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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Relationship of present saline fluid with paleomigration of basinal brines at the basement/sediment interface (Southeast basin - France)
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Relationship of present saline fluid with paleomigration of basinal brines at the basement/sediment interface (Southeast basin - France)

机译:当前盐液与基底/沉积物界面处盆地盐水古沉积的关系(法国东南部盆地)

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This paper investigates the isotopic composition (O, D, Sr, OSO4, SSO4, Cl, He) of a present saline fluid sample collected at the sediment/basement interface in the Permian continental formation at 634. m depth in the SE margin of the Massif Central shield (Ardèche margin of the Southeast basin of France). The fluid sample shows clear water-rock interaction processes, such as feldspar dissolution and kaolinite precipitation, which have led to high Na concentrations and water stable isotopes above the local meteoric water line. The geological formations of the SE margin of the Massif Central shield show that intensive fluid circulation phases occurred across the margin from the late Triassic to the middle Jurassic. The fluids most probably originated from fluid expulsion during burial of the thick Permo-Carboniferous sedimentary succession. These circulation phases were responsible for cementation of the margin and for the solutes in the matrix microporosity which were extracted by leaching core samples. The chemical and isotopic composition of the saline fluid sample at 634. m in the Permian rock is very similar to that of fluids in the microporosity of the rock matrix. Their SSO4, OSO4 and Sr isotopic compositions are close to those of cements investigated in fracture fillings in the same geological formations. Simple diffusion computations and comparison of the chemical composition of the present free fluid sample with matrix porosity fluids indicate that the solutes in the present free fluid sample are related to solutes originating from fluid circulation events which occurred 160-200. Ma ago through their diffusion from the matrix microporosity. A two-stage fluid flow regime is proposed to interpret the chemistry of present and paleo-fluids. (1) During the extensional context (Permian to Cretaceous), basinal brines migrated along the basement/sediment interface after expulsion from the subsiding basin. This fluid migration would be responsible for the solutes in the rock matrix microporosity and the solutes in the present free fluid sample. (2) Following the Alpine and Pyrenean compressive phases, gravity-driven meteoritic fluids slowly migrated from the surface down to the basement along major faults. This fluid regime would be responsible for the meteoric water collected in the present free fluid sample. Several investigations in Europe have shown that the existence of other saline fluids sampled elsewhere could be explained by these phases of fluid circulation related to specific geodynamic events.
机译:本文研究了目前盐分流体的同位素组成(O,D,Sr,OSO4,SSO4,Cl,He),该盐分采集于二叠纪大陆地层634.m深度的二叠纪大陆组沉积物/基底界面处。地块中央盾(法国东南盆地的阿德什边缘)。流体样品显示出清晰的水-岩相互作用过程,例如长石溶解和高岭石沉淀,这些过程导致了较高的Na浓度和局部大气水线以上的水稳定同位素。地块中央盾构东南边缘的地质构造表明,从三叠纪晚期到侏罗纪中期,整个边缘都发生了强烈的流体循环阶段。流体很可能源自厚厚的二叠纪-石炭纪沉积演替的埋葬期间的流体排出。这些循环阶段负责边缘的胶结和基质微孔中的溶质,这些溶质是通过浸提岩心样品而提取的。二叠纪岩石中634. m处的盐水样品的化学和同位素组成与岩石基质微孔中的流体非常相似。它们的SSO4,OSO4和Sr同位素组成与在相同地质构造中裂缝充填中研究的水泥相近。简单的扩散计算和本游离流体样品与基质孔隙度流体的化学成分比较表明,本游离流体样品中的溶质与源自发生160-200的流体循环事件的溶质有关。 Ma以前是通过它们从基质微孔中扩散而来的。提出了两阶段的流体流态来解释当前和古流体的化学性质。 (1)在伸展的背景下(二叠纪到白垩纪),盆地的盐水在从下陷盆地排出后沿基底/沉积物界面迁移。这种流体迁移将负责岩石基质微孔中的溶质和当前游离流体样品中的溶质。 (2)在高山和比利牛斯山的压缩阶段之后,重力驱动的陨石流体沿着主要断层从地表缓慢地向下迁移到基底。这种流体状态将负责在当前的自由流体样本中收集的大气水。欧洲的一些调查表明,在其他地方采样到的其他盐溶液的存在可以通过与特定地球动力学事件有关的流体循环的这些阶段来解释。

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