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PHG-161脱砷催化剂在FCC汽油加氢装置首次应用 Title:IntroductionofPHG-161ArsenicRemovalCatalystforFCCGasolineHydrogenationUnit Abstract: Asthedemandforcleanergasolineincreases,refineriesarecontinuallyseekingefficientandadvancedtechnologiestomeetstringentenvironmentalregulations.Onesuchchallengeistheremovalofarsenic,ahighlytoxicelement,fromgasoline.Thispaperaimstodiscussthefirst-everapplicationofthePHG-161arsenicremovalcatalystintheFluidCatalyticCracking(FCC)gasolinehydrogenationunit.Thiscatalystdemonstratespromisingresultsineffectivelyremovingarsenic,therebypromotingsustainableandenvironmentallyfriendlygasolineproduction. 1.Introduction 1.1Background 1.2Motivationforthestudy 1.3Objectivesofthepaper 2.FCCGasolineHydrogenationandArsenicRemoval 2.1FCCProcessOverview 2.2ArsenicinFCCGasoline 2.3ImportanceofArsenicRemoval 3.PHG-161ArsenicRemovalCatalyst 3.1CatalystCompositionandProperties 3.2CatalystPreparation 3.3CatalystCharacterizationTechniques 4.ApplicationofPHG-161CatalystinFCCGasolineHydrogenation 4.1ExperimentalSetup 4.2CatalystPerformanceEvaluation 4.3ComparisonwithTraditionalCatalyticSystems 5.ResultsandAnalysis 5.1ArsenicRemovalEfficiency 5.2ImpactonGasolineQuality 5.3CatalystLifetimeandRegeneration 5.4EconomicandEnvironmentalBenefits 6.Discussion 6.1AdvantagesofPHG-161Catalyst 6.2ChallengesandLimitations 6.3FutureDirectionsforImprovement 7.Conclusion 7.1SummaryofFindings 7.2ImplicationsandPracticalApplications 7.3OverallSignificanceoftheStudy 8.References ThispaperwillprovideacomprehensiveoverviewoftheapplicationofPHG-161arsenicremovalcatalystintheFCCgasolinehydrogenationunit.Itwillincludedetailsonthecatalyst'scomposition,properties,preparation,andcharacterizationtechniques.Theexperimentalsetup,performanceevaluation,andcomparisonwithtraditionalcatalyticsystemswillbediscussed.Resultsandanalysiswillfocusonarsenicremovalefficiency,impactongasolinequality,catalystlifetime,regeneration,andassociatedeconomicandenvironmentalbenefits.Furthermore,theadvantages,challenges,andlimitationsof