374
Views
18
CrossRef citations to date
0
Altmetric
Review Article

Analytical Applications of Transport Through Bulk Liquid Membranes

, , &
Pages 332-341 | Published online: 09 Jun 2016

References

  • Ahmad, A. L.; Kusumastuti, A.; Derek, C. J. C.; Ooi, B. S. Emulsion Liquid Membrane for Heavy Metal Removal: An Overview on Emulsion Stabilization and Destabilization. Chem. Eng. J. 2011, 171, 870–882.
  • Aouarram, A.; Galindo-Riaño, M. D.; García-Vargas, M.; Stitou, M.; El Yousfi, F. A Permeation Liquid Membrane System for Determination of Nickel in Seawater. Talanta 2007, 71, 165–170.
  • Aydiner, C.; Kobya, M.; Demirbas, E. Cyanide Ions Transport from Aqueous Solutions by Using Quaternary Ammonium Salts through Bulk Liquid Membranes. Desalination 2005, 180, 139–150.
  • Bayne, C. K.; Rubin, I. B. Practical Experimental Designs and Optimization Methods for Chemists; VCH Publisher: Deerfield Beach, FL, 1986.
  • Belova, V. V.; Kostanyan, A. E.; Zakhodyaeva, Y. A.; Kholkin, A. I.; Logutenko, O. A. On the Application of Bulk-Supported Liquid Membrane Techniques in Hydrometallurgy. Hydrometallurgy 2014, 150, 144–152.
  • Berrios, J.; Pyle, D. L.; Aroca, G. Gibberellic Acid Extraction from Aqueous Solutions and Fermentation Broths by Using Emulsion Liquid Membranes. J. Membr. Sci. 2010, 348, 91–98.
  • Blaga, A. C.; Galaction, A.; Cascaval, D. Extraction and Transport of Aspartic and Glutamic Acids through Liquid Membranes. Rom. Biotechnol. Lett. 2006, 11, 2791–2797.
  • Branco, L. C.; Crespo, J. G.; Afonso, C. A. M. Ionic Liquids as an Efficient Bulk Membrane for the Selective Transport of Organic Compounds. J. Phys. Org. Chem. 2008, 21, 718–723.
  • Canepari, S.; Girelli, A. M.; Mattei, E.; Tosti, D. Enantioselective Transport of D,L-Phenylalanine and D,L-Phenylglycine through a Bulk Liquid Membrane Containing Cinchona Alkaloid Derivatives as Chiral Selectors. J. Braz. Chem. Soc. 2009, 20, 429–436.
  • Cascaval, D.; Galaction, A.-I.; Oniscu, C. Selective Pertraction of Carboxylic Acids Obtained by Citric Fermentation. Sep. Sci. Technol. 2004a, 39, 1907–1925.
  • Cascaval, D.; Galaction, A.-I.; Oniscu, C. Modeling of the Selective Pertraction of Carboxylic Acids Obtained by Citric Fermentation. Chem. Ind. 2004b, 58, 97–103.
  • Cascaval, D.; Galaction, A.-I.; Oniscu, C. The Selective Pertraction of Carboxylic Acids Obtained by Citric Fermentation Process. The Separation of Succinic and Malic Acids. Rev. Chim. 2003, 54(6), 525–529.
  • Caşcaval, D.; Galaction, A.-I.; Turnea, M. Study of the Influence of Solute and Carrier Characteristics on Facilitated Pertraction Mechanism in Pseudosteady-State Conditions. J. Membr. Sci. 2009, 328, 228–237.
  • Cichy, W.; Schlosser S.; Szymanowski, J. Extraction and Pertraction of Phenol through Bulk Liquid Membranes. J. Chem. Technol. Biotechnol. 2005, 80, 189–197.
  • Craciun, M. E.; Ruse, E.; Nechifor, G. An Efficient Iodide Separation Procedure from Aqueous Solutions. Rev. Chim. 2006, 57, 936–939.
