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首页> 外文期刊>Annual Review of Earth and Planetary Sciences >Rates and Mechanisms of Mineral Carbonation in Peridotite: Natural Processes and Recipes for Enhanced, in situ CO_2 Capture and Storage
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Rates and Mechanisms of Mineral Carbonation in Peridotite: Natural Processes and Recipes for Enhanced, in situ CO_2 Capture and Storage

机译:橄榄岩中矿物碳化的速率和机理:自然过程和用于增强原位CO_2捕集与封存的配方

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摘要

Near-surface reaction of CO_2-bearing fluids with silicate minerals in peridotite and basalt forms solid carbonate minerals. Such processes form abundant veins and travertine deposits, particularly in association with tectonically exposed mantle peridotite. This is important in the global carbon cycle, in weathering, and in understanding physical-chemical interaction during retrograde metamorphism. Enhancing the rate of such reactions is a proposed method for geologic CO_2 storage, and perhaps for direct capture of CO_2 from near-surface fluids.We review, synthesize, and extend inferences from a variety of sources. We include data from studies on natural peridotite carbonation processes, carbonation kinetics, feedback between permeability and volume change via reaction-driven cracking, and proposed methods for enhancing the rate of natural mineral carbonation via in situ processes (“at the outcrop”) rather than ex situ processes (“at the smokestack”).
机译:含CO_2的流体与橄榄岩和玄武岩中的硅酸盐矿物的近地表反应形成固态碳酸盐矿物。这种过程形成了丰富的静脉和钙华沉积物,特别是与构造暴露的地幔橄榄岩有关。这对于全球碳循环,风化以及逆行变质过程中的物理化学相互作用至关重要。一种提高此类反应速率的方法是一种建议的地质CO_2储存方法,也许是直接从近地表流体中捕获CO_2的方法。我们回顾,合成和扩展了来自各种来源的推论。我们提供了有关天然橄榄岩碳化过程,碳化动力学,渗透性和通过反应驱动的裂隙发生的体积变化之间的反馈的研究数据,并提出了通过原位过程(“露头”)而不是天然过程来提高天然矿物碳化速率的方法异地处理(“烟囱处”)。

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