Supercritical Carbon Dioxide for Sustainable Polymer Processes

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14 1 Supercritical Carbon Dioxide for Sustainable Polymer Processes 31 M. Stewart, O. Jolliet, Int. J. LCA, 2004, 9, 153. 32 D. W. Pennington, J. Potting, G. Finn- veden, E. Lindeijer, O. Jolliet, T. Rydberg, G. Rebitzer, Environ. Int., 2004, 30, 721. 33 P. Saling, A. Kicherer, B. Dittrich-Krä- mer, R. Wittlinger, W. Zombik, I. Schmidt, W. Schrott, S. Schmidt, Int. J. LCA, 2002, 4, 203. 34 S. Hellweg, U. Fischer, M. Scheringer, K. Hungerbühler, Green Chem., 2004, 6, 418. 35 P. H. Flückiger, The use of life-cycle assess- ment and product risk assessment within application development of chemicals, a case study of perchloroethylene use in dry cleaning, PhD thesis, Swiss Federal Insti- tute of Technology Zürich, 1999. 36 Th. Meyer, J. T. F. Keurentjes, Trans. IChemE A, 2004, 82(A12), 1. 37 E. J. Beckman, Ind. Eng. Chem. Res., 2003, 42, 1598. 38 C. Cagniard de la Tour, Ann. Chim. Phys., 1822, 22, 127. 39 T. Andrews, Proc. R. Soc., 1875, 24, 455. 40 M. A. McHugh, V. J. Krukonis, Supercriti- 48 R. C. Reid, J. M. Prausnitz, B. E. Poling, The Properties of Gases and Liquids, 4th edn., McGraw-Hill, New York, 1987. 49 J. M. Prausnitz, R. N. Lichtenthaler, E. G. de Azevedo, Molecular Thermodynamics of Fluid Phase Equilibria, 2nd edn., Prentice-Hall, Englewood Cliffs, 1986. 50 C. F. Kirby, M. A. McHugh, Chem. Rev., 1999, 99, 565. 51 F. Rindfleisch, T. P. DiNoia, M. A. McHugh, J. Phys. Chem., 1996, 100, 15581. 52 T. Sarbu, T. Styranec, E. J. Beckman, Ind. Eng. Chem. Res., 2000, 39, 1678. 53 T. Sarbu, T. Styranec, E. J. Beckman, Nature, 2000, 405, 165. 54 S. G. Kazarian, M. F. Vincent, F. V. Bright, C. L. Liotta, C. A. Eckert, J. Am. Chem. Soc., 1996, 118, 1729. 55 S.G. Kazarian, Polym. Sci., Ser. C, 2000, 42(1), 78. 56 K. M. Scholsky, J. Supercrit. Fluids, 1993, 6, 103. 57 K. A. Shaffer, J. M. DeSimone, Trends Polym. Sci., 1995, 3(5), 146. 58 J. L. Kendall, D. A. Canelas, J. L. Young, cal fluid extractions: principles and practice, 2nd edn., Butterworth-Heinemann, 543. 59 A.I. Cooper, J. Mater. Chem., 2000, 10, 41 T.A. Berger, J. Chromatogr. A, 1997, 785, 207. Stoneham, MA, 1994. 3. 42 G. O. Cantrell, J. A. Blackwell, J. Chroma- togr. A, 1997, 782, 237. 43 C. A. Eckert, B. L. Knutson, P. G. Debene- detti, Nature, 1996, 383, 313. 44 S. Angus, B. Armstrong, K.M. de Reuck, International Thermodynamic Tables of the Fluid State. Carbon Dioxide, Pergamon Press, Oxford, 1976. 45 R. Span, W. Wagner, J. Phys. Chem. Ref. Data, 1996, 25, 1509. 46 J.A. Darr, M. Poliakoff, Chem. Rev., 1999, 99, 495. 47 J. Baldyga, M. Henczka, B. Y. Shekunov, Fluid dynamics, mass transfer and particle formation in supercritical fluids, in Super- critical fluid technology for drug product development, eds.: P. York, U. B. Kom- pella, B. Shekunov, Marcel Dekker, New York, 2004. 60 M. F. Kemmere, Recent developments in polymer processes, in Handbook for polymer reaction engineering, eds.: Th. Meyer, J. T. F. Keurentjes, Wiley-VCH, Wein- heim, 2005. 61 D. Adam, Nature, 2000, 407, 938. 62 L. Chordia, R. Robey, Proceedings of the 5th International Symposium on Super- critical Fluids, Atlanta, 2000. 63 J. M. K. Timmer, Development of large scale applications (Workshop): Application of high-pressure carbon dioxide in polymer processes, Eindhoven University of Tech- nology, 2003. 64 G. Brunner, Nato Science Ser. E, Appl. Sci., 2000, 366, 517. 65 M.F. Kemmere, M.H.W. Cleven, M.A. van Schilt, J. T. F. Keurentjes, Chem. Eng. Sci., 2002, 57, 3929. 66 G. Parkinson, Chem. Eng., 1999, 106, May, 17. J. M. DeSimone, Chem. Rev., 1999, 99,

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