简介:AsimplespectrophotometricassayofH2O2andglucoseusingAgnanoparticleshasbeencarriedout.RelyingonthesynergisticeffectofH2O2reductionandultraviolet(UV)irradiation,Agnanoparticleswithenhancedabsorptionsignalsweresynthesized.H2O2servedasareducingagentintheAgnanoparticlesformationinwhichAg+wasreducedtoAg0byO2àgeneratedviathedecompositionofH2O2inalkalinemedia.Ontheotherhand,photoreductionofAg+toAg0underUVirradiationsalsocontributedtothenanoparticlesformation.ThesynthesizednanoparticleswerecharacterizedbyTEM,XPS,andXRD.TheproposedmethodcoulddetermineH2O2withconcentrationsrangingfrom5.010à7to6.010à5mol/L.Thedetectionlimitwasestimatedtobe2.010à7mol/L.SincetheconversionofglucosetogluconicacidcatalyzedbyglucoseoxidasewascompaniedwiththeformationofH2O2,thesensingprotocolhasbeensuccessfullyutilizedforthedeterminationofglucoseinhumanbloodsamples.Theresultswereingoodagreementwiththosedeterminedbyalocalhospital.Thiscolorimetricsensorthusholdsgreatpromisesinclinicalapplications.
简介:Cd忍耐和米饭幼苗的translocation上的H2O2预告的处理的效果用在Cd忍耐不同的二米饭栽培变种(N07-6和N07-63)被学习。malondialdehyde(MDA)的内容,减少的谷胱甘肽(GSH),非蛋白质thiols(NPT),phytochelatins(PC)和谷胱甘肽S-transferase(GST)的活动在暴露于各种各样的处理的二栽培变种之间被比较。结果证明50mol/LCd暴露显著地禁止了米饭生长,提高了GSH,NPT,PC和MDA的生产,并且增加了GST的活动,并且二栽培变种之间有重要差别。更多的Cd被搬运进N07-6的射击。H2O2预告的处理由进一步在根增加GSH,NPT和PC内容,以及GST活动减轻了Cd毒性。在N07-63的这些参数的增加度比在N07-6的那些高,建议N07-63的忍耐比N07-6更显著地被提高。氢过氧化物把Cdtranslocation归结为米饭射击,但是不同地在根影响了Cd内容。从上述结果,在到在二栽培变种之间的H2O2预告的处理的Cddetoxification和反应有显著差别,这可以被推测。
简介:对原漂白工艺与改进的H2O2漂白工艺进行了实验室对比,结果表明,后者的漂白效果要远优于前者。但调整后的H2O2漂白工艺对工厂未充分洗涤的次氯酸盐(H段)漂白浆没有漂白效果。添加乙二胺四乙酸二钠盐(EDTANa2)的螯合效果与乙二胺四乙酸四钠盐(EDTANa4)的相当,但它们都优于DTPA。当EDTANa2(用量0.1%)与三聚磷酸钠(用量0.1%)复配物作为H2O2漂白的螯合剂时,H2O2对未充分洗涤H段漂浆的漂白效果明显,添加少量的尿素与双氰胺,H2O2漂白效果不提高。浆料筛分结果表明,芦苇浆末端H2O2漂白前的细小组分来自于原浆,H2O2漂白前浆料中细小组分(过200目)的含量对H2O2漂白效率影响较大,当细小组分含量大于5%时,H2O2漂白后未洗浆的白度较低。对原浆中的细小组分进行显微镜观察可知,细小组分中大部分是非纤维细胞,其中有80%左右(面积)的是尘埃,20%左右是杂细胞或细小纤维。
简介:Twofamiliesofcatalysts,basedonPdnanoparticlessupportedonceramicasymmetrictubularaluminamembranes,arestudiesinthedirectsynthesisofH_2O_2.TheyarepreparedbydepositingPdintwoways:(i)reductionwithN_2H_4inanultrasonicbathand(ii)byimpregnation-deposition.Thefirstpreparationleadstolargerparticles,withaveragesizeofaround11nm,whilethesecondpreparationleadstosmallerparticles,withaveragesizearound4nm.Thecatalyticmembranesweretestedasprepared,afterthermaltreatmentinairandafterfurtherpre-reductionwithH_2inmild(100℃)conditions.SampleswerecharacterizedbyTEM,CO-chemisorptionmonitoredbyDRIFTSmethodandTPR,whilecatalytictestshavebeenperformedinasemi-batchrecirculationmembranereactor.Experimentalcatalyticresultswereanalysedusingtwokineticsmodelstoderivethereactionconstantsfortheparallelandconsecutivereactionsofthekineticnetwork.SmallerparticlesofPdshowlowerselectivityduetothehigherrateofparallelcombustion,evenifthebetterdispersionofPdandthushighermetalsurfaceareainthesampleleadtoaproductivityinH_2O_2similarorevenhigherthanthesamplewiththelargerPdparticles.IndependentlyonthepresenceofsmallerorlargerPdnanoparticles,anoxidationtreatmentleadstoasignificantenhancementintheproductivity,althoughthecatalystprogressivelyreducesduringthecatalyticprocess.Theinhibitionoftheparallelcombustionreaction(towater)inducedfromthecalcinationtreatmentremainsafterthein-situreductionoftheoxidizedPdspeciesformedduringthepre-treatment.Thisislikelyduetotheeliminationofdefectsiteswhichdissociativelyactivateoxygen,andtentativelyattributedtoPdsitesabletogivethree-andfour-foldcoordinationofCO.
