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Yoshiaki Kawajiri

Showing results (1-10 of 12) with videos related to

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Journal of Chromatography. A|April 14, 2012
Comparison of various ternary simulated moving bed separation schemes by multi-objective optimizationGaurav Agrawal, Yoshiaki Kawajiri
Journal of Chromatography. A|September 8, 2006
Large scale nonlinear optimization for asymmetric operation and design of Simulated Moving BedsYoshiaki Kawajiri, Lorenz T Biegler
Journal of Chromatography. A|February 6, 2013
Simultaneous modeling and optimization of nonlinear simulated moving bed chromatography by the prediction-correction methodJason Bentley, Charlotte Sloan, Yoshiaki Kawajiri
Journal of Chromatography. A|June 16, 2024
A parameter estimation method for chromatographic separation process based on physics-informed neural networkTao Zou, Tomoyuki Yajima, Yoshiaki Kawajiri
Journal of Chromatography. A|July 1, 2014
Systematic optimization and experimental validation of ternary simulated moving bed chromatography systemsGaurav Agrawal, Balamurali Sreedhar, Yoshiaki Kawajiri
Journal of Chromatography. A|December 18, 2022
Estimation and statistical analysis of model parameters using sequential Monte Carlo for phenol and p-cresol separationZiting Yuan, Yota Yamamoto, Tomoyuki Yajima, et al.
Journal of Chromatography. A|July 13, 2010
Optimization of simulated moving bed chromatography with fractionation and feedback: part II. Fractionation of both outletsSuzhou Li, Yoshiaki Kawajiri, Jörg Raisch, et al.
Journal of Chromatography. A|May 21, 2011
Optimization of startup and shutdown operation of simulated moving bed chromatographic processesSuzhou Li, Yoshiaki Kawajiri, Jörg Raisch, et al.
Journal of Separation Science|August 5, 2014
Evaluation of tertiary pyridine resin for the separation of lanthanides by simulated moving-bed chromatographyBalamurali Sreedhar, Tatsuya Suzuki, David T Hobbs, et al.
Journal of Chromatography. A|July 13, 2010
Optimization of simulated moving bed chromatography with fractionation and feedback: part I. Fractionation of one outletSuzhou Li, Yoshiaki Kawajiri, Jörg Raisch, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Journal of Chromatography. A|April 14, 2012
Comparison of various ternary simulated moving bed separation schemes by multi-objective optimizationGaurav Agrawal, Yoshiaki Kawajiri
Journal of Chromatography. A|September 8, 2006
Large scale nonlinear optimization for asymmetric operation and design of Simulated Moving BedsYoshiaki Kawajiri, Lorenz T Biegler
Journal of Chromatography. A|February 6, 2013
Simultaneous modeling and optimization of nonlinear simulated moving bed chromatography by the prediction-correction methodJason Bentley, Charlotte Sloan, Yoshiaki Kawajiri
Journal of Chromatography. A|June 16, 2024
A parameter estimation method for chromatographic separation process based on physics-informed neural networkTao Zou, Tomoyuki Yajima, Yoshiaki Kawajiri
Journal of Chromatography. A|July 1, 2014
Systematic optimization and experimental validation of ternary simulated moving bed chromatography systemsGaurav Agrawal, Balamurali Sreedhar, Yoshiaki Kawajiri
Journal of Chromatography. A|December 18, 2022
Estimation and statistical analysis of model parameters using sequential Monte Carlo for phenol and p-cresol separationZiting Yuan, Yota Yamamoto, Tomoyuki Yajima, et al.
Journal of Chromatography. A|July 13, 2010
Optimization of simulated moving bed chromatography with fractionation and feedback: part II. Fractionation of both outletsSuzhou Li, Yoshiaki Kawajiri, Jörg Raisch, et al.
Journal of Chromatography. A|May 21, 2011
Optimization of startup and shutdown operation of simulated moving bed chromatographic processesSuzhou Li, Yoshiaki Kawajiri, Jörg Raisch, et al.
Journal of Separation Science|August 5, 2014
Evaluation of tertiary pyridine resin for the separation of lanthanides by simulated moving-bed chromatographyBalamurali Sreedhar, Tatsuya Suzuki, David T Hobbs, et al.
Journal of Chromatography. A|July 13, 2010
Optimization of simulated moving bed chromatography with fractionation and feedback: part I. Fractionation of one outletSuzhou Li, Yoshiaki Kawajiri, Jörg Raisch, et al.
Pageof 2