Françoise Boudier, David Mainprice, Adolphe Nicolas
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引用次数: 0
摘要
在塞迈尔蛇绿岩南部辉长岩剖面的底部,局部观察到完全新鲜的黑色辉长岩。这些黑色辉长岩没有中低温弥漫蚀变,其特征是混浊的斜长石,在光学显微镜分辨率以下有高密度的热液包裹体,并演化成大小为 10 μm 的透辉石和钠长石晶体。从其主要元素组成可以看出,它们在超过 900 °C 的温度下发生了水化反应。对晶体包裹体的聚焦电子反向散射电子衍射(EBSD)研究表明,透辉石向闪石发生了相变,并追踪到透辉石包裹体与其主斜长石之间一致的晶体学关系。微裂纹系统的详细几何形状描绘了从晶粒间裂纹到斜长石晶粒内网络的完整流体路径,可能是热引起的。在岩浆纹理上叠加的固态变形证据表明,斜长石中的孪晶机制控制着含水流体在晶粒内部的扩散。黑辉长岩 "位于莫霍过渡带(MTZ)和半脆性岩石圈的交界处,记录了一个狭窄的区域,在这个区域内,集中的流体流在岩浆室最低极限的辉长岩固结体下方引起了快速冷却。
Very high-T hydration in the lower gabbro section of Semail ophiolite, Hydrous components of the lower crust at fast-spreading ridge
Totally fresh black gabbros are observed locally at the very base of the gabbro section in southern Semail ophiolite. Devoid of medium to low-temperature diffuse alteration, the black gabbros are characterized by cloudy plagioclase marked by a high density of hydrothermal inclusions below the optical microscope resolution, evolving into diopside and pargasite crystals ∼10 μm sized. They record hydration at temperature over 900 °C as shown by their major elements composition. Focused Electron Backscattered Electron Diffraction (EBSD) study of the crystalline inclusions, suggests a phase transition from diopside to amphibole, and traces consistent crystallographic relationships of diopside inclusions with their host plagioclase. The detailed geometry of the microcrack system traces a complete fluid path from inter-grain cracking, to plagioclase intra-grain network, possibly thermally-induced. The evidence of solid-state deformation overprinting the magmatic textures suggests that twinning mechanism in plagioclase controls the intra-grain diffusion of hydrous fluids. Located at the interface of the Moho Transition Zone (MTZ) and semi-brittle lithosphere, the ‘black gabbros’ record a narrow domain where focused fluid flow induces rapid cooling below the gabbro solidus at the lowest limit of the magma chamber.
期刊介绍:
Lithos publishes original research papers on the petrology, geochemistry and petrogenesis of igneous and metamorphic rocks. Papers on mineralogy/mineral physics related to petrology and petrogenetic problems are also welcomed.