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Fate of rising CO2 droplets in seawater

机译:海水中二氧化碳滴的上升的命运

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The sequestration of fossil fuel CO2 in the deep ocean has been discussed by a number of workers, and direct ocean experiments have been carried out to investigate the fate of rising CO2 droplets in seawater. However, no applicable theoretical models have been developed to calculate the dissolution rate of rising CO2 droplets with or without hydrate shells. Such models are important for the evaluation of the fate of CO2 injected into oceans. Here, I adapt a convective dissolution model to investigate the dynamics and kinetics of a single rising CO2 droplet (or noninteracting CO2 droplets) in seawater. The model has no free parameters; all of the required parameters are independently available from literature. The input parameters include: the initial depth, the initial size of the droplet, the temperature as a function of depth, density of CO2 liquid, the solubility of CO2 liquid or hydrate, the diffusivity of CO2, and viscosity of seawater. The effect of convection in enhancing mass transfer is treated using relations among dimensionless numbers. The calculated dissolution rate for CO2 droplets with a hydrate shell agrees with data in the literature. The theory can be used to explore the fate of CO2 injected into oceans under various temperature and pressure conditions.
机译:许多工人已经讨论了在深海中隔离化石燃料CO2的问题,并且已经进行了直接的海洋实验,以研究海水中CO2液滴上升的命运。但是,尚未开发出适用的理论模型来计算有或没有水合物壳的上升的CO2液滴的溶解速率。这样的模型对于评估注入海洋的二氧化碳的命运很重要。在这里,我采用对流溶解模型来研究海水中单个上升的CO2液滴(或非相互作用的CO2液滴)的动力学和动力学。该模型没有自由参数。所有必需的参数均可从文献中独立获得。输入参数包括:初始深度,液滴的初始大小,温度与深度的关系,CO2液体的密度,CO2液体或水合物的溶解度,CO2的扩散性和海水的粘度。使用无量纲数之间的关系来处理对流增强传质的效果。具有水合壳的CO2液滴的计算溶出率与文献数据一致。该理论可用于探索在各种温度和压力条件下注入海洋的二氧化碳的命运。

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