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Hydrate Formation/Dissociation in (Natural Gas + Water + Diesel Oil) Emulsion Systems

机译:(天然气+水+柴油)乳液系统中的水合物形成/离解

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Hydrate formation/dissociation of natural gas in (diesel oil + water) emulsion systems containing 3 wt% anti-agglomerant were performed for five water cuts: 5, 10, 15, 20, and 25 vol%. The natural gas solubilities in the emulsion systems were also examined. The experimental results showed that the solubility of natural gas in emulsion systems increases almost linearly with the increase of pressure, and decreases with the increase of water cut. There exists an initial slow hydrate formation stage for systems with lower water cut, while rapid hydrate formation takes place and the process of the gas-liquid dissolution equilibrium at higher water cut does not appear in the pressure curve. The gas consumption amount due to hydrate formation at high water cut is significantly higher than that at low water cut. Fractional distillation for natural gas components also exists during the hydrate formation process. The experiments on hydrate dissociation showed that the dissociation rate and the amount of dissociated gas increase with the increase of water cut. The variations of temperature in the process of natural gas hydrate formation and dissociation in emulsion systems were also examined.
机译:在五个含水率:5、10、15、20和25%(体积)时,在含3%(重量)抗结块剂的(柴油+水)乳液体系中天然气的水合物形成/离解。还检查了乳液体系中的天然气溶解度。实验结果表明,天然气在乳液体系中的溶解度随压力的增加而呈线性增加,随含水率的增加而减小。对于具有较低含水量的系统,存在初始的缓慢的水合物形成阶段,而发生快速的水合物形成,并且在较高的含水量下,气液溶解平衡的过程没有出现在压力曲线中。高含水率时由于水合物形成而导致的气体消耗量明显高于低含水率时的气体消耗量。在水合物形成过程中还存在用于天然气组分的分馏。水合物离解实验表明,随着含水率的增加,离解率和离解气量均增加。还研究了乳液体系中天然气水合物形成和解离过程中的温度变化。

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