简介:Nitrobenzene-containingindustrialwastewaterwasdegradedinthepresenceofozonecoupledwithH2O2byhighgravitytechnology.Theeffectofhighgravityfactor,H2O2concentration,pHvalue,liquidflow-rate,andreactiontimeontheefficiencyforremovalofnitrobenzenewasinvestigated.TheexperimentalresultsshowthatthehighgravitytechnologyenhancestheozoneutilizationefficiencywithO3/H2O2showingsynergisticeffect.ThedegradationefficiencyintermsoftheCODremovalrateandnitrobenzeneremovalratereached45.8%and50.4%,respectively,underthefollowingreactionconditions,viz.:ahighgravityfactorof66.54,apHvalueof9,aH2O2/O3molarratioof1:1,aliquidflowrateof140L/h,anozoneconcentrationof40mg/L,aH2O2multipledosingmodeof6mL/h,andareactiontimeof4h.Comparedwiththeperformanceofconventionalstirredaerationmixers,thehighgravitytechnologycouldincreasetheCODandnitrobenzeneremovalraterelatedwiththenitrobenzene-containingwastewaterby22.9%and23.3%,respectively.
简介:TheepoxidationofallylchloridewithH2O2onTi-ZSM-5preparedbyisomorphoussubstitutionofHZSM-5withTiCl4gaswasstudied.TheresultsshowthatTi-ZSM-5hasahighcatalyticefficiencyfortheepoxidationofallylchloride.TheH2O2utilizationreaches99.50%whentheallylchloride/H2O2molarratiois>1.Theeffectofsolventspecies,catalystconcentration,H2O2andallylchlorideconcentrationandreactiontemperatureontheepoxidationwasinvestigatedsimultaneously.Itisfoundthatmethanolisthebestsolventforthereaction.Thereactionrateequationwithv=k[Cat.][H2O2]1/2-[C3H5Cl]andtheapparentactivationenergywithEa=63.462kJ/molareobtainedaccordingtothekineticsstudy.
简介:TiO2nanoparticleswithdifferentphasesarepreparedbyhydrolysisoftitaniumtetrabutoxideinthepresenceofHCl.ThecompositionandmicrostructureoftheresultingsamplesarestudiedbyXRDandTEM.TheseresultsshowthattherangeofparticlesizeofTiO2isfrom20to30nm.ThemechanismofTiO2photocatalysisreactionhasbeendiscussedextensively.PhotocatalyticactivitiesofnanometerTiO2arealsoevaluatedbydegradationofthecrystalvioletsolution.ExperimentalresultsindicatethatthesynergisticactionofH2O2andultrasonicwavegreatlyenhancesphoto-catalyticreactionofTiO2.
简介:DBUH-Br3catalyzedselectiveconversionofsulfidestosulfoxidesinthepresenceofH2O2asoxidizingagentisdescribed.Thereactionwasperformedselectivelyatroomtemperatureandrelativelyshortreactiontimes.
简介:Thesolidaddofthefirstprotonatedzincoborophosphate,(H3O)Zn(H2O)2BP2O8·H2O(1),wassoventothermallysyn-thesizedbythereactionofZn(NO3)2·6H2OandH3BO3withH3PO4inamixedsolvent,andstructurallycharacterizedbysingle-ystalX-raydiffractionanalysis.ItcrystallizesinthehexagonalP6122,a=0.9604(4)nm,c=1.5297(6)nm,V=1.2218(8)nm^3,Dc=2.921g/cm^3,Z=6,F(000)=1080,μ=3.495mm^-1.Thestmchwefeaturesthatthetetrahedra-te-trahedrahdlcesinterconnectedbyoctahedraandstronghydro-gembondinteractionsformathree-dimensionalframework.Theprotonatedwatermoleculesarelocatedatuniquepositions.othercharacterizationsbyIRandthermalanalysisarealsode-scribed.
简介:摘要:近年来,随着水体富营养化日益加剧,导致藻类季节性大量繁殖,而在其生长、繁殖、代谢过程中会产生嗅味污染,这不但影响了饮用水的感官,也对人体的健康造成了一定的危害性,引发了供水危机,严重威胁着国家公共安全体系。而在藻类致嗅风险中,土臭素(GSM)和二甲基异崁醇(2-MIB)所引发的饮用水嗅味污染是当下重中之重。现行的水处理工艺对两种嗅味的去除效率较低,同时存在占地面积大,溴酸盐消毒副产物等风险。针对此种现状,UV/H2O2高级氧化技术不但可以有效去除GSM、2-MIB,还可以弥补上述不足,因而备受青睐。