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首页> 外文期刊>Contributions to Mineralogy and Petrology >The direction of fluid flow during contact metamorphism of siliceous carbonate rocks: new data for the Monzoni and Predazzo aureoles, northern Italy, and a global review
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The direction of fluid flow during contact metamorphism of siliceous carbonate rocks: new data for the Monzoni and Predazzo aureoles, northern Italy, and a global review

机译:硅质碳酸盐岩接触变质过程中的流体流动方向:意大利北部Monzoni和Predazzo aureoles的新数据以及全球性综述

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Periclase formed in siliceous dolomitic marbles during contact metamorphism in the Monzoni and Predazzo aureoles, the Dolomites, northern Italy, by infiltration of the carbonate rocks by chemically reactive, H_2O-rich fluids at 500 bar and 565-710 deg C. The spatial distribution of periclase and oxygen isotope compositions is consistent with reactive fluid flow that was primarily vertical and upward in both aureoles with time-integrated flux approx 5,000 and approx 300 mol fluid/cm~2 rock in the Monzoni and Predazzo aureoles, respectively. The new results for Monzoni and Predazzo are considered along with published studies of 13 other aureoles to draw general conclusions about the direction, amount, and controls on the geometry of reactive fluid flow during contact metamorphism of siliceous carbonate rocks. Flow in 12 aureoles was primarily vertically upward with and without a horizontal component directed away form the pluton. Fluid flow in two of the other three was primarily horizontal, directed from the pluton into the aureole. The direction of flow in the remaining aureole is uncertain. Earlier suggestions that fluid flow is often horizontal, directed toward the pluton, are likely explained by an erroneous assumption that widespread coexisting mineral reactants and products represent arrested prograde decarbonation reactions. With the exception of three samples from one aureole, time-integrated fluid flux was in the range 10~2-10~4 mol/cm~2. Both the amount and direction of fluid flow are consistent with hydrodynamic models of contact metamorphism. The orientation of bedding and lithologic contacts appears to be the principal control over whether fluid flow was either primarily vertical or horizontal. Other pre-metamorphic structures, including dikes, faults, fold hinges, and fracture zones, served to channel fluid flow as well.
机译:Periclase在意大利北部的白云岩的Monzoni和Predazzo aureoles的接触变质过程中,在硅质白云岩大理石中,通过碳酸盐岩在500 bar和565-710℃下由具有化学反应性的H_2O富集流体渗透而形成。镁长石和氧同位素组成与反应性流体流基本一致,在两个光环中主要是垂直的和向上的,在Monzoni和Predazzo光环中时间积分通量分别约为5,000和300 mol / cm〜2岩石。考虑了蒙佐尼(Monzoni)和普雷达佐(Predazzo)的新结果,以及对其他13种光环的公开研究,以得出关于硅质碳酸盐岩接触变质过程中反应流体流动方向,数量和控制几何形状的一般结论。 12个金黄色小孔中的流动主要是竖直向上,有和没有水平分量从插栓上移开。另外三个中的两个中的流体流动基本上是水平的,从水核流向金黄色的。剩余的金针中的流动方向不确定。先前关于流体流通常是水平的,直接流向子体的建议,可能是由以下错误的假设来解释的:广泛共存的矿物反应物和产物代表了停止的脱碳反应。除了来自一个金针的三个样品外,时间积分流体通量在10〜2-10〜4 mol / cm〜2的范围内。流体流动的数量和方向都与接触变质作用的流体动力学模型一致。层理和岩性接触的方向似乎是流体流动主要是垂直还是水平的主要控制因素。其他预变质结构,包括堤坝,断层,褶皱铰链和断裂带,也可以用来引导流体流动。

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