个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:电气工程学院
学科:电工理论与新技术. 环境工程
办公地点:Institute of Electrostatics and Special Power
联系方式:shangkf@dlut.edu.cn
电子邮箱:shangkf@dlut.edu.cn
Synergistic degradation of trans-ferulic acid in aqueous solution by dielectric barrier discharge plasma combined with ozone
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论文类型:期刊论文
发表时间:2018-12-01
发表刊物:ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
收录刊物:SCIE、PubMed、Scopus
卷号:25
期号:35,SI
页面范围:35479-35491
ISSN号:0944-1344
关键字:Dielectric barrier discharge; Ozone; Hydroxyl radicals; Trans-ferulic acid
摘要:Trans-ferulic acid (FA), extensively used in pharmaceutical and olive oil industries, causes huge risks to ecological environment due to its biotoxicity and phytotoxicity, leading to the difficulty of biochemical processes in treating FA wastewater. In this study, synergistic degradation of FA via dielectric barrier discharge (DBD) plasma and O-3 (plasma-ozone) was studied. The results showed that FA degradation efficiency reached 96.9% after a 40-min treatment by plasma-ozone process, and the energy efficiency of FA degradation was increased by 62.5 and 24.5% compared to single DBD plasma and ozonation treatment. Moreover, FA degradation rate constant in plasma-ozone process was 41% higher compared with the sum of single DBD plasma and ozonation, indicating a significant synergistic effect. Radical diagnosis experiments reveal that a profound increase of center dot OH yield through peroxone (H2O2/O-3) and UV/O-3 pathways is the important mechanism of synergistic degradation of FA in plasma-ozone process, while e(aq)(-) played little role in FA degradation. A degradation pathway of FA by plasma-ozone was also proposed according to the detected intermediates from EEM and LC-MS. This work revealed that plasma-ozone process is an alternative process for FA treatment, and the findings are helpful for understanding FA degradation characteristics and synergistic mechanisms in plasma-ozone process.