References
- A.J.B. Dutra, A. Espinola, P.P. Borges, Cadmium removal from
diluted aqueous solutions by electrowinning in a flow-by cell,
Miner. Eng., 13 (2000) 1139–1148.
- M. Loaec, R. Olier, J. Guezennec, Uptake of lead, cadmium
and zinc by a novel bacterial exopolysaccharide, Water Res., 31
(1997) 1171–1179.
- M.J. Schwuger, G. Subklew, N. Woller, New alternatives for
waste water remediation with complexing surfactants, Colloids
Surf., A: Physicochem. Eng. Asp., 186 (2001) 229–242.
- M. Chakraborty, C. Bhattacharya, S. Datta, Study of the stability
of W/O/W-type emulsion during the extraction of nickel
via emulsion liquid membrane, Sep. Sci. Technol., 39 (2004)
2609–2625.
- A. Zouboulis, C.A. Prochaska, P.M. Solozhenkin, Removal of
zinc from dilute aqueous solutions by galvanochemical treatment,
J. Chem. Technol. Biotechnol., 80 (2005) 553–564.
- A.H.M. Veeken, L. Akoto, L.W. Hulshoff Pol, J. Weijma, Control
of the sulfide (S2–) concentration for optimal zinc removal
by sulfide precipitation in a continuously stirred tank reactor,
Water Res., 37 (2003) 3709–3717.
- M.M. Naim, A.A. Monir, Desalination using supported liquid
membranes, Desalination, 153 (2003) 361–369.
- J.W. Frankenfeld, N.N. Li, Recent Advances in Liquid Membrane
Technology, Handbook of Separation Process Technology,
Wiley, New York, 1987.
- R.M. Izatt, R.L. Bruening, G.A. Clark, J.D. Lamb, J.J. Christensen,
Effect of macrocycle type on Pb2+ transport through
an emulsion liquid membrane, Sep. Sci. Technol., 22 (1985)
661–675.
- R.P. Schwarzenbach, P.M. Gschwend, D.M. Imboden, Environmental
organic chemistry, J. Wiley, New York 2003.
- B.J. Raghuraman, N.P. Tirmizi, B.S. Kim, J.M. Wiencek, Emulsion
liquid membranes for wastewater treatment. Equilibrium
models for lead- and cadmium-di-2-ethylhexyl phosphoric
acid systems, Environ. Sci. Technol., 29 (1995) 979–984.
- M.T.A. Reis, J.M.R. Carvalho, Recovery of zinc from an industrial
effluent by emulsion liquid membranes, J. Membr. Sci., 84
(1993) 201–211.
- F. Valenzuela, J. Cabrera, C. Basualto, J. Sapag-Hagar, Kinetics
of copper removal from acidic mine drainage by a liquid emulsion
membrane, Miner. Eng., 18 (2005) 1224–1232.
- A. Ahmad, A. Kusumastuti, M.S. Buddin, C. Derek, B. Ooi,
Emulsion liquid membrane based on a new flow pattern
in a counter rotating Taylor-Couette column for cadmium
extraction, Sep. Purif. Technol., 127 (2014) 46–52.
- T. Kinugasa, K. Watanabe, H. Takeuchi, Effect of organic solvents
on stability of liquid surfactant membranes, J. Chem.
Eng. Jpn., 22 (1989) 593–597.
- A.H.P. Skelland, X. Meng, New solution to emulsion liquid
membrane problems by non-Newtonian conversion, AIChE J.,
42 (1996) 547–561.
- R.E. Terry, N.N. Li, W.S. Ho, Extraction of phenolic compounds
and organic acids by liquid membranes, J. Membr. Sci., 10
(1982) 305–323.
- W. Hou, K.D. Papadopoulos, W1/O/W2 and O1/W/O2 globules
stabilized with span 80 and tween 80, Colloids Surf.,
A: Physicochemical and Engineering Aspects, 125 (1997)
181–187.
- A. Nanoti, S.K. Ganguly, A.N. Goswami, B.S. Rawat, Removal
of phenols from wastewater using liquid membranes in a
microporous hollow-fiber-membrane extractor, Ind. Eng.
Chem. Res., 36 (1997) 4369–4373.
- G.R.M. Breembroek, A. van Straalen, G.J. Wltkamp, G.M. van
Rosmalen, Extraction of cadmium and copper using hollow
fiber supported liquid membranes, J. Membr. Sci., 146 (1998)
185–195.
- S.Y.B. Hu, J.M. Wiencek, Emulsion-liquid-membrane extraction
of copper using a hollow-fiber contactor, AIChE J., 44 (1998)
570–581.
- Y. Park, L.J. Forney, J.H. Kim, A.H.P. Skelland, Optimum
emulsion liquid membranes stabilized by non-Newtonian
conversion in Taylor-Couette flow, Chem. Eng. Sci., 59 (2004)
5725–5734.
- Y. Park, A.H.P. Skelland, L.J. Forney, J.H. Kim, Removal of phenol
and substituted phenols by newly developed emulsion
liquid
membrane process, Water Res., 40 (2006) 1763–1772.
