Title :
Reactive Blue Degradation in Aqueous Medium by Fe-Doping TiO2 Catalytic Nonthermal Plasma
Author :
Sun, Yu ; Liu, Yanan ; Li, Rui ; Li, Xiang ; Chen, Hong ; Xue, Gang ; Ognier, Stephanie
Author_Institution :
School of Environmental Science and Engineering, Donghua University, Shanghai, China
Abstract :
In this paper, Fe-doping TiO2 was introduced into a dielectric barrier discharge (DBD) process for catalytic nonthermal plasma (NTP) degradation of a mode organic pollutant reactive blue (KN-R). Plasma was generated in a DBD reactor; Fe-doping TiO2 was prepared by the sol-gel process. The catalytic-NTP oxidation reactions were studied under various conditions including the examination of the effects of initial pH, KN-R concentrations, and catalyst dose. Typical results indicated the synergy between plasma excitation of KN-R followed by the catalytic action of Fe-doping TiO2, which not only improved the conversion but also increased the mineralization efficiency. The determination of hydrogen peroxide and nitrate ions, and ultraviolet–visible absorption and Fourier transform infrared spectra analyses revealed that catalysts in a plasma system strengthen the mineralization of KN-R.
Keywords :
Degradation; Hydrogen; Ions; Iron; Mineralization; Oxidation; Plasmas; Catalytic nonthermal plasma (NTP); Fe-doping TiO₂; Fe-doping TiO2; dielectric barrier discharge (DBD) degradation; mineralization; reactive blue; reactive blue.;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2015.2460237