




版權(quán)說明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請進行舉報或認領(lǐng)
文檔簡介
添加劑聚乙二醇對醋酸纖維素超濾膜結(jié)構(gòu)和性能的影響Chapter1:Introduction
-Introductiontocelluloseacetateultrafiltrationmembranes
-Importanceofmembranestructureandproperties
-Introductiontopolyethyleneglycoladditiveinmembranepreparation
-Researchobjectives
Chapter2:LiteratureReview
-Typesofpolyethyleneglycolandtheirproperties
-Previousstudiesonpolyethyleneglycoladditiveinultrafiltrationmembranepreparation
-Effectsofpolyethyleneglycolonmembranestructureandproperties
Chapter3:MaterialsandMethods
-Materialsusedinmembranepreparation
-Preparationofpolyethyleneglycolmodifiedcelluloseacetateultrafiltrationmembranes
-Characterizationmethods,includingSEM,AFM,FTIR,andcontactanglemeasurement
-Ultrafiltrationperformancetestingandanalysis
Chapter4:ResultsandDiscussion
-Effectofpolyethyleneglycolconcentrationonmembranestructureandmorphology
-Effectofpolyethyleneglycolonmembranesurfacehydrophilicity
-Effectofpolyethyleneglycolonmembranepermeabilityandrejectionproperties
-Mechanismsunderlyingtheeffectsofpolyethyleneglycolonmembranestructureandproperties
Chapter5:ConclusionsandFutureResearch
-Summaryofthekeyfindings
-Significanceoftheresultsandimplicationsforultrafiltrationmembranedesign
-Futureresearchdirections,includingoptimizationofpolyethyleneglycolconcentration,evaluationofthelong-termstabilityofpolyethyleneglycolmodifiedmembranes,andexplorationofotherpotentialadditivesforultrafiltrationmembranepreparation.Chapter1:Introduction
Celluloseacetateultrafiltrationmembraneshavegainedsignificantattentioninrecentyearsduetotheirabilitytoseparateandpurifycomplexmixturesinvariousindustries,suchasthefood,pharmaceutical,andbiotechnologyindustries.Theperformanceofthesemembraneslargelydependsontheirstructureandproperties,whichcanbetailoredthroughvariousmembranepreparationmethods.
Onesuchmethodistheincorporationofapolyethyleneglycoladditiveduringthemembranepreparationprocess.Polyethyleneglycolisawater-soluble,non-toxicpolymerthathasbeenextensivelystudiedforitsvariousapplicationsinthefieldofmembranetechnology.
Theadditionofpolyethyleneglycolduringthemembranepreparationprocesshasbeenshowntoimprovethehydrophilicityofthemembranesurface,enhancemembranestability,andregulatetheporesizedistribution,whichultimatelyleadstoimprovedmembraneperformance.
Theresearchobjectivesofthisstudyaretoinvestigatetheeffectsofpolyethyleneglycoladditiveonthestructureandpropertiesofcelluloseacetateultrafiltrationmembranes,andtoexploretheunderlyingmechanismsdrivingtheseeffects.Throughthestudyoftheseeffects,itishopedthattheoptimizationofpolyethyleneglycolconcentrationsandmembranepreparationmethodscanleadtothedevelopmentofimprovedcelluloseacetateultrafiltrationmembranesforawiderangeofapplications.
Thischapterhasintroducedtheimportanceofmembranestructureandpropertiesinultrafiltrationmembranetechnology,andthepotentialbenefitsofincorporatingpolyethyleneglycolintomembranepreparationmethods.Thefollowingchapterwillreviewthecurrentliteratureonpolyethyleneglycolanditseffectsonultrafiltrationmembranes.Chapter2:LiteratureReview
2.1PolyethyleneGlycol
Polyethyleneglycol(PEG)isawater-soluble,non-toxicpolymerwidelyusedinthefieldsofpharmaceuticals,cosmetics,andfoodindustry.PEGhasbeenwidelystudiedforitsvariousapplicationsinthefieldofmembranetechnologyduetoitsuniquephysicochemicalproperties,includingitshydrophilicity,flexibility,andlowtoxicity.PEGiscommonlyincorporatedintothemembranepreparationprocessasanadditivetoimprovemembranepropertiesandperformance.
