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28220124JournalofHarbinUniversityofCommerceNaturalSciencesEditionVol.28No.2Apr.20122011-07-30.1985-.1121.2210022.150090PAC-MFHRTEPS.HRT1#、NO2-—N2#NH4+—N2#EPS10mg/L.PAC-MFEPSX505A1672-0946201202-0197-04StudyoneffectofextracellularpolymericsubstanceonbiologicaldenitrificationZHANGLin-yan1XUChuan-fu1MACong21.XuzhouMunicipalEngineeringDesignInstituteCo.LtdXuzhou221002China2.StateKeyLaboratoryofUrbanWaterResourceandEnvironmentHarbinInstituteofTechnologyHarbin150090ChinaAbstractTheeffectofbiologicalremovalofnitrogenbyPAC-MFsystematstart-upphaseunderdifferenthydraulicretentiontimeHRTwasinvestigatedandnitrificationactivitywascharacterizedbynitrificationratemethodtheimpactofEPSonthenitrificationactivitywasstudiedinthispaper.Theresultsindicatedthatsystem1ofshorterHRTtooklongertimetostartupandtheaccumulationofnitritelastedlongerthansystem2theremovalefficien-cyforammonia-nitrogenofsystem1wasworsethansystem2acriticalconcentrationofEPSwaspresentwhendiscussedtheinhibitionofEPSonnitrifyingactivitythecriticalcon-centrationgetbynitrificationratemethodwas10mg/L.KeywordsPAC-MFEPSnitrificationactivitynitrificationratemethodExtracellu-larpolymericsubstanceEPS.EPS.EPS1.EPS、、.EPS、、.EPS.EPSEPS.1#、2#PAC-MFHRTEPS.PAC-MFEPSEPS.EPS.11.1PAC-MFPAC-MF1.、、..PACPAC-MFBAC.28min2min.1#33.3L/m2·h2h2#16.7L/m2·h4h.50g/L.10℃.1PAC-MF1.2、NH4Cl、1.1.311.8g/L.1NH4+—N/mg·L-16.5~8.5/mg·L-15~7UV254/cm-10.16~0.19NO2—N/mg·L-10.014/ntu10~15NH4+—N90%.EPS70℃1/5.1.4EPSNH4+—N2.3NH4+—N15~120min.30~120min..I%=ΔC-ΔCEPSΔC×100%ΔC.I%EPS%.51LA、B、C、D、E1mLNH4ClEPS0、100、200、300、400mL400mL800mL.25g/LNH4+—N4.0mg/LEPSTOC3.5、6.8、10、12.9、15.5mg/L.0、0.5、1、1.5、2、2.5、3h20mLNH4+—NUV-2550.22.1·891·282、3NH4+—N、NO2-—N.217d1#16.9%2#NH4+—N27.8%.18d2#NH4+—N38NH4+—N85%.1#39dNH4+—N67dNH4+—N2.21mg/L69.66%.17NO2-—NNO2-—N.18~27d2#NO2-—NNO2-—N1.04mg/L28~32dNO2-—N32d0.077mg/L《》GB5749-20060.15mg/L.2#NO2-—N13d.2、32#38dNH4+—N、NO2-—N2#.1#18~25dNO2-—N39~45d1#NO2-—N45d1.02mg/L.55~66d1#NO2-—N66d0.145mg/L0.15mg/L.1#NO2-—N27d.2、31#67dNH4+—N、NO2-—N.1#.·991·21#2#1#NO2-—N2#2#NH4+—N1#.1#HRT4.10℃5-6.7.8.0N/m2.1#.1#.EPSEPS8EPS.4EPS.438d1#EPS2#1#EPS9.EPS———10.11.4EPS2.2EPS5EPSNH4+—N.5EPSEPSNH4+—NEPSNH4+—N.5ANH4+—NNH4+—N3h74.9%BNH4+—N3h66.6%A.C、D、ENH4+—N3h46.4%、27.4%、11.7%C、DA.ENH4+—NEPS.5NH4+—NI%EPS30~120min.6I%EPSTOCmg/L.6I%EPS6EPSI%.EPS6.8mg/L<10mg/LI%10.12%227·002·28StatusandFutureC//Proc.ofComputinginHighEnergyPhysicsCHEP200334456-81.5FOSTERYONGZ.CloudComputingandGridComputing360-DegreeComparedJ.GridComputingEnvironmentsWork-shop200855835-55.6HAMILTON.“Cloudcomputing”seenasnextwavefortechnol-ogyinvestorsJ.FinancialPost2008271910-22.7LUISMVLUISRM.ABreakintheCloudsTowardacloudDefinitionJ.ACMSIGCOMMComputerCommunicationRe-view2009399150-55.8MICHAELAARMANDOF.AbovetheCloudsABerkeleyviewofCloudComputingJ.CloudComputing20094153578-90.9BODEHALSTEADDM.ThePortableBatchSchedulerandtheMauiScheduleronLinuxClustersC//4thAnnualLinuxShow-case&Conference200017770-84.10ZHAOYRAICUFOSTER.ScientificWorkflowSystemsfor21stCenturyNewBottleorNewWineC//IEEEWork-shoponScientificWorkflows200865990-102.11FOSTERI.GlobusToolkitVersion4SoftwareforService-OrientedSystemsC//ConfonNetworkandParallelCompu-ting200637792-13.12DEANGHEMAWAT.MapReduceSimplifieddataprocessingonlargeclusterC//Procofthe6thSOSDI.BerkeleyUSENIXAssociation2004194137-150.13RALFL.Google’sMapReduceProgrammingmodel-RevisitedM.DataProgrammabilityTeam2007511023-46.14DEANGHEMAWAT.MapReduceSimplifiedDataProcess-ingonLargeClustersC//SixthSymposiumonOperatingSys-temDesignandImplementationOSDI042004253260-292.200EPS10mg/LI%32.14%EPS12.9mg/L>10mg/LI%67.85%.10mg/LEPS.PAC-MF、PAC、、EPS12.EPSEPS.13311#HRT=2h2#NO2-—N27、13d67、38d.2HRT.3EPS.EPS.4EPS10mg/L.1FROLUNDB.ExtractionofextracellularpolymericsubstancesfromactivatedsludgeusingacationexchangeresinJ.WaterResearch19963081749-1758.2ARVINEDYREBORGSMENCKCetal.Amini-nitrifica-tiontestfortoxicityscreeningMlNNTOXJ.WaterResearchl9942892029-2031.3.J.2006284264-266.4.D.2005.5ZHANGXWANGZGUX.Simplecombinationofbiodegra-dationandcarbonadsorption—themechanismofthebiologicalactivatedcarbonprocessJ.WaterResearch1991252165-172.6.-J.200829187-91.7.J.1999698-99.8DECHOAW.Microbialbiofilmsinintertidalsystemsanover-viewJ.Cont.ShelfRes.2000201257-1273.9.J.200626162-66.10WINGENDERJFLEMMINGHC.AutoaggregationofMicro-organismsFloesandBiofilmsJ.Biotechnology1999863-86.11OKABESSATOHHLTOHTetal.Microbialecologyofsul-fatereducingbacteriainwastewaterbiofilmsanalyzedbymicro-electrodesandFISHtechniqueJ.Wat.Sci.Techno1.199939741-47.12.J.2006336112-116.13.A2/OHRTJ.2011274566-570578.·722·2
本文标题:胞外聚合物对生物脱氮效果的影响研究
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