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Modeling the dissociation of carbon dioxide and methane hydrate using the Phase Field Theory

机译:使用相场理论模拟二氧化碳和甲烷水合物的离解

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摘要

Hydrate that is exposed to fluid phases which are undersaturated with respect to equilibrium with the hydrate will dissociate due to gradients in chemical potential. Kinetic rates of methane hydrate dissociation towards pure water and seawater is important relative to hydrate reservoirs that are partly exposed towards the ocean floor. Corresponding results for carbon dioxide hydrate is important relative to hydrate sealing effects related to storage of carbon dioxide in cold aquifers. In this work we apply a phase field theory to the prediction of carbon dioxide hydrate and methane hydrate dissociation towards pure water at various conditions both inside and at the stability region of the hydrates with respect to temperature and pressure. As expected from the differences in water solubility the methane hydrate dissolves significantly slower towards pure water than carbon dioxide hydrate.
机译:暴露于相对于水合物平衡而言不饱和的流体相中的水合物将由于化学势梯度而解离。相对于部分暴露于海底的水合物储层,甲烷水合物向纯净水和海水的离解动力学速率很重要。相对于与二氧化碳在冷含水层中的储存有关的水合物封闭作用而言,二氧化碳水合物的相应结果很重要。在这项工作中,我们将相场理论应用于预测水合物内部和在相对于温度和压力的稳定范围内的各种条件下,二氧化碳水合物和甲烷水合物向纯水的离解。正如从水溶性的差异所预期的那样,甲烷水合物向纯水的溶解比二氧化碳水合物的溶解明显慢。

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