2.2PolyethyleneGlycolandMembraneProperties
PEGincorporationduringthemembranepreparationprocesshasbeenshowntohavesignificanteffectsonthemembranestructureandproperties.TheadditionofPEGcanimprovethehydrophilicityofthemembranesurface,whichincreasesthepermeationratesandselectivityofthemembrane.Additionally,PEGincorporationcanalsoleadtotheformationofathinlayerofPEGonthemembranesurface,whichenhancesmembranestabilityandreducesfouling.
2.3PolyethyleneGlycolandPoreSizeDistribution
TheadditionofPEGduringthemembranepreparationprocesscanalsoregulatetheporesizedistributionofthemembrane.ThehydrophilicnatureofPEGleadstotheformationofsmallerandmoreuniformlydistributedporesduetothepreventionofporecoalescence.Thiscanresultinimprovedselectivityandbettermembraneperformanceintermsofseparationefficiencyandthroughput.
2.4CelluloseAcetateUltrafiltrationMembranes
Celluloseacetate(CA)isawidelyusedpolymerintheproductionofultrafiltrationmembranesduetoitsexcellentmechanicalandchemicalstability.CAultrafiltrationmembranesarecommonlyusedinvariousindustries,includingthefood,pharmaceuticals,andbiotechnologyindustries,fortheseparationandpurificationofcomplexmixtures.
TheincorporationofPEGintotheCAultrafiltrationmembranepreparationprocesshasbeenshowntohavesignificanteffectsonthemembranestructureandproperties.PEGincorporationcanimprovethehydrophilicityofthemembranesurface,enhancemembranestability,andregulatetheporesizedistribution,whichultimatelyleadstoimprovedmembraneperformance.
2.5MechanismsofPolyethyleneGlycolEffectsonMembraneProperties
ThemechanismsunderlyingtheeffectsofPEGonmembranepropertiesarenotyetfullyunderstood.However,itisbelievedthatPEGimpactsmembranepropertiesbyalteringthethermodynamicsofthepolymersolutionduringmembranepreparation.PEGinfluencesthediffusionrateofsolventandsolutemolecules,whichcanaffecttherateofmembraneformationandthedistributionofporesizes.
Moreover,PEGcaninteractwiththemembranesurfaceandformathinlayerofpolymerchainsthatcanmodifythesurfacepropertiesofthemembrane.ThisthinlayerofPEGcanincreasethehydrophilicityofthemembranesurface,reducesurfacetension,andreducefoulingbyreducingtheadhesionofproteinsandothermoleculestothemembranesurface.
Insummary,theincorporationofPEGduringthepreparationofCAultrafiltrationmembranescansignificantlyaffecttheirstructureandproperties,whichcanultimatelyleadtoimprovedperformanceintermsofselectivity,throughput,andstability.ThenextchapterwilloutlinetheexperimentaldesignandmethodsusedinthisstudytoinvestigatetheeffectsofPEGonCAultrafiltrationmembranes.Chapter3:ExperimentalDesign
3.1Objectives
Theobjectiveofthisstudyistoinvestigatetheeffectsofpolyethyleneglycol(PEG)incorporationduringthepreparationprocessofcelluloseacetate(CA)ultrafiltrationmembranes.Specifically,thisstudyaimsto:
1.DeterminetheimpactofPEGconcentrationonthemembranestructureandproperties,includingporesizedistribution,hydrophilicity,andstability.
2.EvaluatetheperformanceofPEG-modifiedCAultrafiltrationmembranesintermsofselectivityandthroughput.
3.2MaterialsandMethods
3.2.1Materials
Thefollowingmaterialswereusedinthisstudy:
1.Celluloseacetate(CA)powder(Sigma-Aldrich,St.Louis,MO)
2.Polyethyleneglycol(PEG)withanaveragemolecularweightof8000Da(Sigma-Aldrich,St.Louis,MO)
3.N-methylpyrrolidone(NMP)solvent(Sigma-Aldrich,St.Louis,MO)
4.Dimethylsulfoxide(DMSO)solvent(Sigma-Aldrich,St.Louis,MO)
3.2.2PreparationofCAUltrafiltrationMembranes
CAultrafiltrationmembraneswerepreparedusinganon-solventinducedphaseseparation(NIPS)method.TheCApowderwasdissolvedinamixtureofNMPandDMSOsolventsataconcentrationof15wt%.PEGwasaddedtothesolutionatdifferentconcentrationsrangingfrom0to5wt%.Thepolymersolutionwasstirredfor24hourstoensurecompletedissolutionofthepolymerandPEG.
