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Hydrogen and Carbon Dioxide Adsorption with Tetra-n-Butyl Ammonium Semi-Clathrate Hydrates for Gas Separations

机译:四丁基正丁基铵水合物水合物吸附氢气和二氧化碳以分离气体

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Gas adsorption rates of H-2, CO2, and H-2-CO2 gas mixture (H-2/CO2=3.4) with tetra-n-butyl ammonium salt (bromide, chloride, and fluoride) semi-clathrate hydrate particles were measured at 269 K to assess their properties for gas separation. Equilibrium gas occupancies in the S-cages of the particles were in order of (high to low) for hexagonal structure-I, tetragonal structure-I, and superlattice of cubic structure-I structures with the maximum fractional occupancy by CO2 being about 40%. The CO2 diffusion rate depended on the anion size of the salt, which is attributed to distortion of the S-cage that is close to the molecular size of CO2. Simulations of semi-clathrate hydrate particles with theory showed that H-2/CO2 selectivities could be as high as 36 (3.0 mol% TBAF) and that selectivities for an ideal membrane (3.3 mol% TBAF) could be >100 (269 K, 0.3-4.5 MPa). Semi-clathrate hydrates have wide application as separation media for gas mixtures. (c) 2014 American Institute of Chemical Engineers AIChE J, 61: 992-1003, 2015
机译:测量了H-2,CO2和H-2-CO2混合气体(H-2 / CO2 = 3.4)与四正丁基铵盐(溴化物,氯化物和氟化物)半包合物水合物颗粒的气体吸附率在269 K的温度下评估其气体分离性能。对于六边形结构-I,四边形结构-I和立方结构-I结构的超晶格,颗粒的S笼中的平衡气体占有率从高到低依次为,CO2的最大分数占有率约为40% 。 CO2扩散速率取决于盐的阴离子大小,这归因于S笼的形变,其接近于CO2的分子大小。理论上对半包合物水合物颗粒的模拟表明,H-2 / CO2的选择性可以高达36(3.0 mol%TBAF),理想膜的选择性(3.3 mol%TBAF)可以大于100(269 K, 0.3-4.5 MPa)。半癸酸盐水合物作为气体混合物的分离介质具有广泛的应用。 (c)2014美国化学工程师学会AIChE J,61:992-1003,2015

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