Chinese Journal of Chemical Engineering ›› 2012, Vol. 20 ›› Issue (5): 831-836.

• 分离科学与工程 • 上一篇    下一篇

聚季铵盐辅助络合-超滤提取钨(VI)

曾坚贤; 孙霞辉; 郑立锋; 贺勤程; 李书   

  1. College of Chemistry and Chemical Engineering, Hunan University of Science and Technology, Xiangtan 411201, China
  • 收稿日期:2011-03-10 修回日期:2011-10-16 出版日期:2012-10-28 发布日期:2011-10-16

Recovery of tungsten (VI) from aqueous solutions by complexation-ultrafiltration process with the help of polyquaternium

ZENG Jianxian; SUN Xiahui; ZHENG Lifeng; HE Qincheng; LI Shu   

  1. College of Chemistry and Chemical Engineering, Hunan University of Science and Technology, Xiangtan 411201, China
  • Received:2011-03-10 Revised:2011-10-16 Online:2012-10-28 Published:2011-10-16

摘要: Polyquaternium-6 (PQ6) as the water-soluble polymer was used for complexing the anion forms of tungsten (VI) before ultrafiltration. Tungsten (VI)-PQ6 complex was retained by polysulfone hollow fiber ultrafiltration membrane in the complexation-ultrafiltration process. Effects of various operating parameters such as polymer metal ratio(PMR), pH and chloride ion concentration on permeate flux (J) and tungsten rejection coefficient (R) were investigated. The integration of four experiments including concentration, decomplexation, diafiltration and reuse of regenerated polymer was carried out. In the process of concentration, J declines slowly and R is about 1 at PMR of 3 and pH of 7. Tungsten concentration in the retentate increases linearly with volume concentration factor. Tungsten is concentrated efficiently with the membrane. The concentrated retentate was used further for the decom-plexation. It takes about 6 min to reach the decomplexation equilibrium at chloride ion concentration of 50 mg•L?1. The decomplexation percentage of tungsten (VI)-PQ6 complex reaches 56.1%. In the diafiltration process, tungsten (VI) can be extracted effectively by using 50 mg•L?1 chloride ion solution, and the purification of the regenerated PQ6 is acceptably satisfactory. The regenerated PQ6 was used to bind tungsten (VI) at various pH values. The binding capacity of the regenerated PQ6 is close to that of fresh PQ6, and the recovery percentage of binding ca-pacity is higher than 90%.

关键词: tungsten (VI), polyquaternium-6, complexation, ultrafiltration

Abstract: Polyquaternium-6 (PQ6) as the water-soluble polymer was used for complexing the anion forms of tungsten (VI) before ultrafiltration. Tungsten (VI)-PQ6 complex was retained by polysulfone hollow fiber ultrafiltration membrane in the complexation-ultrafiltration process. Effects of various operating parameters such as polymer metal ratio(PMR), pH and chloride ion concentration on permeate flux (J) and tungsten rejection coefficient (R) were investigated. The integration of four experiments including concentration, decomplexation, diafiltration and reuse of regenerated polymer was carried out. In the process of concentration, J declines slowly and R is about 1 at PMR of 3 and pH of 7. Tungsten concentration in the retentate increases linearly with volume concentration factor. Tungsten is concentrated efficiently with the membrane. The concentrated retentate was used further for the decom-plexation. It takes about 6 min to reach the decomplexation equilibrium at chloride ion concentration of 50 mg•L?1. The decomplexation percentage of tungsten (VI)-PQ6 complex reaches 56.1%. In the diafiltration process, tungsten (VI) can be extracted effectively by using 50 mg•L?1 chloride ion solution, and the purification of the regenerated PQ6 is acceptably satisfactory. The regenerated PQ6 was used to bind tungsten (VI) at various pH values. The binding capacity of the regenerated PQ6 is close to that of fresh PQ6, and the recovery percentage of binding ca-pacity is higher than 90%.

Key words: tungsten (VI), polyquaternium-6, complexation, ultrafiltration