首站-论文投稿智能助手
典型文献
Anthraquinone acted as a catalyst for the removal of triphenylmethane dye containing tertiary amino group:Characteristics and mechanism
文献摘要:
Herein,we found that anthraquinone(AQ)acted as a catalyst for the rapid and effective removal of triphenylmethane dye containing tertiary amino group(TDAG).Results showed that AQ had an enhanced catalytic reactivity towards the removal of TDAG compared to hydro-quinone,which was further proved and explained using density functional theory(DFT)calculations.AQs could achieve a TDAG removal efficiency and rate of approximately 100%and 0.3583 min-1,respectively,within 20 min.Quenching experiments and electron paramagnetic resonance(EPR)tests indicated that the superoxide radical(O2·-)generated through the catalytic reduction of an oxygen molecule(O2)by AQ contributed to the effective removal of the TDAG.In addition,it was found that the electrophilic attack of the O2·-radical on the TDAG was the driving force for the dye degradation process.Decreasing the pH led to protonation of the substituted group of AG,which resulted in formation of an electron deficient center in the TDAG molecule(TTDAG-EDC+)through delocalization of the π electron.Therefore,the possibility of the electrophilic attack for the dye by the negative O2·-radical was significantly enhanced.This study revealed that the H+and the O2·-generated by the catalytic reduction of O2 have synergistic effects that led to a significant increase in the dye removal rate and efficiency,which were higher than those obtained through persulfate oxidation.
文献关键词:
作者姓名:
Ying Gao;Weihuang Zhu;Junli Li;Wenqi Liu;Xue Li;Jianfeng Zhang;Tinglin Huang
作者机构:
Key Laboratory of Northwest Water Resources,Environment and Ecology,Ministry of Education,Xi'an University of Architecture and Technology,Xi'an 710055,China;Shaanxi Key Laboratory of Environmental Engineering,Xi'an University of Architecture and Technology,Xi'an 710055,China
引用格式:
[1]Ying Gao;Weihuang Zhu;Junli Li;Wenqi Liu;Xue Li;Jianfeng Zhang;Tinglin Huang-.Anthraquinone acted as a catalyst for the removal of triphenylmethane dye containing tertiary amino group:Characteristics and mechanism)[J].环境科学学报(英文版),2022(11):148-158
A类:
triphenylmethane,TDAG,AQs,TTDAG,EDC+
B类:
Anthraquinone,acted,catalyst,removal,dye,containing,tertiary,amino,group,Characteristics,mechanism,Herein,found,that,anthraquinone,rapid,effective,Results,showed,had,enhanced,catalytic,reactivity,towards,compared,hydro,which,was,further,proved,explained,using,density,functional,theory,DFT,calculations,could,achieve,efficiency,approximately,respectively,within,Quenching,experiments,electron,paramagnetic,resonance,EPR,tests,indicated,superoxide,radical,O2,generated,through,reduction,oxygen,molecule,by,contributed,In,addition,electrophilic,attack,driving,force,degradation,process,Decreasing,protonation,substituted,resulted,formation,deficient,center,delocalization,Therefore,possibility,negative,significantly,This,study,revealed,H+and,have,synergistic,effects,increase,were,higher,those,obtained,persulfate,oxidation
AB值:
0.463208
相似文献
Molybdenum phosphide(MoP)with dual active sites for the degradation of diclofenac in Fenton-like system
Xiuying Li;Shuangqiu Huang;Huaihao Xu;Yuepeng Deng;Zhu Wang;Zhao-Qing Liu-Key Laboratory for Water Quality and Conservation of the Pearl River Delta,Ministry of Education,Guangzhou Key Laboratory for Clean Energy and Materials,Institute of Environmental Research at Greater Bay,Guangzhou University,Guangzhou 510006,China;State Key Laboratory of Pollution Control and Resource Reuse,School of the Environment,Nanjing University,Nanjing 210023,China;School of Chemistry and Chemical Engineering,Institute of Clean Energy and Materials,Guangzhou Key Laboratory for Clean Energy and Materials,Key Laboratory for Water Quality and Conservation of the Pearl River Delta,Ministry of Education,Guangzhou University,Guangzhou 510006,China
CeO2 doping boosted low-temperature NH3-SCR activity of FeTiOx catalyst:A microstructure analysis and reaction mechanistic study
Wei Tan;Shaohua Xie;Wenpo Shan;Zhihua Lian;Lijuan Xie;Annai Liu;Fei Gao;Lin Dong;Hong He;Fudong Liu-Department of Civil,Environmental,and Construction Engineering,Catalysis Cluster for Renewable Energy and Chemical Transformations(REACT),NanoScience Technology Center(NSTC),University of Central Florida,Orlando,FL32816,USA;Key Laboratory of Mesoscopic Chemistry of MOE,School of Chemistry and Chemical Engineering,Jiangsu Key Laboratory of Vehicle Emissions Control,School of Environment,Center of Modern Analysis,Nanjing University,Nanjing 210023,China;State Key Joint Laboratory of Environment Simulation and Pollution Control,Research Center for Eco-Environmental Sciences,Chinese Academy of Sciences,Beijing 100085,China;Key Laboratory of Urban Pollutant Conversion,Institute of Urban Environment,Chinese Academy of Sciences,Xiamen 361021,China;Institute of Engineering Technology,Sinopec Catalyst Co.Ltd.,Sinopec Group,Beijing 101111,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。