  • Dalali, N.; Yavarizadeh, H.; Agrawal, Y. K. Separation of Zinc and Cadmium from Nickel and Cobalt by Facilitated Transport through Bulk Liquid Membrane Using Trioctyl Methyl Ammonium Chloride as Carrier. J. Ind. Eng. Chem. 2012, 18, 1001–1005.
  • Diaconu, I.; Aboul-Enein, H. Y.; Al-Omar, M. A.; Nechifor, G.; Ruse, E.; Bunaciu, A. A.; Eftimie Totu, E. Separation of Nitrophenols. Equilibriums in Bi- and Tri-phasic Systems. Arab. J. Chem. 2011, 4, 99–103.
  • Diaconu, I.; Gîrdea, R.; Cristea, C.; Nechifor, G.; Ruse, E.; Eftimie Totu, E. Removal and Recovery of Some Phenolic Pollutants Using Liquid Membranes. Rom. Biotechnol. Lett. 2010a, 15, 5703–5708.
  • Diaconu, I.; Nechifor, G.; Nechifor, A. C.; Ruse, E.; Eftimie Totu, E. Membranary Techniques Used at the Separation of Some Phenolic Compounds from Aqueous Media. UPB Sci. Bull. Ser. B 2009a, 71, 39–46.
  • Diaconu, I.; Nechifor, G.; Nechifor, A. C.; Eftimie Totu, E.; Ruse, E. The Transport of Nitrophenols through Liquid Membranes. Rev. Chim. 2009b, 60, 1243–1246.
  • Diaconu, I.; Ruse, E.; Eftimie Totu, E.; Nechifor, G. Partition Studies in Biphasic Systems of Nitrophenols. Rev. Chim. 2010b, 61, 718–720.
  • Domínguez-Lledó, F. C.; Galindo-Riaño, M. D.; Díaz-López, I. C.; García-Vargas, M.; Granado-Castro, M. D. Applicability of a Liquid Membrane in Enrichment and Determination of Nickel Traces from Natural Waters. Anal. Bioanal. Chem. 2007, 389, 653–659.
  • Ensafi, A. A.; Eskandari, H. Efficient and Selective Extraction of Iodide through a Liquid Membrane. Microchem. J. 2001a, 69, 45–50.
  • Ensafi, A. A.; Eskandari, H. Selective Extraction of Bromide with Liquid Organic Membrane. Sep. Sci. Technol. 2001b, 36, 81–89.
  • Fahmideh-Rad, E.; Ronagi, E. G.; Zavar, M. H. A.; Chamsaz, M. Spectrometric Determination of Pb2+ Cation after Selective Bulk Liquid Membrane Transport Using Benzo-18-Crown-6 as Carrier. Der Pharma Chem. 2010, 2, 8–18.
  • Fathi, S. A. M.; Nasiri, M.; Yaftian, M. R.; Kargari, A. Highly Selective Extraction and Transport through a Bulk Liquid Membrane of L-Cysteine Using [K • DC18C6]+ Complexes. Sep. Sci. Technol. 2011, 46, 2473–2480.
  • Fathi, S. A. M.; Yaftian, M. R.; Kargari, A.; Matt, D. Emulsion Liquid Membrane Pertraction of l-Cysteine from Sodium Chloride Aqueous Solutions Mediated by a Narrow Rim Phosphorylated Cone-Shaped Calix[4]arene, J. Iran. Chem. Soc. 2012, 9, 783–789.
  • Galaction, A.-I.; Cascaval, D.; Nicuta, N. Selective Removal of Gentamicin C from Biosynthetic Gentamicins by Facilitated Pertraction for Increasing Antibiotic Activity. Biochem. Eng. J. 2008, 42, 28–33.
  • Galaction, A.-I.; Camarut, M.; Cascaval, D. Selective Separation of Cinnamic and p-Methoxycinnamic Acids by Facilitated Pertraction. Sep. Sci. Technol. 2007, 42(16), 3727–3740.
