2019
DOI: 10.1016/j.seppur.2018.08.048
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Ether derivatives – Efficient Fe(III) extractants from HCl solution

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Cited by 11 publications
(4 citation statements)
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“…However, these resins do not have a significant adsorption capacity, while the regeneration of efficient chelating resins requires a strong acid desorbing agent, such as 4 M HCl in the case of glycidyl methacrylate-based polymer resins [ 13 ] or 1 M HNO 3 in the case of cross-linked polyzwitterionic acid [ 14 ]. In the presented research, the precursors of the pyridinium moieties that were introduced onto the polymer surface are N -decyloxy-1-(pyridnyl)ethanimines with high potential as metal extractants from neutral and acidic aqueous solutions (Fe(III) from HCl [ 15 ], Cu(II) and Cu(I) from chloride and sulfate solution [ 16 , 17 , 18 ], Pb(II) from acidic chloride–nitrate solution [ 19 , 20 ], and Zn(II) from HCl solution [ 21 ]). These compounds show exceptionally high metal ion removal efficiency in liquid–liquid and membrane systems [ 22 , 23 ].…”
Section: Introductionmentioning
confidence: 99%
“…However, these resins do not have a significant adsorption capacity, while the regeneration of efficient chelating resins requires a strong acid desorbing agent, such as 4 M HCl in the case of glycidyl methacrylate-based polymer resins [ 13 ] or 1 M HNO 3 in the case of cross-linked polyzwitterionic acid [ 14 ]. In the presented research, the precursors of the pyridinium moieties that were introduced onto the polymer surface are N -decyloxy-1-(pyridnyl)ethanimines with high potential as metal extractants from neutral and acidic aqueous solutions (Fe(III) from HCl [ 15 ], Cu(II) and Cu(I) from chloride and sulfate solution [ 16 , 17 , 18 ], Pb(II) from acidic chloride–nitrate solution [ 19 , 20 ], and Zn(II) from HCl solution [ 21 ]). These compounds show exceptionally high metal ion removal efficiency in liquid–liquid and membrane systems [ 22 , 23 ].…”
Section: Introductionmentioning
confidence: 99%
“…Tertiary amines [19,20] and imines [21] are also effective for the extraction of iron(III) from chloride solutions. Quaternary ammonium bases, for example, Aliquat 336 (a mixture of 3-octyl-and 3-decylamine chlorides) was used to extract iron(III) from a chloride solution after leaching of poor iron ores.…”
Section: Introductionmentioning
confidence: 99%
“…In Wieszczycka’s team, the search for advanced new extractants has resulted in the synthesis of pyridine derivatives containing an N -alkoxyimidamide or alkaneimine moieties (e.g., N -decoxy-1-(pyridin-3-yl)ethaneimine) [ 18 , 19 ], which have been reported to reach very fast equilibrium achieving in the extraction of Zn(II) or Fe(III) from chloride media. Good extraction properties of these derivatives for heavy metals made us investigate the use of quaternary salts of these derivatives, i.e., 3-[1-(2-ethylhexyloxyimine)methane]-1-propylpyridinium chloride, 3-[1-(decyloxyimine)methane ]-1-propylpyridinium chloride, 3-[1-(decyloxyimine)ethane]-1-propylpyridinium chloride and 4-[1-amine(2-ethylhexyloxyimine)]-1-propylpyridinium chloride towards Pd(II) and Pt(IV) recovery from chloride solutions.…”
Section: Introductionmentioning
confidence: 99%
“…Hence, the novelty of the investigation lies in the use of new extractants in the PGM model system. Based on the results for precursors of these quaternary salts [ 19 ] and looking for efficient extractants of PGM ions, it has been assumed that a type of substituent at imine nitrogen and/or the structure of substituent alkyl chain in the studied quaternary salts could influence the efficiency of Pd(II) and Pt(IV) extraction. Thus, in this work are presented preliminary results of the effect of extraction conditions such as hydrochloric acid concentration, type of metal ions, Pd(II) or Pt(IV), the structure of the pyridinium cation, and the extractant concentration.…”
Section: Introductionmentioning
confidence: 99%