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Published in: Adsorption 3/2015

01-04-2015

Graphical unit block approach for complex PSA cycle scheduling of parallel interacting trains of columns and tanks

Authors: Armin D. Ebner, Amal Mehrotra, James A. Ritter

Published in: Adsorption | Issue 3/2015

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Abstract

A simple, graphical, unit block approach for complex pressure swing adsorption (PSA) cycle scheduling has been developed for parallel interacting trains of PSA columns, possibly assisted by trains of tanks. For parallel interacting trains of PSA columns, this new methodology involves a priori specifying for each train the cycle steps, their sequence, and the number of beds, and then following a systematic procedure that requires filling in a 2-D grid for each of these coupled trains. For parallel interacting trains of PSA columns assisted by trains of tanks, a similar methodology has been developed; however, the number of tanks to include and their steps is an output from the methodology rather than an input to it. The reason for this is that tanks are inherently required when the coupling between steps is otherwise impossible or leads to the generation of undesirable idle steps. The overall outcome is a unit block for each train that can easily be extended to form its complete cycle schedule, thereby forming the grand cycle schedule of the coupled train–train or train-tank system. Three heuristics were also discovered about the minimum number of beds required to satisfy the number and types of steps in the cycle step sequence. These new methodologies and heuristics should be very useful for quickly scrutinizing different PSA cycle schedules for complex PSA processes comprising any number of parallel interacting trains of PSA columns, including the possibility of being assisted by one or more trains of tanks.