  • Ghoshal, A. K.; Saha, P. Liquid–Membrane Filters. In Progress in Filtration and Separation; Tarleton, E. S., Ed.; Academic Press: New York, 2014; pp 155–205.
  • Govindaraju, M.; Ibrahim, M. Use of Bulk Liquid Membrane for the Removal of Cibacron Red FN-R from Aqueous Solution Using TBAB as a Carrier. J. Ind. Eng. Chem. 2013, 19, 444–449.
  • Granado-Castro, M. D.; Galindo-Riaño, M. D.; Garcı̀a-Vargas, M. Separation and Preconcentration of Cadmium Ions in Natural Water Using a Liquid Membrane System with 2-Acetylpyridine Benzoylhydrazone as Carrier by Flame Atomic Absorption Spectrometry. Spectrochim. Acta B 2004b, 59, 577–583.
  • Granado-Castro, M. D.; Galindo-Riaño, M. D.; Garcı́a-Vargas, M. Model Experiments to Test the Use of a Liquid Membrane for Separation and Preconcentration of Copper from Natural Water. Anal. Chim. Acta 2004a, 506, 81–86.
  • Ho, W. S. W.; Li, N. N. Emulsion Liquid Membranes: Definitions In Membrane Handbook; Ho, W. S. W.; Sirkar, K. K., Eds.; Springer Science: New York, 1992; pp 597–610.
  • Irigoyen, L.; Moreno, C.; Mendiguchía, C.; García-Vargas, M. Application of Liquid Membranes to Sample Preconcentration for the Spectrometric Determination of Cadmium in Seawater. J. Membr. Sci. 2006, 274, 169–172.
  • Jönsson, J. Å.; Mathiasson, L. Membrane Extraction in Analytical Chemistry. J. Sep. Sci. 2001, 24, 495–507.
  • Jönsson, J. A.; Mathiasson, L. Liquid Membrane Extraction in Analytical Sample Preparation: I. Principles. TrAC Trends Anal. Chem. 1999a, 18, 318–325.
  • Jönsson, J. A.; Mathiasson, L. Liquid Membrane Extraction in Analytical Sample Preparation: II. Applications. TrAC Trends Anal. Chem. 1999b, 18, 325–334.
  • Josceanu, A. M.; Ruse, E.; Luca, C.; Cerbu, E. Optimization of the Transport of Aminic Substrates. Mater. Sci. Eng. C 2001, 18, 79–85.
  • Kamiński, W.; Kwapiński, W. Applicability of Liquid Membranes in Environmental Protection. Pol. J. Environ. Stud. 2000, 9, 37–43.
  • Kislik, V. S., Ed. Liquid Membranes: Principles and Applications in Chemical Separations and Wastewater Treatment; Elsevier: Amsterdam, 2009.
  • Kocherginsky, N. M.; Yang, Q.; Seelam, L. Recent Advances in Supported Liquid Membrane Technology. Sep. Purif. Technol. 2007, 53, 171–177.
  • Kubisova, L.; Marták, J.; Schlosser, S. Transport of 5-Methyl-2-pyrazinecarboxylic Acid through a Layered Bulk Liquid Membrane. Chem. Pap. 2002, 56(6), 418–425.
  • Lakshmi, A. B.; Sindhu, S.; Venkatesan, S. Performance of Ionic Liquid as Bulk Liquid Membrane for Chlorophenol Removal. Int. J. ChemTech Res. 2013, 5, 1129–1137.
  • León, G.; Guzman, M. A. Facilitated Transport of Copper through Bulk Liquid Membranes Containing Different Carriers: Compared Kinetic Study. Desalination 2008, 223, 330–336.
  • Li, N. Separating Hydrocarbons with Liquid Membranes; U.S. Patent 3,410,794, 1968.
  • López-López, J. A.; García-Vargas, M.; Moreno, C. A New Analytical Method for Selective Pre-concentration of Free Silver in Estuarine Waters Using Liquid Membranes. Talanta 2013, 108, 7–10.
