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Strategies for Simulated Moving Bed Model Parameter Estimation Based on Minimal System Minimal Knowledge: Adsorption Isotherm Equation Screening and Estimability Analysis
Rodrigo V. A. Santos, Carine Rebello, Anderson Prudente, Vinicius V. Santana, Alexandre F. P. Ferreira, Ana M. Ribeiro, Karen V. Pontes and Idelfonso B. R. Nogueira Industrial & Engineering Chemistry Research 62(41) 16811 (2023) https://doi.org/10.1021/acs.iecr.3c02162
Global Approach for Simulated Moving Bed Model Identification: Design of Experiments, Uncertainty Evaluation, and Optimization Strategy Assessment
Rodrigo V. A. Santos, Anderson N. Prudente, Ana M. Ribeiro, et al. Industrial & Engineering Chemistry Research 60(21) 7904 (2021) https://doi.org/10.1021/acs.iecr.1c01276
Integration of simulated moving bed chromatography and enzymatic racemization for the production of single enantiomers
Markus Fuereder, Christian Femmer, Giuseppe Storti, Sven Panke and Matthias Bechtold Chemical Engineering Science 152 649 (2016) https://doi.org/10.1016/j.ces.2016.05.033
Center-cut separation of intermediately adsorbing target component by 8-zone simulated moving bed chromatography with internal recycle
Standing Wave Design and Optimization of Nonlinear Four-Zone Thermal Simulated Moving Bed Systems
Nicholas Soepriatna, N. H. Linda Wang and Phillip C. Wankat Industrial & Engineering Chemistry Research 54(42) 10419 (2015) https://doi.org/10.1021/acs.iecr.5b01296
The Amazing Ability of Continuous Chromatography To Adapt to a Moving Environment
Separation and isomerization of xylenes using zeolite membranes: a short overview
M. O. Daramola, A. J. Burger, M. Pera-Titus, et al. Asia-Pacific Journal of Chemical Engineering 5(6) 815 (2010) https://doi.org/10.1002/apj.414
Separation of chiral mixtures in real SMB units: The FlexSMB‐LSRE®
Pedro Sá Gomes, Miriam Zabkova, Michal Zabka, Mirjana Minceva and Alírio. E. Rodrigues AIChE Journal 56(1) 125 (2010) https://doi.org/10.1002/aic.11962
Simulated moving bed chromatography for the separation of enantiomers
The application of preparative batch HPLC, supercritical fluid chromatography, steady‐state recycling, and simulated moving bed for the resolution of a racemic pharmaceutical intermediate
Optimal Standing-Wave Design of Nonlinear Simulated Moving Bed Systems for Enantioseparation
Ki Bong Lee, Sungyong Mun, Fattaneh Cauley, Geoffrey B. Cox and Nien-Hwa Linda Wang Industrial & Engineering Chemistry Research 45(2) 739 (2006) https://doi.org/10.1021/ie0504248
Optimization of a hybrid chromatography-crystallization process for the separation of Tröger's base enantiomers
Chromatographic enantioseparation of amino acids using a new chiral stationary phase based on a macrocyclic glycopeptide antibiotic
Katerina Petrusevska, Mikhail A. Kuznetsov, Knut Gedicke, Vera Meshko, Sergey M. Staroverov and Andreas Seidel‐Morgenstern Journal of Separation Science 29(10) 1447 (2006) https://doi.org/10.1002/jssc.200600036
Application of equilibrium theory to ternary moving bed configurations (four+four, five+four, eight and nine zones)
Alexandre Nicolaos, Laurence Muhr, Patrice Gotteland, Roger-Marc Nicoud and Michel Bailly Journal of Chromatography A 908(1-2) 71 (2001) https://doi.org/10.1016/S0021-9673(00)00937-7
Coupling of simulated moving bed chromatography and fractional crystallisation for efficient enantioseparation