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Novel functional polymers for recovery of silver

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this study, the functional polymers containing heterocyclic ligands were synthesized by microwave modification of a crosslinked poly(vinylbenzyl chloride–divinylbenzene) matrix with 4-tertbutylpyridine, pyrrolidine, and 3-morpholinopropylamine. The sorbents were used to recover Ag(I) from the synthetic and real chloride solutions (4.00 mol/dm3 of NaCl, 0.100 mol/dm3 of HCl). The best Ag(I) sorption was achieved from synthetic and real chloride solutions in the case of pyrrolidine resin (16.2 and 16.7 mg/g, respectively). The sorption kinetic data were well fitted to the pseudo-first-order kinetic model. The degree of silver desorption was approximately 90% using a 1.0% potassium cyanide solution in a 0.50% hydrogen peroxide solution. All resins showed good selectivity for Ag(I) compared to Cu(II), Pb(II), Co(II), Ni(II), and Zn(II) in real chloride solution. On the basis of this study, it can be concluded that the obtained sorbents can be used to recover Ag from various sources such as ores, wastewater, and jewelry scraps.
Rocznik
Strony
36--54
Opis fizyczny
Bibliogr. 35 poz., rys., tab., wykr.
Twórcy
  • Depart. of Analytical Chemistry and Chemical Metallurgy, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wroclaw, Poland
  • Depart. of Process Engineering and Technology of Polymeric and Carbon Materials, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wroclaw, Poland
Bibliografia
  • ABD EL-GHAFFAR, M.A., MOHAMED, M.H., ELWAKEEL, K.Z., 2009. Adsorption of silver(I) on synthetic chelating polymer derived from 3-amino-1,2,4-triazole-5-thiol and glutaraldehyde. Chem. Eng. J. 151, 30–38. https://doi.org/doi:10.1016/j.cej.2009.01.039.
  • ABD EL-GHAFFAR, M.A., ABDEL-WAHAB, Z.H., ELWAKEEL, K.Z., 2009. Extraction and separation studies of silver(I) and copper(II) from their aqueous solution using chemically modified melamine resins. Hydrometallurgy 96, 27-34.
  • ATIA, A., DONIA, A. M., YOUSIF, A. M., 2005. Comparative study of the recovery of silver(I) from aqueous solutions with different chelating resins derived from glycidyl methacrylate. J. Appl. Polym. Sci. 97(3), 806-812.
  • ATIA, A., DONIA, A. M., HENIESH, A. M., 2014. Adsorption of silver and gold ions from their aqueous solutions using a magnetic chelating resin derived from a blend of bisthiourea/thiourea/glutaraldehyde. Sep. Sci. Technol. 49, 2039-2048.
  • BEHNAJADY, B., MOGHADDAM, J., 2011. Chloride leaching of lead and silver from refractory zinc plant residues. Res. J. Chem. Environ., 15(2), 473-480.
  • CELA-PÉREZ, M.C., CASTRO-LÓPEZ, M.M., LASAGABÁSTER-LATORRE, A., LÓPEZ-VILARINO, J.M., GONZÁLEZ-RODRIUEZ, M.V., BARRAL-LOSADA, L.F., 2011. Synthesis and characterization of bisphenol-A imprinted polymer as a selective recognition receptor. Anal. Chem. Acta 706, 275-284.
  • DONIA, A.M., ATIA, A.A., ELWAKEEL, K.Z., 2007, Recovery of gold(III) and silver(I) on a chemically modified chitosan with magnetic properties. Hydrometallurgy 87, 197-206.
  • EGAWA, H., NONAKA, T., TSUKAMOTO, K., 1990. Studies on Selective Adsorption Resins XXVII. Preparation and properties of macroreticular chelating resins containing amidoxime groups from chloromethylstyrene—divinylbenzene copolymer beads. Polym. J. 22, 122-127.
  • ELWAKEEL, K.Z., AL-BOGAMI, A.S., GUIBAL, E., 2021. 2-Mercaptobenzimidazole derivative of chitosan for silver sorption – Contribution of magnetite incorporation and sonication effects on enhanced metal recovery. Chem. Eng. J. 403, 126265.
  • HAQ, A., SAEED, M., USMAN, M., RAZA NAQVI, S.A., BOKHARI, T.H., MAQBOOL, T., GHAUS, H., TAHIR, T., KHALID, H., 2020. Sorption of chlorpyrifos onto zinc oxide nanoparticles impregnated pea peels (Pisum sativum L): Equilibrium, kinetic and thermodynamic studies. Environ. Technol. Inno. 17, 100516.
  • HÖGFELDT, E., 1982. Stability constants of metal-ion complexes. Pt. A. Inorganic ligands. Pergamon, Oxford, U.K., 1982.