  • López-López, J. A.; Mendiguchía, C.; Pinto, J. J.; Moreno, C. Liquid Membranes for Quantification and Speciation of Trace Metals in Natural Waters. TrAC Trends Anal. Chem. 2010, 29, 645–653.
  • Ma, M., Chen, B., Luo, X.; Tan, H., He, D.; Xie, Q.; Yao, S. Study on the Transport Selectivity and Kinetics of Amino Acids through Di (2-Ethylhexyl) Phosphoric Acid-Kerosene Bulk Liquid Membrane. J. Membr. Sci. 2004, 234, 101–109.
  • Mendiguchía, C.; García-Vargas, M.; Moreno, C. Screening of Dissolved Heavy Metals (Cu, Zn, Mn, Al, Cd, Ni, Pb) in Seawater by a Liquid-Membrane–ICP–MS Approach. Anal. Bioanal. Chem. 2008, 391, 773–778.
  • Mendiguchı́a, C.; Moreno, C.; Garcı́a-Vargas, M. Determination of Copper in Seawater Based on a Liquid Membrane Preconcentration System. Anal. Chim. Acta 2002, 460, 35–40.
  • Minhas, F. T.; Memon, S.; Bhanger, M. I. Transport of Hg(II) through Bulk Liquid Membrane Containing Calix[4]arene Thioalkyl Derivative as a Carrier. Desalination 2010, 262, 215–220.
  • Mokhtari, B.; Pourabdollah, K. Emulsion Liquid Membrane for Selective Extraction of Bi(III). Chin. J. Chem. Eng. 2015, 23(4), 641–645. doi: 10.1016/j.cjche.2014.06.035
  • Moskvin, L. N.; Nikitina, T. G. Membrane Methods of Substance Separation in Analytical Chemistry. J. Anal. Chem. 2004, 59, 2–16.
  • Mostapha, B.; Mendiguchia, C.; Garcia-Vargas, M.; Moreno, C. A Liquid Membrane-Based Green Method for the Separation and Determination of Lead in Saline Waters. Spectrosc. Lett. 2011, 44, 83–87.
  • Moyo, F.; Tandlich, R. Mini-Review on the Use of Liquid Membranes in the Extraction of Platinum Group Metals from Mining and Metal Refinery Wastewaters/Side-Streams. J. Bioremediation Biodegrad. 2014, 5, 228.
  • Nernst, W.; Riesenfeld, E. H. Ueber elektrolytische Erscheinungen an der Grenzfläche zweier Lösungsmittel. Ann. Phys. 1902, 313, 600–608.
  • Noble, R. D.; Stern, S. A., Eds. Membrane Separations Technology: Principles and Applications; Elsevier: New York, 1995.
  • Parhi, P. K. Supported Liquid Membrane Principle and Its Practices: A Short Review. J. Chem. 2013, 2013, Article ID 618236. doi: 10.1155/2013/618236.
  • Pinto, J. J.; García-Vargas, M.; Moreno, C. A Bulk Liquid Membrane–Flow Injection (BLM–FI) Coupled System for the Preconcentration and Determination of Vanadium in Saline Waters. Talanta 2013, 103, 161–165.
  • Reddy, T. R.; Ramkumar, J.; Chandramouleeswaran, S.; Reddy, A. V. R. Selective Transport of Copper across a Bulk Liquid Membrane Using 8-Hydroxy Quinoline as Carrier. J. Membr. Sci. 2010, 351, 11–15.
  • Ruse, E.; Josceanu, A. M.; Cerbu, E.; Luca, C. Amine Mixture Separation Assisted by Macrocyclic Ligands. J. Incl. Phenom. 1999, 35, 409–418.
  • Sadeghi, S.; Mohammadzadeh, D.; Imampur, J. S. Selective Transport of Copper (II) Ions across a Liquid Membrane Mediated by Piroxicam. Anal. Bioanal. Chem. 2005, 383, 261–267.
