dc.creatorde Almeida Bezerra M.
dc.creatorZezzi Arruda M.A.
dc.creatorCosta Ferreira S.L.
dc.date2005
dc.date2015-06-26T14:07:43Z
dc.date2015-11-26T15:42:03Z
dc.date2015-06-26T14:07:43Z
dc.date2015-11-26T15:42:03Z
dc.date.accessioned2018-03-28T22:50:37Z
dc.date.available2018-03-28T22:50:37Z
dc.identifier
dc.identifierApplied Spectroscopy Reviews. , v. 40, n. 4, p. 269 - 299, 2005.
dc.identifier5704928
dc.identifier10.1080/05704920500230880
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-27444433231&partnerID=40&md5=b52c12a1f0da771e97bf7d873a6aa5ee
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/93412
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/93412
dc.identifier2-s2.0-27444433231
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1264765
dc.descriptionCloud point extraction is a separation and preconcentration procedure that has been extensively applied for trace metal determination in several different matrices. Its major advantages are simple experimental procedures, low cost, high preconcentration factors, and environmental safety. These aspects include it in a set of analytical methods in agreement with the "green chemistry" principles. The surfactants characteristics and the process of micelle formation are outlined for a better understanding of the technique. After general considerations about the cloud point extraction basis and its extraction mechanism for metal chelates are considered, selected spectro-analytical techniques and their application for analysis of the micellar phase are discussed. The micellar extraction in metal speciation analysis, the on-line incorporation of cloud point extraction to flow injection analysis, and coupling with capillary electrophoresis are described. Copyright © Taylor & Francis, Inc.
dc.description40
dc.description4
dc.description269
dc.description299
dc.descriptionHinze, W.L., Pramauro, E., A critical review of surfactant-mediated phase separations (cloud point extractions) - Theory and applications (1993) Crit. Rev. Anal. Chem., 24 (2), pp. 133-177
dc.descriptionPereira, M.G., Arruda, M.A.Z., Trends in pre-concentration procedures for metal determination using atomic spectrometry techniques (2003) Microchim. Acta, 141 (3-9), pp. 115-131
dc.descriptionAnastas, P.T., Green chemistry and the role of analytical methodology developed (1999) Crit. Rev. Anal. Chem., 29 (3), pp. 167-175
dc.descriptionQuina, F.H., Hinze, W.L., Surfactant-mediated cloud point extractions: An environmentally benign alternative separation approach (1999) Ind. Eng. Chem. Research, 38 (11), pp. 4150-4168
dc.descriptionPramauro, E., Prevot, A.B., Solubiliation in micellar systems - Analytical and environmental applications (1995) Pure Appl. Chem., 67 (4), pp. 551-559
dc.descriptionStalikas, C.D., Micelle mediated extraction as a tool for separation and preconcentration in metal analysis (2002) Trends Anal. Chem., 21 (5), pp. 343-355
dc.descriptionManiasso, N., Ambientes micellares em química analítica (2001) Quim. Nova, 24 (1), pp. 87-93
dc.descriptionMyers, D., (1991) Surfaces, Interfaces and Colloids, , VCH: New York
dc.descriptionSanz-Medel, A., Campa, M.R.F., Gonzalez, E.B., Fernandez-Sanchez, M.L., Organised surfactant assemblies in analytical atomic spectrometry (1999) Spectrochim. Acta B, 54 (2), pp. 251-287
dc.descriptionPelizzetti, E., Pramauro, E., Analytical applications of organized molecular assemblies (1985) Anal. Chim. Acta, 169 (1), pp. 1-29
dc.descriptionLuconi, M.O., Silva, M.F., Olsina, R.A., Fernandez, L.P., Cloud point extraction of lead in saliva via use of nonionic PONPE 7.5 without added chelating agents (2000) Talanta, 51 (1), pp. 123-129
