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Experimental and modeling study on the phase equilibria for hydrates of gas mixtures in TBAB solution

机译:TBAB溶液中混合气体水合物相平衡的实验与模型研究

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Accurate calculation of equilibrium formation conditions of hydrates is important for gas storage and separation based on hydrate technology. In this work, the hydrate formation conditions of a synthesized gas mixture in tetra-n-butyl ammonium bromide (TBAB) aqueous solution were measured at temperature ranging from 278.1 to 286.2 K. An inflection point in the P-T curve of hydrate phase equilibria was found. It is suggested that the hydrate structures transformed from semiclathrate hydrates to pure structure I hydrates with an increase in formation temperature. Then a thermodynamic model was proposed for calculating formation conditions of the semiclathrate hydrates formed from the gas mixtures+TBAB aqueous solution. The Patel-Teja equation of state was used to calculate the fugacity of gaseous hydrate former and several correlations were used to calculate the properties of TBAB. Ethylene molecules are supposed not to be able to occupy the dodecahedral small cages in the TBAB semiclathrate hydrates under the experimental P-T conditions. The presented model results show good agreement with the experimental data and the literature data. (C) 2015 Elsevier Ltd. All rights reserved.
机译:准确计算水合物平衡形成条件对于基于水合物技术的气体储存和分离非常重要。在这项工作中,在278.1至286.2 K的温度范围内,测量了合成气体混合物在四正丁基溴化铵(TBAB)水溶液中的水合物形成条件。在水合物相平衡的PT曲线中发现了一个拐点。有人认为,随着地层温度的升高,水合物结构从半包合物水合物转变为纯结构Ⅰ水合物。然后提出了一种热力学模型,用于计算由气体混合物+ TBAB水溶液形成的半包合物水合物的形成条件。使用Patel-Teja状态方程来计算气态水合物前体的逸度,并使用几种相关性来计算TBAB的性质。假定在实验P-T条件下,乙烯分子不能占据TBAB半包合物水合物中的十二面体小笼。模型结果与实验数据和文献数据吻合良好。 (C)2015 Elsevier Ltd.保留所有权利。

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