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Original Articles

Solution of an inverse adsorption problem with an epidemic genetic algorithm and the generalized extremal optimization algorithm

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Pages 289-302 | Received 16 Apr 2007, Accepted 30 Nov 2007, Published online: 24 Mar 2009

References

  • Guiochon, G, 2002. Preparative liquid chromatography (Review), J. Chromat. 965 (2002), pp. 129–161.
  • Silva, FRC, and Santana, CC, 2000. Adsorption of inulinases in ion exchange columns, Appl. Biochem. Biotech. 84–86 (2000), pp. 1063–1078.
  • Denisov, AM, 2000. Inverse problems of absorption dynamics Minisymposium on Inverse Problems in Medicine. Santos, Brazil: Engineering and Geophysics, XXIII Brazilian Congress on Applied and Computational Mathematics; 2000. pp. 24–32.
  • Vasconcellos, JF, Silva Neto, AJ, and Santana, CC, 2003. An inverse mass transfer problem in solid-liquid adsorption systems, Inv. Prob. Eng. 11 (2003), pp. 391–408.
  • Câmara, LDT, Santana, CC, and Neto, AJSilva, 2007. Kinetic modeling of properties adsorption with a methodology of error analysis., J. Separat. Sci. 30 (2007), pp. 688–692.
  • Paredes, G, and Mazzotti, M, 2007. Optimization of simulated moving bed and column chromatography for a plasmid DNA purification step and for a chiral separation, J. Chromat. A 1142 (2007), pp. 56–68.
  • Folly, FM, Neto, AJSilva, and Santana, CC, 2005. An inverse mass transfer problem for the characterization of simulated moving beds adsorption columns, 5th International Conference on Inverse Problems in Engineering: Theory and Practice. UK: Cambridge; 2005.
  • Kowalczyk, P, Terzyk, AP, Gauden, PA, Leboda, R, Szmechtig-Gauden, E, Rychlicki, G, Ryu, Z, and Rong, H, 2003. Estimation of the pore-size distribution function from the nitrogen adsorption isotherm. Comparison of density functional theory and the method of Do and co-workers, Carbon 41 (2003), pp. 1113–1125.
  • Kowalczyk, P, Terzyk, AP, Gauden, PA, and Leboda, R, 2001. The characterization of microporous activated carbons utilizing a Simple Adsorption Genetic Algorithm (SAGA) (Letter to the editor), J. Colloid Inter. Sci. 239 (2001), pp. 591–594.
  • Forssén, P, Arnell, R, and Fornstedt, T, 2006. An improved algorithm for solving inverse problems in liquid chromatography, Comp. Chem. Eng. 30 (2006), pp. 1381–1391.
  • Câmara, LDT, Santana, CC, and Neto, AJSilva, 2006. Direct and inverse modeling of enzymes adsorption kinetics in macro-porous adsorbents, 14th Inverse Problems in Engineering Seminar. USA: Ames; 2006.
  • Vasconcellos, JFV, Neto, AJSilva, Santanta, CC, and Soeiro, FJCP, 2002. Parameter estimation in adsorption columns with a stochastic global optimization method, 4th International Conference on Inverse Problems in Engineering: Theory and Practice. Vol. II. 2002. pp. 227–234, Angra dos Reis, Brazil, 2002.
  • Lage, LF, Cuco, APC, Folly, FM, Soeiro, FJCP, and Neto, AJSilva, Stochastic and hybrid methods for the solution of an inverse mass transfer problem. Presented at III European Conference on Computational Mechanics. Lisbon, Portugal, 2006.
  • Lage, LF, Cuco, APC, Soeiro, FJCP, and Neto, AJSilva, 2006. Characterization of adsorption columns with Thomas' model and artificial neural networks. Recife, Brazil: IV Brazilian National Congress of Mechanical Engineering; 2006.
  • Lage, LF, Cuco, APC, Neto, AJSilva, Folly, FM, and Soeiro, FJCP, 2006. Solution of an inverse mass transfer problem with a hybridization of artificial neural networks and Levenberg-Marquardt method, 11th Brazilian Congress of Thermal Sciences and Engineering. Curitiba, Brazil. 2006.
  • Yu, W, Hidajat, K, and Ray, AK, 2004. Determination of adsorption and kinetic parameters for methyl acetate esterification and hydrolysis reaction catalyzed by Amberlyst 15, Appl. Cataly. A: Gen. 260 (2004), pp. 191–205.
  • Ziyang, Z, Hidajat, K, and Ray, AK, 2001. Determination of adsorption and kinetic parameters for methyl tert-butyl ether synthesis from tert-butyl alcohol and methanol, J. Cataly. 200 (2001), pp. 209–221.
