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1、GlassfurnacefluegaswasteheatpowergenerationAsamajorenergyconsumerinbuildingmaterialsindustry,glassproductionneedstoconsumelargeamountsofenergy,glassmeltingfurnacedesignusingheavyoil,naturalgas,coalgasandotherfuels.Thecombustionofthefuelinthefurnaceofheatrelease,theglassliquidabsorptionoftotalcalo
2、ries35~40%;throughthefurnacesurfaceheatlossis20~25%;thesmokelossfor30~40%.Visibleglassfurnacefluegasawayalotofheat,sothefluegasheatrecoverypotential,effectiveutilizationofwasteheatinglassproductionhasbecomeaneffectivewaytoreducethecomprehensiveenergyconsumptionofglassproduction.Utilizationofflueg
3、aswasteheatresourceismainlyheatutilizationandpowerrecoverytwo.Atpresent,theglassindustrymainlyusestherecyclingpathwayheatutilization,namelyinthekilntailisprovidedwithwasteheatexchangedevice,halfthroughthefluegaswasteheatexchangedevice,toproducesaturatedsteamwasteheatutilizationoffluegas,usedforth
4、eproductionandlife,whichismainlyusedfortheproductionofheavyoilheating,butrequiredtheuseofsteamandissmall,andtheuseofnaturalgasasfuelforglassproductionline,itsproductionisalmostwithoutsteam,sothewasteheatofthefluegashavenotbeenfullyutilized.Since2004,ChinaInternationalBuildingMaterialsEngineeringC
5、o.Ltd.thegas-firedcombinedcycle,variousindustrialkilns(cementindustry,metallurgyindustry,chemicalindustry)experiencewasteheatpowergenerationtechnologyandequipment,wasteheatpowergenerationtechnologydevelopedcharacteristicssuitableforglasskilnfluegaswasteheat.Usingthetechnologyofcomprehensiveutiliz
6、ationofthewasteheatoffluegasatthesametime,wecannotonlyreducepurchasedelectricity,improvestheutilizationratioofenergy,butalsocanreduceemissionsofatmosphericpollutants,reducethegreenhouseeffect1,technologyintroductionGlassmeltingkilnwasteheatpowergenerationsysteminitsessenceandpowersystems,themainw
7、orkingprincipleis:theuseofwasteheatrecoveryboilerfluegaswasteheat,theboilerfeedwaterheatingproducesuperheatedsteam,superheatedsteamtopowertheexpansionturbine,convertingheatenergyintomechanicalenergy,andthegeneratorisdr