Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants

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

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9 References 88 [48] R.R. Vemula, M.V. Kothare, S. Sircar, Anatomy of a rapid pressure swing adsorption process performance, AIChE J. 61 (2015) 2008–2015. [49] H. M. Kvamsdal, T. Hertzberg, Optimization of pressure swing adsorption systems - The effect of mass transfer during the blowdown step, Chemical Engineering Science 50 (1995) 1203–1212. [50] Our World in Data, Electricity Mix by Hannah Ritchie, Online access: ourworldindata.org (25/02/2021). [51] D. Bathen, M. Breitbach, Adsorptionstechnik, 1st ed., Springer-Verlag Berlin Heidelberg, 2001. [52] International Union of Pure and Applied Chemistry IUPAC, Chemisorption and physisorption, 2002, Online access: www.old.iupac.org (30.04.2021). [53] C. Borgnakke, R. Sonntag, Fundamentals of Thermodynamics, 8th Edition, Wiley, 2013. [54] S. Kayal, S. Baichuan, B.B. Sah, Adsorption characteristics of AQSOA zeolites and water for adsorption chillers, International Journal of Heat and Mass Transfer 92 (2016) 1120–1127. [55] A. A. Sharipova et al., Triclosan adsorption from model system by mineral sorbent diatomite, Colloids and Surfaces A 532 (2017) 97–101. [56] G.P. Jeppu, T.P. Clement, A modified Langmuir-Freundlich isotherm model for simulating pH-dependent adsorption effects, Journal of Contaminant Hydrology 129-130 (2012) 46–53. [57] V. Steffen, E. Antonio da Silva, et al., Phenomenological adsorption isotherm for a binary system based on Poisson–Boltzmann equation, Surface and Interface Analysis 10 (2018) 50–57. [58] N. Tzabar, H. J. M. ter Brake, Adsorption isotherms and Sips models of nitrogen, methane, ethane, and propane on commercial activated carbons and polyvinylidene chloride, Adsorption 22 (2016) 901–914. [59] A. Nuhnen, C. Janiak, A practical guide to calculate the isosteric heat/enthalpy of adsorption via adsorption isotherms in metal-organic frameworks, MOFs, Dalton Transactions 49 (2020) 10295–10307. [60] P. L. Llewellyn, G. Maurin, Gas adsorption microcalorimetry and modelling to characterise zeolites and related materials, Comptes Rendus Chimie 8 (2005) 283–302. [61] K. S. Walton, D. S. Sholl, Predicting Multicomponent Adsorption: 50 Years of the Ideal Adsorbed Solution Theory, AIChE Journal 61 (2015) 2757–2762. [62] A. A. Shapiro, E. H. Stenby, Potential Theory of Multicomponent Adsorption, Journal of Colloid and Interface Science 201 (1998) 146–157. [63] O. Talu, I. Zwiebel, Multicomponent Adsorption Equilibria of Nonideal Mixtures, AIChE Journal 32 (1986) 1263–1276.

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