OPPORTUNITIES FOR POLLUTION PREVENTION

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cation-exchange resins K2411 and K1481 in supercritical carbon-dioxide. Ind. Eng. Chem. Res. 32:2065–68 97. Vieville C, Mouloungui Z, Gaset A. 1994. Kinetics of the oleic acid esteri- fication by methanol in the presence of solid acid catalysts in supercritical car- bon dioxide. Int. Symp. Supercrit. Flu- ids, 3rd, Strasbourg, France, pp. 19– 24. Vandoeuvre-les-Nancy, France:Inst. Natl. Polytech. Lorraine 98. Hitzler MG, Smail FR, Ross SK, Poli- akoff M. 1998. Selective catalytic hydro- genation of organic compounds in su- percritical fluid as a continuous process. Organ. Process Res. Dev. 2(3):132–46 99. Tacke T, Wieland S, Panster P. 1996. Int. Symp. High-Pressure Chem. Eng., 3rd, Zurich, Switz., pp. 17–21. Vandoeuvre- les-Nancy, France:Inst. Natl. Polytech. Lorraine 100. Dooley KM, Knopf FC. 1987. Oxidation catalysis in a supercritical fluid medium. Ind. Eng. Chem. Res. 26:1910–16 101. Subramaniam B, McCoy BJ. 1994. Cat- alyst activity maintenance or decay-A model for formation and desorption of coke. Ind. Eng. Chem. Res. 33:504–8 102a. Saim S, Subramaniam B. 1998. Chemical-reaction equilibrium at su- percritical conditions. Chem. Eng. Sci. 43:1837–41 102d. Saim S, Subramaniam B. 1991. Iso- merization of 1-hexene over Pt/gamma- Al2O3 catalyst-reaction mixture den- sity and temperature effects on catalyst effectiveness factor, coke laydown, and catalyst micomeritics. J. Catal. 131:445–56 102e. Baptist-Nguyen S, Subramaniam B. 1992. Coking and activity of porous cat- alysts in supercritical reaction media. AIChE J. 38:1027–37 103. Nakamura K, Chi YM, Fujii H, Yano T. 1990. Supercritical fluid—a novel non- aqueous medium to integrate enzymatic- reaction and separation. Ann. NY Acad. Sci. 613:319–32 104. Nakamura K. 1990. Biochemical re- actions in supercritical fluids. Trends Biotechnol. 8(10):288–92 105. Nakamura K. 1994. Supercritical Fluid Processing of Food and Biomaterials, ed. SSH Rizvi, pp. 54–61. Glasgow, UK: Blackie Acad. Prof. 257 pp. 106. Hammond DA, Karel M, Klibanov AM, Krukonis VJ. 1985. Enzymatic- reactions in supercritical gases. Appl. Biochem. Biotechnol. 11(5):393–400 107. Dumont T, Barth D, Corbier C, Branlant G, Perrut M. 1992. Enzymatic-reaction kinetic-comparison in an organic- solvent and in supercritical carbon- dioxide. Biotechnol. Bioeng. 40(2):329– 102b. Saim S, Ginosar DM, Subramaniam B. 33 1989. Phase and reaction equilibria con- siderations in the evaluation and opera- tion of supercritical fluid reaction pro- cesses. In Supercritical Fluid Science and Technology, ed. KP Johnston, JML Penninger, pp. 301–16. Washington, DC: Am. Chem. Soc. 102c. Saim S, Subramaniam B. 1990. Predic- tion of critical properties of 1 hexene iso- mers in carbon dioxide mixtures with cubic eos-sensitivity to mixture com- position and to the path of approach to critical points. Chem. Eng. Commun. 125:121–37 108. Yoon SH, Nakaya H, Miyawaki O, Nakamura K. 1997. Effect of substrate solubility on enzymatic transesterification in supercritical carbon dioxide. Int. Symp. Super- crit. Fluids, 4th, Sendai, Jpn., May 11–14, pp. 119–22. Vandoeuvre-les- Nancy, France: Inst. Natl. Polytech. Lorraine 109. Ikushima Y, Saito N, Yokaoyama T, Hatakeda K, Ito S, et al. 1993. Solvent effects on an enzymatic ester synthesis in supercritical carbon-dioxide. Chem. Lett. 109:109–12 CARBON DIOXIDE TECHNOLOGY PLATFORM 145

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