TY - JOUR
T1 - Abatement of toluene from gas streams via ferro-electric packed bed dielectric barrier discharge plasma
AU - Liang, Wenjun
AU - Li, Jian
AU - Li, Jie
AU - Jin, Yuquan
PY - 2009/10/30
Y1 - 2009/10/30
N2 - Destruction of gaseous toluene via ferro-electric packed bed dielectric barrier discharge plasma in a coaxial cylindrical reactor was carried out at atmospheric pressure and room temperature. The difference among three kinds of reactors was compared in terms of specific energy density (SED), energy yield (EY), toluene decomposition. In order to optimize the geometry of the reactor, the removal efficiency of toluene was compared for various inner electrode diameters. In addition, qualitative analysis on by-products and particular discussion on toluene abatement mechanisms were also presented. It has been found that ferro-electric packed bed DBD reactor could effectively decompose toluene. Toluene removal efficiency enhanced with increasing SED. With respect to toluene conversion, 1.62 mm electrode appeared to be superior to 1.06 mm electrodes. BaTiO3 reactor had the highest toluene removal efficiency among the reactors. For NaNO2 reactor, the highest EY could reach 17.0 mg/kWh to a certain extent.
AB - Destruction of gaseous toluene via ferro-electric packed bed dielectric barrier discharge plasma in a coaxial cylindrical reactor was carried out at atmospheric pressure and room temperature. The difference among three kinds of reactors was compared in terms of specific energy density (SED), energy yield (EY), toluene decomposition. In order to optimize the geometry of the reactor, the removal efficiency of toluene was compared for various inner electrode diameters. In addition, qualitative analysis on by-products and particular discussion on toluene abatement mechanisms were also presented. It has been found that ferro-electric packed bed DBD reactor could effectively decompose toluene. Toluene removal efficiency enhanced with increasing SED. With respect to toluene conversion, 1.62 mm electrode appeared to be superior to 1.06 mm electrodes. BaTiO3 reactor had the highest toluene removal efficiency among the reactors. For NaNO2 reactor, the highest EY could reach 17.0 mg/kWh to a certain extent.
KW - Dielectric barrier discharge plasma
KW - Energy yield
KW - Ferro-electric packed bed
KW - Ozone
KW - Specific energy density
KW - Toluene
UR - http://www.scopus.com/inward/record.url?scp=69249118282&partnerID=8YFLogxK
U2 - 10.1016/j.jhazmat.2009.05.019
DO - 10.1016/j.jhazmat.2009.05.019
M3 - Article
C2 - 19515490
AN - SCOPUS:69249118282
SN - 0304-3894
VL - 170
SP - 633
EP - 638
JO - Journal of Hazardous Materials
JF - Journal of Hazardous Materials
IS - 2-3
ER -