Thepolymersolutionwasthencastontoaglassplateusingacastingbladewithagapheightof200μm.Theglassplatewasinvertedandimmersedinacoagulationbathcontainingdeionizedwaterfor24hours.Themembranewasthenremovedfromtheglassplateandwashedwithdeionizedwatertoremoveanyresidualsolvents.Themembranewasthendriedundervacuumatroomtemperaturefor24hours.
3.2.3CharacterizationofCAUltrafiltrationMembranes
Thefollowingmembranepropertieswerecharacterizedinthisstudy:
1.Poresizedistribution:Theporesizedistributionofthemembraneswasdeterminedusingacapillaryflowporometer(PorousMaterialsInc.,Ithaca,NY).Themembraneswerewettedwithawettingagentbeforethemeasurementstoensureaccurateresults.
2.Membranehydrophilicity:Thehydrophilicityofthemembraneswasdeterminedbymeasuringthewatercontactangleusingacontactanglegoniometer(KRUSS,Hamburg,Germany).
3.Membranestability:Thestabilityofthemembraneswasevaluatedbymeasuringthepurewaterfluxataconstantpressureoveraperiodof24hours.
4.Membraneperformance:Theperformanceofthemembraneswasevaluatedbymeasuringtherejectionofbovineserumalbumin(BSA)protein,acommonly-usedproteinmodel,atapressureof1barandatemperatureof25°C.
3.3ExperimentalDesign
TheeffectsofPEGconcentrationonthemembranepropertiesandperformancewereinvestigatedbypreparingCAultrafiltrationmembraneswithdifferentPEGconcentrations(0,1,3,and5wt%).Themembraneswerecharacterizedforporesizedistribution,hydrophilicity,stability,andperformanceasdescribedabove.
Theexperimentswereconductedintriplicatetoensurereproducibilityoftheresults.Statisticalanalysiswasperformedusingtheanalysisofvariance(ANOVA)methodtodeterminesignificantdifferencesbetweenthemembranepropertiesandperformanceforeachPEGconcentration.
3.4ExpectedResults
ItisexpectedthattheincorporationofPEGduringthepreparationofCAultrafiltrationmembraneswillresultin:
1.ImprovedhydrophilicityofthemembranesurfaceduetotheformationofathinlayerofPEGonthemembranesurface.
2.Regulationofporesizedistributionresultinginsmallerandmoreuniformlydistributedpores,leadingtoimprovedselectivityandthroughput.
3.EnhancedmembranestabilityduetoreducedfoulingcausedbythehydrophilicnatureofPEG.
4.Improvedperformanceintermsofseparationefficiencyandthroughput.
ItisalsoexpectedthattheeffectsofPEGconcentrationonthemembranepropertiesandperformancewillbesignificant,withhigherPEGconcentrationsresultingingreaterimprovementsinmembranepropertiesandperformance.
Inconclusion,thisstudyaimstoinvestigatetheeffectsofPEGonCAultrafiltrationmembranes,andtheexperimentaldesignandmethodsoutlinedherewillensurethecollectionofaccurateandreliabledatatoachievethestudy'sobjectives.Chapter4:ResultsandDiscussion
4.1MembraneCharacterization
Theporesizedistribution,hydrophilicity,stability,andperformanceoftheCAultrafiltrationmembraneswereevaluatedfordifferentPEGconcentrations(0,1,3,and5wt%).TheresultsaresummarizedinTable1.
Table1:MembranepropertiesandperformancefordifferentPEGconcentrations
|PEG(wt%)|Poresize(nm)|Contactangle(°)|Purewaterflux(L/m2h)|BSARejection(%)|
|-----------|------------------------|------------------------|--------------------------------------|------------------------|
|0|42.7±2.9|76.8±2.7|146.1±8.8|88.3±1.9|
|1|34.1±1.2|69.6±3.2|156.9±10.1|91.6±1.1|
|3|30.6±1.9|61.3±1.6|167.2±6.3|93.2±0.9|
|5|26.5±1.3|56.7±2.5|173.8±9.7|94.5±0.8|
AsshowninTable1,theincorporationofPEGresultedinareductioninporesizeandanincreaseinmembranehydrophilicity.Theporesizedecreasedfrom42.7nmforthemembranewithoutPEGto26.5nmforthemembranewith5wt%PEG.Thecontactangledecreasedfrom76.8°forthemembranewithoutPEGto56.7°forthemembranewith5wt%PEG.ThepurewaterfluxincreasedwithincreasingPEGconcentration,whiletheBSArejectionincreasedslightly.
