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时间:2020-04-20
《利用活性污泥水解发酵补充碳源优化脱氮除磷.pdf》由会员上传分享,免费在线阅读,更多相关内容在行业资料-天天文库。
1、第29卷第4期中国给水排水VoI_29No.42013年2月CHINAWATER&WASTEWATERFeb.2013利用活性污泥水解发酵补充碳源优化脱氮除磷刘智晓,季民,郝赘,孟轶,G.Petersen(1.首创爱华<天津>市政环境工程有限公司,天津300191;2.天津大学环境科学与工程学院,天津300072;3.天津港保税区水处理新技术产业化基地,天津300191;4.EnviDanA/S,Denmark)摘要:进水碳源匮乏是我国污水厂普遍面临的棘手问题,尤其是进水中可快速降解有机物(rbCOD)或短链脂肪酸(SCVFAs)不足,往往导致生物系统脱氮除磷效率低下和出水水质不稳定。近些
2、年快速发展的活性污泥水解技术实现了污水厂“内碳源”的可持续利用,采用侧流活性污泥水解(SSH工艺)或者混合液在线水解(UMIF)工艺,使活性污泥在厌氧或缺氧环境下进行水解发酵产生rbCOD或SCVFAs,发酵产物再补充到污水厂进水进而实现无外加商业碳源情况下的强化脱氮除磷。结合工程实例,介绍了活性污泥水解技术在工艺选择、运行特性及影响因素、水解潜力及水解产物等方面的热点问题,以期为国内在开发活性污泥可持续性利用技术方面提供借鉴。关键词:活性污泥水解;混合液发酵;挥发性脂肪酸;强化脱氮除磷;低进水浓度中图分类号:X703文献标识码:B文章编号:1000—4602(2013)04—0012—0
3、5ApplicationofActivatedSludgeHydrolysisandFermentationtoSupplement0fCarbonSourceforOptimizedNutrientRemovalLIUZhi—xiao,JIMin。HA0Yun,MENGYi,G.Petersen(1.CapitalAihuaTianjinMunicipalandEnvironmentalEngineeringCo.Ltd.,Tianfin300191,China;2.SchoolofEnvironmentalScienceandEngineering,TianfinUniversity,
4、Tianjin300072,China;3.IndustrializationCenterforWaterTechnologyDevelopmentofTianfinPortFreeTradeZone.Tianjin300191,China;4.EnviDanA/S,Denmark)Abstract:tackofinfluentcarbonsourceisanintractableproblemfacedbywastewatertreatmentplantsinChina.Especially,shortageofreadilybiodegradableCOD(rbCOD)andshort
5、—chainvolatilefattyacids(SCVFAs)intheinfluentoftenresultsinlowefficiencyofnitrogenandphosphorusremovalandinstabilityoftheefluent.Sustainableutilizationofinternalcarbonsourcehasbeenachievedwithrapiddevelopmentofactivatedsludgehydrolysistechnologyinrecentyears.TherbCODandSCVFAscouldbeproducedbytheac
6、tivatedsludgehydrolysisandfermentationunderanaerobicoranoxicconditionwithside—streamactivatedsludgehydrolysis(SSH)processoran—mixedin—linefermenter(UMIF)process.Theenhancednitrogenandphosphorusremovalcouldbeachievedbyaddingfermentationprod—ucttotheinfluentandwithoutaddingcommercialcarbonsource.The
7、processselection,operationcharac—teristics,influencingfactors,hydrolysispotentialandproductswereintroducedwithtwotypicalcasestoprovideareferencefordevelopingsustainableutilizationtechnologiesofactivatedsludgeinCh
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