Sorption behavior and mechanism of indium(III) onto amino methylene phosphonic acid resin

Xiong Chun-hua, Lu Bi-wen, Wang Yong-jiang

Journal of Wuhan University of Technology Materials Science Edition ›› 2002, Vol. 17 ›› Issue (2) : 47-50.

Journal of Wuhan University of Technology Materials Science Edition ›› 2002, Vol. 17 ›› Issue (2) : 47-50. DOI: 10.1007/BF02832621
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Sorption behavior and mechanism of indium(III) onto amino methylene phosphonic acid resin

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Abstract

The sorption behavior of amino methylene phosphonic acid resin (APAR) for In(III) was investigated. Experimental results show that In(III) adsorbed on APAR can be eluted with 2mol·L−1 HCl. The apparent rate constant is k298=1.50×10−5s−1. The sorption behavior of APAR for In(III) obeys the Freundlich isotherm. The thermodynamic parameters of sorption, enthalpy change ΔH, free energy change ΔG and entropy change ΔS of sorption (APAR) for In(III) are 24.1kJ·mol−1, −35.1kJ·mol−1 and 200J·mol−1·K−1, respectively. The coordination molar ratio of the functional group of APAR to In(III) is 2∶1. The sorption mechanism of APAR for In(III) was examined by IR spectrometry.

Keywords

Amino methylene phosphonic acid resin / indium / sorption mechanism

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Xiong Chun-hua, Lu Bi-wen, Wang Yong-jiang. Sorption behavior and mechanism of indium(III) onto amino methylene phosphonic acid resin. Journal of Wuhan University of Technology Materials Science Edition, 2002, 17(2): 47‒50 https://doi.org/10.1007/BF02832621

References

[1]
Yiyong Chen, Chao Liang, Yan Chao. Synthesis and Characterization of Polyacrylonitrile-thiosemicarbazide Resin and Its Sorption Behavior for Rh(III) Ru(IV) Pd(II) and Ir(IV) ions. Reactive Polymers, 1998, 36: 151-151.
[2]
Yiyong Chen, Guoping Cai, Naidong Wang. Synthesis of N-methyl-z-thioimidazole Resin and Its Complex Behavior for Noble Metal Ions. Macromol Sci-chem., 1990, 27(9–11): 1321-1321.
[3]
Chunhua Xiong, Xiangmei Wu. Studies on the Adsorption Behavior and Mechanism of Macroporous Phosphonic Acid Resin for Cadmium. Acta Scientiae Circumstantiae, 2000, 20: 589-589.
[4]
Chunhua Xiong, Zhengnai Su, Yingyong Cheng. Studies on the Adsorption of Macroporous Phosphonic Acid Resin for Lanthanum. Ion Exchange and Adsorption, 1997, 13: 1-1.
[5]
Chunhua Xiong, Zhengnai Su. Adsorption Behavior and Machanism of 4-amino-1,2,4-triazole Resin for Molybdenum(VI). Nonferrous Metals, 2000, 52(2): 61-61.
[6]
Chunhua Xiong, Zhengnai Su. Adsorption Behavior and Mechanism of 4-amino Pyridine Resin for Chromium(VI). Nonferrous Metals, 2000, 52(3): 66-66.
[7]
Chunhua Xiong, Jianjun Mo. Proceedings of the Third International Conference on Hydrometallurgy, 1998, Beijing: International Academic Publish.
[8]
Brykina G D, Marchak T V, Krysina L S, Belyavskaya T A. Zhi. Anal. Khim., 1980, 35(12): 2294-2294.
[9]
Zhengli Lu. Adorption Basis and Design, 1983, Beijing: Chemical Industry Press.
[10]
Chunhua Xiong, Jianjun Mo, Feng Ling. Adsorption Behavior and Mechanism of Uranyl Ion onto Macroporous Phosphonic Acid Resin. Uranium Mining and Metallurgy, 1994, 13(4): 264-264.

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