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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 >A simple model of reaction-induced cracking applied to serpentinization and carbonation of peridotite
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A simple model of reaction-induced cracking applied to serpentinization and carbonation of peridotite

机译:反应诱发裂纹的简单模型应用于橄榄岩的蛇纹石化和碳化

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摘要

During chemical weathering there is the potential for a positive feedback process to occur: Chemical reactions cause volume changes, increasing stresses and potentially fracturing the rock. In turn, these fractures may enhance transport of chemicals through the rock, accelerating the weathering process An idealised model of. this feedback is presented. Simple scaling laws relate the speed of the weathering front to elastic properties, the rate of transport of reactants, and reaction rates. Five different regimes in the model are identified, although only two of these are appropriate for natural systems, where the reaction rate is a key control on the weathering rate. The model is applied to the carbonation and serpentinization of peridotite, chemical weathering processes which have potential industrial application in the storage of CO2. If these weathering processes can be accelerated, CO2 could be stored as carbonates in the peridotite in substantial quantities. This simple model Suggests that it may be possible to boost the speed of the weathering front a millionfold by a combination of heating, increased partial pressure of CO2, forced fluid flow, and hydrofracture.
机译:在化学风化过程中,可能会发生正反馈过程:化学反应会引起体积变化,应力增加并可能使岩石破裂。反过来,这些裂缝可能会增强化学物质在岩石中的传输,从而加速风化过程的理想化模型。此反馈已提出。简单的定标定律将风化前沿的速度与弹性性能,反应物的传输速率和反应速率相关。在模型中确定了五种不同的状态,尽管其中只有两种适用于自然系统,在自然系统中,反应速率是控制风化速率的关键控制因素。该模型适用于橄榄岩的碳化和蛇纹石化,化学风化过程,在二氧化碳的储存方面具有潜在的工业应用。如果可以加速这些风化过程,则CO2可以作为碳酸盐大量存储在橄榄岩中。这个简单的模型表明,通过加热,增加的CO2分压,强制流体流动和水力压裂的组合,可以将风化锋面的速度提高一百万倍。

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