4.6 Article

Adsorption and coadsorption mechanisms of Hg2+ and methyl orange by branched polyethyleneimine modified magnetic straw

期刊

MATERIALS LETTERS
卷 229, 期 -, 页码 160-163

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.matlet.2018.07.015

关键词

Magnetic materials; Adsorption; Heavy metal ions; Dyes; XPS

资金

  1. National Natural Science Foundation of China [51672236]
  2. Top-notch Academic Programs Project of Jiangsu Higher Education Institutions [PPZY2015A025]
  3. Six Top Talents program of Jiangsu Province [2015-XCL-034]
  4. Ministry of Housing and Urban-Rural Development of the People's Republic of China [2014-K7-007]

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Adsorption and coadsorption of H2+ and methyl orange (MO) were accomplished using branched polyethyleneimine modified magnetic straw. The adsorption equilibrium was achieved within 40 mins and the maximal adsorption amounts of Hg2+ and MO reached 320.4 and 510.2 mg/g, respectively. Thermodynamic parameters, such as Delta H(0)and Delta S-0 were found as -3.728 kJ/mol and 10.593 J/mol K for the adsorption of Hg2+, while Delta H-0 and Delta S(0 )were found to be -2.119 kJ/mol and 16.123 J/mol K for the adsorption of MO. It was suggested that the adsorptions of Hg2+ and MO were exothermic processes with further increase in the degree of freedom. The respective adsorption mechanism of H2+ and MO involved complexation and electrostatic interactions. In the binary system of H2+ and MO, the adsorption capacity of MO was not affected by the presence of H2+, while the adsorption amount of H2+ significantly increased in the presence of MO through the mechanism of bridge enhancement. Specifically, when the initial concentration of Hg2+ was 0.005 mol/L, the adsorption amounts of Hg2+ were 510.2 and 1858.3 mg/g, respectively in the mono-component and binary systems. (C) 2018 Elsevier B.V. All rights reserved.

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