  • Safavi, A.; Shams, E. Selective Transport of Silver Ions through Bulk Liquid Membrane Using Victoria Blue as Carrier. Talanta 1999, 48, 1167–1172.
  • Sahoo, G. C.; Ghosh, A. C.; Dutta, N. N. Recovery of Cephalexin from Dilute Solution in a Bulk Liquid Membrane. Process Biochem. 1997, 32, 265–272.
  • *San Roman, M. F.; Bringas, E.; Ibanez, R.; Ortiz I. Liquid Membrane Technology: Fundamentals and Review of Its Applications. J. Chem. Technol. Biotechnol. 2010, 85, 2–10.
  • Sastre, A. M.; Kumar, A.; Shukla, J. P.; Singh, R. K. Improved Techniques in Liquid Membrane Separations: An Overview. Sep. Purif. Rev. 1998, 27, 213–298.
  • Schlosser, S.; Sabolová, E. Transport of Butyric Acid through Layered Bulk Liquid Membranes. Chem. Pap. 2000, 53, 403–411.
  • Shadabi, S.; Ghiasvand, A. R.; Hashemi, P. Selective Separation of Essential Phenolic Compounds from Olive Oil Mill Wastewater Using a Bulk Liquid Membrane. Chem. Pap. 2013, 67, 730–736.
  • Shahriar, S.; Ghiasvand, A. R.; Hashemi, P. Selective Separation of Essential Phenolic Compounds from Olive Oil Mill Wastewater Using a Bulk Liquid Membrane. Chem. Pap. 2013, 67, 730–736.
  • Singh, S. K.; Asfari, Z.; Trébouet, D. Recent Advances in the Extraction of Target Metal Ions with Liquid Membrane Processes Incorporating Macrocycle Carriers. Sep. Purif. Rev. 2013, 42, 28–86.
  • Slaveykova, V. I.; Parthasarathy, N.; Buffle, J.; Wilkinson, K. J. Permeation Liquid Membrane as a Tool for Monitoring Bioavailable Pb in Natural Waters. Sci. Total Environ. 2004, 328, 55–68.
  • Stanisław, K.; Szczepański, P. Modeling of Diffusive Transport of Benzoic Acid through a Liquid Membrane. Chem. Pap. 2011, 65, 584–595.
  • Szczepański, P.; Diaconu, I. Transport of p-Nitrophenol through an Agitated Bulk Liquid Membrane. Sep. Sci. Technol. 2012, 47, 1725–1732.
  • Szczepański, P.; Tanczos, S. K.; Ghindeanu, L. D.; Wódzki, R. Transport of p-Nitrophenol in an Agitated Bulk Liquid Membrane System—Experimental and Theoretical Study by Network Analysis. Sep. Purif. Technol. 2014, 132, 616–626.
  • Szczepański, P.; Wódzki, R. Bond-Graph Description and Simulation of Agitated Bulk Liquid Membrane System—Dependence of Fluxes on Liquid Membrane Volume. J. Membr. Sci. 2013, 435, 1–10.
  • Teng, T. T.; Talebi, A. Green Liquid Membrane: Development and Challenges. J. Membr. Sci. Technol. 2012, 2(3), e106.
  • Trtić-Petrović, T.; Jönsson, J. Å. Determination of Drug–Protein Binding Using Supported Liquid Membrane Extraction under Equilibrium Conditions. J. Chromatogr. B 2005, 814, 375–384.
  • Yang, L.; Qing, X.; Jiao, F. P. Extractive Resolution of Racemic Mandelic Acid through a Bulk Liquid Membrane Containing Binary Chiral Carrier. J. Braz. Chem. Soc. 2009, 20, 1493–1498.
  • Zhang, W.; Liu, J.; Ren, Z.; Wang, S.; Du, C.; Ma, J. Kinetic Study of Chromium(VI) Facilitated Transport through a Bulk Liquid Membrane Using Tri-n-butyl Phosphate as Carrier. Chem. Eng. J. 2009, 150, 83–89.

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.