Abstract For efficient conversion of elemental mercury (Hg0) in flue gas, we coupled the non-thermal plasma (NTP) and catalytic oxidation, and prepared MnCu/Ti catalytic through dielectric barrier discharge (DBD) reactor.… Click to show full abstract
Abstract For efficient conversion of elemental mercury (Hg0) in flue gas, we coupled the non-thermal plasma (NTP) and catalytic oxidation, and prepared MnCu/Ti catalytic through dielectric barrier discharge (DBD) reactor. The experimental system of DBD coupling MnCu/Ti catalytic oxidation was established. The catalytic oxidation performance and the influences of energy density (SED), oxygen content, H2O content, and the concentrations of NO and SO2 on the conversion efficiency of Hg0 were clarified. Based on the experimental results and DFT simulation results, the mechanism of the catalytic oxidation was elucidated. Our results showed that after coupling with MnCu/Ti, the conversion efficiency of Hg0 in DBD reactor under mild conditions increased from 42.9% to 86.7%, and the energy consumption decreased from 0.77 mg Hg0/kWh to 1.56 mg Hg0/kWh. The proposed method has the advantages of high efficiency, intensive and no secondary pollution, hence it has good application potential in Hg0 conversion and removal from flue gas.
               
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