纺织印染废水的湿式空气氧化处理刘刚

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35120011浙  江  大  学  学  报  ()JournalofZhejiangUniversity  (EngineeringScience)Vol.35№.1Jan.2001:1998-09-01:(59472020);(596048): ,(1969-),,,,.刘 刚,雷乐成,岑沛霖(,310027) :,.300℃,120minCOD56%,,0.040.40,.,,.,.:;;;:X703     :A     :1008-973X(2001)01-0037-04,.,、,,.(WAO)CO2H2O[1],,,,.,、[2,3],[4,5].WAO,.1 1.1 WAO、,1.,.1 Fig.1 Reactorsystemofwefairoxidation1.2 ,CODCr11100mg/L,BOD5440mg/L,pH6.61..1.3 CODHACH-DR2000COD.0.05g、2.5mL5mL、1mol/L.2mL150℃2h,CODCODCr.BOD5.1.4 WAO60~70℃1.4L,1MPa;,.,,,.2 2.1 COD2 COD  Fig.2 EffectofheatingonCODandbiodegradabilityofwastewater,1~2h.,CODCr,2.20℃150℃,COD,0.09%,,COD,300℃COD18%.;[6]..BODCOD,.[7].2.2 WAOWAO,3.COD.150℃200℃120minCOD8%30%,300℃120minCOD56%.,[5].,、.、.,,.,COD,,COD.,,,,COD,COD.WAO4.300℃120min0.040.40.,.3 WAOFig.3 CODremovalofprintinganddyingwastewatebyWAOmethodatdifferenttemperature4 WAO Fig.4 BiodegradabilitgofprintinganddyingwastewateafterWAOtreatment38浙 江 大 学 学 报(工学版)         2001年 3 WAO,,,.,.X,Y,,-dYdt=kY.(1)Y=Y0t=0.(2)(1)Y=Y0e-kt.(3)Z,Z=Y0/X0,(4)(4),Y0X0.X=X0(1-Z)+X0Ze-kt.(5)COD,CODCOD=COD0(1-Z)+COD0Ze-kt,(6)1 Tab.1 Modelparametersofwetoxidationkineticsatdifferenttemperature(℃)Zk,(h-1)1500.10420.48210.782000.32860.83781.782500.49402.41500.183000.50243.16390.63(6),1.5,.WAO,,Arrhenius.、5   Fig.5 Comparisonsbetweenmodelsimulationandexperimentaldata.,、;、、.,、;,、,,Z.,,[8].,,.,(6),,COD100%.4  WAO.:WAO39 第1期刘 刚,等:纺织印染废水的湿式空气氧化处理CO2H2O,.WAO:,,,.,WAOCOD,300℃,2.5MPa120minCOD56%.,.:[1] YuePL.Advancedwaterandwastewatertreatmenttechnologies[A].ProceedingsoftheAisa-Pacificconferenceonsustainableenergyandenvironmentaltechnology[C],Singapore:NationalUniversityPress,1996.7-16.[2] BailiodCR,FaithBM,MasiO.Fateofspecificpollutantsduringwetoxidationandozonation[J].EnvironProg,1982,1:217-226.[3] DietrichMJ.RandallTL,CanneyPJ.Wetairoxidationofhazardousorganicsinwasterwater[J].EnvironProg,1985,4:171-177.[4] LeiL,HuX,ChenG,etal.Wetairoxidationofdesizingwastewaterfromtextileindustry[A].ProceedingsoftheAsia-Pacificconferenceonsustainableenergyandenvironmentaltechnology[C].Singapore:NationalUniversityPress,1996.165-172.[5] SkaatesJM,BriggsBA,LamparterRA,etal.Wetoxidationofglucose[J].CanadianJChemEng,1981,59:517-521.[6] MantziviosD,LivingstonAG,HellenbrandR,etal.Wetairoxidationofpolyetherleneglycols;mechanisms,intermediatesandimplicationsforintegratedchemicalbiologicalwastewatertreatment[J].ChemEngSci,1996,51:4219-4235.WetairoxidationofprintinganddyingwastewaterLIUGang,LEILe-cheng,CENPei-lin(Dept.ofChemicalEngineering,ZhejiangUni.,Hangzhou310027,China)Abstract:Thewetairoxidationofprintinganddyingwastewateranditsreactionkineticswereinvestigatedinthepresentwork.ACODremovalof56%wasobtainedafterthewastewaterwastreatedwithwetairoxidationat300℃for120min.Furthermore,thebiodegradabilityofthewastewaterwasimprovedfrom0.04to0.40.Theprintinganddyingwastewatercontainmanykindsofpollutants,suchasdyestuffanddyingauxiliary;someofthepollutantsareeasytobeoxidized,whiletheothersaredifficulttobeoxidized.Akineticmodelforthewetairoxidationofprintinganddyingwastewaterwasconstructedonthebasisofthereactioncharacters,andthemodelsimulationswereingoodagreementwithexperimentaldata.Keywords:printinganddyingwastewater;wetairoxidation;reactionkinetics;wastewatertreatment(:张 明)40浙 江 大 学 学 报(工学版)         2001年 

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