163
Views
4
CrossRef citations to date
0
Altmetric
Extraction Papers

Cloud point extraction of 2,4−dichlorophenol from aqueous samples employing β−cyclodextrin

, &
Pages 653-663 | Received 04 Jun 2015, Accepted 10 Nov 2015, Published online: 21 Mar 2016

References

  • Ahn, J.; Kwak, H. (1999) Optimizing cholesterol removal in cream using β‐cyclodextrin and response surface methodology. J. Food Sci., 64: 629–632.
  • Jiang, L.; Yan, Y.; Huang, J. (2011) Versatility of cyclodextrins in self-assembly systems of amphiphiles. Adv. Colloid Interface Sci., 169: 13–25.
  • Brewster, M. E.; Loftsson, T. (2007) Cyclodextrins as pharmaceutical solubilizers. Adv. Drug Delivery Reviews, 59: 645–666.
  • Hanna, K.; De Brauer, C.; Germain, P. (2003) Solubilization of the neutral and charged forms of 2, 4, 6-trichlorophenol by β-cyclodextrin, methyl-β-cyclodextrin and hydroxypropyl-β-cyclodextrin in water. J. Hazard. Mater., 100: 109–116.
  • Del Valle, E. M. M. (2004) Cyclodextrins and their uses: A review. Process Biochem., 39: 1033–1046.
  • Ratnasooriya, C. C.; Rupasinghe, H. P. V. (2012) Extraction of phenolic compounds from grapes and their pomace using β-cyclodextrin. Food Chem., 134: 625–631.
  • Zhang, Y.; Zhimou, G.; Jinxing, Y.; Qing, X.; Xinmiao, L.; Aiwen, L. (2008) Preparation of novel β-cyclodextrin chiral stationary phase based on click chemistry. J. Chromatogr. A., 1191: 188–192.
  • Guo, Z.; Yu, J.; Tu, L.; Yanfang, L.; Qing, X.; Xinmiao, L.; Aiwen, L. (2009) Synthesis, chromatographic evaluation and hydrophilic interaction/reversed-phase mixed-mode behavior of a “Click β-cyclodextrin” stationary phase. J. Chromatogr. A., 1216: 257–263.
  • Panda, S. K.; Schrader, W.; Andersson, J. T. (2006) β-Cyclodextrin as a stationary phase for the group separation of polycyclic aromatic compounds in normal-phase liquid chromatography. J. Chromatogr. A., 1122: 88–96.
  • Mitchell, C. R.; Armstrong, D. W. (2004) Cyclodextrin-Based Chiral Stationary Phases For Liquid Chromatography: Chiral Separation; Springer; NY, pp. 61–112.
  • Masqué, N.; Rosa, M; Francesc, B.; Peter, A. G.; David, C. (2000) Synthesis and evaluation of a molecularly imprinted polymer for selective on-line solid-phase extraction of 4-nitrophenol from environmental water. Anal. Chem., 72: 4122–4126.
  • Hu, Y.; Yunyun, Y.; Jianxiang, H.; Gongke, L. (2005) Preparation and application of poly (dimethylsiloxane)/β-cyclodextrin solid-phase microextraction membrane. Anal. Chim. Acta., 543: 17–24.
  • Radhika, M.; Palanivelu, K. (2006) Adsorptive removal of chlorophenols from aqueous solution by low cost adsorbent: Kinetics and isotherm analysis. J. Hazard. Mater., 138: 116–124.
  • Jung, M.W.; Kyu-Hong, A.; Yonghun, L.; Ki-Pal, K.; Jae-Seong, R.; Jung, T. P.; Ki-Jung, P. Adsorption characteristics of phenol and chlorophenols on granular activated carbons (GAC). Microchem. J., 70: 123–131.
  • Pan, J.; Xiaohua, Z.; Xue, W.; Wei, G.; Yongsheng, Y.; Juan, H. (2010) Selective recognition of 2,4-dichlorophenol from aqueous solution by uniformly sized molecularly imprinted microspheres with β-cyclodextrin/attapulgite composites as support. Chem. Eng. J., 162: 910–918.
