Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants

PDF Publication Title:

Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants ( modelling-and-simulation-twin-bed-pressure-swing-adsorption- )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 100

9 References 87 [31] D. Finlayson, A. J. Sharp, UK 365092 Concentration of "vapours" by a pressure swing adsorption over a charcoal adsorbent, 1930. [32] D. R. Ruthven, S. Farooq, K. S. Knaebel, Pressure Swing Adsorption, VCH Publishers, Inc., 1994. [33] D. M. Ruthven, Principles of Adsorption and Adsorption Processes, John Wiley & Sons, Inc., 1984. [34] D. D. Do, Adsorption Analysis: Equilibria and Kinetics, Imperial College Press, 1998. [35] R.T. Yang, Gas Seperation by Adsorption Processes, 2013. [36] J. Kärger, D. M. Ruthven, Diffusion in Zeolites and other Microporous Solids, J. Wiley & Sons INC, 1992. [37] S. Sircar, J. R. Hufton, Why Does the Linear Driving Force Model for Adsorption Kinetics Work?, Adsorption 6 (2000) 137–147. [38] Z. A. Abdel-Rahman, A. H. Mhdi, H. S. Auob, Parametric Study for Nitrogen Separation from Air by Pressure Swing Adsorption Using Carbon Molecular Sieve, Tikrit Journal of Engineering Sciences (TJES) 23 (2016) 1–9. [39] J. S. Ehsan, M. Masoud, Pilot-Scale Experiments for Nitrogen Separation from Air by Pressure Swing Adsorption, South African Journal of Chemical Engineering 19 (2014) 42–56. [40] J. S. Ahari, S. Pakseresht, Determination effects of process variables on Nitrogen production PSA system by mathematical modeling, Petroleum & Coal 50 (2008) 52–59. [41] A. H. Mahdi, A. M. R. Ahmed, S. S. Salih, H. S. Ayuob, Simulation study of two units of pressure swing adsorption for producing oxygen and nitrogen simultaneously, in: AIP Conference Proceedings 2213, 020166 (2020), pp. 1–12. [42] E. J. Shokroo, M. Shahcheraghi, M. Farniaei, Study of feed temperature effects on performance of a domestic industrial PSA plant, Appl Petrochem Res 4 (2014) 317–323. [43] P. V. Chinh, N. T. Hieu, V. D. Tien, et al., Simulation and Experimental Study of a Single Fixed-Bed Model of Nitrogen Gas Generator Working by Pressure Swing Adsorption, Processes 7(10):654 (2019) 1-21. [44] A.I. Shirley, N.O. Lemcoff, High-purity Nitrogen by pressure-swing adsorption, AIChE J. 43 (1997) 419–424. [45] A.I. Shirley, N.O. Lemcoff, Air Separation by Carbon Molecular Sieves, Adsorption 8 (2002) 147–155. [46] N.O. Lemcoff, Nitrogen separation from air by pressure swing adsorption, in: Adsorption and its Applications in Industry and Environmental Protection - Vol.I: Applications in Industry, Elsevier, 1999, pp. 347–370. [47] M. B. Rao, R. G. Jenkins, W. A. Steele, Mathematical Modeing of Diffusive Potentials Within Carbon Molecular Sieves, 17th Conference on Carbon, American Carbon Society, Extended Abstracts: 114-115 (1985).

PDF Image | Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants

PDF Search Title:

Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants

Original File Name Searched:

dissertation_marcinek.pdf

DIY PDF Search: Google It | Yahoo | Bing

CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info

Heat Pumps CO2 ORC Heat Pump System Platform More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com (Standard Web Page)