1 Bzdusek, P.A.,Christensen, E.R., “Source apportionment of sediment PAHs in Lake Calumet, Chicago: Applica-tion of factor analysis with nonnegative constraints”, En-viron. Sci. Technol., 38(1), 97—103(2004). 2 Liu, Y., Zhu, L., Shen, X., “Polycyclic aromatic hydro-carbons (PAHs) in indoor and outdoor air of Hangzhou, China”, Environ. Sci. Technol, 35(5), 840—844(2001). 3 Zakaria, M.P., Takada, H., Tsutsumi, S., Ohno, K., Yamada, J., Kouno, E.,Kumata, H., “Distribution of polycyclic aromatic hydrocarbons (PAHs) in rivers and estuaries in Malaysia: A widespread input of petrogenic PAHs”, Envi-ron. Sci. Technol., 36(9), 1907— 1918(2002). 4 Arzayus, K.M., Dickhut, R.M., Canuel, E.A., “Fate of atmospherically deposited polycyclic aromatic hydro-carbons (PAHs) in Chesapeake bay”, Environ. Sci. Tech-nol., 35 (11), 2178—2183(2001). 5 Eljarrat, E., Caixach, J.,Rivera, J., “Toxic potency assess-ment of non- and mono -ortho PCBs, PCDDs, PCDFs, and PAHs in northwest mediterranean sediments (Catalonia, Spain) ”, Environ. Sci. Technol., 35(18), 3589—3594 (2001). 6 Stevens, J.L., Northcott, G.L., Stern, G.A., Tomy, G.T., Jones, K.C., “PAHs, PCBs, PCNs, organochlorine pesti-cides, synthetic musks, and polychlorinated n-alkanes in U.K. sewage sludge: Survey results and implications”, Environ. Sci. Technol., 37(3), 462—467 (2003). 7 Booij, K., Hoedemaker, J.R., Bakker, J.F., “Dissolved PCBs, PAHs, and HCB in pore waters and overlying wa-ters of contaminated harbor sediments”, Environ. Sci. Technol., 37(18), 4213—4220(2003). 8 Liljelind, P., Söderström, G., Hedman, B., Karlsson, S., Lundin, L., Marklund, S., “Method for multiresidue de-termination of halogenated aromatics and PAHs in com-bustion- related samples”, Environ. Sci. Technol., 37(16), 3680—3686, (2003). 9 Akita, S., Takeuchi, H., “Cloud-point extraction of or-ganic compounds from aqueous solutions with nonionic surfactant”, Sep. Sci. Technol., 30(5), 833—846(1995). 10 Akita, S., Takeuchi, H., “Equilibrium distribution of aromatic compounds between aqueous solution and coacervate of nonionic surfactants”, Sep. Sci. Technol., 31, 401— 412(1996). 11 Akita, S., Takeuchi, H., “Cloud point extraction using polyoxyethylene nonyl phenyl ethers”, J. Chin. Inst. Chem. Eng., 30(4), 273—281(1999). 12 Akita, S., Yang, L., Takeuchi, H., “Solvent extraction of gold (Ⅲ) from hydrochloric acid media by nonionic sur-factants”, Hydrometallurgy, 43(1-3), 37—46(1996). 13 Tani, H., Kamidate, T., Watanabe, H., “Micelle-mediated extraction”, J. Chromatogr. A, 780(1/2), 229—241 (1997). 14 Rubio, S., Perez-Bendito, D., “Supra-molecular assem-blies for extracting organic compounds”, TRAC Trends Anal. Chem., 22(7), 470—485(2003). 15 Maniasso, N., “Micellar media in analytical chemistry”, Quim. Nova, 24(1), 87— 93(2001). 16 Halko, R., Hutta, M., “Review on utilization of non-ionic tensides for sample pretreatment in environmental analysis of organic pollutants”, Chem. Listy, 94(11), 990— 993(2000). 17 Merino, F., Rubio, S., Perez-Bendito, D., “Acid-induced cloud point extraction and preconcentration of polycyclic aromatic hydrocarbons from environmental solid sam-ples”, J. Chromatogr. A, 962(1/2), 1—8(2002). 18 Sicilia, D., Rubio, S., Perez-Bendito, D., Maniasso, N., Zagatto, E.A.G., “Anionic surfactants in acid media: A new cloud point extraction approach for the determina-tion of polycyclic aromatic hydrocarbons in environmental samples”, Anal. Chim. Acta, 392(1), 29— 38(1999). 