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Degradation of tiamulin by a packed bed dielectric barrier plasma combined with TiO_(2)catalyst

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摘要 Recently,a plasma catalyst was employed to efflciently degrade antibiotic residues in the environment.In this study,the plasma generated in a packed bed dielectric barrier reactor combined with TiO_(2)catalyst is used to degrade the antibiotic tiamulin(TIA)loaded on the surface of simulated soil particles.The effects of applied voltage,composition of the working gas,gas flow rate and presence or absence of catalyst on the degradation effect were studied.It was found that plasma and catalyst can produce a synergistic effect under optimal conditions(applied voltage 25 k V,oxygen ratio 1%,gas flow rate 0.6 l min^(-1),treatment time 5 min).The degradation efflciency of the plasma combined with catalyst can reach 78.6%,which is 18.4%higher than that of plasma without catalyst.When the applied voltage is 30 k V,the gas flow rate is 1 l min^(-1),the oxygen ratio is 1%and the plasma combined with TiO_(2)catalyst treats the sample for 5 min the degradation efflciency of TIA reached 97%.It can be concluded that a higher applied voltage and longer processing times not only lead to more degradation but also result in a lower energy efflciency.Decreasing the oxygen ratio and gas flow rate could improve the degradation efflciency.The relative distribution and identity of the major TIA degradation product generated was determined by high-performance liquid chromatography–mass spectrometry analysis.The mechanism of TIA removal by plasma and TiO_(2)catalyst was analyzed,and the possible degradation path is discussed.
作者 Kun YANG Hongwei SHEN Yueyue LIU Yang LIU Pingji GE Dezheng YANG 杨坤;沈红伟;刘月月;刘阳;葛平基;杨德正(School of Science,Shihezi University,Shihezi 832003,People’s Republic of China;Key Laboratory of Environmental Monitoring and Pollutant Control of Xinjiang Bingtuan,Shihezi University,Shihezi 832003,People’s Republic of China;Key Lab of Materials Modification,Dalian University of Technology,Ministry of Education,Dalian 116024,People’s Republic of China)
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第9期117-126,共10页 等离子体科学和技术(英文版)
基金 supported by National Natural Science Foundation of China(Nos.51967018,11965018 and 51967017) the Science and Technology Development Fund of Xinjiang Production and Construction(No.2019BC009) the Innovation and Development Special Project of Shihezi University(No.CXFZ202105)。
关键词 packed bed dielectric barrier discharge plasma catalyst tiamulin(TIA)antibiotics degradation degradation mechanism packed bed dielectric barrier discharge plasma catalyst tiamulin(TIA)antibiotics degradation degradation mechanism
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