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 >Low silica activity for hydrogen generation during serpentinization: An example of natural serpentinites in the Mineoka ophiolite complex, central Japan
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Low silica activity for hydrogen generation during serpentinization: An example of natural serpentinites in the Mineoka ophiolite complex, central Japan

机译:蛇纹石化过程中产生氢的二氧化硅活性低:日本中部Mineoka蛇绿岩复合物中的天然蛇纹石实例

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摘要

The textural evolution in the serpentinite of the Mineoka ophiolite complex has been investigated to constrain the natural environment for hydrogen production in the serpentinite-hosted hydrothermal vent systems. Textural relations of the serpentinites from the Mineoka ophiolite indicate at least two stages in the process of serpentinization, with the replacement of olivine by a mesh texture of serpentine and brucite, followed by the development of magnetite-bearing or -free serpentine veins. The generation of hydrogen during serpentinization, which accompanies the formation of magnetite, involves a silica-depletion reaction, as evidenced by the low abundance of serpentine in the magnetite-bearing veins and the absence of magnetite in pseudomorphs of orthopyroxene. Direct evidence for the production of hydrogen and strongly reducing conditions is provided by CH_4 and H_2-bearing inclusions in relic olivine crystals; the production of methane and hydrogen may have provided a suitable environment for microbial activity in hydrothermal vent systems along the seafloor. Our results indicate that low silica activity plays a key role in the generation of hydrogen during serpentinization, and that low silica activity environments are possible in olivine-rich rocks such as dunite, or during local disequilibrium in other silica-poor rocks in the mantle lithosphere.
机译:已经研究了Mineoka蛇绿岩配合物中蛇纹岩的组织演化,以约束蛇纹石主持的热液喷口系统中制氢的自然环境。来自Mineoka蛇绿岩的蛇纹岩的结构关系表明,在蛇纹石化过程中至少有两个阶段,用蛇纹石和水镁石的网状织构代替橄榄石,随后形成含磁铁矿或无蛇纹石的脉。蛇纹石化过程中伴随磁铁矿形成的氢的产生涉及二氧化硅的耗尽反应,这由含磁铁矿脉中蛇纹石的丰度低和邻位吡pseudo的假晶形中没有磁铁矿来证明。遗迹橄榄石晶体中含CH_4和H_2的夹杂物提供了产生氢和强烈还原条件的直接证据。甲烷和氢气的产生可能为海底热液排放系统中的微生物活动提供了合适的环境。我们的结果表明,低蛇纹石活性在蛇纹石化过程中的氢生成中起着关键作用,而且低橄榄石活性环境可能在富橄榄石的岩石(如榴辉岩)中或在地幔岩石圈中其他贫硅石岩石中局部失衡期间。

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