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37920119JOURNALOFBEIJINGUNIVERSITYOFTECHNOLOGYVol.37No.9Sept.2011HCR122331.1001242.5410043.353400HCRρCOD20g/L、ρ2~3g/LCOD70%.SO2-4.HCR.CODX703A0254-0037201109-1383-042009-09-17.1978—.500t.t.11.1ρBOD5/ρCODCr≈0.7、1-3.+SO2-4..1.1Table1ThecharacteristicsofaureomycinhydrochloridewastewaterCODCrBOD5SSSO2-4NH3-N/mg·L-1200001400070002000~30002500~26001.2———HCRhighperformancecompactreactor4-81.HCR、、15、5、40L..、HCR..20111HCRFig.1ProcesschartofHCR50%ρSS=10g/L.1.3.、COD、、DOSV.9-102.2Table2MainmonitoringindexesandanalysismethodsρCODcrSV30minρNH3-NρDO22.1HCR2.1.1HCRCOD23d.15d.CODHCR2.58kg/m3·d8.41kg/m3·dρCOD7690mg/L..20L/dρCODρCOD11424mg/LρCOD22L/d.2ρCOD20061mg/LCOD20.63kg/m3·dCOD70%..2.1.2HCRρρ282mg/L2788.1mg/L.3HCR30%COD.48319HCR2HCR、ρCOD、CODFig.2ThechartofrelationamongρCOD、removalofCODandvolumetricloading3HCR、ρFig.3ThechartofrelationamongρNH3-NandremovalofNH3-N2.22.2.1SO2-4ρCOD20g/LρSO2-42~3g/LHCRCOD70%SO2-4HCR11HCR.2.2.2HCRHCR.HCRCODCOD20.63kg/m3·dρDO>4mg/L.ρDO3mg/LCOD.2.2.34COD、SVI、SVFig.4ThechartofrelationbetweenCOD/NH3-NandSVI、SV5COD、ρMLSSFig.5ThechartofrelationbetweenCOD/NH3-NandsludgeconcentrationHCRρMLSSSV、ρMLSSSVI4、5.CODSV18.06kg/m3·dSV98%.COD20.63kg/m3·dSV95%ρMLSS14g/L..SV=90~95%SVI60~70ρMLSS14g/L58312011COD70%.31、、..HCRSO2-4、.HCR20kg/m3·dCOD70%.2HCR.HCR、、.3HCR.1.D.2006.XIONGAn-hua.StudyonadvancedtreamenttechniquesofantibioticswastewaterD.BeijingCollegeofMaterialsScienceandEngineeringofBeijingUniversityofChemicalTechnology2006.inChinese2KUMMERERK.Drugsintheenvironmentemissionofdrugsdiagnosticaidsanddisinfectantsintowastewaterbyhospitalsinrelationtoothersource-areviewJ.Chemosphere200145957-969.3.J.2007361110-14.SHIRui-mingWANGFengYANGYu-ping.ThepresentsituationandresearchprogressinthetreatmentofantibioticwastewaterJ.ShandongChemicalIndustry2007361110-14.inChinese4.HCRJ.2007271135-38.QINXu-jiangLIUKang-huaiZHAOWen-yuetal.Thetreatmentofhighlyconcentratedammonia-nitrogenorganicwastewaterbyHCRprocessJ.IndustrialWaterTreatment2007271135-38.inChinese5.HCRJ.2006291083-85.WANGWeiJIAOYu-muJIAHong-binetal.ApplicationofHCRtopromotingtreatmentofprintinganddyeingwastewaterJ.EnvironmentalScienceandTechnology2006291083-85.inChinese6.HCRJ.200436182-86.ZHAOWen-yuJINHongWANGQi-shanetal.StudyontreatmentoforganicphosphoruspesticidewastewaterwithHCRprocessJ.JournalofXi'anUniversityofArchitecture&TechnologyNaturalScienceEdition200436182-86.inChinese7.HCR———J.200226425-28.LIUKang-huaiXIWei-minLIYue-zhong.HCR-ahighefficiencyaerobicoxidationprocessforwastewatertreatmentJ.Water&WastewaterEngineering200226425-28.inChinese8WILDHAGENHSCHNEIDERFVOGEPOHLAetal.PilottestofbiologicaltreatmentofbreweryeffluentusingtheHCRsystematGildeBreweryinHanoverJ.BrauweltInternational19923294-298.9.M.2000100-250.10.M.198988-284.11.HCRJ.200123252-55.LIUKang-huaiLIYue-zhongXIWei-minetal.ExperimentalresearchontreatingsyntheticwastewaterofmonosodiumglutamatewithHCRprocessJ.EnvironmentalPollution&Control200123252-55.inChinese13996831911.J.20029613-16.WENXue-minGAOZhi-liangZHANChang-huietal.Discussiononevaluateindicatorsystemofeco-environmentqualityforresourcemodeltownsJ.ShaanxiEnvironment20029613-16.inChineseEco-environmentalQualityEvaluationModeloftheNewRuralinChongqingBasedonAHPLEIBo1ZHANGLi2XIATing-ting13WUYa-kun1FANLi11.ChongqingAcademyofEnvironmentalScienceChongqing401147China2.SchoolofResourcesandEnvironmentLanzhouUniversityLanzhou730000China3.SchoolofGeographicalSciencesSouthwestUniversityChongqing400715ChinaAbstractConcerningaroundtheuniversalfeaturesexistedinnewvillageconstructionofChongqingandbasedonAnalyticHierarchyProcessAHPandexperts’advicemethodappropriateevaluationindexesareselectedtobuildacomprehensiveevaluationindexsystemofnewvillageenvironmentalqualityfromthesixaspectscriterionlayerwhichincludeeconomicdevelopmentpollutioncontrolresourceutilizationlivingenvironmentecologyprotectionsocialenvironment.Theevaluationsystemcanprovidethebasisforeco-environmentalprotectioninnewvillage.KeywordschongqingcitynewvillageenvironmentalqualityevaluationsystemanalytichierarchyprocessAHP1386TreatmentofAureomycinHydrochlorideWastewaterWithHighPerformanceCompactReactorLIANGJian-kui1LIUKang-huai2ZHAOWen-yu2NIEChong-di3YAOWu-song31.MunicipalEngineeringofTheCollegeofArchitectureandCivilEngineeringBeijingUniversityofTechnologyBeijing100124China2.TheCollegeofEnvironmentalSienceandEngineeringGuilinUniversityofTechnologyGuilin541004China3.PuchengZhengdaBiochemistryLtd.Pucheng353400FujianChinaAbstractTheresultoftreatingaureomycinhydrochloridewastewaterwithHighPerformanceCompactReactorindicatesthattheremovalrateofCODachievesabove70%inspiteofthewastewaterCODcontentreachingupto20g/LNH3-Nto2-3g/Landalargeamountofremainedautibioticthatcanenvenommicro-organism.AtthesametimetheprocesscanalsoremovecertainlyNH3-NandtheefficiencyofreactorisnotaffectedbySO2-4content.SowecandrawaconclusionthatitisfeasibletomakeuseofHCRasthefirststepfortreatingwastewater.KeywordsaureomycinhydrochloridewastewaterHCRCODNH3-N9931
本文标题:HCR工艺处理盐酸金霉素生产废水的试验梁建奎
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