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利用低铝高烧失量粉煤灰制备微晶玻璃的研究 Title:PreparationofMicrocrystallineGlassusingLow-AluminumHigh-CombustionLossFlyAsh:AStudy Abstract: Microcrystallineglass,withitsuniquepropertiesandapplications,hasgainedsignificantattentioninrecentyears.Inthisstudy,wefocusedontheutilizationoflow-aluminumhigh-combustionlossflyashtopreparemicrocrystallineglass.Theprocessinvolvedtheselectionandcharacterizationofflyash,optimizationofthesynthesisconditions,andcharacterizationoftheresultantmicrocrystallineglass.Theresultsdemonstratedthepotentialoflow-aluminumhigh-combustionlossflyashasarawmaterialfortheproductionofmicrocrystallineglasswithdesirableproperties.Thisresearchcontributestothedevelopmentofsustainableandcost-effectivemethodsfortheproductionofmicrocrystallineglass. 1.Introduction: Microcrystallineglass,whichpossessessuperiormechanicalstrength,chemicaldurability,andelectricalinsulationproperties,findswide-rangingapplicationsinvariousindustries.Conventionally,microcrystallineglassissynthesizedusinghigh-purityrawmaterials,suchassilica,alumina,andvariousglass-formingadditives.However,thesematerialsarecostlyandrequireenergy-intensiveprocessing.Inrecentyears,theutilizationofflyash,aby-productofcoalcombustion,asarawmaterialforglasssynthesishasgainedattentionduetoitsabundance,lowcost,andpotentialforwasteutilization.Thisstudyexploresthepossibilityofusinglow-aluminumhigh-combustionlossflyash,whichisreadilyavailableandpossessesuniqueproperties,tosynthesizemicrocrystallineglass. 2.Methodology: 2.1Selectionandcharacterizationofflyash: Differentflyashsampleswerecollectedfromcoal-firedpowerplantsandcharacterizedfortheirchemicalcomposition,particlesizedistribution,andmineralogy.Low-aluminumhigh-combustionlossflyashsampleswereselectedbasedontheirsuitabilityasrawmaterialformicrocrystallineglasssynthesis. 2.2Optimizationofsynthesisconditions: Theselectedlow-aluminumhigh-combustionlossflyashwasmilledandmixedwithotherglass-formingadditives,suchassodaash,limestone,andfeldspar,invaryingproportions.Themixtureswereth

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