1000271.20102200t20153560t[1]50%60%80%2.[2]:1987,010-85235283Emailzhangyu@bmei.net.cn41000272.1.2.1.1WABAGAndritz70%10%[3]400t/d[4]2.1.240%~10%)400t/d10%~40%2.1.3100t/d240t/d240t[6][7]90%2.1.410510010%200~300301~7.5t/h30~225t/d80%Atlas-StordSNBLynettenIV.A.R2.1.5703×6t/hStordInternationalBussAGKomlineSandersonSeghersBepexSeghers2%[5]2.1.630~150m5~12000kg/h360t/d80%[8]/80%193812%~15%1996SchneiderJoanA.Cusidó[9]N.HusillosRodríguez[10]2.21994ISTAnlagenbau:SoliaHelantisHeliocycleThermosystemHuberSRT[11][12]2.3,(CTB)[13]Eco-DecoHerhofNehlsenHigginsC[14]45%2.4CODBOD[15][16]30t/d100t/d2.5[17][18]NPK[19][20]Fonda[21]JVaxelaire[22]TRHv3.[1][D].2007.[2].[J].2007162667-671.[3].[J]2012,30595-99.[4],.[J].,2011,36(4)79-81.[5].[J].2004,30634-37.[6].[J].20075353-55.[7].[J].2010411120-22.[8]./.2008241143-46.[9]JoanA.Cusidó,LázaroV.Cremades.Atomizedsludgesviaspray-dryingatlowtemperatures:Analternativetoconventionalwastewatertreatmentplants[J].JournalofEnvironmentalManagement,2012,105,61-65.[10]N.HusillosRodríguez,S.Martínez-Ramírez,M.T.Blanco-Varelaetal.Evaluationofspray-driedsludgefromdrinkingwatertreatmentplantsasaprimematerialforclinkermanufacture[J].Cement&ConcreteComposites,33(2011)267–275.[11],.[J].200827693-96.[12].[D].,2008.[13].[J]2010,26(15):102-105.[14]HigginsC,WalkerL.Validationofanewmodelforaerobicorganicsolidsdecomposition:simulationswithsubstratespecifickinetics[J].ProcessBiochemistry,2001,36(8):875884.[15]JiangZiLi,MengDawei,MuHongyan,etal.ExperimentalStudyonHydrothermalDryingforSewageSludgeinLarge-ScaleCommercialPlan[J].JournalofEnvironmentalScienceandEngineering.2011,13(7):900-910.[16].[J].2009(3)41-43.[17].[J].,2003,19(12):65-66.[18].[J].200228116-19.[19],,.[J].2010(6)1164-1169.[20].[J].200834(4)16-19.[21]KDFonda,ELynch.GoingforTheGreeninThermalDrying:EvaluationofInnovativeNewTechnologiesandIndustryTrends[J].ProceedingsoftheWaterEnvironmentFederation,ResidualsandBiosolids,2009,(25):1019-1043.[22]JVaxelaire1,J.MBongiovanni,PMousques,etal.Thermaldryingofresidualsludge[J].WaterResearch,2000,34(17):4318-4323.