4.7 Article

Thermodynamic and kinetic study of the removal of Cu2+ and Pb2+ ions from aqueous solution using Fe7S8 nanomaterial

期刊

MICROCHEMICAL JOURNAL
卷 140, 期 -, 页码 80-86

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.microc.2018.04.003

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资金

  1. NIH UTRGV RISE program [1R25GM100866-03]
  2. Welch Foundation [GB-0017]
  3. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [R25GM100866] Funding Source: NIH RePORTER

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In the present study, pyrrhotite (Fe7S8) was investigated for the removal of Pb2+ and Cu2+ ions from aqueous solution. The Fe7S8 material was prepared through a solvothermal method and was characterized using XRD. The average particle size for the nanomaterial was determined to be 29.86 +/- 0.87 nm using XRD analysis and Scherrer's equation. Batch studies were performed to investigate the effects of pH, time, temperature, interfering ions, and the binding capacity of Pb2+ and Cu2+ ions to the Fe(7)S(8 )nanomaterial. During the pH profile studies, the optimum pH for the binding of Pb2+ and Cu2+ was determined to be pH 5 for both cations. Isotherm studies were conducted from which the thermodynamics and binding capacities for both Cu2+ and Pb2+ were determined. The binding capacity for Pb2+ and Cu2+ binding to the Fe7S8 were determined to be 0.039 and 0102 mmol/g, respectively at 25 degrees C. The thermodynamic parameters indicated a AG for the sorption of Pb2+ ranged from 5.07 kJ/mol to -2.45 kJ/mot indicating a non-spontaneous process was occurring. Whereas, the AG for Cu2+ ion binding ranged from 9.78 kJ/mot to -11.23 kJ/mol indicating a spontaneous process at higher temperatures. The enthalpy indicated an endothermic reaction was occurring for the binding of Pb2+ and Cu2+ to the Fe7S8 nanomaterial with AH values of 55.8 kJ/mol and 153.5 kJ/mol, respectively. Furthermore, the AS values for the reactions were positive indicating an increase in the entropy of the system after metal ion binding. Activation energy studies indicated the binding for both Pb2+ and Cu2+ occurred through chemisorption. Published by Elsevier B.V.

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