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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Serpentinization of oceanic peridotites: 2. Kinetics and processes of San Carlos olivine hydrothermal alteration
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Serpentinization of oceanic peridotites: 2. Kinetics and processes of San Carlos olivine hydrothermal alteration

机译:大洋橄榄岩的蛇纹石化:2. San Carlos橄榄石热液蚀变的动力学和过程

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The kinetics of the reaction (Mg,Fe)-olivine + H_20→ serpentine + magnetite + brucite + H_2 were investigated at 500 bars in the 250-350℃ range using natural olivine (San Carlos; Fo_(91)) with grain sizes between 1 and 150 μm and for run durations up to 514 d. The amount of magnetite produced, which directly relates to reaction progress, was accurately monitored using up to 24 time-resolved magnetic measurements per experiment. Eighty percent of serpentinization was achieved after 60 d for olivine grain sizes of 5-15 μm and after 500 d for grain sizes of 50-63μm.Serpentinization kinetics were found to be inversely proportional to the geometrical surface area of the starting olivine grains. They were one or two orders of magnitude slower than serpentinization kinetics commonly used for modeling serpentinization-related processes. The nature of the serpentine mineral product depended on the initial olivine grain size (IGS); for IGS in the 5-150 μm range lizardite formed, and olivine dissolution was the rate-limiting process. At IGS below 5 μm, chrysotile crystallized instead of lizardite, and the relationship between olivine surface area and reaction kinetics no longer held. We infer that for such small olivine grain sizes dissolution is no longer the rate-limiting process. Serpentinization in our experiments was associated with the creation of new reactive surface area according to two cooperative processes: etch pits formation associated with dissolution and grain fracturing for IGS above 20 μm. Interestingly, fractures and etch pits with similar geometry and sizes were also observed for residual olivine (with a typical grain size of 50 μm) in serpentinized peridotite samples from the Southwest Indian Ridge. This suggests that the processes governing olivine serpentinization kinetics in our experiments are similar to those prevailing in natural systems. We therefore suggest that the new kinetic data set that we present here, which encompasses a range of olivine grain sizes and reaction temperatures, is relevant to the serpentinization of olivine in the oceanic crust insofar as water is available.
机译:使用天然橄榄石(San Carlos; Fo_(91))在粒度为250-350℃的500 bar下研究了(Mg,Fe)-橄榄石+ H_20→蛇纹石+磁铁矿+水镁石+ H_2的反应动力学1和150μm,运行时间长达514 d。每个实验使用多达24个时间分辨的磁测量值来精确监控与反应进程直接相关的磁铁矿产量。橄榄石粒径为5-15μm的60 d后60天后和50-63μm粒径的500 d后达到80%的蛇纹石化作用。发现蛇纹石化动力学与起始橄榄石晶粒的几何表面积成反比。它们比通常用于蛇纹化相关过程建模的蛇纹化动力学要慢一两个数量级。蛇纹石矿物产品的性质取决于最初的橄榄石晶粒尺寸(IGS)。对于IGS,在5-150μm范围内形成了蜥蜴石,橄榄石溶解是限速过程。在IGS低于5μm时,温石棉结晶而不是蜥蜴石,并且橄榄石表面积与反应动力学之间的关系不再成立。我们推断,对于如此小的橄榄石晶粒,溶解不再是限速过程。根据两个合作过程,我们实验中的蛇纹石化与新的反应表面积的产生有关:与20μm以上的IGS形成的与溶解相关的蚀刻坑和晶粒破碎。有趣的是,在西南印第安海岭蛇纹石化橄榄岩样品中,还观察到残余橄榄石(典型的粒径为50μm)具有类似的几何形状和尺寸的裂缝和蚀刻坑。这表明在我们的实验中控制橄榄石蛇毒化动力学的过程与自然系统中普遍的过程相似。因此,我们建议,这里提供的新的动力学数据集(包括一定范围的橄榄石晶粒尺寸和反应温度)与可用水的大洋地壳中橄榄石的蛇形化有关。

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