AAO工艺运行过程中磷的迁移与积累规律郝瑞霞

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4310201110JOURNALOFHARBININSTITUTEOFTECHNOLOGYVol.43No.10Oct.2011A/A/O曈100124haoruixia@bjut.edu.cnA/A/O、.A/A/O、0.15kg/kg·d10~12d88%2.0%~2.5%.A/A/OX703A0367-6234201110-0129-05AnalysisonremovingandaccumulatingapproachofphosphorusinA/A/OtechnologyHAORui-xiaLITongLIUFengLIUJingCollegeofArchitectureandCivilEngineeringBeijingUniversityofTechnology100124BeijingChinahaoruixia@bjut.edu.cnAbstractToimprovethescientificmanagementlevelandeffluentqualityofamunicipalwastewatertreatmentplantWWTPtherelationshipbetweenthephosphorusremovalapproachandoperatingparametersoftheA/A/OtechnologywasanalyzedbysamplingandanalyzingsamplesfromthetreatmenttechnologyprocessofaWWTPinBeijingandalsothephosphorusmaterialbalancewasassessedforthesewagetreatmentsystem.TheresultsshowedthatthedenitrifyingphosphorusremovalplayedremarkablyaroleforphosphorusremovalintheanoxiczoneofA/A/Oprocess.Theabsorptionofphosphorusinanoxiczonehadexceededthequantityintheoxiczone.Thenitrateconcentrationinthereturnednitrifyingliquidhadaninfluenceonthedenitrifyingphosphorusremoval.TherelationshipbetweenphosphorusremovalandsludgeloadsludgeretaintimeSRTshowednegativecorrelation.Whenthesludgeloadwasabout0.15kg/kg·dandtheSRTwasabout10-12dinA/A/Oprocessthephosphorusremovalratewasupto88%.Therewasalsoanegativecorrelationrelationshipbetweenthephosphorusaccumulationandthesludgeemissioncapacitiesinthewastewatertreat-mentsystem.Whenthesludgeemissioncapacitieswerecontrolledto2.0-2.5percentinflowofthetreatmentplantthephosphorusremovalefficiencycouldbekeptonstableandeconomicstatus.KeywordsA/A/Oprocessdenitrifyingphosphorusremovalphosphorusaccumulationoperatingparameter2010-06-28.50778004808200062009ZX07104-006.1960—.、..--A/A/OCOD、、.A/A/O、、DO.denitrifyingphosphorusre-movalbacteriaDPB1-4A/A/O5-6.-A/A/O-、、、.11.120m3/dA/A/OAB.20093~591.、、、、COD《》4.1.脱水滤液②总进水①③粗格栅曝气沉砂池④⑤⑥⑦厌氧段缺氧段好氧段沉淀池出水⑧排泥污泥回流⑨硝化液回流11mg·L-1COD537.006050.50TN112.152018.79GB18918—2002BNH3-N58.9250.58TP5.821.00.80A1.2-Specords100JenaCARYEclipseSimplicity.、.1.30.99993.8%0.1%.22.12..A/A/O5.82mg/L26.89mg/L8.49mg/L·031·4318.4mg/L68.4%2.99mg/L5.5mg/L64.8%.1mg/LA86.3%.35302520151050①③④⑤⑥⑦⑧取样点籽(总磷)/(mg·L-1)22.22A/A/O3.NO3-PHB.7A/A/O.851.8%48.2%.A/A/O.NO3-NO3-NO3-NO3-NO2-9.NO3-.10.11.12NO3-15mg/LTP23%NO3-25~45mg/LTP60%70.4%NO3-55mg/LTP34%..5~15mg/L20~60mg/L95%2.5~7.5mg/L10~30mg/L0.2~3.5mg/L10%~95%.NO3-25mg/L55mg/L25~55mg/LTP80%.33.1ρCOD/ρTPA/A/O、..COD500~600mg/LρBOD5/ρCOD>0.46A/A/O.32A/A/O3213.ρCOD/ρTP3.ρCOD/ρTP80~100ρCOD/ρTP.3.2、SRT·131·10A/A/O..F/M、..1009080706050磷去除率籽%(COD)/籽(TP)130120110100908070籽%(COD)/籽(TP)12345678910取样次数磷去除率/%3ρCOD/ρTPTP、4.、.0.15kg/kg·d10~12d88%.3.3、.5.1009080706050磷去除率泥龄20151050泥龄/d12345678910取样次数去除率/%(a)总磷去除率与泥龄关系1009080706050磷去除率污泥负荷0.200.150.100.050污泥负荷/(kg·kg-1·d-1)12345678910取样次数去除率/%(b)总磷去除率与污泥负荷关系4、脱水滤液Q脱水滤液C脱水滤液Q进水C进水栅渣P渣沉砂P砂一级处理二级处理A-A-O+沉淀池Q出水C出水剩余污泥Q剩余污泥C剩余污泥5ΔPΔP<0ΔP=0ΔP>0.ΔP=QC+QC-QC-QC-P-P.1P、P0.003%0.007%.ΔP=QC+QC-QC-QC.26.10%.4000~5000m3/d2%~2.5%·231·43.876543210123456789100.60.40.20-0.2-0.4-0.6磷累积量/(t·d-1)排泥量/(103m3·d-1)排泥量驻P取样次数641A/A/O31mg/LA86.3%.2A/A/O.3、.0.15kg/kg·d10~12d88%.410%.2.0%~2.5%.1.A2OJ.20091411846-50.2YILMAZGLEMAIRERKELLERJetal.Simulta-neousnitrificationdenitrificationandphosphorusre-movalfromnutrient-richindustrialwastewaterusinggranularsludgeJ.BiotechnologyandBioengineering20081003529-541.3KONDOTTSUNEDASEBIEYetal.Characteriza-tionofthemicrobialcommunityintheanaerobic/oxic/anoxicprocesscombinedwithsludgeozonationandphos-phorusadsorptionJ.JournalofWaterandEnviron-mentalTechnology200973155-162.4SOEJIMAKOKIKTERADAAetal.Effectsoface-tateandnitriteadditiononfractionofdenitrifyingphos-phate-accumulatingorganismsandnutrientremovalef-ficiencyinanaerobic/aerobic/anoxicprocessJ.Bio-processandBiosystemsEngineering2006295/6305-313.5.A2/ODOJ.200925970-74.6.J.201061161540-1544.7.J.2010361828-31.8.-J.200848992-94.9.J.2007356120-126.10.J.2006371402-403.11.J.200422132-35.12.J.2007235806-808.13.C/PA2/OJ.2005156191765-1769.·331·10A/A/O

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