

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