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Articles

Green technology for monitoring the quality of water: determination of toxic trace analyte concentrations using multielemental mixed micelle cloud point extraction

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Pages 26880-26885 | Received 31 Jul 2015, Accepted 23 Mar 2016, Published online: 17 Jun 2016

References

  • V. Matamoros, Y. Rodríguez, J. Albaigés, A comparative assessment of intensive and extensive wastewater treatment technologies for removing emerging contaminants in small communities, Water Res. 88 (2016) 777–785.
  • L.R. Ramon, A. Rubalcaba, M.A. Jordi, S. Gonzalez, V. Marti, J.L. Cortina, Assessment of the water chemical quality improvement based on human health risk indexes: Application to a drinking water treatment plant incorporating membrane technologies, Sci. Total Environ. 540 (2016) 334–343.
  • S.R. Kuchekar, H.R. Aher, M.B. Chavan, Solvent extraction of zinc (II), cadmium (II) mercury (II) and bismuth (III) using n-octylaniline and their separations, Indian J. Chem. 42 A (2003) 1674–1676.
  • B. Mandal, U.S. Roy, Extraction chromatographic method of preconcentration and separation of lead (II) with high molecular mass liquid cationic exchanger, Indian J. Chem. 47A (2008) 1497–1502.
  • A.K. Shrivastava, H.S. Khaladkar, Novel method for micro determination of lead in water samples, Sci. Rev. Chem. Commun. 3 (2013) 43–53.
  • R.P. Frankewich, W.L. Hinze, Evaluation and optimization of the factors affecting nonionic surfactant-mediated phase separations, Anal. Chem. 66 (1994) 944–954.10.1021/ac00079a005
  • C.B. Ojeda, F.S. Rojas, Separation and preconcentration by a cloud point extraction procedure for determination of metals: An overview, Anal. Bioanal. Chem. 394 (2009) 759–782.10.1007/s00216-009-2660-9
  • N.R. Bader, K. Edbey, U. Telgheder, Cloud point extraction as a sample preparation technique for trace element analysis: An overview, J. Chem. Pharm. Res. 6 (2014) 496–501.
  • E.K. Paleologos, A.G. Vlessidis, M.I. Karayannis, N.P. Evmiridis, On-line sorption preconcentration of metals based on mixed micelle cloud point extraction prior to their determination with micellar chemiluminescence—Application to the determination of chromium at ng 1(−1) levels, Anal. Chim. Acta 477 (2003) 223–231.10.1016/S0003-2670(02)01429-0
  • N.N. Meeravali, S.J. Kumar, S.J. Jiang, An acid induced mixed-micelle mediated cloud point extraction for the separation and pre-concentration of platinum from road dust and determination by inductively coupled plasma mass spectrometry, Anal. Methods 2 (2010) 1101–1105.10.1039/b9ay00328b
  • A. Beiraghi, S. Babaee, Separation and preconcentration of ultra trace amounts of beryllium in water samples using mixed micelle-mediated extraction and determination by inductively coupled plasma-atomic emission spectrometry, Anal. Chim. Acta 607 (2008) 183–190.10.1016/j.aca.2007.11.028
  • M. Ezoddin, F. Shemirani, R. Khani, Application of mixed-micelle cloud point extraction for speciation analysis of chromium in water samples by electrothermal atomic absorption spectrometry, Desalination 262 (2010) 183–187.10.1016/j.desal.2010.06.007
  • N.N. Meeravali, S.J. Kumar, Determination of Cd, Pb, Cu, Ni and Mn in effluents and natural waters by a novel salt induced mixed-micelle cloud point extraction using ETAAS, Anal. Methods 4 (2012) 2435–2440.10.1039/c2ay25216c
  • Z. Li, J. Chen, M. Liu, Y. Yang, Ultrasound-assisted cloud point extraction coupled with flame atomic absorption spectrometry for the determination of lead and cadmium in water samples, Anal. Methods 6 (2014) 3241–3246.10.1039/c4ay00211c
  • I.M.M. Kenawy, M.E. Khalifa, M.M. Hassanien, M.M. Elnagar, Application of mixed micelle-mediated extraction for selective separation and determination of Ti(IV) in geological and water samples, Microchem. J. 124 (2016) 149–154.10.1016/j.microc.2015.08.003
  • N. Jalbani, M. Soylak, Preconcentration/separation of lead at trace level from water samples by mixed micelle cloud point extraction, J. Ind. Eng. Chem. 29 (2015) 48–51.10.1016/j.jiec.2015.02.025
  • N.N. Meeravali, S.J. Jiang, Microwave assisted mixed micelle cloud point extraction of Au and Tl from environmental samples without using a chelating agent prior to ICP-MS determination, J. Anal. At. Spectrom. 23 (2008) 1365–1371.10.1039/b804121k
  • N.N. Meeravali, M. Ranjit, S.J. Kumar, In situ enhanced hydrophobic character induced by clouding phenomenon in mixed micelles and CV-AAS for the determination of mercury in environmental SRMs, At. Spectrosc. 31(4) (2010) 143–147.
  • F.L.F. Silva, W.O. Matos, G.S. Lopes, Determination of cadmium, cobalt, lead, nickel and zinc contents in saline produced water from the petroleum industry by ICP-OES after cloud point extraction, Anal. Methods 7 (2015) 9844–9849. Available from: <http://pubs.rsc.org/en/results?searchtext=Author%3AFrancisco%20L.%20F.%20Silva>, <http://pubs.rsc.org/en/results?searchtext=Author%3AWladiana%20O.%20Matos>, <http://pubs.rsc.org/en/results?searchtext=Author%3AGisele%20S.%20Lopes>.10.1039/C5AY01026H

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