TEMPERATURE SWING ADSORPTION PROCESSES FOR GAS SEPARATION

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TEMPERATURE SWING ADSORPTION PROCESSES FOR GAS SEPARATION ( temperature-swing-adsorption-processes-for-gas-separation )

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Supplement(0) pp. S173-S178 DOI: http://dx.doi.org/10.1016/S0196- 8904(96)00265-8. Herm, Z. R., R. Krishna and J. R. Long (2012), "Reprint of: CO2/CH4, CH4/H2 and CO2/CH4/H2 separations at high pressures using Mg2(dobdc)," Microporous and Mesoporous Materials Vol. 157(0) pp. 94-100 DOI: http://dx.doi.org/10.1016/j.micromeso.2012.04.042. Hines, A. and R. Maddox (1985). Mass Transfer Fundamentals and Applications. Upper Saddle River, NJ, USA, Prentice-Hall. Incropera, F. P., T. L. Bergman, A. S. Lavine and D. P. DeWitt (2011). Fundamentals of heat and mass transfer, Wiley. Kalyanaraman, J., Y. Fan, R. P. Lively, W. J. Koros, C. W. Jones, M. J. Realff and Y. Kawajiri (2015), "Modeling and experimental validation of carbon dioxide sorption on hollow fibers loaded with silica-supported poly(ethylenimine)," Chemical Engineering Journal Vol. 259 pp. 737-751 DOI: http://dx.doi.org/10.1016/j.cej.2014.08.023. Kapoor, A. and R. T. Yang (1989), "Kinetic separation of methane—carbon dioxide mixture by adsorption on molecular sieve carbon," Chemical Engineering Science Vol. 44(8) pp. 1723-1733 DOI: http://dx.doi.org/10.1016/0009-2509(89)80014-4. Klein, S. A. (2016). Engineering Equation Solver. Madison, F-Chart Software. Koros, W. J. and R. Mahajan (2000), "Pushing the limits on possibilities for large scale gas separation: which strategies?," Journal of Membrane Science Vol. 175(2) pp. 181-196 DOI: http://dx.doi.org/10.1016/S0376-7388(00)00418-X. Krishnamurthy, S., V. R. Rao, S. Guntuka, P. Sharratt, R. Haghpanah, A. Rajendran, M. Amanullah, I. A. Karimi and S. Farooq (2014), "CO2 capture from dry flue gas by vacuum swing adsorption: A pilot plant study," AIChE Journal Vol. 60 pp. 1830- 1842 DOI: 10.1002/aic.14435. Kulkarni, A. R. and D. S. Sholl (2012), "Analysis of Equilibrium-Based TSA Processes for Direct Capture of CO2 from Air," Industrial & Engineering Chemistry Research Vol. 51(25) pp. 8631-8645 DOI: 10.1021/ie300691c. Lee, S. C. (2007), "Prediction of permeation behavior of CO2 and CH4 through silicalite- 1 membranes in single-component or binary mixture systems using occupancy- dependent Maxwell–Stefan diffusivities," Journal of Membrane Science Vol. 306(1–2) pp. 267-276 DOI: http://dx.doi.org/10.1016/j.memsci.2007.09.003. Lee, T. S., J. H. Cho and S. H. Chi (2015), "Carbon dioxide removal using carbon monolith as electric swing adsorption to improve indoor air quality," Building and Environment Vol. 92(0) pp. 209-221 DOI: http://dx.doi.org/10.1016/j.buildenv.2015.04.028. Li, Z., G. Xiao, Q. Yang, Y. Xiao and C. Zhong (2014), "Computational exploration of metal–organic frameworks for CO2/CH4 separation via temperature swing adsorption," Chemical Engineering Science Vol. 120(0) pp. 59-66 DOI: http://dx.doi.org/10.1016/j.ces.2014.08.003. Liang, Z., M. Marshall and A. L. Chaffee (2009), "Comparison of Cu-BTC and zeolite 13X for adsorbent based CO2 separation," Energy Procedia Vol. 1(1) pp. 1265- 1271 DOI: http://dx.doi.org/10.1016/j.egypro.2009.01.166. Liu, Z., C. A. Grande, P. Li, J. Yu and A. E. Rodrigues (2011), "Multi-bed Vacuum Pressure Swing Adsorption for carbon dioxide capture from flue gas," Separation 215

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