References
Araújo, O. Q. F., & de Medeiros, J. L. (2017). Carbon capture and
storage technologies: Present scenario and drivers of innovation.
Current Opinion in Chemical Engineering, 17, 22–34. https://doi.
org/10.1016/j.coche.2017.05.004.
Araújo, O. Q. F., Reis, A. C., de Medeiros, J. L., Nascimento, J. F.,
Grava, W. M., & Musse, A. P. S. (2017). Comparative analysis of
separation technologies for processing carbon dioxide rich natural
gas in ultra-deepwater oil fields. Journal of Cleaner Production,
155, 12–22. https://doi.org/10.1016/j.jclepro.2016.06.073.
Arinelli, L. O., de Medeiros, J. L., de Melo, D. C., Teixeira, A. M.,
Brigagão, G. V., Passarelli, F. M., et al. (2019). Carbon capture and
high-capacity supercritical fluid processing with supersonic separator: Natural gas with ultra-high CO 2 content. Journal of Natural
Gas Science and Engineering, 66, 265–283. https://doi.org/10.
1016/j.jngse.2019.04.004.
Arinelli, L. O., Trotta, T. A. F., Teixeira, A. M., de Medeiros, J. L., &
Araújo, O. Q. F. (2017). Offshore processing of CO 2 rich natural
gas with supersonic separator versus conventional routes. Journal of
Natural Gas Science and Engineering, 46, 199–221. https://doi.org/
10.1016/j.jngse.2017.07.010.
Baker, R. (2004). Membrane technology and applications (2nd ed.).
England: Wiley.
Bernardo, P., Drioli, E., & Golemme, G. (2009). Membrane gas
separation: A review/state of the art. Industrial & Engineering
Chemistry Research, 48, 4638–4663. https://doi.org/10.1021/
ie8019032.
Chung, T. H., Ajlan, M., Lee, L. L., & Starling, K. E. (1988).
Generalized multi-parameter correlation for nonpolar and polar fluid
transport properties. Industrial & Engineering Chemistry Research,
27, 671–679. https://doi.org/10.1021/ie00076a024.
Churchill, S. (1977). Friction-factor equation spans all fluid-flow
regimes. Chemical Engineering, 84, 24, 91–92.
de Medeiros, J. L., Barbosa, L. C., & Araújo, O. Q. F. (2013a).
Equilibrium approach for CO 2 and H 2 S absorption with aqueous
solutions of alkanolamines: Theory and parameter estimation.
Industrial & Engineering Chemistry Research, 52, 9203–9226.
https://doi.org/10.1021/ie302558b.
de Medeiros, J. L., Nakao, A., Grava, W. M., Nascimento, J. F., &
Araújo, O. Q. F. (2013b). Simulation of an offshore natural gas
purification process for CO 2 removal with gas—Liquid contactors
employing aqueous solutions of ethanolamines. Industrial &
Engineering Chemistry Research, 52, 7074–7089. https://doi.org/
10.1021/ie302507n.
Ebner, A. D., & Ritter, J. A. (2009). State-of-the-art adsorption and
membrane separation processes for carbon dioxide production from
carbon dioxide emitting industries. Separation Science & Technology, 44, 1273. https://doi.org/10.1080/01496390902733314.
Ho, M. T., Allinson, G., & Wiley, D. E. (2006). Comparison of CO 2
separation options for geo-sequestration: Are membranes competitive? Desalination, 192, 288–295. https://doi.org/10.1016/j.desal.
2005.04.135.
Marzouk, S. A. M., Al-Marzouqi, M. H., El-Naas, M. H., Abdullatif,
N., & Ismail, Z. M. (2010). Removal of carbon dioxide from
pressurized CO 2 –CH 4 gas mixture using hollow fiber membrane
contactors. Journal of Membrane Science, 351, 21. https://doi.org/
10.1016/j.memsci.2010.01.023.
Reid, R. C., Prausnitz, J. M., & Poling, B. E. (1987). The properties of
gases and liquids (4th ed.). New York: McGraw-Hill.
