Browse > Article
http://dx.doi.org/10.14478/ace.2011.22.1.087

Analysis on Thermogravimetric Characteristics about Copyrolysis of Waste Wood Chip and Linear Low Density Polyethylene  

Lee, Young-Man (Department of Civil & Environmental Engineering, Graduate School, Hanyang University)
Bae, Wookeun (Department of Civil & Environmental Engineering, Graduate School, Hanyang University)
Park, Young-Kwon (Graduate School of Energy and Environmental System Engineering, University of Seoul)
Publication Information
Applied Chemistry for Engineering / v.22, no.1, 2011 , pp. 87-90 More about this Journal
Abstract
Copyrolysis of biomass/plastic mixture was carried out from room temperature to $600^{\circ}C$ with varing the heating rates of 10, 20, and $30^{\circ}C/min$ using a thermogravimetric analyzer. Waste wood chip (WWC) and linear low density polyethylene (LLDPE) were selected as a biomass and plastic, respectively. Individual pyrolysis temperature ranges were $430{\sim}550^{\circ}C$ and $230{\sim}600^{\circ}C$ for LLDPE and WWC, respectively. For the copyrolysis of WWC and LLDPE, the decomposition temperature range of WWC was not varied, while the decomposition temperature range of LLDEP was increased to a higher temperature. The results imply that the interaction might occur between LLDEP and WWC during copyolyis of LLDPE and WWC.
Keywords
waste wood chip; LLDPE; copyloysis; TGA; interaction;
Citations & Related Records

Times Cited By SCOPUS : 0
연도 인용수 순위
  • Reference
1 H. J. Park, J. I. Dong, J. K. Jeon, Y. K. Park, K. S. Yoo, S. S. Kim, J. S. Kim, and S. D. Kim, Chem. Eng. J., 143, 124 (2008).   DOI   ScienceOn
2 H. J. Park, Y. K. Park, J. I. Dong, J. S. Kim, J. K. Jeon, S. S. Kim, J. S. Kim, B. H. Song, J. H. Park, and K. J. Lee, Fuel Process. Technol., 90, 186 (2009).   DOI   ScienceOn
3 H. S. Heo, H. J. Park, Y. K. Park, C. Ryu, D. J. Suh, Y. W. Suh, J. H. Yim, and S. S. Kim, Bioresour. Tehcnol., 101, S91 (2010).   DOI   ScienceOn
4 H. J. Park, H. S. Heo, Y. K. Park, J. H. Yim, J. K. Jeon, J. Park, C. Ryu, and S. S. Kim, Bioresour. Technol., 101, S83 (2010).   DOI   ScienceOn
5 H. S. Heo, H. J. Park, J. H. Yim, J. M. Sohn, J. Park, S. S. Kim, C. Ryu, and Y. K. Park, Bioresour. Technol., 101, 3672 (2010).   DOI   ScienceOn
6 V. I. Sharypov, N. Marin, N. G. Beregovtsova, S. V. Baryshnikov, B. N. Kuznetzov, V. L. Cebolla, and J. V. Weber, J. Anal. Appl. Pyrolysis, 64, 15 (2002).   DOI   ScienceOn
7 A. Aboulkas, K. E. Harfi, and A. E. Bouadili, Energy Convers. Manage., 49, 3666 (2008).   DOI   ScienceOn
8 E. Jakab, G. Varhegyi, and O. Faix, J. Anal. Appl. Pyrolysis, 56, 273 (2000).   DOI   ScienceOn
9 A. Fraga, R. A. Ruseckaite, and A. Jimenez, Polymer Testing, 24, 526 (2005).   DOI   ScienceOn
10 C. Dong, Y. Yang, B. Jin, and M. Horio, Waste Manage., 27, 1557 (2007).   DOI   ScienceOn
11 S. S. Idris, N. A. Rahman, K. Ismail, A. B. Alias, Z. A. Rashid, and M. J. Aris, Bioresour. Technol., 101, 4584 (2010).   DOI   ScienceOn
12 L. Zhou, Y. Wang, Q. Huang, and J. Cai, Fuel Process. Technol., 87, 963 (2006).   DOI   ScienceOn