  • Park, Y.; Skelland, A. H. P.; Larry J.; Jae-Hong, K. (2006) Removal of phenol and substituted phenols by newly developed emulsion liquid membrane process. Water Res., 40: 1763–1772.
  • Erhan, E.; Keskinler, B.; Akay, G.; Algur, O. F. (2002) Removal of phenol from water by membrane-immobilized enzymes: Part I. Dead-end filtration. J. Membrane Sci., 206: 361–373.
  • Wagner, M.; Nicell, J. (2001) Peroxidase-catalyzed removal of phenols from a petroleum refinery wastewater. Water Sci. Tech., 43: 253–260.
  • Alcántara, S.; Sergio, A.; Antonio, V.; Ana, M.; Juan, C.; Sergio, R.; Elías, R.-F. (2004) Hydrogen sulfide oxidation by a microbial consortium in a recirculation reactor system. Environ. Sci. Technol. 38: 918–923.
  • Buffle, M.-O.; von Gunten, U. (2000) Phenols and amine induced ho• generation during the initial phase of natural water ozonation. Environ. Sci. Technol., 40: 3057–3063.
  • Amin, N. A. S.; Akhtar, J.; Rai, H. K. (2010) Screening of combined zeolite-ozone system for phenol and COD removal. Chem. Eng. J., 158: 520–527.
  • Ku, Y.; K.-C. Lee (2000) Removal of phenols from aqueous solution by XAD-4 resin. Hazard. Mater. J., 80: 59–68.
  • Lin, Y.; Shi, Y.; Jiang, M.; Jin, Y.; Peng, Y.; Lu, B.; Dai, K. (2008) Removal of phenolic estrogen pollutants from different sources of water using molecularly imprinted polymeric microspheres. Environ. Pollut., 153: 483–491.
  • Abay, I.; Denizli, A.; Bişkin, E.; Bekir, S. (2005) Removal and pre-concentration of phenolic species onto β-cyclodextrin modified poly(hydroxyethylmethacrylate–ethyleneglycoldimethacrylate) microbeads. Chemosphere, 61: 1263–1272.
  • Nazar, M. F.; Syed Sakhawat, S.; Julian, E.; Asad Muhammad, K. (2011) and Shah separation and recycling of nanoparticles using cloud point extraction with non-ionic surfactant mixtures. J. Colloid Inter. Sci., 363: 490–496.
  • Ulusoy, H. I. (2014) Determination of trace inorganic mercury species in water samples by cloud point extraction and UV-Vis spectrophotometry. J. AOAC Inter., 97: 238–244.
  • Ulusoy, H. I. (2015) Simple and useful method for determination of inorganic selenium species in real samples based on UV-VIS spectroscopy in a micellar medium. Anal. Methods, 7: 953–960.
  • Manzoori, J. L.; Karim-Nezhad, G. (2003) Selective cloud point extraction and preconcentration of trace amounts of silver as a dithizone complex prior to flame atomic absorption spectrometric determination. Anal. Chim. Acta., 484: 155–161.
  • Purkait, M. K.; Banerjee, S.; Mewara, S.; DasGupta, S.; De, S. (2005) Cloud point extraction of toxic eosin dye using Triton X-100 as nonionic surfactant. Water Res., 39: 3885–3890.
  • Bezerra, M.d.A.; Arruda, M. A. Z.; Ferreira, S. L. C. (2005) Cloud point extraction as a procedure of separation and preconcentration for metal determination using spectroanalytical techniques: A review. App. Spectro. Reviews, 40: 269–299.
  • Ulusoy, H. I.; Aksoy, Ü.; Akçay, M. (2013) Simultaneous pre-concentration of Pb and Sn in food samples and determination by atomic absorption spectrometry. Europ. Food Res. Technol., 236: 725–733.