dc.descriptionKulichenko, S.A., Doroschuk, V.O., Lelyushok, S.O., The cloud point extraction of copper(II) with monocarboxylics acids into non-ionic surfactant phase (2003) Talanta, 59 (4), pp. 767-773
dc.descriptionCasero, I., Sicilia, D., Rubio, S., Perez-Bendito, D., An acid-induced phase cloud point separation approach using anionic surfactants for the extraction and pre-concentration of organic compounds (1999) Anal. Chem., 71 (20), pp. 4519-4526
dc.descriptionWatanabe, H., Tanaka, H., A non-ionic surfactant as a new solvent for liquid-liquid extraction of zinc(II) with 1-(2-pyridylazo)-2-naphtol (1978) Talanta, 25 (10), pp. 585-589
dc.descriptionInoue, T., Ohmura, H., Murata, D., Cloud point temperature of polyoxyetilene-type nonionic surfactants and their mixtures (2003) J. Coll. and Interf. Sci., 258 (2), pp. 374-382
dc.descriptionGu, T.R., Sjoblom, J., Surfactant structure and its relation to the krafft point, cloud point and micellization - Some empirical relationships (1992) Coll. and Surf A, 64 (1), pp. 39-46
dc.descriptionSchott, H., A linear relation between the cloud point and the number of oxyethylene units of water-soluble nonionic surfactants valid for the entire range of ethoxylation (2003) J. Coll. and Interf Sci., 260 (1), pp. 219-224
dc.descriptionMaterna, K., Cote, G., Szymanowski, J., Cloud point of aqueous solutions containing oxyethylated methyl dodecanoates: Effects of surfactant hydrophilicity, nature of added electrolyte, and water activity (2004) J. Coll. and Interf. Sci., 269 (2), pp. 466-471
dc.descriptionHuibers, P.D.T., Shah, D.O., Katritzky, A.R., Predicting surfactant cloud point from molecular structure (1997) J. Coll. Interf. Sci., 193 (1), pp. 132-136
dc.descriptionSilva, M.A.M., Frescura, V.L.A., Aguilera, F.J.N., Curtius, A.J., Determination of Ag and Au in geological samples by flame atomic absorption spectrometry after cloud point extraction (1998) J. Anal. At. Spectrom., 13 (12), pp. 1369-1373
dc.descriptionToerne, K., Jackson, R., Wandruska, R., POE chain length selectivity in the clouding of a triton surfactant (2003) J. Coll. and Interf. Sci., 257 (2), pp. 412-414
dc.descriptionQiao, L., Easteal, A.J., The interaction between triton X series surfactants and poly (ethylene glycol) in aqueous solutions (1998) Coll. Polym. Sci., 276 (4), pp. 313-320
dc.descriptionGu, T.R., Galera-Gomez, P.A., The effect of different alcohols and other polar organic additives on the cloud point of Triton X-100 in water (1999) Coll. and Surf A, 147 (3), pp. 365-370
dc.descriptionGu, T.R., Galera-Gomes, P.A., Clouding of Triton X-114: The effect of added electrolytes on the cloud point of Triton X-114 in presence of ionic surfactants (1995) Coll. and Surf. A, 104 (2-3), pp. 307-312
dc.descriptionNascentes, C.C., Arruda, M.A.Z., Cloud point formation based on mixed micelles in the presence of eletrolytes for cobalt extraction and preconcentration (2003) Talanta, 61 (6), pp. 759-768
dc.descriptionTani, H., Kamidate, T., Watanabe, H., Micelle-mediated extraction (1997) J. Chrom. A, 780 (1-2), pp. 229-241
dc.descriptionAkita, S., Takeuchi, H., Cloud point extraction using polyoxyethylene nonyl phenyl ethers (1999) J. Chinese Inst. Chem. Engin., 30 (4), pp. 273-281
dc.descriptionFrankewich, R.P., Hinze, W.L., Evaluation and optimzation of factors affecting nonionic surfactant-mediated phase separations (1994) Anal. Chem., 66 (7), pp. 944-954
dc.descriptionWatanabe, H., Kamidate, T., Kawamorita, S., Haraguchi, K., Miyajima, M., Distribuition of nickel(II), cadmium(II) and copper(II) chelates of 2-(2-pyridylazo)-5-methylphenol in two phases separated from micellar solution of nonionic surfactant (1987) Anal. Scien., 3 (5), pp. 433-436
