[1]GLAZE W H,KANG J W.Advanced Oxidation Processes.Description of a Kinetic Model for the Oxidation of Hazardous Materials in Aqueous Media with Ozone and Hydrogen Peroxide in a Semibatch Reactor[J].Industrial & Engineering Chemistry Research,1989,28(11):1573-1580.
[2]杨世迎,陈友媛,胥慧真,等.过硫酸盐活化高级氧化新技术[J].化学进展,2008,20(9):1433-1438.
[3]ANIPSITAKIS G P,DIONYSIOU D D.Radical Generation by the Interaction of Transition Metals with Common Oxidants[J].Environmental Science & Technology,2004,38(13):3705-3712.
[4]陈晓旸.基于硫酸自由基的高级氧化技术降解水中典型有机污染物研究[D].大连:大连理工大学,2007:11-38.
[5]冯善方,邓思萍,杜嘉雯,等.三维有序介孔Co3O4非均相活化单过硫酸氢钾降解罗丹明B[J].环境科学,2016,37(11):4247-4254.
[6]李阳.γ-MnOOH和CuO催化过硫酸盐氧催化苯酚机制的研究[D].天津:天津工业大学,2016:9-19.
[7]孙超.基于纳米磁性材料活化过硫酸盐技术修复2,4-二氯酚污染地下水的实验研究[D].长春:吉林大学,2016:12-20.
[8]佘月城,董正玉,吴丽颖,等.MnFe2O4活化过一硫酸盐降解废水中LAS[J].中国环境科学,2019,39(8):3323-3331.
[9]吴丹,姜智文,王椰,等.TiO2-石墨烯电极光电催化处理罗丹明B的研究[J].沈阳化工大学学报,2019,33(1):54-57.
[10]赵焕新,马增杰,王玮敏,等.Fe3O4-还原氧化石墨烯活化过硫酸钾降解罗丹明B[J].水处理技术,2019,45(11):90-94.
[11]ZHENG F C,ZHU D Q,SHI X H,et al.Metal-Organic Framework-Derived Porous Mn1.8Fe1.2O4 Nanocubes with an Interconnected Channel Structure as High-Performance Anodes for Lithium Ion Batteries[J].Journal of Materials Chemistry A,2015,3(6):2815-2824.
[12]WANG L Y,DI J,NIE J,et al.Multicomponent Doped Sugar-Coated Nanofibers for Peroxymonosulfate Activation[J] .ACS Applied Nano Materials,2019,2(11):6998-7007.
[13]郭一舟.基于硫酸根自由基高级氧化技术处理染料废水效能及机理研究[D].武汉:华中科技大学,2016:11-36.
[14]LIN K Y A,CHEN B J,CHEN C K.Evaluating Prussianblue Analogues MII3[MIII(CN)6]2(MII=Co,Cu,Fe,Mn,Ni;MIII=Co,Fe) as Activators for Peroxymonosulfate in Water[J].RSC Advances,2016,6(95):92923-92933.
[15]杨焱明,冷艳秋,林欣,等.Fe3O4/石墨烯活化过硫酸盐降解罗丹明B废水的研究[J].环境科学与管理,2014,39(4):80-84.
[16]丁凤.零价铁催化过硫酸盐高级氧化工艺高效降解印染废水[D].长春:吉林大学,2017:64-67.
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