OPPORTUNITIES FOR POLLUTION PREVENTION

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28b. Meguro Y, Iso S, Yoshida Z. 1998. Corre- lation between extraction equilibrium of uranium(VI) and density of CO2 medium in a HNO3 supercritical CO2 tributyl phosphate system. Anal. Chem. 70:1262– 67 28c. Glennon JD, Hutchinson S, Walker A, Harris SJ, McSweeney CC. 1997. New fluorinated hydroxamic acid reagents for the extraction of metal ions with super- critical CO2. J. Chromatogr. A 770:85–91 28d. Murphy JM, Erkey C. 1997. Copper(II) removal from aqueous solutions by chela- tion in supercritical carbon dioxide us- ing fluorinated beta-diketones. Ind. Eng. Chem. Res. 36:5371–76 lanthanides and actinides from solid ma- terials with a fluorinated beta-diketone. Anal. Chem. 65:2549–51 29c. Wai CM, Wang S, Yu J. 1996. Solubil- ity parameters and solubilities of metal dithiocarbamates in supercritical carbon dioxide. J. Anal. Chem. 68:3516–19 30a. Yazdi AV, Beckman EJ. 1997. Design of highly CO2-soluble chelating agents. 2: Effect of chelate structure and process parameters on extraction efficiency. Ind. Eng. Chem. Res. 36:2368–74 30b. Yazdi AV, Beckman EJ. 1996. Design, synthesis, and evaluation of novel, highly CO2-soluble chelating agents for removal of metals. Ind. Eng. Chem. Res. 35:3644– 28e. Ozel MZ, Burford MD, Clifford AA, 52 Bartle KD, Shadrin A, et al. 1997. Supercritical fluid extraction of cobalt with fluorinated and non-fluorinated beta- diketones. Anal. Chim. Acta 346:73–80 28f. Dehghani F, Wells T, Cotton NJ, Foster NR. 1996. Extraction and separation of lanthanides using dense gas CO2 mod- ified with tributyl phosphate and di(2- ethylhexyl)phosphoric acid. J. Supercrit. Fluids 9:263–72 28g. Lagalante AF, Hansen BN, Bruno TJ, Sievers RE. 1995. Solubilities of cop- per (II) and chromium (III) β -diketonates in supercritical carbon dioxide. Inorg. Chem. 34:5781–85 28h. Wang J, Marshall WD. 1994. Recovery of metals from aqueous media by extraction with supercritical carbon dioxide. Anal. Chem. 66:1658–63 28i. Saito N, Ikushima Y, Goto T. 1990. Liquid/solid extraction of acetylacetone chelates with supercritical carbon diox- ide. Bull. Chem. Soc. Jpn. 63:1532–34 29a. Laintz KE, Wai CM, Yonker DR, Smith RD. 1992. Extraction of metal-ions from liquid and solid materials by supercritical carbon-dioxide. Anal. Chem. 64:2875– 78 29b. Lin Y, Brauer RD, Laintz KE, Wai CM. 1993. Supercritical-fluid extraction of 30c. Yazdi AV, Beckman EJJ. 1995. Design of highly CO2-soluble chelating agents for carbon dioxide extraction of heavy metals. Mater. Res. 10:530–37 30d. Yazdi AV. 1996. Design, synthesis, and evaluation of highly CO2-soluble chelat- ing agents for carbon dioxide extraction of heavy metals, pp. 63–70. PhD thesis. Univ. Pittsburgh, Pittsburgh, PA 31. Powell KR, McCleskey TM, Tumas W, DeSimone JM. 2000. Polymers with mul- tiple ligand sites for the solubilization of metals in dense phase carbon dioxide. Am. Chem. Soc. Submitted 32. Cooper AI, Londono JD, Wignall G, McClain JB, Samulski ET, et al. 1997. Ex- traction of a hydrophilic compound from water Into liquid CO2 using dendritic surfactants. Nature 389:368–71 33. Deleted in proof 34. Hsiao YL, Maury EE, DeSimone JM, Mawson SM, Johnston KP. 1995. Dispersion polymerization of methyl methacrylate stabilized with poly(1,1- dihydroperfluorooctyl acrylate) in super- critical carbon dioxide. Macromolecules 28:8159–66 35. Hsiao YL, DeSimone JM. 1997. Disper- sion polymerizations of methyl methacry- late in supercritical carbon dioxide: the CARBON DIOXIDE TECHNOLOGY PLATFORM 141

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