화학공학소재연구정보센터
Korean Journal of Chemical Engineering, Vol.24, No.2, 336-340, March, 2007
A study on the mechanism research on cellulose pyrolysis under catalysis of metallic salts
E-mail:
Experimental research on cellulose pyrolysis under catalysis of metallic salts was done on a thermobalance and a rapid pyrolysis system. Thermogravimetric analysis showed that K+ catalyzed the formation of active cellulose strongly and decreased the activation energy of cellulose pyrolysis. Experimental results indicated that K+ would promote the formation of char and restrain the production of bio-oil largely. Fe2+ had a similar catalysis effect on cellulose pyrolysis with K+. Fe2+ particularly catalyzed the formation of small molecule gaseous product while K+ the formation of char. The addition of K+ or Fe2+ resulted in a reduction of levoglucosan formation, and enhanced the production of hydroxyacetaldehyde and other small molecule components. Levoglucosan and hydroxyacetaldehyde were formed by the decomposition of active cellulose in a parallel mode. The secondary cracking of levoglucosan would also produce hydroxyacetaldehyde. A modified cellulose pyrolysis mechanism model was proposed based on the B-S model.
  1. Dobele G, Meier D, Faix O, Radtke S, Rossinskaja G, Telysheva G, J. Anal. Appl. Pyrolysis, 58-59, 453 (2001)
  2. Luo ZY, Wang SR, Liao YF, Zhou JS, Gu YL, Cen KF, Biomass Bioenerg., 26, 455 (2004)
  3. Yaman S, Energy Conv. Manag., 45, 651 (2004)
  4. Rodjeen SN, Mekasut LS, Kuchontara PP, Piumsomboon PP, Korean J. Chem. Eng., 23(2), 216 (2006)
  5. Sutton D, Kelleher B, Ross JRH, Fuel Process. Technol., 73, 155 (2001)
  6. Brown RC, Liu Q, Norton G, Biomass Bioenerg., 18, 499 (2000)
  7. Thy P, Lesher CE, Jenkins BM, Fuel, 79, 693 (2000)
  8. Dobele G, Rossinskaja G, Dizhbite T, Telysheva G, Meier D, Faix O, J. Anal. Appl. Pyrolysis, 74, 401 (2005)
  9. Richards GN, Zheng GC, J. Anal. Appl. Pyrolysis, 21, 133 (1991)
  10. Koval'chuk EP, Reshetnyak OV, Kozlovs'ka ZY, Blazejowski J, Gladyshevs'kyj RY, Obushak MD, Thermochim. Acta, 444(1), 1 (2006)
  11. Kim S, Eom Y, Korean J. Chem. Eng., 23(3), 409 (2006)
  12. Luo ZY, Wang SR, Liao YF, Cen KF, Ind. Eng. Chem. Res., 43(18), 5605 (2004)
  13. Antal MJ, Varhegyi G, Ind. Eng. Chem. Res., 34(3), 703 (1995)
  14. Li S, Hart JL, Banyasz J, Shafer K, Fuel, 80, 1809 (2001)
  15. Bradbury AGW, Sakai Y, Shafizadeh F, J. Appl. Polym. Sci., 23, 3271 (1979)
  16. Liao YF, Wang SR, Luo ZY, Zhou JS, Yu CJ, Cen KF, Journal of Zhejiang University (Engineering Science), 36, 172 (2002)
  17. Richards GN, J. Anal. Appl. Pyrolysis, 10, 251 (1987)
  18. Piskorz J, Radlein D, Scott DS, Czernik S, J. Anal. Appl. Pyrolysis, 16, 127 (1989)
  19. Liao YF, Wang SR, Ma XQ, Luo ZY, Cen KF, Chin. J. Chem. Eng., 13(2), 197 (2005)
  20. Shafizadeh F, Lai YZ, J. Org. Chem., 37, 278 (1972)