1 |
Transport of p-nitrophenol in an agitated bulk liquid membrane system -Experimental and theoretical study by network analysis Szczepanski P, Tanczos SK, Ghindeanu LD, Wodzki R Separation and Purification Technology, 132, 616, 2014 |
2 |
Bond-graph description and simulation of agitated bulk liquid membrane system-Dependence of fluxes on liquid membrane volume Szczepanski P, Wodzki R Journal of Membrane Science, 435, 1, 2013 |
3 |
Structure and transport properties of polymer inclusion membranes for Pb(II) separation Oberta A, Wasilewski J, Wodzki R Desalination, 271(1-3), 132, 2011 |
4 |
The application of core functionalized - Star-shaped polymers for cations separation by pertraction in liquid membrane systems Wodzki R, Swiatkowski M, Lapienis G Reactive & Functional Polymers, 71(1), 42, 2011 |
5 |
Selective lead(II) transport in a liquid membrane system with octylsulfanylacetic acid ionophore Oberta A, Wasilewski J, Wodzki R Desalination, 252(1-3), 40, 2010 |
6 |
Hybrid rotating pertractor for Zn(II) recovery and separation Raszkowska-Kaczor A, Adamczak P, Wodzki R Desalination, 257(1-3), 66, 2010 |
7 |
Pertraction properties of poly(oxyethylene) diphosphoric and dicarboxylic acids as macroionophores in liquid membrane systems Wodzki R, Swiakowski M, Lapienis G Reactive & Functional Polymers, 70(7), 463, 2010 |
8 |
Transport and separation properties of poly(oxypropylene) bisphosphates as macroionophores of alkali, alkaline-earth and transient metal cations in a hybrid liquid membrane system Wodzki R, Swiatkowski M, Lapienis G Reactive & Functional Polymers, 62(2), 195, 2005 |
9 |
Simultaneous recovery and separation of Zn2+ and Cu2+ in hybrid membrane systems Wodzki R, Szczepanski P Separation and Purification Technology, 41(3), 289, 2005 |
10 |
Poly[poly(oxypropylene) phosphate] macroionophores for transport and separation of cations in a hybrid: Cation exchange polymer and liquid membrane system Wodzki R, Swiatkowski M, Pretula J, Kaluzynski K Journal of Applied Polymer Science, 93(3), 1436, 2004 |