References
- G.W. van Loon, S.J. Duffy, Environmental Chemistry – in a
Global Perspective, Oxford University Press, Oxford, 2010.
- J.M. Moulis, F. Thevenod, New perspectives in cadmium
toxicity: an introduction, Biometals, 23 (2010) 763–768.
- P. Szyczewski, J. Siepak, P. Niedzielski, T. Sobczynski, Research
on heavy metals in Poland, Pol. J. Environ. Stud., 18 (2009)
755–768.
- G. Cote, Hydrometallurgy of strategic metals, Solvent Extr.
Ion Exch., 18 (2000) 703–727.
- A.L. Wani, A. Ara, J.A. Usmani, Lead toxicity: a review,
Interdiscip. Toxicol., 8 (2015) 55–64.
- M.I.G.S. Almeida, R.W. Cattrall, S.D. Kolev, Recent trends in
extraction and transport of metal ions using polymer inclusion
membranes (PIMs), J. Membr. Sci., 415–416 (2012) 9–23.
- S.S. Hosseini, E. Bringas, N.R. Tan, I. Ortiz, M. Ghahramani,
M.A.A. Shahmirzadi, Recent progress in development of high
performance polymeric membranes and materials for metal
plating wastewater treatment: a review., J. Water Process Eng.,
9 (2016) 78–110.
- A.J. Schow, R.T. Peterson, J.D. Lamb, Polymer inclusion
membranes containing macrocyclic carriers for use in cation
separations, J. Membr. Sci., 111 (1996) 291–295.
- A.Y. Nazarenko, J.D. Lamb, Selective metal ion sorption and
transport using polymer inclusion membranes containing
dicyclohexano-18-crown-6, Sep. Sci. Technol., 32 (1997) 2749–2764.
- M. Ulewicz, J. Szczygelska-Tao, J.F. Biernat, Selectivity of Pb(II)
transport across polymer inclusion membranes doped with
imidazole azothiacrown ethers, J. Membr. Sci., 344 (2009) 32–38.
- N.-E. Belkhouche, M.A. Didi, R. Romero, J.Å. Jönsson,
D. Villemin, Study of new organophosphorus derivates
carriers on the selective recovery of M(II) and M(III) metals,
using supported liquid membrane extraction, J. Membr. Sci.,
284 (2006) 398–405.
- J.D. Lamb, A.Y. Nazarenko, Lead(II) ion sorption and transport
using polymer inclusion membranes containing trioctylphosphine
oxide, J. Membr. Sci., 134 (1997) 255–259.
- M. Baczyńska, M. Waszak, M. Nowicki, D. Prządka, S. Borysiak,
M. Regel-Rosocka, Characterization of polymer inclusion
membranes (PIMs) containing phosphonium ionic liquids
as Zn(II) carriers, Ind. Eng. Chem. Res., 57 (2018) 5070–5082.
- F.J. Alguacil, Facilitated chromium(VI) transport across an
ionic liquid membrane impregnated with cyphos IL102,
Molecules, 24 (2019) 2437, doi: 10.3390/molecules24132437.
- E. Radzyminska-Lenarcik, K. Witt, W. Urbaniak, Selective
transport of zinc ions through a novel polymer inclusion
membranes (PIMs) containing β-diketone derivatives as a
carrier reagents, Sep. Sci. Technol., 51 (2016) 2620–2627.
- E. Radzymińska-Lenarcik, K. Witt, D. Bożejewiecz, Selective
transport of copper(II) ions across polymer inclusion membrane
with aromatic ß-diketones as carriers, Physicochem. Probl.
Miner. Process., 54 (2018) 741–750.
- E. Radzyminska-Lenarcik, M. Ulewicz, Application of polymer
and supported membranes with 1-alkyl-2-methylimidazoles
for separation of some transition metal ions, Desal. Water
Treat., 64 (2017) 425–431.
- E. Radzyminska-Lenarcik, K. Witt, The application of
membrane extraction in the separation of zinc and cadmium
ions, Desal. Water Treat., 128 (2018) 140–147.
- E. Radzyminska-Lenarcik, M. Ulewicz, Polymer inclusion
membranes (PIMs) doped with alkylimidazole and their
application in the separation of non-ferrous metal ions,
Polymers, 11 (2019) 1780, doi: 10.3390/polym11111780.
- M. Ulewicz, E. Radzyminska-Lenarcik, Application of polymer
and supported membranes with 1-decyl-4-methylimidazole
for pertraction of transition metal ions, Sep. Sci. Technol.,
49 (2014) 1713–1721.
- J. Pernak, J. Krysinski, A. Skrzypczak, Bakterizide wirkung von
iminiumverbindungen, Tenside Surfactants Deterg., 27 (1987)
276–286.
