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OPPORTUNITIES FOR POLLUTION PREVENTION

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140 TAYLOR 􏲣 CARBONELL 􏲣 DESIMONE of powders, thin-films and fibers. Ind. Eng. Chem. Res. 26:2298–306 19. Johnston KP, Harrison KL, Clarke MJ, Howdle SM, Heitz MP, et al. 1996. Water- in-carbon dioxide microemulsions: an en- vironment for hydrophiles including pro- teins. Science 271:624–26 20. Harrison KL, Goveas J, Johnston KP, O’Rear EA III. 1994. Water-in-carbon dioxide microemulsions with a fluoro- carbon-hydrocarbon hybrid surfactant. Langmuir 10:3536–41 21. Hoefling T, Stofesky D, Reid M, Beck- man E, Enick RM. 1992. The incorpora- tion of a florinated ether functionality into a polymer or surfactant to enhance CO2- solubility. J. Supercrit. Fluids 5:237–41 critical CO2. Chem. Commun., 3:373–74 25b. Lin Y, Wu H, Smart N, Wai CM. 1998. Investigation of adducts of lan- thanide and uranium beta-diketonates with organophosphorus Lewis bases by supercritical fluid chromatography. J. Chromatogr. A 793:107–13 25c. Wai CM, Wang SF. 1997. Supercritical fluid extraction: metals as complexes. J. Chromatogr. A 785:269–383 25d. Smart NG, Carleson TE, Elshani S, Wang SF, Wai CM. 1997. Dioxide contain- ing organophosphorus reagents. Ind. Eng. Chem. Res. 36:1819–26 25e. Smart NG, Carleson T, Kast T, Clifford AA, Burford MD, Wai CM. 1997. Sol- ubility of chelating agents and metal- containing compounds in supercritical fluid carbon dioxide Talanta 44:137– 22. Enick R, Beckman E, Yazdi A, Krukonis V, Schonemann H, Howell J. 1998. Phase behavior of CO2-perfluoropolyether oil 50 mixtures and CO2-perfluoropolyether chelating agent mixtures. J. Supercrit. Fluids 13:121–26 22a. Shaffer KA, Jones TA, Canelas DA, DeS- imone JM, Wilkinson SP. 1996. Disper- sion polymerizations in carbon dioxide using siloxane-based stabilizers. Macro- molecules 29:2704–6 22b. O’Neill ML, Yates MZ, Johnston KP, Smith CD, Wilkinson SP. 1998. Disper- sion polymerization in supercritical CO2 with a siloxane-based macromonomer. I: The particle growth regime. Macro- molecules 31:2838–47 23. Buhler E, Dobrynin AV, DeSimone JM, Rubinstein N. 1998. Light scattering study of diblock copolymers in supercrit- ical carbon dioxide CO2 density-induced micellization transition. Macromolecules 31:7347–55 24. Tallmadge JA, Gutfinger C. 1967. En- trainment of liquid films: drainage, with- drawal, and removal. Ind. Eng. Chem. 59(11):19 25a. Carrott MJ, Waller BE, Smart NG, Wai CM. 1998. High solubility of UO2(NO3)(2)•2TBP complex in super- 25f. Lin Y, Smart NG, Wai CM. 1995. Environ. Sci. Technol. 29:2706–8 25g. Laintz KE, Wai CM, Yonker CR, Smith RD. 1991. Solubility of fluorinated metal diethyldithiocarbamates in supercritical carbon dioxide. J. Supercrit. Fluids 4:194–98 25h. Wai CM, Smart NG, Lin Y. 1998. US Patent No. 5,770,085 26a. Laintz KE, Hale CD, Stark P, Rouquette CL, Wilkinson J. 1998. A comparison of liquid and supercritical carbon dioxide as an extraction solvent for plating bath treatment. Anal. Chem. 70:400–4 26b. Laintz KE, Tachikawa E. 1994. Extrac- tion of lanthanides from acidic solution using tributyl phosphate modified su- percritical carbon dioxide. Anal. Chem. 66:2190–93 27. Darr JA, Poliakoff M. 1999. New direc- tions in inorganic and metal-organic coor- dination chemistry in supercritical fluids. Chem. Rev. 99:495–541 28a. Meguro Y, Iso S, Sasaki T, Yoshida Z. 1998. Solubility of organophosphorus metal extractants in supercritical carbon dioxide. Anal. Chem. 70:774–79

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