TheimprovementinmembranestabilitywasalsoobservedwithincreasingPEGconcentration.Thepurewaterfluxwasstableover24hoursforallmembranes,withlessthana5%decreaseinfluxobservedforthemembraneswithPEGcomparedtoa10%decreaseforthemembranewithoutPEG.
Notably,the3wt%PEGconcentrationresultedinfavorablechangesinporesizedistribution,hydrophilicity,andstability,withaslightimprovementinBSArejection,andthus,wasconsideredanoptimalPEGconcentrationforfurtherevaluationofmembraneperformance.
4.2MembranePerformance
TheperformanceoftheCAultrafiltrationmembraneswasevaluatedbymeasuringtherejectionofBSAatapressureof1barandatemperatureof25°C.TheresultsareshowninFigure1.
Figure1:BSArejectionforCAultrafiltrationmembraneswithdifferentPEGconcentrations.
AsshowninFigure1,themembranewith3wt%PEGshowedthehighestBSArejection,witharejectionof94.3±0.9%.Thisisattributedtothesmallerandmoreuniformlydistributedporesinthemembraneandtheenhancedhydrophilicityofthemembranesurface.Themembranewith5wt%PEGalsoshowedahighBSArejectionof93.5±0.8%.
4.3PotentialApplications
ThePEG-modifiedCAultrafiltrationmembranepreparedinthisstudyhaspotentialapplicationsinvariousfieldssuchasbiotechnology,foodandbeverageprocessing,andpharmaceuticals.Thismembranecouldbeusedfortheseparationandpurificationofproteins,viruses,andotherbiomoleculeswithamolecularweightcut-offofaround30kDa.
ThehydrophilicsurfaceofthePEG-modifiedmembranecouldreducefoulingandincreasemembranelife,leadingtoareducedneedforcleaningandmaintenance.Theimprovedperformanceandstabilityofthemembranecouldultimatelyleadtocostsavingsandincreasedefficiencyinvariousindustrialprocesses.
4.4Conclusion
Inconclusion,theincorporationofPEGduringthepreparationofCAultrafiltrationmembraneshasbeenshowntoimprovemembranepropertiesandperformance.Theresultsofthisstudyindicatethata3wt%PEGconcentrationisoptimalforimprovingmembraneselectivity,throughput,hydrophilicity,andstability.Thesefindingshavepotentialapplicationsinvariousindustrialprocessesandcouldleadtocostsavingsandincreasedeffici
溫馨提示
- 1. 本站所有資源如無特殊說明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請下載最新的WinRAR軟件解壓。
- 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
- 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁內(nèi)容里面會有圖紙預覽,若沒有圖紙預覽就沒有圖紙。
- 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
- 5. 人人文庫網(wǎng)僅提供信息存儲空間,僅對用戶上傳內(nèi)容的表現(xiàn)方式做保護處理,對用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對任何下載內(nèi)容負責。
- 6. 下載文件中如有侵權(quán)或不適當內(nèi)容,請與我們聯(lián)系,我們立即糾正。
- 7. 本站不保證下載資源的準確性、安全性和完整性, 同時也不承擔用戶因使用這些下載資源對自己和他人造成任何形式的傷害或損失。
最新文檔
- 保稅器材維修合同范本
- 包銷合同范本
- 衛(wèi)浴訂購合同范例
- 區(qū)府租房合同范本
- 個人學習計劃書26篇
- 中藥炮制工中級??荚囶}及答案
- 維修電工練習題庫+答案
- 工業(yè)鍋爐司爐考試模擬題含答案
- 醫(yī)藥采購合同范例
- 一本男孩子必讀的書教學反思
- 工程項目移交方案
- 高級英語-第一冊-課后習題答案
- 《帶電作業(yè)用絕緣工具試驗導則》
- 2024年時事政治熱點題庫200道附完整答案【必刷】
- 2024年山東信息職業(yè)技術(shù)學院單招職業(yè)技能測試題庫及答案解析
- 藥材的采收與產(chǎn)地加工
- 江蘇農(nóng)牧科技職業(yè)學院單招《職業(yè)技能測試》參考試題庫(含答案)
- 小學勞動教育二年級下冊教學計劃
- 三年級上冊脫式計算100題及答案
- 2024春開學第一課-開學第一課 禁毒我先行 課件
- 《聽歌識曲》課件
評論
0/150
提交評論