  • James, J, Sepúlveda, M, Charton, F, Quiñones, I, and Guiochon, G, 1999. Determination of binary competitive equilibrium isotherms from the individual chromatographic band profiles, Chem. Eng. Sci. 54 (1999), pp. 1677–1696.
  • Zhang, Y, Hidajat, K, and Ray, AK, 2006. Determination of competitive adsorption isotherm parameters of pindolol enantiometers on α1-acid glycoprotein chiral stationary phase, J. Chromat. A 1131 (2006), pp. 176–184.
  • Sousa, FL, Ramos, FM, Paglione, P, and Girardi, RM, 2003. New stochastic algorithm for design optimization, AIAA J. 41 (2003), pp. 1808–1818.
  • Chiwiacowski, LD, and Campos Velho, HF, 2003. Different approaches for the solution of a backward heat conduction problem, Inv. Prob. Eng. 11 (2003), pp. 471–494.
  • Felinger, A, Cavazzini, A, and Guiochon, G, 2003. Numerical determination of the competitive isotherm of enantiometers, J. Chromat. A 986 (2003), pp. 207–225.
  • Hao, W, and Wang, J, 2005. Evaluation of nonlinear chromatographic performance by frontal analysis using a single multi-plate mathematical model, J. Chromat. A 1063 (2005), pp. 47–56.
  • Guiochon, G, and Lin, B, 2003. Modeling for Preparative Chromatography. Great Britain: Academic Press; 2003.
  • Blanch, HW, and Clark, DS, 1997. Biochemical Engineering. New York: Marcel Dekker; 1997.
  • Chase, HA, 1984. Prediction of the performance of preparative affinity chromatography, J. Chromat. 297 (1984), pp. 179–202.
  • Rice, GR, and Do, DD, 1994. Applied Mathematics and Modeling for Chemical Engineers. New York: John Wiley & Sons; 1994.
  • Thomas, H, 1944. Heterogeneous ion exchange in flowing system, J. Am. Chem. Soc. 66 (1944), pp. 1664–1668.
  • Bak, P, and Sneppen, K, 1993. Punctuated equilibrium and criticality in a simple model of evolution, Phys. Rev. Lett. 71 (1993), pp. 4083–4086.
  • Vlassov, VV, de Sousa, FL, and Takahashi, WK, 2006. Comprehensive optimization of a heat pipe radiator assembly filled with ammonia or acetone, Int. J. Heat Mass Tran. 49 (2006), pp. 4584–4595.
  • Vlassov, VV, Cuco, APC, Sousa, FL de, and Neto, AJSilva, Presented at Design optimization of two-stage radiator with variable emittance: Analysis of concept feasibility, 11th Brazilian Congress of Thermal Sciences and Engineering. Curitiba, Brazil, 2006.
  • Sousa, FL, Soeiro, FJCP, Neto, AJSilva, and Ramos, FM, 2007. Application of the generalized extremal optimization algorithm to an inverse radiative transfer problem, Inv. Prob. Sci. Eng. 15 (2007), pp. 699–714.
  • Krishnakumar, K, 1989. Micro-Genetic Algorithms for Stationary and Non-Stationary Function Optimization, Intell. Contr. Adap. Syst., SPIE 1196 (1989), SPIE, Bellingham, USA.
  • Goldberg, DE, and Richardson, J, 1987. "Genetic algorithms with sharing for multimodal function optimization". In: Grefenstette, JJ, ed. Genetic Algorithms and Their Applications: Proceedings of the Second International Conference on Genetic Algorithms. USA: Cambridge; 1987. pp. 41–49.
  • Melanie, MM, 1998. An Introduction to Genetic Algorithms. Cambridge, USA: MIT Press; 1998.
  • Mahfoud, SW, 1995. Niching Methods for Genetic Algorithms. USA: Computer Science Thesis, University of Illinois at Urbana-Champaign; 1995.
  • Liu, GR, and Han, X, 2003. Computational Inverse Techniques in Nondestructive Evaluation. Florida, USA: CRC Press; 2003.
  • Horn, J, 1997. The Nature of Niching:Genetic Algorithms and the Evolution of Optimal, Cooperative Populations. USA: Computer Science Thesis, University of Illinois at Urbana-Champaign; 1997.
  • Goldberg, DE, Sizing populations for serial and parallel genetic algorithms.. Presented at Proceedings of the third International Conference on Genetic Algorithms. 1989.
  • Chakraborti, N, Deb, K, and Jha, A, 2000. A genetic algorithm based heat transfer analysis of a bloom re-heating furnace, Steel Res. 71 (2000), pp. 396–402.

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