OPPORTUNITIES FOR POLLUTION PREVENTION

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LITERATURE CITED 1. IE Group Rep. Interagency Work. Group Ind. Ecol., Mater. Energy Flows United States. 1999. http://www.198.183.146.250/ reports.htm 2. McHugh MA, Krukonis VJ. 1993. Su- percritical Fluid Extraction: Principles and Practice. Stoneham, UK: Butterworth- Heinemann. 2nd ed. 11. Romack JT, DeSimone JM, Treat TA. 1995. Synthesis of tetrafluoroethylene- based, non-aqueous fluoropolymers in supercritical carbon dioxide. Macro- molecules 28:8429–31 12. Charpentier PA, Kennedy KA, DeSi- mone JM, Roberts GW. 1999. Continu- ous polymerizations in supercritical carbon dioxide: chain-growth precipitation poly- merizations. Macromolecules 32:5973– 3. Hyatt JA. 1984. Liquid and supercritical carbon-dioxide as organic-solvents. J. Org. Chem. 49:5097–101 75 4. Yilgor I, McGrath JE, Drukonis J. 1984. Novel supercritical fluid techniques for polymer fractionation and purification. I: Fractionation and characterization of gunc- tional siloxane oligomers. J. Polym. Bull. 13 12:499–506 5. Krukonis V. 1985. Processing of polymers with supercritical fluids. J. Polym. News 11:7 6. Borchardt JK. 1995. Dealing with soil con- taminants. Today’ s Chem. Work 4:47 7. World Resour. Inst. in collaboration with UN Environ. Prog., UN Dev. Prog., and the World Band. 1997. World Resour. 1997, 1996, pp. 328–30. New York: Oxford Univ. 14. Maury EE, Batten HJ, Killian SK, Mencel- oglu YZ, Combes JR, DeSimone JM. 1993. Graft copolymer surfactants for super- critical carbon dioxide applications. Polym. Prepr. (Am. Chem. Soc., Div. Polym Chem.) 34(2):664–65 15. DeSimone JM, Maury EE, Menceloglu YZ, McClain JB, Romack TJ, Combes JR. 1994. Dispersion polymerizations in super- critical carbon dioxide. Science 265:356– Press 59 8. King JW, Johnson JH, Eller FJ. 1995. Ef- fect of supercritical carbon dioxide pres- surized with helium on solute solubility during supercritical fluid extraction. Anal. Chem. 67:2288–91 52 9. DeSimone JM, Guan Z, Elsbernd CS. 1992. Synthesis of fluoropolymers in supercritical carbon-dioxide. Science 257:945–47 10. Romack TJ, Combes JR, DeSimone JM. 1995. Free radical telomerization of tetrafluoroethylene in supercritical carbon dioxide. Macromolecules 28:1724–26 17. Fulton JL, Pfund DM, McClain JB, Romack TJ, Maury EE, et al. 1995. Aggre- gation of amphiphilic molecules in super- critical carbon dioxide: a small angle X-ray scattering study. Langmur 11:4241–49 18. Matson DW, Fulton JL, Peterson RC, Smith RD. 1987. Rapid expansion of su- percritical fluid solutions-solute formation CARBON DIOXIDE TECHNOLOGY PLATFORM 139 converting traditionally hazardous processes to the more environmentally respon- sible processes of the future. Visit the Annual Reviews home page at www.AnnualReviews.org 13. McCoy M. 1999. Industry intrigued by CO2 as solvent—‘green’ processes based on supercritical carbon dioxide are moving out of the lab. Chem. Eng. News 77(24):11– 16. McClain JB, Betts DE, Canelas DA, Samulski ET, DeSimone JM, et al. 1996. Design of nonionic surfactants for super- critical carbon dioxide. Science 274:2049–

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