Search / Korean Journal of Chemical Engineering
Korean Chemical Engineering Research,
Vol.55, No.6, 854-860, 2017
Polysulfone에 Di-(2-ethylhexyl)-phosphoric acid와 Carbon Nanotubes를 고정화한 PSf/D2EHPA/CNTs 비드의 제조와 Sr(II)의 제거 특성
Preparation of PSf/D2EHPA/CNTs Beads Immobilized with Carbon Nanotubes and Di-(2-ethylhexyl)-phosphoric acid on Polysulfone and Removal Characteristics of Sr(II)
본 연구에서는 di-(2-ethylhexyl)-phosphoric acid (D2EHPA)와 carbon nanotubes (CNTs)를 polysulfone (PSf)에 고정화시켜 PSf/D2EHPA/CNTs 비드를 제조하였으며, 제조한 비드에 의한 Sr(II)의 제거특성을 살펴보았다. Scanning electron microscopy (SEM), Fourier transform infrared spectrometer (FTIR) 및 Thermo gravimetric analysis (TGA) 분석을 통하여 PSf/D2EHPA/CNTs 비드의 형태적 특성들을 조사하였다. PSf/D2EHPA/CNTs 비드에 의한 Sr(II)의 제거는 운전시간 60 min 정도에서 평형에 도달하였으며, 속도 실험결과는 유사 2차 속도식에 잘 부합하는 것으로 나타났다. 또한 PSf/D2EHPA/CNTs 비드에 의한 Sr(II)의 제거에서 Langmuir 식으로부터 구한 최대 제거량은 4.75 mg/g이었다. PSf/D2EHPA/CNTs 비드에 의한 Sr(II)의 제거효율은 추출제 D2EHPA 만을 사용하는 경우보다 CNTs를 첨가함으로써 Sr(II)의 제거량이 2.5배 정도 향상되는 결과를 보였다.
PSf/D2EHPA/CNTs beads were prepared by immobilizing extractant di-(2-ethylhexyl)- phosphoric acid (D2EHPA) and adsorbent carbon nanotubes (CNTs) on polysulfone (PSf), and the adsorption characteristics of Sr(II) on the beads were studied. The morphological characteristics of the prepared PSf/D2EHPA/CNTs beads were observed by scanning electron microscopy (SEM), thermo gravimetric analysis (TGA), and Fourier transform infrared spectrometer (FTIR). The equilibrium time for the removal of Sr(II) by PSf/D2EHPA/CNTs beads was 60 min. The experimental kinetic data followed pseudo-second-order model more than pseudo-first-order kinetics model. The maximum removal capacity of Sr(II) obtained from Langmuir isotherm was 4.75 mg/g. The removal efficiencies of Sr (II) by PSf/D2EHPA/ CNTs beads were improved 2.5 times by adding the adsorbent CNTs more than by using only the extractant D2EHPA.
[References]
  1. Ochiai S, Nagao S, Yamamoto M, Itono T, Kashiwaya K, Fukui K, Iida H, Appl. Radiat. Isot., 81, 366, 2013
  2. Ahmadpour A, Zabihi M, Tahmasbi M, Bastami TR, J. Hazard. Mater., 182(1-3), 552, 2010
  3. Hilton J, NoLan L, Jarvis KE, Geo. Cosmo. Acta, 61(6), 1115, 1997
  4. Kam SK, Lee DW, Moon MJ, Lee MG, J. Environ. Sci. Int., 12(10), 1061, 2003
  5. Janin A, Blais JF, Mercier G, Drogui P, J. Hazard. Mater., 169(1-3), 1099, 2009
  6. Arslan G, Tor A, Cengeloglu Y, Ersoz M, J. Hazard. Mater., 165(1-3), 729, 2009
  7. Ochoa NA, Illanes C, Marchese J, Basualto C, Valenzuela F, Sep. Purif. Technol., 52(1), 39, 2006
  8. Sitko R, Zawisza B, Malicka E, Trends Analytical Chem., 37, 22, 2012
  9. Peng XJ, Li YH, Luan ZK, Di ZC, Wang HY, Tian BH, Jia ZP, Chem. Phys. Lett., 376(1-2), 154, 2003
  10. Biesaga M, Pyrzynska K, J. Sep. Sci., 29, 2241, 2006
  11. Li YH, Di Z, Ding J, Wu D, Luan Z, Zhu Y, Water Res., 39, 605, 2005
  12. Chen CL, Wang XK, Ind. Eng. Chem. Res., 45(26), 9144, 2006
  13. Wu CH, J. Colloid Interface Sci., 311(2), 338, 2007
  14. Li YH, Wang S, Luan Z, Ding J, Xu C, Wu D, Carbon, 41, 1057, 2003
  15. Vellaichamy S, Palanivelu K, J. Chem., 49(7), 882, 2010
  16. Ozcan S, Tor A, Aydin ME, Desalination, 259(1-3), 179, 2010
  17. Tofighy MA, Mohammadi T, Desalination, 258(1-3), 182, 2010
  18. Tae G, Kornfield JA, Hubbell JA, Biomaterials, 26(25), 5259, 2005
  19. Kebiche-Senhadji O, Mansouri L, Tingry S, Seta P, Benamor M, J. Membr. Sci., 310(1-2), 438, 2008
  20. Yadav KK, Singh DK, Anitha M, Varshney L, Singh H, Sep. Purif. Technol., 118, 350, 2013
  21. Ma YX, Li YF, Yang LQ, Zhao GH, Polym. Compos., 34(2), 204, 2013
  22. Cheon KH, Choi JH, Shin SW, Choi SJ, J. Environ. Sci. Int., 23(9), 1609, 2014
  23. Belkhouche NE, Didi MA, Vellemin D, Solvent Extr. Ion Exch., 23(5), 677, 2005
  24. Rahman ROA, Ibrahim HA, Hanafy M, Monem NMA, Chem. Eng. J., 157(1), 100, 2010
  25. Fujikawa V, Fukui M, Radiochim. Acta, 76, 153, 1997
  26. Li YH, Di ZC, Luan ZK, Ding J, Zuo H, Wu XQ, Xu CL, Wu DH, J. Environ. Sci., 16(2), 208, 2004
  27. Lee MG, Kam SK, Suh KH, J. Environ. Sci. Int., 21(5), 623, 2012
  28. Lagergren S, Kunglia Svenska Vetenskapsa-kademiens Handlingar, 24(4), 1-39(1898).
  29. Ho YS, McKay G, Can. J. Chem. Eng., 76(4), 822, 1998
  30. Vipin AK, Ling S, Fugetsu B, Carbohydr. Polym., 111(13), 477, 2014
  31. Langmuir I, J. Am. Chem. Soc., 40(9), 1361, 1918
  32. Freundlich HMF, J. Phys. Chem., 57, 385, 1906
  33. Lee CH, Kam SK, Suh JH, Lee MG, IEEC 2017, Submitted(2017).