Issue
Korean Journal of Chemical Engineering,
Vol.24, No.6, 1047-1052, 2007
Adsorption behaviors of the aminated chitosan adsorbent
Using inverse suspension technology, a novel aminated chitosan adsorbent with higher adsorption ability for metal cations and metal anions was prepared. Through cross-linking amination reaction, the content of amidocyanogen of aminated chitosan adsorbent was enhanced four times than that of chitosan cross-linked adsorbent. As can be seen from the results, the adsorption ability of the novel aminated chitosan adsorbent for (Nicit). and Cr(VI) was enhanced remarkably. When the initial concentration of metallic ion was 1,000 mg/L, the adsorption capacity of the novel aminated chitosan adsorbent for nickel citrate and Cr(VI) was up to 30.2 mg/g and 28.7 mg/g, respectively. And the adsorption capacity of the novel aminated chitosan adsorbent for Ni2+ was still higher. So the new aminated chitosan adsorbent offers not only a higher uptake for metal cations but also a better adsorption capacity for metal anions.
[References]
  1. Wei H, Jiangsu Science and Technology of Environment, 14(9), 18, 2001
  2. Cnanasambandam R, Proctor A, Journal of the American Oil Chemist’ Society, 74(6), 685, 1997
  3. Hacker T, Roller, Schmauder R, Ger. Offen. DE 19903862, Aug 10, 8, 2000
  4. Xueliang L, Ying L, Jinfang W, Techniques and Equipment for Environmental Pollution Control, 1(4), 57, 2000
  5. Wu Z, Cong Y, Zhou M, Ye Q, Tan T, Korean J. Chem. Eng., 19(5), 866, 2002
  6. Pareek V, Srivastava VK, Adesina AA, Korean J. Chem. Eng., 20(2), 328, 2003
  7. Park SW, Kumazawa H, Sohn IJ, Korean J. Chem. Eng., 19(1), 75, 2002
  8. Volesky B, Hydrometallurgy, 59, 203, 2001
  9. Kanazawa N, Urano K, Kokado N, Urushigawa Y, J. Colloid Interface Sci., 238(1), 196, 2001
  10. Su HJ, Wang LJ, Tan TW, Chin. J. Chem. Eng., 10(6), 650, 2002
  11. Haijia S, Zhixing W, Tianwei T, Biotechnol. Lett., 25(12), 949, 2003
  12. Haijia S, Zhixing W, Tianwei T, J. Chem. Technol. Biotechnol., 4(80), 439, 2005
  13. Haijia S, Qiang L, Tianwei T, Process Biochem., 41, 1422, 2006
  14. Haitao L, Mancai X, Chinese Journal of Reactive Polymers, 10(1), 84, 2001
  15. Haijia S, Zhixing W, Tianwei T, Modern Chemical Industry, 23(3), 34, 2003
  16. Yongjian W, BiShu, Chinese Journal of Reactive Polymers, 10(2), 134, 2001
  17. Guo T, Xia Y, Hao,G, Chinese Chemical Letters, 15(11), 1339, 2004
  18. Fu GQ, Shi KY, ZhiYuan, Et AL, Chinese Chemical Letters, 15(3), 347, 2004
  19. Haijia S, Lijuan W, Tianwei T, Techniques and Equipment for Environmental Pollution Control, 3(7), 5, 2002
  20. Findon A, Mckay G, Environ. Sci. Health, 28, 173, 1993
  21. Limin W, Zhenhong L, Anhui Chemical Industry, 31(4), 8, 2005
  22. Yaozong P, Yuhua H, Shi P, Dyeing and Finishing, 20(10), 5, 1994
  23. State Environmental Protectional Administration, Analysis of water and wastewater, China Environment and Science Press, Beijing, GB/T 15555·10-1995, 1, 1 (1996 in Chinese)
  24. State Environmental Protectional Administration, Analysis of water and wastewater, China Environment and Science Press, Beijing, 156-161, 1989
  25. Sheng C, Research on adsorption of anion azo dyes by aminated chitosan microspheres, Master, Fujian Normal University, 0401, 2003