dc.descriptionSaitoh, T., Kimura, Y., Kamidate, T., Watanabe, H., Haraguchi, K., Distribution equilibria of metal chelates with thyazolyazo dyes between two phase formed from an aquous micellar solution of a nonionic surfactant (1989) Anal. Sci., 5 (5), pp. 577-581
dc.descriptionHoshino, H., Saitoh, T., Taketomi, H., Yotsuyanagi, T., Watanabe, H., Tachikawa, K., Micellar solubilization equilibria for some analytical reagents in aqueous non-ionic surfactant solutions (1983) Anal. Chim. Acta, 147 (1), pp. 339-345
dc.descriptionPaleologos, E.K., Koupparis, M.A., Karayannis, M.I., Veltsistas, P.G., Nonaqueous catalytic fluorometric trace determination of vanadium based on the pyronine B - Hydrogen peroxide reaction and flow injection after cloud point extraction (2001) Anal. Chem., 73 (18), pp. 4428-4433
dc.descriptionPaleologos, E.K., Stalikas, C.D., Tzouwara-Karayanni, S.M., Karayannis, M.I., Selective speciation of trace chromium through micelle-mediated preconcentration, coupled with micellar flow injection analysis-spectrofluorimetry (2001) Anal. Chim. Acta, 436 (1), pp. 49-57
dc.descriptionPaleologos, E.K., Vlessisdis, A.G., Karayannis, M.I., Evmiridis, N.P., On-line sorption pre-concentration of metals based on mixed micelle cloud point extraction prior to their determination with micellar chemiluminescence - Application to the determination of chromium at ng L levels (2003) Anal. Chim. Acta, 477 (2), pp. 223-231
dc.descriptionIgarashi, S., Endo, K., Room temperature phosphorescence of palladium (II)-coproporphyrin III complex in a precipitated nonionic surfactant micelle phase: Determination of traces of palladium(II) (1996) Anal. Chim. Acta, 320 (1), pp. 133-138
dc.descriptionBruzzone, L., Badia, R., Diaz Garcia, M.E., Room-temperature phosphorescent complexes with macromolecular assemblies and their (bio)chemical applications (2000) Crit. Rev. Anal. Chem., 30 (2-3), pp. 163-178
dc.descriptionBorges, D.L.G., Veiga, M.A.M.S., Frescura, V.A.L., Welz, B., Curtius, A.J., Cloud point extraction for the determination of Cd, Pb and Pd in blood by electrothermal atomic absorption spectrometry, using It or Ru as permanent modifiers (2003) J. Anal. At. Spectrom., 18 (5), pp. 501-507
dc.descriptionYuan, C.G., Jiang, G.B., Cai, Y.Q., He, B., Liu, J.F., Determination of cadmium at the nanogram per liter level in seawater by graphite furnace AAS using cloud point extraction (2004) Atom. Spectrom., 25 (4), pp. 170-176
dc.descriptionCampa, M.R.F., Garcia, E.S., Váldez-Hevia, M.C., Temprano, B., Effects of organised media on the generation of volatile species for atomic spectrometry (1995) Spectrochim. Acta B, 50 (4-7), pp. 377-391
dc.descriptionBöyükbayram, A.E., Volkan, M., Cloud point preconcentration of germanium and determination by hydride generation atomic absorption spectrometry (2000) Spectrochim. Acta B, 55 (7), pp. 1073-1080
dc.descriptionKreuning, G., Maessen, F.J.M.J., Effects of the solvent plasma load of various solvents on the excitation conditions in medium power inductively coupled plasmas (1999) Spectrochim. Acta B, 44 (4), pp. 367-384
dc.descriptionMolineroa, A.L., Castiloa, J.R., Chamorrob, P., Muniozgurenb, J.M., Multivariate statistical characterization of the tolerance of argon inductively coupled plasmas to organic solvents (1997) Spectrochim. Acta B, 52 (1), pp. 103-112
dc.descriptionWuillound, G.M., Wuillound, J.C.A., Wuillound, R.G., Silva, M.F., Olsina, R.A., Martinez, L.D., Cloud point extraction of vanadium in parental solutions using nonionic surfactant (PONPE 5.0) and determination by flow injection-inductively coupled plasma optical emission spectrometry (2002) Talanta, 58 (4), pp. 619-627
