Selective extraction of cobalt ions through polymer inclusion membrane containing Aliquat 336 as a carrier

Author(s):  
Yasemin Yıldız ◽  
Aynur Manzak ◽  
Osman Tutkun
2008 ◽  
Vol 310 (1-2) ◽  
pp. 438-445 ◽  
Author(s):  
Ounissa Kebiche-Senhadji ◽  
Lynda Mansouri ◽  
Sophie Tingry ◽  
Patrick Seta ◽  
Mohamed Benamor

Membranes ◽  
2022 ◽  
Vol 12 (1) ◽  
pp. 90
Author(s):  
Salar Bahrami ◽  
Leila Dolatyari ◽  
Hassan Shayani-Jam ◽  
Mohammad Reza Yaftian ◽  
Spas D. Kolev

A polymer inclusion membrane (PIM) composed of 50 wt% base polymer poly(vinylidenefluoride-co-hexafluoropropylene), 40 wt% extractant Aliquat® 336, and 10 wt% dibutyl phthalate as plasticizer/modifier provided the efficient extraction of vanadium(V) (initial concentration 50 mg L−1) from 0.1 M sulfate solutions (pH 2.5). The average mass and thickness of the PIMs (diameter 3.5 cm) were 0.057 g and 46 μm, respectively. It was suggested that V(V) was extracted as VO2SO4− via an anion exchange mechanism. The maximum PIM capacity was estimated to be ~56 mg of V(V)/g for the PIM. Quantitative back-extraction was achieved with a 50 mL solution of 6 M H2SO4/1 v/v% of H2O2. It was assumed that the back-extraction process involved the oxidation of VO2+ to VO(O2)+ by H2O2. The newly developed PIM, with the optimized composition mentioned above, exhibited an excellent selectivity for V(V) in the presence of metallic species present in digests of spent alumina hydrodesulfurization catalysts. Co-extraction of Mo(VI) with V(V) was eliminated by its selective extraction at pH 1.1. Characterization of the optimized PIM was performed by contact angle measurements, atomic-force microscopy, energy dispersive X-ray spectroscopy, thermogravimetric analysis/derivatives thermogravimetric analysis and stress–strain measurements. Replacement of dibutyl phthalate with 2-nitrophenyloctyl ether improved the stability of the studied PIMs.


Water ◽  
2018 ◽  
Vol 10 (8) ◽  
pp. 1093 ◽  
Author(s):  
Ruben Vera ◽  
Enriqueta Anticó ◽  
Clàudia Fontàs

A polymer inclusion membrane (PIM) containing the ionic liquid methyltrioctylammonium chloride (Aliquat 336) as the carrier has been used satisfactorily for the preconcentration of arsenate present in groundwater samples, allowing its determination by a simple colorimetric method. The optimization of different chemical and physical parameters affecting the membrane performance allowed its applicability to be broadened. The transport of As(V) was not affected by the polymer used to make the PIM (cellulose triacetate (CTA) or poly(vinyl chloride) (PVC)) nor the thickness of the membrane. Moreover, the use of a 2 M NaCl solution as a stripping phase was found to allow the effective transport of arsenate despite the presence of other major anions in groundwater. Using the PIM for the analysis of different groundwaters spiked at 100 μg L−1 resulted in recoveries from 79% to 124% after only 5 h of contact time. Finally, the validated PIM-based method was successfully applied to the analysis of waters containing naturally occurring arsenate.


2017 ◽  
Vol 33 (5) ◽  
pp. 643-646 ◽  
Author(s):  
Shigehiro KAGAYA ◽  
Tomonori MAENO ◽  
Kazuma ITO ◽  
Makoto GEMMEI-IDE ◽  
Robert W. CATTRALL ◽  
...  

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