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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 >The Grimsey hydrothermal field offshore North Iceland: crustal structure, faulting and related gas venting
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The Grimsey hydrothermal field offshore North Iceland: crustal structure, faulting and related gas venting

机译:冰岛北部近海的格里姆西(Grimsey)热液场:地壳结构,断层和相关的瓦斯抽放

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摘要

The results of a combined geophysical and geochemical research program are presented that focused on Grimsey hydrothermal field (GHF) which is located at 66°35'30"N, 17°39'30"W wast of the island of Grimsey in the Tjornes Fracture Zone. The vent field is situated at the sourthernmost tip of a submarine ridge which is connected to the offshore part of the Theistareykir Fissure Swarm. Reflection seismic recordings were interpreted in conjunction with earthquake catalogue data to detect active fault structures and potential heat sources in the subsurface. An inter-linked fracture network forming a downwards converging system of faults connected to a deep-reaching normal fault is assumed to provide the preferential pathways for gases (~3He, CO_2, CH_4 etc.) migrating from a possible deep-seated gas source (lower crust/upper mantle) to the surface. The location of hydrothermal vents was detected by concentration measurements of dissolved methane in the water column, which coincide with polarity reversals in the seismic seafloor reflection. Both the molecular composition of the gas and the isotopic composition of methane at GHF indicate a predominating abiogenic source (Fischer-Tropsch reactions at 250-500 ℃) mixed with thermogenic hydrocarbons. New seismic data from the GHF were compared with gas geochemical data which indicate that the thermogenic hydrocarbons are related to (up to 60 m thick) sediments deposited in a basin located east of the ridge.
机译:提出了结合地球物理和地球化学研究计划的结果,重点研究了格里姆西热液场(GHF),该热液场位于北约瑟恩斯断裂的格里姆西岛浪费66°35'30“ N,17°39'30” W区。通风区位于海底脊的最南端,该海脊与Theistareykir裂隙群的海上部分相连。结合地震目录数据对反射地震记录进行解释,以检测地下的活动断层结构和潜在的热源。假设一个相互连接的裂缝网络形成了向下延伸的断层系统,该断层系统与深部正断层相连,从而为气体(〜3He,CO_2,CH_4等)从可能的深层气源(下地壳/上地幔)。热液喷口的位置通过水柱中溶解甲烷的浓度测量值来检测,这与地震海底反射中的极性反转一致。气体的分子组成和GHF处甲烷的同位素组成都表明,主要的生物成因源(250-500℃下的费托反应)与生烃混合。将来自GHF的新地震数据与天然气地球化学数据进行了比较,这些数据表明,热成烃与沉积在山脊东部盆地中的沉积物(最大60 m厚)有关。

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