[1] H.Z. Kister, D.W. Hanson, Control column pressure via hot-vapor bypass, Chem. Eng. Prog. 111(2005) 35-45.
[2] S. Skogestad, Dynamics and control of distillation column:A critical survey, IFACSymposium, 197, 1997.
[3] A.W. Sloley, Effectively control column pressure, Chem. Eng. Prog. 97(2001) 38-48.
[4] D. Staak, T. Grutzner, Process integration by application of an extractive dividingwall column:an industrial case study, Chem. Eng. Res. Des. 123(2017) 120-129.
[5] Q. Wang, B. Yu, C. Xu, Design and control of distillation system for methylal/methanol separation part 1:Extactive distillation using DMF as an entrainer, Ind. Eng. Chem. Res. 51(2011) 1281-1292.
[6] S. Wang, C. Yu, H. Huang, Plant-wide design and control of DMC synthesis process via reactive distillation and thermally coupled extractive distillation, Comput. Chem. Eng. 34(2010) 361-373.
[7] I.D. Gil, J.M. Gomez, G. Rodrlguez, Control of an extractive distillation process to dehydrate ethanol using glycerol as entrainer, Comput. Chem. Eng. 39(2012) 129-142.
[8] Z. Fan, X. Zhang, W. Cai, F. Wang, Design and control of extraction distillation for dehydration of tetrahydrofuran, Chem. Eng. Technol. 36(2013) 829-839.
[9] E. Hosgor, T. Kucuk, I.N. Oksal, D. Kaymak, Design and control of distillation processes for methanol-chloroform separation, Comput. Chem. Eng. 67(2014) 166-167.
[10] H. Luo, K. Liang, W. Li, Y. Li, M. Xia, C. Xu, Comparison of pressure-swing distillation and extractive distillation methods for isopropyl alcohol/diisopropyl ether, Ind. Eng. Chem. Res. 53(2014) 15167-15182.
[11] L. Sun, Q. Wang, L. Li, J. Zhai, Y. Liu, Design and control of extractive dividing wall column for separating benzene/cyclohexane mixture, Ind. Eng. Chem. Res. 53(2014) 8120-8131.
[12] S. Tututi-Avila, A. Jimenez-Gutierrez, J. Hahn, Control analysis of an extractive dividing-wall column used for ethanol dehydration, Chem. Eng. Process. 82(2014) 88-100.
[13] Y.C. Wu, H. Lee, H. Huang, I. Chien, Energy-saving dividing-wall column design and control for heterogeneous azeotropic distillation systems, Ind. Eng. Chem. 53(2014) 1537-1552.
[14] W.B. Ramos, M.F. Figueiredo, K.D. Brito, S. Cianella, L.G.S. Vasconcelos, R.P. Brito, Effect of solvent content and heat integration on the controllability of extractive distillation process for anhydrous ethanol production, Ind. Eng. Chem. Res. 55(43) (2016) 11315-11328.
[15] W.L. Luyben, Dynamic simulation of flooded condensers, Chem. Eng. Res. Des. 118(2017) 12-20.
[16] F.G. Shinskey, Distillation Control, McGraw-Hill, N.Y, 1977.
[17] W.L. Luyben, Quantitative comparison of alternative control schemes for air-cooled condensers, AIChE J. 52(2006) 611-622.
[18] W.L. Luyben, Heat-exchanger bypass control, Ind. Eng. Chem. Res. 50(2011) 965-973.
[19] W.L. Luyben, Distillation Design and Control Using Aspen Simulation, John Wiley & Sons, Inc., New York, 2006.
[20] B.D. Tyreus, W.L. Luyben, Tuning of PI controllers for integrator dead time processes, Ind. Eng. Chem. Res. 31(1992) 2625-2628.
[21] R.A. Krohling, J.P. Rey, Design of optimal disturbance rejection PID controllers using genetic algorithms, IEEE Trans. Evol. Comput. 5(2001) 78-82. |