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HRTA/O+12323232341.4011202.4000743.4000744.300381A/O+HRTCOD、NH3-N、TNTP。HRT8hCOD、NH3-NTN《》GB18918—2002ATP75%。SND。HRT。A/OX703A1000-4602201709-0031-0451608079KJ1500504E-mailyu11237@sina.comEffectofHydraulicRetentionTimeonNitrogenandPhosphorusRemovalinMultistageA/O+SuspendedCarrierCombinedProcessCHENJie-yun1YUWei-wei23DUBang-hao23YANGLun23ZHUJia-yue23WEIXun41.ChongqingYubeiDistrictMunicipalConstructionEngineeringQualitySupervisionStationChongqing401120China2.KeyLaboratoryofHydraulicandWaterwayEngineeringofMinistryofEducationChongqingJiaotongUniversityChongqing400074China3.SchoolofRiverandOceanEngineeringChongqingJiaotongUniversityChongqing400074China4.NorthChinaMunicipalEngineeringDesignandResearchInstituteCo.Ltd.Tianjin300381ChinaAbstractThemultistageA/O+suspendedcarriercombinedprocesswasappliedtotreatlowcar-bonsourcedomesticsewageandtheeffectofhydraulicretentiontimeHRTonchemistryoxygende-mandCODammonianitrogenNH3-NtotalnitrogenTNandtotalphosphorusTPremovalefficiencywasinvestigated.TheexperimentalresultsshowedthattheeffluentconcentrationsofCODNH3-NandTNcouldsteadilyachievethefirstclassAcriteriaspecifiedinDischargeStandardofPollu-tantsforMunicipalWastewaterTreatmentPlantGB18918-2002.HowevertheremovalefficiencyofTPwasrelativelypoorwithremovalrateoflessthan75%.AnoxicmicroenvironmentconditionformedbybiofilmonsuspendedcarrierwasinfavorofsimultaneousnitrificationanddenitrificationSNDsothenitrogenremovalefficiencywasbetterthantraditionalactivatedsludgesystem.Thisprovidesatheoretical·13·33920175CHINAWATER&WASTEWATERVol.33No.9May2017basisforselectingsuitableHRTforlow-carbonsourcesewagetreatment.KeywordsmultistageA/Osuspendedcarrierlowcarbonsourcehydraulicretentiontimesimultaneousnitrificationanddenitrification12、。A/O、、、、、3~5。、6。7。SND8。pH9。10。A/O+HRTCOD、NH3-N、TNTPHRT。11.1。COD215~240mg/LNH3-N35~42mg/LTN40~47mg/LTP3.8~4.2mg/LpH6.8~7.9。、。、A/O+1。750mm×750mm×1000mm393L720mm×660mm×1000mm332L70cm。AO。1m3/d500mm60°850mm、。。1A/O+Fig.1FlowchartofmultistageA/O+suspendedcarriercombinedprocess1.2KaldnesK325、12mm500m2/m3950kg/m3、11。1.3CODMLSSNH3-NTNTP。1.45∶3∶22∶3DO0.5、1.01.5mg/L40%。100%20~25℃15d。HRT4、6、8、1012h·23·339.watergasheat.com。HRT12hHRT4h。22.1HRTCODHRTCOD2。HRT10h12hCOD20mg/LCODCODHRT6h8hCOD40mg/L85%HRT4hHRT8h2000mg/LMLSSMLSS35%1300mg/LCOD80%1213。。COD。2HRTCODFig.2EffectofHRTonCODremoval2.2HRTNH3-NTNHRTHRT>8hNH3-NTN《》GB18918—2002A3。HRT10h12hNH3-N1.2mg/L97%HRT8hNH3-N2.94mg/L91.67%HRT6hNH3-N70%、14HRT4hNH3-N60%。3HRTNH3-NTNFig.3EffectofHRTonNH3-NandTNremovalHRT4hTN28mg/L40%HRTTN。HRT6h8hTN2011.93mg/LNO-2-NNO-3-N。10h12hTN75%81.4%TN。·33·.watergasheat.comHRTA/O+3392.3HRTTPHRTTP75%TP。HRT4hTP2.3mg/L45.24%TPHRT6hTP1.8mg/L53.16%HRT8、1012hTP63.92%、69.54%72.77%。COD。3①A/O+HRT。HRT>8hCOD、NH3-NTN《》GB18918—2002ATP。②TN。。③HRTA/O+HRT8h。HRTHRT。1.J.20103611125-128.2.J.2013762013-2018.3.J.200929122465-2470.4.A/OJ.201131101644-1650.5CaoGWangSPengYetal.Biologicalnutrientremov-albyapplyingmodifiedfourstep-feedtechnologytotreatweakwastewaterJ.BioresourTechnol20131281604-611.6.J.201329550-54.7.J.201131419-22.8GonzalezBCSpinolaALLamonAWetal.Theuseofmicrosensorstostudytheroleoftheloadingrateandsurfacevelocityonthegrowthandthecompositionofni-trifyingbiofilmsJ.WaterSciTechnol20116481607-1613.9.J.20123811-5.10WuGNielsenMSorensenKetal.Distributionsandactivitiesofammoniaoxidizingbacteriaandpolyphos-phateaccumulatingorganismsinapumped-flowbiofilmreactorJ.WaterRes200943184599-4609.11.J.201033S1321-326.12.J.20143562230-2235.13.J.20126124553-4558.14.-J.201234239-44.1984-。E-mailchenjieyun1004@163.com2017-01-13·43·339.watergasheat.com
本文标题:HRT对多级AO悬浮填料组合工艺脱氮除磷的影响陈杰云
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