TY - JOUR
T1 - Charcoal-supported catalyst with enhanced thermal-stability for the catalytic combustion of volatile organic compounds
AU - Liao, Yong Tao
AU - Jia, Lu
AU - Chen, Rui Jie
AU - Gu, Ou Yun
AU - Sakurai, Makoto
AU - Kameyama, Hideo
AU - Zhou, Lu
AU - Ma, Hua
AU - Guo, Yu
PY - 2016/7/25
Y1 - 2016/7/25
N2 -
In this study, charcoal powder originated from thinned wood was selected as the support material, and transition metals were used as the catalytic active phases to prepare a series of the charcoal-supported catalysts for the catalytic oxidation of volatile organic compounds. We found that the waste wood derived charcoal with poor thermal-stability could be converted into highly active and durable VOCs elimination catalyst in one-step. The addition of transition metal followed by a thermal-treatment in He (at 1000-1400 °C) significantly improved the thermal-stability of charcoal. Co gave the best promotion effect among the tested metals (Co, Ni, and Fe). The transition metals could not only facilitate the transformation of amorphous carbon structure into graphitic structure during the preparation of the support but also serve as an active phase in the VOCs oxidation reaction. When a charcoal-supported Cu-Co bimetallic catalyst was subjected to the toluene catalytic oxidation, the complete oxidation of toluene was achieved at 237 °C, which was far lower than the thermal resistance temperature of the catalyst (350 °C). Especially, in the ethyl acetate catalytic oxidation, the Cu-Co bimetallic catalyst gave an excellent activity that is slightly superior to a Pt/Al
2
O
3
catalyst.
AB -
In this study, charcoal powder originated from thinned wood was selected as the support material, and transition metals were used as the catalytic active phases to prepare a series of the charcoal-supported catalysts for the catalytic oxidation of volatile organic compounds. We found that the waste wood derived charcoal with poor thermal-stability could be converted into highly active and durable VOCs elimination catalyst in one-step. The addition of transition metal followed by a thermal-treatment in He (at 1000-1400 °C) significantly improved the thermal-stability of charcoal. Co gave the best promotion effect among the tested metals (Co, Ni, and Fe). The transition metals could not only facilitate the transformation of amorphous carbon structure into graphitic structure during the preparation of the support but also serve as an active phase in the VOCs oxidation reaction. When a charcoal-supported Cu-Co bimetallic catalyst was subjected to the toluene catalytic oxidation, the complete oxidation of toluene was achieved at 237 °C, which was far lower than the thermal resistance temperature of the catalyst (350 °C). Especially, in the ethyl acetate catalytic oxidation, the Cu-Co bimetallic catalyst gave an excellent activity that is slightly superior to a Pt/Al
2
O
3
catalyst.
KW - Catalytic combustion
KW - Charcoal
KW - Thermal-stability
KW - Transition metal addition
KW - Volatile organic compounds
UR - http://www.scopus.com/inward/record.url?scp=84964626364&partnerID=8YFLogxK
U2 - 10.1016/j.apcata.2016.04.028
DO - 10.1016/j.apcata.2016.04.028
M3 - Article
AN - SCOPUS:84964626364
SN - 0926-860X
VL - 522
SP - 32
EP - 39
JO - Applied Catalysis A: General
JF - Applied Catalysis A: General
ER -