dc.descriptionSombra, L.L., Luconi, M.O., Fernandez, L.P., Olsina, R.A., Silva, M.F., Martinez, L.D., Assessment of trace aluminium content in parental solutions by combined cloud point pre-concentration-flow injection inductively coupled plasma optical emission spectrometry (2003) J. Pharm. and Biom. Anal., 30 (5), pp. 1451-1458
dc.descriptionWuillound, J.C.A., Wuillound, R.G., Silva, M.F., Olsima, R.A., Martinez, L.D., Sensitive determination of mercury in tap water by cloud point extraction pre-concentration and flow injection-cold vapor-inductively coupled plasma optical emission spectrometry (2002) Spectrochim. Acta B, 57 (2), pp. 365-374
dc.descriptionGutierrez, J.M., Madrid, Y., Cámara, C., Sensitive determination of mercury by cold vapor generation from micelar media and atomic absorption spectrometry (1993) Spectrochim. Acta B, 48 (12), pp. 1551-1558
dc.descriptionLuconi, M.O., Sombra, L.L., Silva, M.F., Martinez, L.D., Olsina, R.A., Fernandez, L.P., Determination of lead by flow injection-inductively coupled plasma-optical emission spectrometry after cloud point enrichment without chelating agents (2003) Chemia Analityczna., 48 (4), pp. 749-757
dc.descriptionLi, J., Liang, P., Shi, T.Q., Lu, H.B., Cloud point extraction preconcentration and ICP-OES determination of trace chromium and copper in water samples (2003) At. Spect., 24 (5), pp. 169-172
dc.descriptionMontaser, A., Golightly, D.W., (1992) Inductively Coupled Plasmas in Analytical Atomic Spectrometry, , eds., VHC: New York
dc.descriptionSilva, M.A.M., Frescura, V.L.A., Curtius, A.J., Determination of trace elements in water samples by ultrassonic nebulization inductively coupled plasma mass spectrometry after cloud point extraction (2000) Spectrochim. Acta B, 55 (7), pp. 803-813
dc.descriptionSilva, M.A.M., Frescura, V.L.A., Curtius, A.J., Determination of noble metals in biological samples by electrothermal vaporization inductively coupled plasma mass spectrometry following cloud point extraction (2001) Spectrochim. Acta B, 56 (10), pp. 1941-1949
dc.descriptionPaleologos, E.K., Stalikas, C.D., Tzouara-Karayanni, S.M., Pilidis, G.A., Karayanni, M.J., Micelle-mediated methodology for speciation of chromium by flame atomic absorption spectrometry (2000) J. Anal. Atom. Spectrom., 15 (3), pp. 287-291
dc.descriptionTang, A.N., Jiang, D.Q., Jiang, Y., Wang, S.W., Yan, X.P., Cloud point extraction for high-performance liquid chromatographic speciation of Cr(III) and Cr(VI) in aqueous solutions (2004) J. Chrom. A, 1036 (2), pp. 183-188
dc.descriptionZhu, X.S., Jiang, Z.C., Hu, B., Li, M.F., Cloud point extraction for speciation of chromium by electrothermal atomic absorption spectrometry (2003) Chin. J. Anal. Chem., 31 (11), pp. 1312-1316
dc.descriptionZhu, X.S., Hu, B., Jiang, Z.C., Cloud point extraction combined with graphite furnace atomic absorption spectrometry for the determination of chromium species and their distribution in cigarette and cigarette ash (2004) Int. J. Environm. Anal. Chem., 84 (12), pp. 927-934
dc.descriptionGiokas, D.L., Paleologos, E.K., Karayannis, M.I., Speciation of Fe(II) and Fe(III) by the modified ferrozine method, FIA-spectrophotometry, and flame AAS after cloud-point extraction (2002) Anal. Bional. Chem., 373 (4-5), pp. 237-243
dc.descriptionShemirania, F., Baghdadia, M., Ramezanib, M., Preconcentration and determination of ultra trace amounts of arsenic(IH) and arsenic(V) in tap water and total arsenic in biological samples by cloud point extraction and electrothermal atomic absorption spectrometry (2005) Talanta, 65, pp. 882-887
