高级氧化法污水处理技术综述宋怡明

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242019-09-23“”TP20190008201911276041Y1999—。211167、。、、、Fenton。。X703A1008-021X201924-0211-03SummaryofadvancedoxidationwastewatertreatmenttechnologySongYimingXuShaoweiSongHaoQianFannaZhuYiwenSchoolofenvironmentalengineeringNanjingInstituteofEngineeringNanjing211167ChinaAbstractAdvancedoxidationprocesshasbeenwidelyusedinwastewatertreatmentduetoitsadvantagesofrapidreactionandgoodtreatmenteffect.ThisarticleintroducesseveralcommonmethodssuchasphotocatalyticoxidationcatalyticwetoxidationozoneoxidationelectrochemicaloxidationandFentonoxidationandsummarizestheiradvantagesanddisadvantages.OnthisbasisthisarticledescribestheapplicationandProspectofadvancedoxidationmethod.KeywordsAdvancedoxidationprocessPhotocatalyticoxidationOzoneoxidationSewagetreatmenttechnology1。。。。。2AdvancedOxidationProcessAOPs·OH。、106~1010L/mol·s。、、、Fenton。2.1、。TiO2。1N80%。2/TiO2pH=3.5±0.5180min40mg/L92.0%。3X-3B5GNCOD90%。4FentonX-RBUVBFenton60min。5Fenton。H2O21.5mmol/L30minTiO25g/LCOD46.7%、69.2%。。2.2CWAO、CO2、N2H2O6。、37。、。8K2S2O8/FA150℃0.5MPa240minFA77.8%COD。。·112·DOI:10.19319/j.cnki.issn.1008-021x.2019.24.101、、9。Fe、Cu、Mn。Pt、Pd。J.Atwater105%Ru15%Pt。60℃。11Mn/Ce、、pH120minCOD93.1%。2.3·OH。、12。。13。A.Ozlem14-194Fe2+8min98.3%47.32%。、。15、、、MnO2&MgO/15min30COD20min50mg/L。。16SBA-15Fe2O3/SBA-1560min99.4%COD79.5%。2.4。17。。13h1m3/h15m3/h420A。COD3100mg/L1311.3mg/L57.7%。。、pH。。19、B、TOC。Tsantaki20BDD25g/LpH=18mA/cm2180minTOC85%。2.5FentonFentonFe2+H2O2。FentonFenton21。Fenton、。22。pH4ρH2O2∶COD4∶1、nH2O2∶nFe2+1∶120minCOD83.75%.FentonFenton、Fenton。23ACFFenton360minTOCCOD78.9%62.8%。Trabelsi-Souissi24UV/Fe3+/H2O2H2O2/Fe3+=40∶1Fe3+0.1mmol/L120minTOC98.7%。3、1、。2、。3。。1.J.201541328-32.2./TiO2-D.2016.3.J.2003291052-54.4.UV/FentonX-BRJ.201544122766-2768.5.CODCrJ.2017451262-64.6García-MolinaVKallasJEsplugasS.Wetoxidationof4-chlorophenolKineticstudyJ.ChemicalEngineeringJournal2007126159-65.7LiLChenPGlkoynaEF.Generalizedkineticmodelforwetoxidationoforganiccompounds.AlcheJournal199137111676-1681.8.D.2012.9.J.2016431288-89.10AtwaterJEAkseJRMckinnisJAeta1.LowtemperatureaqueousphasecatalyticoxidationofphenolJ.Chemosphere1997341203-212.11.MnOx-CeO2J.20095965-970.12.J.2018461714-16.13.J.201746122455-2458.14YildirimAGülSerminErenOrkideetal.AComparative·212·SHANDONGCHEMICALINDUSTRY20194824StudyofOzonationHomogeneousCatalyticOzonationandPhotocatalyticOzonationforC.I.ReactiveRed194AzoDyeDegradationJ.Clean-SoilAirWater20118795-805.15.D..2016.16.Fe2O3/SBA-15J.2019.17.J.20112841-5.18.J.2015931308-1312.19.GACD.2019.20TsantakiEVelegrakiTKatsaounisAetal.Anodicoxidationoftextiledyehouseeffluentsonboron-dopeddiamondelectrodeJ.JournalofHazardousMaterials2012207/2081291-96.21.J.2016341136-37.22.J.201645132-134.23..J.20093111-16.24Trabelsi-SouissiSOturanNBellakhalNetal.Applicationofthephoto-FentonprocesstothemineralizationofphthalicanhydrideinaqueousmediumJ.DesalinationandWaterTreatment2011251-3210-215..J.20194824211-213.檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴檴2062.2“”。、、、、、。、、、。。。、、、、。。、、、。、。。、“”、“”、“”、。、。2.3“”“”。、、、、80%、、2。2.4。《》、、、、。、、、。。。3。。“”“”3。1.“”J.20198145-146.2.-J.2017195135-137.3.J.201917163-165..“”-J.20194824206213.·312·

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