- A. Braibanti, G. Ostacoli, P. Paoletti, L.D. Pettit, S. Sammartano,
Potentiometric apparatus and technique for the pH-metric
measurement of metal-complex equilibrium constants, Pure
Appl. Chem., 59 (1987) 1721–1728.
- B. Lenarcik, P. Ojczenasz, The influence of the size and position
of the alkyl groups in alkylimidazole molecules on their
acid - base properties, J. Heterocycl. Chem., 39 (2002) 287–290.
- M. Ulewicz, E. Radzyminska-Lenarcik, Transport of metal ions
across polymer inclusion membrane with 1-alkylimidazole,
Physicochem. Probl. Miner. Process., 46 (2011) 119–130.
- M. Ulewicz, E. Radzyminska-Lenarcik, Application of supported
and polymer membrane with 1-decyl-2-methylimidazole for
separation of transition metal ions, Physicochem. Probl. Miner.
Process., 48 (2012) 91–102.
- M. Ulewicz, E. Radzyminska-Lenarcik, Supported liquid
(SLM) and polymer inclusion (PIM) membranes pertraction
of copper(II) from aqueous nitrate solutions by 1-hexyl-2-
methylimidazole, Sep. Sci. Technol., 47 (2012) 1383–1389.
- E. Radzyminska-Lenarcik, M. Ulewicz, Selective transport
of Cu(II) across a polymer inclusion membrane with
1-alkylimidazole from nitrate solutions, Sep. Sci. Technol.,
47 (2012) 1113–1118.
- E. Radzyminska-Lenarcik, R. Ulewicz, M. Ulewicz, Zinc
recovery from model and waste solutions using polymer
inclusion membrane (PIMs) with 1-octyl-4-methylimidazole,
Desal. Water Treat., 102 (2018) 211–219.
- E. Radzyminska-Lenarcik, M. Ulewicz, The application
of polymer inclusion membranes based on CTA with
1-alkylimidazole for the separation of zinc(II) and manganese(II)
ions from aqueous solutions, Polymers, 11 (2019), 242
doi: 10.3390/polym11020242.
- P.R. Danesi, Separation of metal species by supported liquid
membranes, Sep. Sci. Technol., 19 (1984–1985) 857–894.
- J.R. Wolf, W. Strieder, Tortuosities for a random fiber bed:
overlapping, parallel cylinders of several radii, J. Membr. Sci.,
49 (1999) 103–115.
- J. Rydberg, On the complex formation between thorium and
acetylacetone, Acta Chem. Scand., 4 (1950) 1503–1522.
- F.J.C. Rossotti, H. Rossotti, The Determination of Stability
Constants, McGraw-Hill, New York, NY, 1961.
- J. Rydberg, C. Musakis, G.R. Choppin, Principles and Practices
of Solvent Extraction, M. Dekker Inc., New York, NY, 1992,
pp. 22–24.
- J. Bjerrum, Metal Amine Formation in Aqueous Solutions,
Theory of the Reversible Step Reactions, P. Haase and Son,
Copenhagen, 1941.
- E. Radzyminska-Lenarcik, The influence of the alkyl chain
length on extraction equilibrium of Cu(II) complexes with
1-alkylimidazole in aqueous solution/organic solvent system,
Solvent Extr. Ion Exch., 25 (2006) 53–64.
- C.L. van Panthaleon van Eck, On the mutual stability
relationship of MeAn complexes consisting of a metal ion Me
and a ligand A in aqueous solution, for consecutive values of n,
Compend. Chem. Works Netherlands, 72 (1953) 529–537.
- A. Gherrou, H. Kerdjoudj, R. Molinari, P. Seta, E. Drioli, Fixed
sites plasticized cellulose triacetate membranes containing
crown ethers for silver(I), copper(II) and gold(III) ions transport,
J. Membr. Sci., 228 (2004) 149–157.
- O. Arous, H. Kerdjoudj, P. Seta, Comparison of carrierfacilitated
silver(I) and copper(II) ions transport mechanisms in
a supported and in a plasticized cellulose triacetate membrane,
J. Membr. Sci., 241 (2004) 177–185.
- G. Salazar-Alvarez, A.N. Bautista-Flores, E.R. San Miguel,
M. Muhammed, J. Gyves, Transport characterization of a PIM
system used for the extraction of Pb(II) using D2EHPA as
carrier, J. Membr. Sci., 250 (2005) 247–257.
- A. Tor, G. Arslan, H. Muslu, A. Celikas, Y. Cengeloglu,
M. Ersoz, Facilitated transport of Cr(III) thought polymer
inclusion membrane with di(2-ethylhexyl)phosphoric acid
(DEHPA), J. Membr. Sci., 329 (2009) 169–174.