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Études thermodynamiques sur les Semi-Clathrate Hydrates de TBAB + gaz contenant du Dioxyde de Carbone

机译:TBAB半包合物水合物+含二氧化碳气体的热力学研究

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摘要

CO2 capture has become an important area of research mainly due to its drastic green-house effects. Gas hydrate formation as a separation technique shows tremendous potential, both from a physical feasibility as well as an envisaged lower energy utilization criterion. Briefly, gas (clathrate) hydrates are non-stoichiometric, ice-like crystalline compounds formed through a combination of water and suitably sized guest molecule(s) under low-temperatures and elevated pressures. As the pressure required for gas hydrate formation is generally high, therefore, aqueous solution of tetra-n-butyl ammonium bromide (TBAB) is added to the system as a gas hydrate promoter. TBAB generally reduces the required hydrate formation pressure and/or increases the formation temperature as well as modifies the selectivity of hydrate cages to capture CO2 molecules. TBAB also takes part in the hydrogen-bonded cages. Such hydrates are called "semi-clathrate" hydrates. Evidently, reliable and accurate phase equilibrium data, acceptable thermodynamic models, and other thermodynamic studies should be provided to design efficient separation processes using the aforementioned technology. For this purpose, phase equilibria of clathrate/semi-clathrate hydrates of various gas mixtures containing CO2 (CO2 + CH4/N2/H2) in the presence of pure water and aqueous solutions of TBAB have been measured in this thesis. In the theoretical section of the thesis, a thermodynamic model on the basis of the van der Waals and Platteeuw (vdW-P) solid solution theory along with the modified equations for determination of the Langmuir constants of the hydrate formers has been successfully developed to represent/predict equilibrium conditions of semi-clathrate hydrates of CO2, CH4, and N2. Later, several thermodynamic consistency tests on the basis of Gibbs-Duhem equation as well as a statistical approach have been applied on the phase equilibrium data of the systems of mixed/simple clathrate hydrates to conclude about their quality.
机译:主要由于其温室效应,CO2捕集已成为重要的研究领域。从物理可行性以及设想的较低的能源利用标准来看,作为分离技术的天然气水合物的形成都显示出巨大的潜力。简而言之,气体(包合物)水合物是非化学计量的冰状结晶化合物,是通过在低温和高压下将水与适当大小的一种或多种客体分子结合而形成的。由于气体水合物形成所需的压力通常较高,因此,将四正丁基溴化铵(TBAB)的水溶液作为气体水合物促进剂添加到系统中。 TBAB通常会降低所需的水合物形成压力和/或增加地层温度,并改变水合物笼捕集CO2分子的选择性。 TBAB还参与了氢键保持架。这样的水合物称为“半包合物”水合物。显然,应该提供可靠和准确的相平衡数据,可接受的热力学模型以及其他热力学研究,以使用上述技术设计有效的分离过程。为此,本文测量了在纯水和TBAB水溶液存在下,各种含CO2(CO2 + CH4 / N2 / H2)的气体混合物的笼形/半笼形水合物的相平衡。在论文的理论部分,成功地建立了基于范德华斯和普拉特约夫(vdW-P)固溶理论的热力学模型,以及用于确定水合物前体Langmuir常数的改进方程。预测CO2,CH4和N2的半包合物水合物的平衡条件。后来,在Gibbs-Duhem方程的基础上进行了几次热力学一致性测试,并采用统计方法对混合/简单笼形水合物水合物体系的相平衡数据进行了总结,得出了其质量。

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    Eslamimanesh Ali;

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  • 年度 2012
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  • 正文语种 en
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