dc.descriptionLaespada, M.E.F., Pávon, J.L.P., Cordero, B.M., Micelle-mediated methodology for the preconcentration of uranium prior its determination by flow-injection (1993) Analyst, 118 (2), pp. 209-212
dc.descriptionFang, Q., Du, M., Huie, C.W., On-line incorporation of cloud point extraction to flow injection analysis (2001) Anal. Chem., 73 (14), pp. 3502-3505
dc.descriptionOrtega, C., Gomez, M.R., Olsina, R.A., Silva, M.F., Martinez, L.D., On line cloud point pre-concentration and determination of gadolinium in urine using flow injection inductively coupled plasma optical emission spectrometry (2002) J. Anal. Atom. Spectrom., 17 (5), pp. 530-533
dc.descriptionOrtega, C., Cerutti, S., Olsina, R.A., Silva, M.F., Martinez, L.D., Online complexation/cloud point pre-concentration for the sensitive determination of dyprosium in urine by flow injection inductively coupled plasma-optical emission spectrometry (2003) Anal. and Bioanal. Chem., 375 (2), pp. 270-274
dc.descriptionGarrido, M., Di Nezio, M.S., Lista, A.G., Palomeque, M., Fernández-Band, B.S., Cloud point extraction/preconcentration on-line flow injection method for mercury determination (2004) Anal. Chim. Acta, 502 (2), pp. 173-177
dc.descriptionNan, J., Jiang, Y., Yan, X.P., A flow injection online micelle-mediated preconcentration and separation procedure without phase separation coupled with electrothermal atomic absorption spectrometry for determination of trace lead in biological samples (2003) J. Anal. At. Spect., 18 (8), pp. 946-950
dc.descriptionValcárcel, M., Arce, L., Ríos, A., Coupling continuous separation techniques to capillary electrophoresis (2001) J. Chrom. A, 924 (1-2), pp. 3-30
dc.descriptionTang, A., Jiang, D., Yan, X., Cloud point extraction preconcentration for capillary electrophoresis of metal ions (2004) Anal. Chim. Acta, 507 (2), pp. 199-204
dc.descriptionOrtega, C., Cerutti, S., Olsina, R.A., Martinez, L.D., Silva, M.F., Simultaneous determination of dysprosium and iron in urine by capillary zone electrophoresis coupled to cloud point extraction (2004) J. Pharm. Biom. Anal., 36 (4), pp. 721-727
dc.descriptionSombra, L., Luconi, M., Silva, M.F., Olsina, R.A., Fernandez, L., Spectrophotometric determination of trace aluminium content in parental solutions by combined cloud point preconcentration-flow injection analysis (2001) Analyst, 126 (7), pp. 1172-1176
dc.descriptionSilva, M.F., Fernandez, L., Olsina, R.A., Stacchiola, D., Cloud point extraction, preconcentration and spectrophotometric determination of erbium(III)-2-(3,5-dichloro-2-pyridylazo)-5-dimetylaminophenol (1997) Anal. Chim. Acta., 342 (2-3), pp. 229-238
dc.descriptionSilva, M.F., Fernandez, L.P., Olsina, R.A., Monitoring the elimination of gadolinium-based pharmaceuticals. Cloud point preconcentration and spectrophotometric determination of Gd(III)-2-(3,5-dicloro-2-pyridylazo)-5-dimethyl-aminophenol in urine (1998) Analyst, 123 (9), pp. 1803-1807
dc.descriptionJin, G., Kan, J., Zhu, Y., Lei, N., Chen, B., Spectrophotoetric determination of the total amount of rare earth after solid-liquid extractive preconcentration with polyvinyl alcohol condesed p-formylchlorophosphonazo (2000) Microchem. J., 64 (1), pp. 111-118
dc.descriptionSafavi, A., Abdollahi, H., Hormozi Nezhad, M.R., Kamali, R., Cloud point extraction, preconcentration and simultaneous spectrophotometric determination of nickel and cobalt in water samples (2004) Spectrochim. Acta A, 60 (12), pp. 2897-2901
dc.descriptionManzoori, J.L., Karim-Nezhad, G., Selective cloud point extraction and pre-concentration of trace amounts of silver as a dithizone complex prior to flame atomic absorption spectrometric determination (2003) Anal. Chim. Acta, 484 (2), pp. 155-161
