SCI和EI收录∣中国化工学会会刊

Chinese Journal of Chemical Engineering ›› 2012, Vol. 20 ›› Issue (5): 823-830.

• •    下一篇

Adsorption and Desorption of Praseodymium (Ⅲ) from Aqueous Solution Using D72 Resin

熊春华, 朱京妃, 沈忱, 陈青   

  1. Department of Applied Chemistry, Zhejiang Gongshang University, Hangzhou 310012, China
  • 收稿日期:2011-02-18 修回日期:2011-09-05 出版日期:2012-10-28 发布日期:2012-11-06
  • 通讯作者: XIONG Chunhua,E-mail:xiongch@163.com
  • 基金资助:
    Supported by the National Key Technologies Research and Development Program of China (2008BAD94B09);the Key Laboratory of Advanced Textile Materials and Manufacturing Technology (Zhejiang Sci-Tech University);the Ministry of Education(2011007);the Zhejiang Provincial Scientific Research Project (Y201223624)

Adsorption and Desorption of Praseodymium (Ⅲ) from Aqueous Solution Using D72 Resin

XIONG Chunhua, ZHU Jingfei, SHEN Chen, CHEN Qing   

  1. Department of Applied Chemistry, Zhejiang Gongshang University, Hangzhou 310012, China
  • Received:2011-02-18 Revised:2011-09-05 Online:2012-10-28 Published:2012-11-06
  • Supported by:
    Supported by the National Key Technologies Research and Development Program of China (2008BAD94B09);the Key Laboratory of Advanced Textile Materials and Manufacturing Technology (Zhejiang Sci-Tech University);the Ministry of Education(2011007);the Zhejiang Provincial Scientific Research Project (Y201223624)

摘要: In this work, the feasibility of using a macroporous strong acid ion exchange resin (D72) as an adsorbent for praseodymium (Ⅲ) was examined. The adsorption behavior and mechanism were investigated with various chemical methods and IR spectrometry. The results showed that the loading of Pr (Ⅲ) ions was strongly dependent on pH of the medium and the optimal adsorption condition is in HAc-NaAc medium with pH value of 3.0. Adsorption kinetics of Pr (Ⅲ) ions onto D72 resin could be best described by pseudo-second-order model. The maximum adsorption capacity of D72 for Pr (Ⅲ) was evaluated to be 294 mg·g-1 for the Langmuir model at 298K. The apparent activation energy, Ea, was 14.71 kJ·mol-1. The calculated data of thermodynamic parameters, ΔSΘ value of 100 J·mol-1·K-1 and ΔHΘ value of 8.89 kJ·mol-1, indicate the endothermic nature of the adsorption process, while a decrease of ΔGΘ with increasing temperature indicates the spontaneous nature of the adsorption process. Finally, Pr (Ⅲ) can be eluted by using 1.00 mol·L-1 HCl-0.50 mol·L-1 NaCl solution and the D72 resin can be regenerated and reused. Thomas model was successfully applied to experimental data to predict the breakthrough curves and to determine the characteristic parameters of the column useful for process design. The characterization before and after adsorption of Pr (Ⅲ) ions on D72 resin was conformed by IR.

关键词: D72 resin, ion exchange, praseodymium (Ⅲ), adsorption, kinetics, thermodynamics

Abstract: In this work, the feasibility of using a macroporous strong acid ion exchange resin (D72) as an adsorbent for praseodymium (Ⅲ) was examined. The adsorption behavior and mechanism were investigated with various chemical methods and IR spectrometry. The results showed that the loading of Pr (Ⅲ) ions was strongly dependent on pH of the medium and the optimal adsorption condition is in HAc-NaAc medium with pH value of 3.0. Adsorption kinetics of Pr (Ⅲ) ions onto D72 resin could be best described by pseudo-second-order model. The maximum adsorption capacity of D72 for Pr (Ⅲ) was evaluated to be 294 mg·g-1 for the Langmuir model at 298K. The apparent activation energy, Ea, was 14.71 kJ·mol-1. The calculated data of thermodynamic parameters, ΔSΘ value of 100 J·mol-1·K-1 and ΔHΘ value of 8.89 kJ·mol-1, indicate the endothermic nature of the adsorption process, while a decrease of ΔGΘ with increasing temperature indicates the spontaneous nature of the adsorption process. Finally, Pr (Ⅲ) can be eluted by using 1.00 mol·L-1 HCl-0.50 mol·L-1 NaCl solution and the D72 resin can be regenerated and reused. Thomas model was successfully applied to experimental data to predict the breakthrough curves and to determine the characteristic parameters of the column useful for process design. The characterization before and after adsorption of Pr (Ⅲ) ions on D72 resin was conformed by IR.

Key words: D72 resin, ion exchange, praseodymium (Ⅲ), adsorption, kinetics, thermodynamics