Membrane-Permeation Modeling for Carbon Capture …
175
Araújo, O. Q. F., & de Medeiros, J. L. (2017). Carbon capture and
storage technologies: Present scenario and drivers of innovation.
Current Opinion in Chemical Engineering, 17, 22–34. https://doi.
org/10.1016/j.coche.2017.05.004.
Araújo, O. Q. F., Reis, A. C., de Medeiros, J. L., Nascimento, J. F.,
Grava, W. M., & Musse, A. P. S. (2017). Comparative analysis of
separation technologies for processing carbon dioxide rich natural
gas in ultra-deepwater oil fields. Journal of Cleaner Production,
155, 12–22. https://doi.org/10.1016/j.jclepro.2016.06.073.
Arinelli, L. O., de Medeiros, J. L., de Melo, D. C., Teixeira, A. M.,
Brigagão, G. V., Passarelli, F. M., et al. (2019). Carbon capture and
high-capacity supercritical fluid processing with supersonic separator: Natural gas with ultra-high CO 2 content. Journal of Natural
Gas Science and Engineering, 66, 265–283. https://doi.org/10.
1016/j.jngse.2019.04.004.
Arinelli, L. O., Trotta, T. A. F., Teixeira, A. M., de Medeiros, J. L., &
Araújo, O. Q. F. (2017). Offshore processing of CO 2 rich natural
gas with supersonic separator versus conventional routes. Journal of
Natural Gas Science and Engineering, 46, 199–221. https://doi.org/
10.1016/j.jngse.2017.07.010.
Baker, R. (2004). Membrane technology and applications (2nd ed.).
England: Wiley.
Bernardo, P., Drioli, E., & Golemme, G. (2009). Membrane gas
separation: A review/state of the art. Industrial & Engineering
Chemistry Research, 48, 4638–4663. https://doi.org/10.1021/
ie8019032.
Chung, T. H., Ajlan, M., Lee, L. L., & Starling, K. E. (1988).
Generalized multi-parameter correlation for nonpolar and polar fluid
transport properties. Industrial & Engineering Chemistry Research,
27, 671–679. https://doi.org/10.1021/ie00076a024.
Churchill, S. (1977). Friction-factor equation spans all fluid-flow
regimes. Chemical Engineering, 84, 24, 91–92.
de Medeiros, J. L., Barbosa, L. C., & Araújo, O. Q. F. (2013a).
Equilibrium approach for CO 2 and H 2 S absorption with aqueous
solutions of alkanolamines: Theory and parameter estimation.
Industrial & Engineering Chemistry Research, 52, 9203–9226.
https://doi.org/10.1021/ie302558b.
de Medeiros, J. L., Nakao, A., Grava, W. M., Nascimento, J. F., &
Araújo, O. Q. F. (2013b). Simulation of an offshore natural gas
purification process for CO 2 removal with gas—Liquid contactors
employing aqueous solutions of ethanolamines. Industrial &
Engineering Chemistry Research, 52, 7074–7089. https://doi.org/
10.1021/ie302507n.
Ebner, A. D., & Ritter, J. A. (2009). State-of-the-art adsorption and
membrane separation processes for carbon dioxide production from
carbon dioxide emitting industries. Separation Science & Technology, 44, 1273. https://doi.org/10.1080/01496390902733314.
Ho, M. T., Allinson, G., & Wiley, D. E. (2006). Comparison of CO 2
separation options for geo-sequestration: Are membranes competitive? Desalination, 192, 288–295. https://doi.org/10.1016/j.desal.
2005.04.135.
Marzouk, S. A. M., Al-Marzouqi, M. H., El-Naas, M. H., Abdullatif,
N., & Ismail, Z. M. (2010). Removal of carbon dioxide from
pressurized CO 2 –CH 4 gas mixture using hollow fiber membrane
contactors. Journal of Membrane Science, 351, 21. https://doi.org/
10.1016/j.memsci.2010.01.023.
Reid, R. C., Prausnitz, J. M., & Poling, B. E. (1987). The properties of
gases and liquids (4th ed.). New York: McGraw-Hill.
Membrane-Permeation Modeling for Carbon Capture …
175