- A.H.P. Skelland, X. Meng, Non-Newtonian conversion solves
problems of stability, permeability, and swelling in emulsion
liquid membranes, J. Membr. Sci., 158 (1999) 1–15.
- L.J. Forney, A.H.P. Skelland, J.F. Morris, R.A. Holl, Taylor vortex
column: Large shear for liquid-liquid extraction, Sep. Sci.
Technol., 37 (2002) 2967–2986.
- X. Liu, D. Liu, A mass transfer resistance analysis of
L-tryptophan extraction in an emulsion liquid membrane
system,
Sep. Sci. Technol., 35 (2000) 2707–2724.
- W.S.W. Ho, K.K. Sirkar, Membrane handbook, Chapman &
Hall, New York, 1992.
- A.N. Goswami, T.C.S.M. Gupta, S.K. Sharma, A. Sharma,
R. Krishna, Unsteady-state modeling and analysis for liquid
surfactant membrane hydrocarbon separation processes, Ind.
Eng. Chem. Res., 32 (1993) 634–640.
- N. Yan, Y. Shi, Y.F. Su, Mass transfer model for type i facilitated
transport in liquid membranes, Chem. Eng. Sci., 47 (1992)
4365–4371.
- R.P. Borwankar, C.C. Chan, D.T. Wasan, R.M. Kurzeja, Z.M. Gu,
N.N. Li, Analysis of the effect of internal phase leakage on liquid
membrane separations, AIChE J., 34 (1988) 753–762.
- R. Chowdhury, P. Bhattacharya, Mathematical analysis of
unsteady-state dynamics of a liquid-membrane-encapsulated
urease system, Ind. Eng. Chem. Res., 36 (1997) 5467–5473.
- B. Gupta, A. Deep, V. Singh, S.N. Tandon, Recovery of cobalt,
nickel, and copper from sea nodules by their extraction with
alkylphosphines, Hydrometallurgy, 70 (2003) 121–129.
- L.J. Lozano, C. Godinez, F.J. Alguacil, Facilitated transport of
vanadium (V) by supported liquid membranes, Hydrometallurgy,
80 (2005) 196–202.
- A.M. Rodriguez, D. Gomez-Limon, F.J. Alguacil, Liquid-liquid
extraction of cadmium(II) by Cyanex 923 and its application to
a solid-supported liquid membrane system, J. of Chem. Technol.
Biotechnol., 80 (2005) 967–972.
- I. Van de Voorde, L. Pinoy, R.F. De Ketelaere, Recovery of
nickel ions by supported liquid membrane (SLM) extraction,
J. Membr. Sci., 234 (2004) 11–21.
- Y.K.P. Sze, L. Xue, Extraction of zinc and chromium(III) and
its application to treatment of alloy electroplating wastewater,
Sep. Sci. Technol., 38 (2003) 405–425.
- C. Koopman, G.J. Witkamp, G.M. Van Rosmalen, Removal of
heavy metals and lanthanides from industrial phosphoric acid
process liquors, Sep. Sci. Technol., 34 (1999) 2997–3008.
- R. Cierpiszewski, I. Miesiac, M. Regel-Rosocka, A.M. Sastre,
J. Szymanowski, Removal of zinc(II) from spent hydrochloric
acid solutions from zinc hot galvanizing plants, Ind. Eng.
Chem. Res., 41 (2002) 598–603.
- M. Regel, A.M. Sastre, J. Szymanowski, Recovery of zinc(II)
from HCl spent pickling solutions by solvent extraction, Environ.
Sci. Technol., 35 (2001) 630–635.
- I. Miesiac, J. Szymanowski, Separation of zinc(II) from hydrochloric
acid solutions in a double Lewis cell, Solvent Extr. Ion
Exch., 22 (2004) 243–265.
- A. Kargari, T. Kaghazchi, M. Soleimani, Role of emulsifier in
the extraction of gold (III) ions from aqueous solutions using
the emulsion liquid membrane technique, Desalination, 162
(2004) 237–247.
- A. Gherrou, H. Kerdjoudj, R. Molinari, E. Drioli, Removal of
silver and copper ions from acidic thiourea solutions with a
supported liquid membrane containing D2EHPA as carrier,
Sep. Purif. Technol., 28 (2002) 235–244.
- R.C. Reid, J.M. Prausnitz, B.E. Poling, The properties of gases
and liquids, McGraw-Hill, Inc., New York, 1987.
- A.H.P. Skelland, G.G. Ramsay, Minimum agitator speeds for
complete liquid-liquid dispersion, Ind. Eng. Chem. Res., 26
(1987) 77–81.
- R.A. Bartsch, E.G. Jeon, W. Walkowiak, W. Apostoluk, Effect
of solvent in competitive alkali metal cation transport across
bulk liquid membranes by a lipophilic lariat ether carboxylic
acid carrier, J. Membr. Sci., 159 (1999) 123–131.