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湿法烟气脱硫系统石膏脱水研究 Title:ResearchonGypsumDehydrationinWetFlueGasDesulfurizationSystems Abstract: Wetfluegasdesulfurization(FGD)systemshavegainedwidespreadattentioninrecentyearsasaneffectivemethodforreducingsulfurdioxide(SO2)emissionsinpowerplantsandindustrialfacilities.OneofthemajorchallengesofwetFGDsystemsisthemanagementanddisposalofthegeneratedgypsumby-product.Thispaperaimstoexplorevarioustechniquesandstrategiesemployedtoenhancethegypsumdehydrationprocess,ultimatelyimprovingtheefficiencyofwetFGDsystemsandreducingtheenvironmentalimpactofgypsumdisposal. 1.Introduction: 1.1Background: TheincreasingconcernoverenvironmentalpollutionandtheneedforsustainableenergysourceshavedriventheimplementationofFGDsystemsinpowerplantsandindustrialprocesses.WetFGDsystems,inparticular,haveproventobeefficientandreliableinremovingSO2fromfluegases.However,thegeneratedgypsumby-productposesasignificantchallengeduetoitshighmoisturecontentandlimitedpotentialforreuseorsafedisposal.Therefore,thestudyofgypsumdehydrationbecomescrucialtomitigateenvironmentalrisksandoptimizetheoverallperformanceofwetFGDsystems. 1.2Objective: ThispaperaimstoinvestigatemethodsforgypsumdehydrationandexploremeasurestoenhancethedewateringprocessinwetFGDsystems.Byanalyzingexistingresearch,thisstudyseekstoprovideinsightsintothepotentialofgypsumdehydrationtechniquestoimprovetheefficiencyofwetFGDsystemsandreducetheenvironmentalimpactassociatedwithgypsumdisposal. 2.GypsumProductioninWetFGDSystems: 2.1GypsumCharacteristics: UnderstandingthecharacteristicsofgypsumgeneratedinwetFGDsystemsisessentialindevisingeffectivedehydrationstrategies.Thepaperdiscussesthephysicalandchemicalpropertiesofgypsum,includingmoisturecontent,particlesize,andcrystalstructure. 2.2ChallengesinGypsumDewatering: Thehighmoisturecontentandfineparticlesizeofgypsummakedewateringachallengingtask.Thissectionhighlightsthechallengesingypsumdewatering,suchaspoordewateringrates,filtercapacitylimitations,andtheriskofscalingandclogginginthesystem. 3.GypsumDehydrationTec