  • HUANG, X., CAO, X. WANG, W., ZHONG, H., CAO, Z.-F., 2019. Investigation of removal of Ag(I) from aqueous solution by a novel chelating resin containing acyl and thiourea groups. J. Disper. Sci. Technol. 40, 477–486.
  • JERMAKOWICZ-BARTKOWIAK, D., 2005. Preparation, characterisation and sorptive properties towards noble metals of the resins from poly(vinylbenzyl chloride) copolymers. React. Funct. Polym. 62, 115-128.
  • JUANG, R.S., LIN, S.H., TSAO, K.H., 2002. Mechanism of sorption of phenols from aqueous solutions onto surfactantmodified montmorillonite. J. Coll. Inter. Sci., 254, 234-241.
  • KABAY, N., SARP, S., YUKSEL, M., ARAR, O., BRYJAK, M., 2007. Removal of boron from seawater by selective Ion exchange resins. React. Funct. Pol. 67, 1643-1650.
  • KAPPE, C.O., STADLER, A., 2005. Microwaves in organic and medicinal chemistry, Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
  • LI, X., WANG, Y., CUI, X., LOU, Z., SHAN, W., XIONG, Y., FAN, Y., 2018. Recovery of silver from nickel electrolyte using corn stalk-based sulfur-bearing adsorbent. Hydrometallurgy 176, 192-200.
  • LIU, W., YANG, T., XIA, X., 2010. Behavior of silver and lead in selective chlorination leaching process of gold-antimony alloy. Trans. Nonferroeus Met. Soc. China. 20, 322-329.
  • MARHOL, M., 1982. Ion exchangers in analytical chemistry. Their properties and use in inorganic chemistry, Academia, Prague.
  • PHAN, T.A.P., NGUYEN, N.P., NGUYEN L.T., NGUYENA, P.H., LE, T.K., HUYNH, T.V., LUND, T., TSAI, D.H., WEI, T.CH., NGUYENA, P.T., 2020. Direct experimental evidence for the adsorption of 4-tert-butylpyridine and 2,2′- bipyridine on TiO2 surface and their influence on dye-sensitized solar cells’ performance. Appl. Surf. Sci. 509, 144878.
  • PILŚNIAK-RABIEGA, M., TROCHIMCZUK, A.W., 2014. Selective recovery of gold on functionalized resins. Hydrometallurgy 146, 111-118.
  • PILŚNIAK-RABIEGA, M., WEJMAN, K., WOLSKA, J., 2019. Novel conventional and chelating anion exchange resins with amino ligands for sorption of silver. Sep. Sci. Technol. 55(12), 2170-2182.
  • PILŚNIAK-RABIEGA, M., WOLSKA, J., 2020. Silver(I) recovery on sulfur-containing polymeric sorbents from chloride solutions. Physicochem. Probl. Miner. Process.,. 56(6), 290-310. https://doi.org/10.37190/ppmp/130400.
  • POLOWCZYK, I., BASTRZYK, A., ULATOWSKA, J., SZCZAŁBA, E., KOŹLECKI, T., SADOWSKI, Z., 2016. Influence of pH on arsenic(III) removal by fly ash. Sep. Sci. Technol. 51(15-16), 2612-2619.
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  • SANTANDER, I.P., RIVAS, B.L., URBANO, B., LEITON, L., YILMAZ IPEK, I., YUKSEL, M., KABAY, N., BRYJAK, M., 2014. Removal of Cr(VI) by a chelating resin containing N-methyl-D-glucamine. Polym. Bull. 71, 1813-1825. https://doi.org/10.1007/s00289-014-1156-8.
  • SILVERSTEIN, R.M., BASSLER, G.C., 1970. Spectroscopic methods for identification of organic compounds. PWN, Warsaw, Poland.
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  • WOLSKA, J., BRYJAK, M., 2014. Removal of bisphenol a from aqueous solution by molecularly imprinted polymers. Sep. Sci. Technol. 49, 1643–1653.
  • XIE, M., ZHANG, Z., ZHANG Y., SUN, X., SUN, F., HU, Y., 2020. Infrared Spectroscopy of Neutral and Cationic Pyrrolidine Monomer in Supersonic Jet. Chin. J. Chem. Phys. 33, 43-47.
  • XIONG, Y., WAN, L., XUAN, J., WANG, Y., XING, Z., SHAN, W., LOU, Z., 2016. Selective recovery of Ag(I) coordination anion from simulate nickel electrolyte using corn stalk based adsorbent modified by ammonia–thiosemicarbazide. J. Hazard. Mater. 301, 277-285.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-230d3f3f-5699-4463-9186-bd0162c8abc7
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