  • Quina, F. H.; Hinze, W. L. (1999) Surfactant-mediated cloud point extractions: An environmentally benign alternative separation approach. Indus. Eng. Chem. Res., 38: 4150–4168.
  • Wang, L.; Ya-Qi, C.; Bin, H.; Chun-Gang, Y.; Da-Zhong, S.; Jing, S.; Gui-Bin, J. (2006) Determination of estrogens in water by HPLC–UV using cloud point extraction. Talanta, 70: 47–51.
  • Ulusoy, H. I. (2014) Determination of trace uranyl ions in aquatic medium by a useful and simple method. J. Radioanal. Nuclear Chem., 302: 497–504.
  • Chatzilazarou, A.; Evangelos, K.; Olga, G.; Stavros, L.; Yiannis, P.; Euthalia, D.; John, T. (2010) Removal of polyphenols from wine sludge using cloud point extraction. J. Air Waste Manage. Assoc., 60: 454–459.
  • Peng, J.-F.; Jing-Fu, L.; Xia-Lin, H.; Gui-Bin, J. (2007) Direct determination of chlorophenols in environmental water samples by hollow fiber supported ionic liquid membrane extraction coupled with high-performance liquid chromatography. J. Chromatogr. A., 1139: 165–170.
  • Liang-Chun, Z.; Xiang-Guang, M.; Jing-Wei, F.; Yu-Chong, Y.; Peng, Y.; Chun, M. (2014) Highly efficient adsorption of chlorophenols onto chemically modified chitosan. App. Sur. Sci., 292: 735–741.
  • Li, N.; Mei, Z.; Wei, X. (2012) Study on sorption of chlorophenols from aqueous solutions by an insoluble copolymer containing β-cyclodextrin and polyamidoamine units. Chem. Eng. J., 192: 138–145.
  • Li, N.; Mei, Z.; Ding, S. (2010) 2, 4-Dichlorophenol sorption on cyclodextrin polymers. J. Incl. Pheno. Macrocyclic Chem., 68: 123–129.
  • Abdel Salam, M.; Burk, R. (2008) Novel application of modified multiwalled carbon nanotubes as a solid phase extraction adsorbent for the determination of polyhalogenated organic pollutants in aqueous solution. Anal. Bioanal. Chem., 390: 2159–2170.
  • Pan, J.; Xiaohua, Z.; Xue, W.; Wei, G.; Chunxiang, L.; Yongsheng, Y.; Xiangyang, Z. (2011) Adsorptive removal of 2,4-didichlorophenol and 2,6-didichlorophenol from aqueous solution by β-cyclodextrin/attapulgite composites: Equilibrium, kinetics and thermodynamics. Chem. Eng. J., 166: 40–48.
  • Barraza, R. G.; Olea, A. F.; Valdebenito, C. E.; Dougnac, V.; Fuentes, I. (2004) Solubilization of p-nitrophenol in aggregates formed by hydrophobically modified polyelectrolytes. J. Colloid Interface Sci., 275: 434–438.
  • Paleologos, E. K.; Giokas, D. L.; Karayannis, M. I. (2005) Micelle-mediated separation and cloud-point extraction. TrAC Trends in Anal. Chem., 24: 426–436.
  • Mashhadizadeh, M. H.; Jafari, L. (2010) Cloud point extraction and spectrophotometric determination of codeine in pharmaceutical and biological samples. J. Iranian Chem., Soc., 7: 678–684.
  • Frankewich, R. P.; Hinze, W. L. (1994) Evaluation and optimization of the factors affecting nonionic surfactant-mediated phase separations. Anal. Chem., 66: 944–954.
  • Zhou, Q.; Gao, Y.; Xie, G. (2011) Determination of bisphenol A, 4-n-nonylphenol, and 4-tert-octylphenol by temperature-controlled ionic liquid dispersive liquid-phase microextraction combined with high performance liquid chromatography-fluorescence detector. Talanta, 85: 1598–1602.
  • Tatara, E.; Katarzyna, M.; Achim, S.; Hans-Jörg, B.; Jan, S. (2005) Cloud point extraction of direct yellow. Environ. Sci. Technol., 39: 3110–3115.