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Literature
go back to reference Chiang, A.S.T.: Arithmetic of PSA process scheduling. AIChE J. 34, 1910–1912 (1988)CrossRef Chiang, A.S.T.: Arithmetic of PSA process scheduling. AIChE J. 34, 1910–1912 (1988)CrossRef
go back to reference D’Amico, J.S., Reinhold, III, H.E., Knaebel, K.S.: Helium recovery. US Patent 5,542,966, 1966 D’Amico, J.S., Reinhold, III, H.E., Knaebel, K.S.: Helium recovery. US Patent 5,542,966, 1966
go back to reference Ebner, A.D., Mehrotra, A., Ritter, J.A.: Graphical approach for complex PSA cycle scheduling. Adsorption 15, 406–421 (2009)CrossRef Ebner, A.D., Mehrotra, A., Ritter, J.A.: Graphical approach for complex PSA cycle scheduling. Adsorption 15, 406–421 (2009)CrossRef
go back to reference Fuderer, A.: Pressure swing adsorption process and system. US Patent 4,381,189, 1983 Fuderer, A.: Pressure swing adsorption process and system. US Patent 4,381,189, 1983
go back to reference Grande, C.A., Blom, R.: Dual pressure swing adsorption units for gas separation and purification. Ind. Eng. Chem. Res. 51, 8695–8699 (2012)CrossRef Grande, C.A., Blom, R.: Dual pressure swing adsorption units for gas separation and purification. Ind. Eng. Chem. Res. 51, 8695–8699 (2012)CrossRef
go back to reference Jee, J.G., Lee, S.J., Kim, M.B., Lee, C.H.: Three-bed PVSA process for high-purity O2 generation from ambient air. AIChE J. 51, 2988–2999 (2005)CrossRef Jee, J.G., Lee, S.J., Kim, M.B., Lee, C.H.: Three-bed PVSA process for high-purity O2 generation from ambient air. AIChE J. 51, 2988–2999 (2005)CrossRef
go back to reference Kumar, R., Kratz, W.C., Rarig, D.L., Guro, D.E., Schmidt, W.P.: Adsorptive process for separating multi-component gas mixtures. U.S Patent 4,914,218, 1990 Kumar, R., Kratz, W.C., Rarig, D.L., Guro, D.E., Schmidt, W.P.: Adsorptive process for separating multi-component gas mixtures. U.S Patent 4,914,218, 1990
go back to reference Kumar, R., Kratz, W.C.: Separation of multicomponent gas mixtures by selective adsorption. US Patent 5,133,785, 1992 Kumar, R., Kratz, W.C.: Separation of multicomponent gas mixtures by selective adsorption. US Patent 5,133,785, 1992
go back to reference Kumar, R., Kratz, W.C., Rarig, D.L., Guro, D.E., Schmidt, W.P.: Gas mixture fractionation to produce two high purity products by pressure swing adsorption. Sep. Sci. Techol. 27, 509–522 (1992)CrossRef Kumar, R., Kratz, W.C., Rarig, D.L., Guro, D.E., Schmidt, W.P.: Gas mixture fractionation to produce two high purity products by pressure swing adsorption. Sep. Sci. Techol. 27, 509–522 (1992)CrossRef
go back to reference Mehrotra, A., Ebner, A.D., Ritter, J.A.: Arithmetic approach for complex PSA cycle scheduling. Adsorption 16, 113–116 (2010)CrossRef Mehrotra, A., Ebner, A.D., Ritter, J.A.: Arithmetic approach for complex PSA cycle scheduling. Adsorption 16, 113–116 (2010)CrossRef
go back to reference Mehrotra, A., Ebner, A.D., Ritter, J.A.: Simplified graphical approach for complex PSA cycle scheduling. Adsorption 17, 337–345 (2011)CrossRef Mehrotra, A., Ebner, A.D., Ritter, J.A.: Simplified graphical approach for complex PSA cycle scheduling. Adsorption 17, 337–345 (2011)CrossRef
go back to reference Reinhold, III, H.S., D’Amico, J.S., Knaebel, K.S.: Natural gas enrichment process. US Patent 5,536,300, 1996 Reinhold, III, H.S., D’Amico, J.S., Knaebel, K.S.: Natural gas enrichment process. US Patent 5,536,300, 1996
go back to reference Reinhold, III: Pressure swing adsorption method for separating gas components. US Patent 7,740,687, 2010 Reinhold, III: Pressure swing adsorption method for separating gas components. US Patent 7,740,687, 2010
go back to reference Ruthven, D.M., Farooq, S., Knaebel, K.S.: Pressure Swing Adsorption. VCH Publishers Inc, New York (1994) Ruthven, D.M., Farooq, S., Knaebel, K.S.: Pressure Swing Adsorption. VCH Publishers Inc, New York (1994)
go back to reference Sircar, S: Separation of multi-component gas mixtures. US Patent 4,171,206, 1979a Sircar, S: Separation of multi-component gas mixtures. US Patent 4,171,206, 1979a
go back to reference Sircar, S: Separation of multi-component gas mixtures by pressure swing adsorption. US Patent 4,171,207 ,1979b Sircar, S: Separation of multi-component gas mixtures by pressure swing adsorption. US Patent 4,171,207 ,1979b
go back to reference Sircar, S.: Fractionation of multicomponent gas mixtures by pressure swing adsorption. US Patent 4,790,858 ,1988 Sircar, S.: Fractionation of multicomponent gas mixtures by pressure swing adsorption. US Patent 4,790,858 ,1988
go back to reference Sircar, S.: Recovery of nitrogen, hydrogen and carbon dioxide from hydrocarbon reformate. US Patent 4,813,980, 1989 Sircar, S.: Recovery of nitrogen, hydrogen and carbon dioxide from hydrocarbon reformate. US Patent 4,813,980, 1989
go back to reference Smith, O.J.I.V., Westerberg, A.W.: Mixed-integer programming for pressure swing adsorption cycle scheduling. Chem. Eng. Sci. 45, 2833–2842 (1990)CrossRef Smith, O.J.I.V., Westerberg, A.W.: Mixed-integer programming for pressure swing adsorption cycle scheduling. Chem. Eng. Sci. 45, 2833–2842 (1990)CrossRef
go back to reference Wang, S.-I., Patel, N.M., Sircar, S., Allam, R.J.: Ammonia synthesis. US Patent 4,792,441, 1988 Wang, S.-I., Patel, N.M., Sircar, S., Allam, R.J.: Ammonia synthesis. US Patent 4,792,441, 1988
Metadata
Title
Graphical unit block approach for complex PSA cycle scheduling of parallel interacting trains of columns and tanks
Authors
Armin D. Ebner
Amal Mehrotra
James A. Ritter
Publication date
01-04-2015
Publisher
Springer US
Published in
Adsorption / Issue 3/2015
Print ISSN: 0929-5607
Electronic ISSN: 1572-8757
DOI
https://doi.org/10.1007/s10450-015-9665-9

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