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Yanhui Yi

Associate Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates


Gender:Male
Alma Mater:Dalian University of Technology
Degree:Doctoral Degree
School/Department:School of Chemical Engineering, Dalian University of Technology
Discipline:Industrial Catalysis. Physical Chemistry (including Chemical Physics). Chemical Engineering
Business Address:109 Room, Chemical Engineering Building B,West Campus, Dalian University of Technology, Dalian, Liaoing, Chian
Contact Information:86-15942876259,yiyanhui@dlut.edu.cn
E-Mail:yiyanhui@dlut.edu.cn
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惰性气体对氢氧等离子体直接合成过氧化氢的影响

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Indexed by:期刊论文

Date of Publication:2022-06-30

Journal:化工学报

Issue:11

Page Number:3513-3518

ISSN No.:0438-1157

Abstract:In double dielectric barrier discharge aqueous electrodes reactor(DDBD), hydrogen peroxide was prepared in a mixture of hydrogen and oxygen by using DBD discharge with inert gas(Ar, He and N2) as additive gas. The influence of different inert gases on the breakdown voltage and energy efficiency of H2O2 synthesis was studied. The results showed that breakdown voltage, conversion of O2, selectivity of H2O2, yield of H2O2 and energy efficiency were obviously affected by different inert gases. The breakdown voltage could be reduced with He and Ar as additive gas, however, it became higher when N2 was the additive gas. On the other hand, energy efficiency of H2O2 synthesis was reduced dramatically with N2 as the additive gas, and little changed with He as the additive gas. However, energy efficiency of H2O2 synthesis increased markedly with Ar as the additive gas. When Ar flow rate was 56.6 ml&middotmin-1, breakdown voltage could be reduced from 11.8 kV to 10.2 kV; energy efficiency of H2O2 synthesis increased by about 51%, from 3.45 g&middot(kW&middoth)-1 to 5.20 g&middot(kW&middoth)-1(100% H2O2). Therefore, the addition of Ar could not only reduce breakdown voltage, but also increase energy efficiency of H2O2 synthesis. The optical emission spectra revealed that Penning ionization effects of metastable state Ar species(696.5, 794.8, 811.5 nm)existing in H2-O2-Ar discharge system might be responsible for the decrease of breakdown voltage. From the waveform of discharge current, the addition of Ar increased electron density, which obviously facilitated the increase of O2 conversion and energy efficiency of H2O2 synthesis at the same power. © All Rights Reserved.

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