[1] Grossmann, I.E. (2004). “Challenges in the new millennium: product discovery and design, enterprise and supply chain optimization, global life cycle assessment.” Computers & Chem. Eng, Vol. 29, PP. 29-39.
[2] Bequette, B. W. (1998). “Process Dynamics Modeling, Analysis and Simulation.” Prentice Hall PTR, New Jersey.
[3] Aspen Tech Company (atesupport@Aspentech.com (Engineering Suite).
[4] Yeomans, H. and Grossmann, I. E. (2000). “Disjunctive programming models for the optimal design of distillation columns and separation sequences.” Ind. Eng. Chem. Res, Vol. 39, PP. 1637-1648.
[5] Westerberg, A. W. (1981). “The synthesis of distillation based separation systems.” Comp. Chem. Eng., Vol. 9, PP .421-429.
[6] King, C. J. (1980). “Separation Processes,” McGraw-Hill Publishing Company, New York, Second Edition.
[7] Leboreiro, J. and Joaquin, A. (2004). “Processes synthesis and design of distillation sequences using modular simulators: A genetic algorithm framework.” Com. Chem. Eng. Vol. 28, PP. 1223–1236.
[8] Lucia, A. and McCallum, B. R. (2009). “Energy targeting and minimum energy distillation column sequences.” Com. Chem. Eng. Vol. 34, PP. 1–12.
[9] Errico, M., Tola, G., Rong, B. G., Demurtas, D. and Turunen, I. (2009). “Energy saving and capital cost evaluation in distillation column sequences with a divided wall column.” Ind. Eng. Chem. Res. Vol .87, PP. 1649–1657.
[10] Luyben, W. L. (2006). “Distillation Design and Control Using Aspen Simulation.” second ed, John Wiley and Sons, Inc, Hoboken, New Jersey.
[11] South Pars Field Development (Phase Two & Three), “Operating Manual, Unit 105, Dew Pointing and Mercaptans Removal.”
[12] Shinskey, F. G. (1984). “Distillation Control”, second ed. McGraw-Hill, New York.
[13] Luyben, W.L. (1999). “Process Modeling, Simulation, and Control for Chemical Engineers,” McGraw-Hill Publishing Company, New York, Second Edition.