张家良

个人信息Personal Information

教授

硕士生导师

任职 : 三束实验室常务副主任

性别:男

毕业院校:大连理工大学

学位:博士

所在单位:物理学院

学科:等离子体物理. 物理化学

办公地点:新三束实验室4号楼406

联系方式:办公电话 84709795-18

电子邮箱:zhangjl@dlut.edu.cn

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非平衡等离子体放电模式及反应器结构对氨气分解制氢的影响

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发表时间:2022-10-09

发表刊物:物理化学学报

卷号:30

期号:4

页面范围:738-744

ISSN号:1000-6818

摘要:At ambient pressure, the effect of plasma discharge mode and reactor structure on ammonia decomposition to hydrogen was investigated. Dielectric barrier discharge (DBD) and alternating current (AC) arc discharge were produced upon adjusting the structure of the plasma reactor. By studying the discharge images, the voltage-current waveforms and the optical emission spectra in two discharge modes, we found that the AC arc discharge was a spatially partially stronger discharge compared with DBD. The AC arc discharge had a higher power efficiency and higher electron density than the dielectric barrier discharge. The ammonia molecules were mainly transformed into NH3 in an electronic excited state, and the N-H bond ruptured upon collision with a high-energy electron in DBD. However, electrons with a high average electron energy upon AC arc discharge can rupture the N-H bond directly to form highly active NH2 and NH species, which can enhance the ammonia decomposition reaction. Results show that AC arc discharge had better performance toward ammonia decomposition than dielectric barrier discharge. The ability of different reactor structures to decompose ammonia under AC arc discharge increased in the following order: tube-tube>tube-flat>point-flat>flat-flat. The ammonia conversion can be as high as 60% under the tube-tube AC arc discharge with an input power of 30 W and a gap distance of 6 mm, while it was only 4% under the flat-flat dielectric barrier discharge.

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