4.7 Article

Kinetics and thermodynamic characteristics of cadmium(II) sorption from water using procaine hydrochloride physically impregnated polyurethane foam

Journal

JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY
Volume 28, Issue -, Pages 147-152

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jiec.2015.01.025

Keywords

Cadmium(II) retention; Procaine hydrochloride; Polyurethane foam sorbent; Kinetic; Thermodynamic

Funding

  1. Centre of Excellency in Environmental Studies (CEES), King Abdulaziz University, Saudi Arabia [1/M/1]

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A fast and selective method for cadmium(II) removal from water by procaine hydrochloride (PQ(+)center dot Cl-) immobilized polyurethane foam (PUFs) sorbent was developed. The method was based upon formation of [Cdl(4)](aq)(-2) in the test aqueous KI solution and subsequent extraction by PQ(+)center dot Cl- treated PUFs. The sorption of Cd2+ ions followed first order equation with an overall rate constant of 0.132 +/- 0.033 min(-1). The values of Delta H and Delta S were -41.54 +/- 0.9 kJ mol(-1) and -144.58 +/- 3.1 J mol(-1) K-1, respectively with a correlation factor of 0.998. The thermodynamic parameters (Delta H, Delta S and Delta G) suggest that the sorption was spontaneous and exothermic process. The negative value of Delta S provides indication of moderate sorption of [CdI4](2-) ion associate and ordering of the ionic charges without compensatory disordering of the sorbed species onto the sorbent. Cadmium(II) sorption is mainly dominated by absorption related to solvent extraction and an added component for surface adsorption. PQ(+)center dot Cl- treated PUFs packed column was also tested for preconcentration of trace concentrations of cadmium(II) species in various water samples. The retained Cd species were successfully recovered with dilute HNO3 (1.0 mol L-1) and subsequently analyzed by ICP-OES. Thus, the proposed sorbent packed column provides efficient removal of traces of cadmium(II) ions from water samples. The method could be extended for preconcentrate of trace and ultra trace cadmium species from large samples onto PUFs packed column and subsequently analyzed. Indeed, the developed method could be satisfactorily applied to the determination of trace Cd ions in natural water. (C) 2015 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.

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