4.7 Article

Enhancement mechanisms behind exclusive removal and selective recovery of copper from salt solutions with an aminothiazole-functionalized adsorbent

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 280, Issue -, Pages 1-11

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2014.07.028

Keywords

Aminothiazole-functionalized adsorbent; Salt; Exclusive removal; Electrostatic screening; Enhancement mechanism

Funding

  1. National Natural Science Foundation of China [51378253]
  2. Discipline Crossing Foundation of Nanjing University

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The aminothiazole-functionalized adsorbent (CEAD) could exclusively remove and to selectively recover copper. The adsorption and separation properties of Cu(II) onto CEAD from aqueous media, with or without salts such as NaNO3, Ca(NO3)(2) and Ni(NO3)(2), were systematically compared by carrying out single, binary and multiple component static and dynamic experiments. In binary systems, the adsorption capacities of Cu(II) were obviously increased by 39.47%, 47.37% and 57.89% with Ni(NO3)(2), NaNO3 and Ca(NO3)(2), respectively. Besides, simulation study was performed to selectively recover Cu(II) from multi-component aqueous media, with the separation factor of only 54.91 in aqueous media without salts. The separation factor became infinite in the presence of NaNO3 and the enhancement ratio for Cu(II) was raised by 126.31%. Dynamic adsorption could separate Cu(II) and Ni(II) completely and the amount of effluent for pure Ni(II) increased to 127 BV with the help of NaNO3. In the predominant chelating mode simulated by density functional theory calculation, a metal ion coordinated with three nitrogen atoms and formed a chelating complex with two five-membered rings, and Cu(II) showed stronger coordinating ability than Ni(II) did. Meanwhile, anions exerted significant beneficial effects by electrostatic screening, and thus strengthened the exclusive removal and selective recovery of Cu(II). (C) 2014 Elsevier B.V. All rights reserved.

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