19 Casero, I., Sicilia, D., Rubio, S., Pérez-Bendito, D., “An acid-induced phase cloud point separation approach us-ing anionic surfactants for the extraction and preconcen-tration of organic compounds”, Anal. Chem., 71(20), 4519—4526(1999). 20 Saitoh, T., Hinze, W.L., “Concentration of hydrophobic organic compounds and extraction of protein using al-kylammoniosulfate zwitterionic surfactant mediated phase separations (cloud point extractions)”, Anal. Chem., 63, 2520—2525(1991). 21 Giokas, D.L., Sakkas, V.A., Albanis, T.A., Lampropoulou, D.A., “Determination of UV-filter residues in bathing waters by liquid chromatography UV-diode array and gas chromatography mass spectrometry after micelle medi-ated extraction-solvent back extraction ”, J. Chromatogr. A, 1077(1), 19—27(2005). 22 Purkait, M.K., Vijay, S.S., DasGupta, S., De, S., “Separa-tion of congo red by surfactant mediated cloud point ex-traction”, Dyes and Pigments, 63(2), 151—159(2004). 23 Ferrer, R., Beltran, J.L., Guiteras, J., “Use of cloud point extraction methodology for the determination of PAHs priority pollutants in water samples by high- performance liquid chromatography with fluorescence detection and wavelength programming”, Anal. Chim. Acta, 330(2/3), 199—206(1996). 24 Bai, D.S., Li, J.L., Chen, S.B., Chen, B.H., “A novel cloud-point extraction process for preconcentrating se-lected polycyclic aromatic hydrocarbons in aqueous solu- tion”, Environ. Sci. Technol., 35(19), 3936—3940(2001). 25 Nagatani, N., Fukuda, K., Suzuki, T., “Interfacial behav-ior of mixed systems of glycerylether-modified silicone and polyoxyethylene-modified silicone”, J. Colloid In- terface Sci., 234(2), 337—343(2001). 26 Kuo, P.L., Hou, S.S., Teng, C.K., Liang, W.J., “Function and performance of silicone copolymer (Ⅵ). Synthesis and novel solution behavior of water-soluble polysilox- anes with different hydrophiles”, Colloid Polym. Sci., 279(3), 286—291(2001). 27 Komaromy-Hiller, G., von Wandruszka, R., “Decon-tamination of oil-polluted soil by cloud point extraction”, Talanta, 42(1), 83—88(1995). 28 Yan, Y., Hoffmann, H., Drechsler, M., Talmon, Y., Makarsky, E., “Influence of hydrocarbon surfactant on the aggregation behavior of silicone surfactant: Observa-tion of intermediate structures in the vesicle-micelle transi-tion”, J. Phys. Chem. B, 110(11), 5621—5626(2006). 29 Soni, S.S., Sastry, N.V., Aswal, V.K., Goyal, P.S., “Mi-cellar structure of silicone surfactants in water from sur-face activity, SANS and viscosity studies”, J. Phys. Chem. B, 106(10), 2606—2617(2002). 30 Iwanaga, T., Kunieda, H., “Effect of added salts or poly-ols on the cloud point and the liquid-crystalline structures of polyoxyethylene-modified silicone”, J. Colloid Inter-face Sci., 227(2), 349—355(2000). 31 Trakultamupatam, P., Scamehorn, J.F., Osuwan, S., “Scaling up cloud point extraction of aromatic contami-nants from wastewater in a continuous rotating disk con- tactor. I. Effect of disk rotation speed and wastewater to surfactant ratio”, Sep. Sci. Technol., 39(3), 479—499(2004). 32 Trakultamupatam, P., Scamehorn, J.F., Osuwan, S., “Scaling up cloud point extraction of. aromatic contami-nants from wastewater in a continuous rotating disk con- tactor. Ⅱ. Effect of operating temperature and added electrolyte”, Sep. Sci. Technol., 39(3), 501—516(2004).
|