  • Purkait, M. K.; DasGupta, S.; De, S. (2006) Determination of design parameters for the cloud point extraction of congo red and eosin dyes using TX-100. Sep. Purif. Technol., 51: 137–142.
  • Tan, I. A. W.; Ahmad, A. L.; Hameed, B. H. (2009) Adsorption isotherms, kinetics, thermodynamics and desorption studies of 2,4,6-trichlorophenol on oil palm empty fruit bunch-based activated carbon. J. Hazard. Materi., 164: 473–482.
  • Arunagiria, A.; Kalaichelvia, P.; Subbarao, C. (2013)Anuja studies on removal of reactive blue dye using cloud point extraction. Inter. J., 3: 16–23.
  • El-Shahawi, M. S.; Hamza, A.; Al-Sibaai, A.; Bashammakh, A. S. Al-Saidi, M. S. A new method for analysis of sunset yellow in food samples based on cloud point extraction prior to spectrophotometric determination. J. Industrial Eng. Chem., 19(2):529–535.
  • Noorashikin, M. S.; Muggundha, R.; Sharifah, M.; Mhd Radzi, A. (2013) Cloud point extraction of parabens using non-ionic surfactant with cylodextrin functionalized ionic liquid as a modifier. Inter.J. Mol. Sci., 14: 24531–24548.
  • Leyva, E.; Edgar, M.; Jane, S.; Miguel, A. (2001) Spectrometric and 2D NMR studies on the complexation of chlorophenols with cyclodextrins. J. Inc. Pheno. Macrocyclic Chem., 39: 41–46.
  • Nandi, B.; Goswami, A.; Purkait, M. (2009)Adsorption characteristics of brilliant green dye on kaolin. J. Hazardous Mater., 161: 387–395.
  • Rawajfih, Z.; Nsour, N. (2006) Characteristics of phenol and chlorinated phenols sorption onto surfactant-modified bentonite. J. Colloid Inter. Sci., 298: 39–49.
  • Chen, J.; Jianwei, M.; Xiaorong, M.; Juying, H.; Mingmin, J. (2009) Study of adsorption behavior of malachite green on polyethylene glycol micelles in cloud point extraction procedure. Colloids Sur. A: Physicochemi. Eng. Aspects, 345: 231–236.
  • Purkait, M. K.; DasGupta, S.; De, S. (2006) Performance of TX-100 and TX-114 for the separation of chrysoidine dye using cloud point extraction. J. Hazard. Mater., 137: 827–835.
  • Li, J.-M.; Meng, X.-G.; Hu, C.-W.; Du, J. (2009)Adsorption of phenol, p-chlorophenol and p-nitrophenol onto functional chitosan. Biores. Technol., 100: 1168–1173.
  • Purkait, M. K.; DasGupta, S.; De, S. (2009) Determination of thermodynamic parameters for the cloud point extraction of different dyes using TX-100 and TX-114. Desalination, 244: 130–138.
  • Jain, A. K.; Gupta, V. K.; Jain, S. (2004) Removal of chlorophenols using industrial wastes. Environ. Sci. Technol., 38: 1195–1200.
  • Zha, F.; Li, S.; Chang, Y. (2008) Preparation and adsorption property of chitosan beads bearing β-cyclodextrin cross-linked by 1,6-hexamethylene diisocyanate. Carbo. Poly., 72: 456–461.
  • Jullian, C.; Alfaro, M.; Zapata-Torres, G.; Olea-Azar, C. (2010) Inclusion complexes of cyclodextrins with galangin: A thermodynamic and reactivity study. J. Sol. Chem., 39: 1168–1177.
  • Zain, N. N. M.; Abu Bakar, N. K.; Mohamad, S.; Saleh, M. Md. (2014) Optimization of a greener method for removal phenol species by cloud point extraction and spectrophotometry. Spectrochim. Acta Part A., 118: 1121–1128.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.