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Hydrate Equilibrium Model for Gas Mixtures Containing Methane, Nitrogen and Carbon Dioxide

机译:甲烷,氮和二氧化碳的气体混合物水合物平衡模型

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Gas hydrate formation is considered one of the major problems facing the oil and gas industry as it poses a significant threat to the production, transportation and processing of natural gas. These solid structures can nucleate and agglomerate gradually so that a large cluster of hydrate is formed, which can clog flow lines, chokes, valves, and other production facilities. Thus, an accurate predictive model is necessary for designing natural gas production systems at safe operating conditions and mitigating the issues induced by the formation of hydrates. In this context, a thermodynamic model for gas hydrate equilibrium conditions and cage occupancies of N_2 + CH_4 and N_2 + CO_4 gas mixtures at different compositions is proposed. The van der Waals-Platteeuw thermodynamic theory coupled with the Peng-Robinson equation of state and Langmuir adsorption model are employed in the proposed model. The experimental measurements generated using a cryogenic sapphire cell for the pressure and temperature ranges of (5-25) MPa and (275.5-292.95) K, respectively, were used to evaluate the accuracy of this model. The resulting data show that increasing nitrogen mole percentage in the gas mixtures results in decreasing of equilibrium hydrate temperatures. The deviations between the experimental and predictions are discussed. Furthermore, the cage occupancies for the gas mixtures in hydrate have been evaluated. The results demonstrate an increase in the cage occupancy for both the small and large cavities with pressure.
机译:天然气水合物形成被认为是石油和天然气行业面临的主要问题之一,因为它对天然气的生产,运输和加工构成了重大威胁。这些固体结构可以逐渐核心和附聚,使得形成大量的水合物,其可以堵塞流线,扼流圈,阀门和其他生产设施。因此,在安全操作条件下设计天然气生产系统的准确预测模型是必要的,并减轻由水合物形成引起的问题。在这种情况下,提出了一种用于不同组合物的N_2 + CH_4和N_2 + CO_4和N_2 + CO_4气体混合物的天然气水合物平衡条件和笼占占用的热力学模型。与彭咯素等式的van der waals-platteeuw热力学理论在拟议的模型中采用了国家和Langmuir吸附模型。使用用于(5-25)MPa和(275.5-292.95)K的压力和温度范围的低温蓝宝石电池产生的实验测量用于评估该模型的准确性。所得到的数据表明,增加气体混合物中的氮摩尔百分比导致均衡水合物温度降低。讨论了实验和预测之间的偏差。此外,已经评估了水合物中的气体混合物的笼占用。结果表明,对于压力的小型和大空腔,笼中的占用率增加。

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