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The initial stage of hydrate formation in liquid volume on impurity particles upon contact of gas and water

机译:气体和水接触后,杂质颗粒上的液体中水合物形成的初始阶段

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A concept and appropriate theoretical construction have been proposed to describe initial stage of hydrate layer formation at the interface between water and hydrate-forming gas. The model presented indicates that this stage (or induction period) is accompanied by the dissolution of gas in water, as well as the formation and growth of hydrate in the bulk zone on impurity particles near the contact boundary. An analytical solution was obtained for the characteristic time during which the volume content of the hydrate phase at the contact boundary reaches one and, thus, nuclei form as a film prior to a hydrate layer at the gas-water boundary. This characteristic time is accepted as the induction time. According to the obtained formula, the induction period depends inversely on static pressure and in inverse two-thirds proportion on the number of impurity particles per unit volume of water. The problem of the formation and growth of hydrate at the interface between the hydrate layer and aqueous gas solution has been considered and solved. The temperature fields caused by heat generated during hydrate formation on the contact surface of hydrate massif and gas solution are analyzed.
机译:已经提出了一种概念和适当的理论构造来描述在水和水合物形成气体之间的界面处水合物层形成的初始阶段。提出的模型表明,该阶段(或诱导期)伴随着气体在水中的溶解,以及在接触边界附近杂质颗粒上的主体区域中水合物的形成和生长。在特征时间内获得了一种分析溶液,在该特征时间内,接触边界处的水合物相的体积含量达到一,因此在气水边界处的水合物层之前,核形为薄膜。该特征时间被接受为感应时间。根据所获得的公式,感应周期反比于静压,而反比三分之二则取决于每单位体积的水中杂质颗粒的数量。已经考虑并解决了在水合物层和水溶液之间的界面处水合物的形成和生长的问题。分析了水合物与气体溶液接触面上水合物形成过程中产生的热量引起的温度场。

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