화학공학소재연구정보센터
Korean Journal of Chemical Engineering, Vol.20, No.4, 649-652, July, 2003
Synthesis and Catalytic Application of Ni-Supported Carbon Nanotubes for n-Heptane Cracking
Carbon nanotubes were synthesized by chemical vapor deposition and subsequently purified and oxidized by repeated treatment with nitric acid. After acid treatment the walls of carbon nanotubes became thinner and the surface area increased. The Ni-supported carbon nanotubes prepared by impregnation were applied to the cracking of n-heptane to show an excellent activity. This indicates that the carbon nanotubes can serve as a good catalyst support with high dispersion of metallic components. The optimum Ni loading turned out to be about 5.2 mmol/g. The cracking product was found to contain mainly small hydrocarbons; thus the Ni-supported carbon nanotubes may be applied as a potential catalyst to the cracking of heavy hydrocarbons.
  1. Ang LM, Hor TSA, Xu GQ, Tung CH, Zhao SP, Wang JLS, Carbon, 38, 363 (2000) 
  2. Calvert P, Nature, 399(6733), 210 (1999) 
  3. Dillon AC, Jones KM, Bekkedahl TA, Kiang CH, Bethune DS, Heben MJ, Nature, 386(6623), 377 (1997) 
  4. Fan SS, Chapline MG, Franklin NR, Tombler TW, Cassell AM, Dai HJ, Science, 283(5401), 512 (1999) 
  5. Iijima S, Nature, 354, 56 (1991) 
  6. Iijima S, Brabec C, Maiti A, Bernholc JJ, Chem. Phys., 104, 2089 (1996) 
  7. Fazle Kibria AKM, Mo YH, Yun MH, Kim MJ, Nahm KS, Korean J. Chem. Eng., 18(2), 208 (2001)
  8. Kroto HW, Heath JR, OBrien SC, Smalley RE, Nature, 318, 162 (1985) 
  9. Lee SW, Park DK, Lee JK, Ju JB, Sohn TW, Korean J. Chem. Eng., 18(3), 371 (2001)
  10. Tans SJ, Devoret MH, Dai HJ, Thess A, Smalley RE, Geerligs LJ, Dekker C, Nature, 386(6624), 474 (1997) 
  11. Thostenson ET, Ren Z, Chou TW, Compos. Sci. Technol., 61, 1899 (2001) 
  12. Treacy MM, Ebbesen TW, Gibson JM, Nature, 381(6584), 678 (1996) 
  13. Tsang SC, Harris PJF, Green MLH, Nature, 362, 520 (1993) 
  14. Zhang AM, Xie D, Bao S, Xu Q, Acta Chimica Sinica, 58(7), 876 (2000)