BINARY ADSORPTION AND DESORPTION RATES OF PROPYLENE PROPANE MIXTURES ON 13X MOLECULAR-SIEVES

被引:24
作者
HUANG, YH [1 ]
LIAPIS, AI [1 ]
XU, Y [1 ]
CROSSER, OK [1 ]
JOHNSON, JW [1 ]
机构
[1] UNIV MISSOURI,DEPT CHEM ENGN,ROLLA,MO 65401
来源
SEPARATIONS TECHNOLOGY | 1995年 / 5卷 / 01期
基金
美国国家科学基金会;
关键词
DIFFERENTIAL SORPTION BED SYSTEM; BINARY ADSORPTION RATE; BINARY DESORPTION RATE; PROPYLENE-PROPANE MIXTURE; 13 X MOLECULAR SIEVE; INTRACRYSTALLINE DIFFUSION COEFFICIENT;
D O I
10.1016/0956-9618(94)00102-X
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The experimental adsorption and desorption rate data for pure propylene, pure propane, and propylene-propane mixtures on 13 X molecular sieves are presented for different temperatures and compositions; these rate data were efficiently determined using the differential sorption bed system described by Liapis et al. (Liapis et al. (1992) Rates and equilibria of adsorption and desorption of propane and propylene on 13 X molecular sieves determined experimentally using a differential sorption bed system. Sep. Technol. 2, 141-154). Propylene is the most preferentially adsorbed component, and the desorption rates of propylene and propane are slower than the adsorption rates. Mathematical models were constructed and solved, and it was found that the two-component model could provide a quantitative measure of the interactions between propylene and propane, and could describe the behavior of binary adsorption kinetics including the overshoot of the equilibrium loading by the less preferentially adsorbed propane. The theoretical results indicate that the desorption rates are not described by the same intracrystalline diffusion coefficients as the adsorption rates.
引用
收藏
页码:1 / 11
页数:11
相关论文
共 14 条
[1]  
Huang, Johnson, Liapis, Crosser, Experimental determination of the binary equilibrium adsorption and desorption of propane-propylene mixtures on 13 X molecular sieves by a differential sorption bed system and investigation of their equilibrium expressions, Sep. Technol., 4, pp. 156-166, (1994)
[2]  
Liapis, Findley, Johnson, Jetz, Finefrock, Rates and equilibria of adsorption and desorption of propane and propylene on 13 X molecular sieves determined experimentally using a differential sorption bed system, Sep. Technol., 2, pp. 141-154, (1992)
[3]  
Liapis, Findley, Nguyen, Separation of Adsorbed Components by Variable Temperature Desorption, (1989)
[4]  
Kulvaranon, Findley, Liapis, Increased separation by variable temperature stepwise desorption in multicomponent adsorption processes, Ind. Eng. Chem. Res., 29, pp. 106-115, (1990)
[5]  
Kulvaranon, Findley, Liapis, Increased separation effects by variable temperature stepwise desorption in multicomponent adsorbed phases, Fundamentals of Adsorption, Proceedings of the Third International Conference on Fundamentals of Adsorption, pp. 455-464, (1991)
[6]  
Kulvaranon, M.S. Thesis, (1988)
[7]  
Shu, Ph.D. Dissertation, (1990)
[8]  
Shu, Findley, Liapis, Separation of hydrogen sulfide from hydrocarbon mixtures using molecular sieves by variable-temperatures stepwise desorption, Emerging Technologies for Hazardous Waste Treatment (Symposium organized by the American Chemical Society, Division of Industrial and Engineering Chemistry), (1990)
[9]  
Shu, Kulvaranon, Findley, Liapis, Experimental and computational studies of propane-propylene separation by adsorption and variable temperature stepwise desorption, Sep. Technol., 1, pp. 18-28, (1990)
[10]  
Kulvaranon, Ph.D. Dissertation, (1991)