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首页> 外文期刊>Geophysical Research Letters >Experimental evidence of reaction-induced fracturing during olivine carbonation
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Experimental evidence of reaction-induced fracturing during olivine carbonation

机译:橄榄石碳化过程中反应诱发压裂的实验证据

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Mineral carbonation, a process that binds CO2 in the form of carbonates by silicate weathering, is widespread on the Earth's surface. Because of the abundance of silicate rocks and the permanence of the carbonated solids, sequestering CO2 via mineral carbonation has generated lots of interests. However, it is unclear how the fluid-rock reaction proceeds to completion in spite of an increasing solid volume. We conducted a mineral carbonation experiment in which a sintered olivine aggregate reacted with a sodium bicarbonate solution at reservoir conditions. Time-resolved synchrotron X-ray microtomographic images show cracks in polygonal patterns arising in the surface layers and propagating into the interior of the olivine aggregate. The nanotomography data reveal that the incipient cracks intersect at right angles. We infer that stretching due to nonuniform volume expansion generates polygonal cracking of the surfaces. Our data shed new lights on the processes that control hydration and carbonation of peridotite.
机译:矿物碳化是一种通过硅酸盐风化以碳酸盐形式结合二氧化碳的过程,广泛存在于地球表面。由于硅酸盐岩的丰富性和碳酸盐化固体的持久性,通过矿物碳酸化隔离二氧化碳已经引起了人们的极大兴趣。然而,尽管固体体积增加,但尚不清楚流体-岩石反应如何进行完成。我们进行了矿物碳酸化实验,其中在储层条件下,烧结的橄榄石聚集体与碳酸氢钠溶液反应。时间分辨的同步加速器X射线显微照片显示在表面层中出现并传播到橄榄石骨料内部的多边形图案中的裂纹。纳米断层扫描数据表明,初始裂纹以直角相交。我们推断,由于体积膨胀不均匀而引起的拉伸会在表面产生多边形裂纹。我们的数据为控制橄榄岩水化和碳化的过程提供了新的思路。

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