简介:用尖晶石型LiMn2O4材料做正极活性物质,石墨做负极材料,制备额定容量为1000mAh的456080软包方形锂离子电池。重点研究了不同的电解液注液系数对电池循环性能的影响。实验结果表明,4.5g/Ah的注液系数下,尖晶石型LiMn2O4表现出了更好的循环性能。
简介:以六水合氯化钴(CoCl2·6H2O)和水合三氯化钌(RuCl3·3H2O)为前驱体,采用胶体法制备超级电容器用(RuO2/Co3O4)·nH2O复合薄膜电极材料。用X射线衍射仪以及CHl660C电化学工作站对该复合薄膜的物相结构及电化学性能进行表征。结果表明:当COCl2'6H20和RuCl3·3H2O的物质的量比n(Co):n(Ru)为2:1时,于350℃下热处理2.5h制备的复合薄膜电极具有优良的性能,在浓度为0.5mol/L的H2S04电解液中其比电容达到512F/g,500次充放电循环后比电容量保持在充放电循环前的96.1%;充放电电流为0.01A时,内阻为1.2Ω。
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: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:通过水热法合成了一维链状的磷钼氧酸盐(DETA)。NaNa(H5P4Mo6O31)2]·8H2O(DETA—Diethylenetriamine),采用x-射线单品衍射结构分析,元素分析和红外光谱等表征.该磷钼氧酸盐属于三斜晶系,空间群是P-1,晶胞参数a=1.2434(3)nm,6—1.2610(3)nm,c=1.3079(3)nm,a=85.418(3)°,β=73.399(2)°),γ=82.175(3)°,V=1.9450(8)Elm。,F(000)=1462,Z=:=2.标题化合物的结构是由Na(H5P4Mo6O31)2簇单元,二亚乙基三胺阳离子和结晶水分子组成.另外,Na(H5P4Mo6O31)2簇由钠离子连接形成了一维的链结构.一维链结构又由于二亚乙基三胺阳离子和结晶水分子形成的氢键进一步连接三维超分子结构.用标题化合物修饰的碳糊电极(APM—CPE)对AA氧化有很好的电催化活性.
简介:以环己酮、乙二醇为原料,自制的锑铁复合固体超强酸S2O8^2-/Sb2O3/Fe2O3作催化剂,合成了环己酮乙二醇缩酮。通过分析环己酮与乙二醇的摩尔比、催化剂的量、反应时间和带水剂的用量对环己酮乙二醇缩酮的产率的单因素影响,选出合成环己酮乙二醇缩酮的单因素最优方案。同时,以环己酮与乙二醇的摩尔比、催化剂的量、带水剂的用量和反应时间为因素,设计了L9(34)正交表进行实验,得出的正交试验最佳方案为A2B1C2D2,即环己酮与乙二醇的摩尔比为1.0:1.7,催化剂的量为1.0g,带水剂用量为8mL,反应时间为1.5h。在该方案下,环己酮乙二醇缩酮的产率可以达到83.69%。
简介:ThecorrelationbetweenphasestructuresandsurfaceacidityofAl2O3supportscalcinedatdifferenttemperaturesandthecatalyticperformanceofNi/Al2O3catalystsintheproductionofsyntheticnaturalgas(SNG)viaCOmethanationwassystematicallyinvestigated.Aseriesof10wt%NiO/Al2O3catalystswerepreparedbytheconventionalimpregnationmethod,andthephasestructuresandsurfaceacidityofAl2O3supportswereadjustedbycalciningthecommercialγ-Al2O3atdifferenttemperatures(600–1200C).COmethanationreactionwascarriedoutinthetemperaturerangeof300–600Catdifferentweighthourlyspacevelocities(WHSV=30000and120000mL·g-1h-1)andpressures(0.1and3.0MPa).ItwasfoundthathighcalcinationtemperaturenotonlyledtothegrowthinNiparticlesize,butalsoweakenedtheinteractionbetweenNinanoparticlesandAl2O3supportsduetotherapiddecreaseofthespecificsurfaceareaandacidityofAl2O3supports.Interestingly,NicatalystssupportedonAl2O3calcinedat1200C(Ni/Al2O3-1200)exhibitedthebestcatalyticactivityforCOmethanationunderdifferentreactionconditions.LifetimereactiontestsalsoindicatedthatNi/Al2O3-1200wasthemostactiveandstablecatalystcomparedwiththeotherthreecatalysts,whosesupportswerecalcinedatlowertemperatures(600,800and1000C).ThesefindingswouldthereforebehelpfultodevelopNi/Al2O3methanationcatalystforSNGproduction.
简介:采用静态箱—气相色谱法,以常规稻为参照对象,研究福州平原地区目前正在广泛推广的超级稻稻田的甲烷(CH4)和氧化亚氮(N2O)排放通量特征。结果表明,稻田CH4排放主要集中在水稻分蘖期,其CH4排放量分别占常规稻和超级稻稻田总排放量的76.7%和64.1%;常规稻稻田CH4排放通量范围为0.09~16.90mg/(m2·h),超级稻稻田CH4排放通量范围为0.11~14.30mg/(m·2h);在整个水稻种植期,超级稻稻田平均CH4排放通量比常规稻稻田约减少3.6%;常规稻稻田的平均N2O通量为7.7μg/(m·2h),超级稻稻田的平均N2O通量为18.0μg/(m·2h);水稻成熟期常规稻和超级稻稻田的N2O通量占总通量的50%以上,分别达到了55.7%和66.9%。从综合温室效应看,常规稻稻田的综合增温潜势为2264.5kg/hm2CO2,超级稻稻田的综合增温潜势为1977.04kg/hm2CO2,超级稻稻田的综合增温潜势比常规稻稻田低12.7%。在相同管理条件下,种植超级稻可以降低稻田的综合温室效应,并提高水稻产量。
简介:COandformaldehyde(HCHO)oxidationreactionswereinvestigatedovermesoporousAg/Co3O4catalystspreparedbyone-pot(OP)andimpregnation(IM)methods.Itwasfoundthattheone-potmethodwassuperiortotheimpregnationmethodforsynthesizingAg/Co3O4catalystswithhighactivityforbothreactions.ItwasalsofoundthatthecatalyticbehaviorofmesoporousCo3O4andAg/Co3O4catalystsforthebothreactionswasdifferent.AndtheadditionofsilveronmesoporousCo3O4didnotalwaysenhancethecatalyticactivityoffinalcatalystforCOoxidationatroomtemperature(20C),butcouldsignificantlyimprovethecatalyticactivityoffinalcatalystforHCHOoxidationatlowtemperature(90C).Thehighsurfacearea,uniformporestructureandtheprettygooddispersiondegreeofthesilverparticleshouldberesponsiblefortheexcellentlow-temperatureCOoxidationactivity.However,forHCHOoxidation,theadditionofsilverplayedanimportantroleintheactivityenhancement.AndthesilverparticlesizeandthereducibilityofCo3O4shouldbeindispensableforthehighactivityofHCHOoxidationatlowtemperature.