dc.descriptionCheng, J., Teo, K.C., Determination of cadmium, copper, lead and zinc in water samples by flame atomic absorption spectrometry after cloud point extraction (2001) Anal. Chim. Acta, 450 (1-2), pp. 215-222
dc.descriptionManzoori, J.L., Bavili-Tabrizi, A., Cloud point preconcentration and flame atomic absorption spectrometric determination of Cd and Pb in human hair (2002) Anal. Chim. Acta, 470 (2), pp. 215-221
dc.descriptionChen, J., Teo, K.C., Determination of cobalt and nickel in water samples by flame atomic absorption spectrometry after cloud point extraction (2001) Anal. Chim. Acta, 434 (2), pp. 325-330
dc.descriptionManzoori, J.L., Karim-Nezhad, G., Sensitive and simple cloud point preconcentration atomic absorption spectrometry: Applications to the determination of cobalt in urine samples (2003) Anal. Sci., 19 (4), pp. 579-583
dc.descriptionPaleologos, E.K., Stalikas, C.D., Karayanni, M.I., An optimised single-reagent method for the speciation of chromium by flame atomic absorption spectrometry based on surfactant micelle-mediated methodology (2001) Analyst, 126 (3), pp. 389-393
dc.descriptionManzoori, J.L., Bavili-Tabrizi, A., The application of cloud point preconcentration for the determination of Cu in real samples by flame atomic absorption spectrometry (2002) Microchem. J., 72 (1), pp. 1-7
dc.descriptionGiokas, D.L., Antelo, J., Paleologos, E.K., Arce, F., Karayannis, M.I., Copper fractionation with dissolved organic matter in natural waters and waste-water - A mixed micelle mediated methodology (cloud point extraction) employing flame atomic absorption spectrometry (2002) J. Environm. Monit., 4 (4), pp. 505-510
dc.descriptionPaleologos, E.K., Giokas, D.L., Tzouara-Karayanni, S.M., Micelle-mediated methodology for the determination of free and bound iron in wines by flame atomic absorption spectrometry (2002) Anal. Chim. Acta, 458 (1), pp. 241-248
dc.descriptionGiokas, D.L., Paleologos, E.K., Tzouwara-Karayanni, S.M., Karayannis, M.I., Single-sample cloud point determination of iron, cobalt and nickel by flow injection analysis flame atomic absorption spectrometry - Application to real samples and certified reference materials (2001) J. Anal. At. Spectrom., 16 (5), pp. 521-526
dc.descriptionTeo, K., Chen, J., Determination of manganese in water samples by flame atomic absorption spectrometry after cloud point extraction (2001) Analyst, 126 (4), pp. 534-537
dc.descriptionManzoori, J.L., Bavili-Tabrizi, A., Cloud point preconcentration and flame atomic absorption spectrometric determination of cobalt and nickel in water samples (2003) Mikrochim. Acta., 141 (3-4), pp. 201-207
dc.descriptionBezerra, M.A., Conceição, A.L.B., Ferreira, S.L.C., Doehlert matrix for optimization of procedure for determination of nickel in saline oil-refinery effluents by use of flame atomic absorption spectrometry after preconcentration by cloud-point extraction (2004) Anal. Bioanal. Chem., 378 (3), pp. 798-803
dc.descriptionGiokas, D.L., Paleologos, E.K., Veltsistas, P.G., Karayannis, M.I., Micelle mediated extraction of magnesium from water samples with trizma-chloranilate and determination by flame atomic absorption spectrometry (2002) Talanta, 56 (3), pp. 415-424
dc.languageen
dc.publisher
dc.relationApplied Spectroscopy Reviews
dc.rightsfechado
dc.sourceScopus
dc.titleCloud Point Extraction As A Procedure Of Separation And Pre-concentration For Metal Determination Using Spectroanalytical Techniques: A Review
dc.typeArtículos de revistas


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