简介:通过介绍全球及我国近年来CO2的排放状况,首先指出了CO2回收的迫切性及资源化利用的优势,并以CCS(碳捕集与封存)和CCU(碳捕集与利用)为例,分别介绍了诸如地质封存、海洋封存、化学转化和生物转化等规模化回收利用技术,阐述了这些技术的回收原理、工艺路线、安全环保性、技术优势和工业化案例。通过分析CCS各技术的封存能力、封存效果、技术瓶颈及其工业化推广的进度和潜力,指出CCS技术的全球化应用目前还存在一定的风险和制约:通过对比CCU各技术研究重点、转化瓶颈以及工业化进度等,指出化学转化法是目前最有效的CO2规模化回收利用技术:还介绍了其它几种具有规模化潜力的CO2利用新技术。
简介:Globalclimatechangeisoneofthemajorenvironmentalissuesfacedbyhumans.Existingevidenceindicatesthattheanthropogenicpushforariseintheatmosphericconcentrationofgreenhousegases(GHGs)(particularlyCO2)hasbeenaprimarycauseforglobalwarming.Asidefromeconomicandteclinologicalfactors,demographicdynamics(includinghumanconsumptioninabroaddemographicsense)hasbeenamajordriverforCO2emissions.Inthispaper,weperformedbothnonlinearregressionanalysis(basedontheSTIRPATmodel)andgraycorrelationdegreeanalysis(basedongraysystemtheory)ontheimpactofdemographicdynamicsonCO2emissions.OurresultsrevealthatCO2emissionsarepositivelycorrelatedwithpopulationsizeandGDPpercapitaandnegativelycorrelatedwithenergyintensity.WealsoshowthatgraycorrelationdegreewithCO2emissionsforfivevariables(i.e.,householdconsumption,urbanizationrate,householdsize,populationagingrate,populationsize)variessubstantially:householdconsumption>urbanizationrate>householdsize>populationagingrate>populationsize,withhouseholdconsumptionbeingthehighest,andpopulationsizethelowest.TomitigatetheimpactofdemographicdynamicsonCO2emissions,itisofvitalsignificancetonurturepeople’sawarenessofsustainableconsumptionandtoadheretocurrentpopulationcontrolpolicies.
简介:EstablishingpositiveandurgenttargetsforCO2reductionandemissionpeak,andpromotingenergyconservationandenergystructureadjustmentareamongthestrategiestoaddressglobalclimatechangeandCO2emissionsreduction.Theyarealsomeanstobreakthroughtheconstraintsofdomesticresourcesandenvironment,andinternalneeds,toachievesustainabledevelopment.Generallyspeaking,acountry’sCO2emissionpeakappearsafterachievingurbanizationandindustrialization.Bythen,connotativeeconomicgrowthwillappear,GDPwillgrowslowly,energyconsumptionelasticitywilldecrease,andenergyconsumptiongrowthwillslowdown-dependentmainlyonnewandrenewableenergies.Fossilfuelconsumptionwillnotincreasefurther.WhenCO2emissionreachesitspeak,theannualreductionrateofCO2intensityofGDPisgreaterthanGDPannualgrowthrate;andtheannualreductionrateofCO2intensityofenergyuseisgreaterthantheannualgrowthrateofenergyconsumption.Therefore,threeimportantapproachestopromotionofCO2emissionpeakcanbeconcluded:maintainingreasonablecontrolofGDPgrowth,strengtheningenergyconservationtosignificantlyreducetheGDPenergyintensity,andoptimizingtheenergymixtoreducetheCO2intensityofenergyuse.Byaround2030,Chinawillbasicallyhavecompleteditsrapiddevelopmentphaseofindustrializationandurbanization.ConnotativeeconomicgrowthwillappearwiththeaccelerationofindustrialstructureadjustmentThetargetofGDPenergyintensitywillstillbetomaintainanaverageannualreductionof3%orhigher.Theproportionofnon-fossilfuelswillreach20-25%,andtheaimwillbetomaintainanaverageannualgrowthrateof6-8%.Thetotalannualenergydemandgrowthof1.5%willbesatisfiedbythenewlyincreasedsupplyofnon-fossilfuels.TheannualdeclineinCO2intensityofGDPwillreach4.5%orhigher,whichiscompatiblewithanaverageannualGDPgrowth
简介:Inthisstudy,apoly(etherblockamide)(Pebax1657)compositemembraneappliedforCO2capturewaspreparedbycoatingPebax1657solutiononpolyacrylonitrile(PAN)ultrafiltrationmembrane.Ethanol/watermixturewasusedasthesolventofPebaxandtheeffectsofethanol/watermassratiosandPebaxconcentrationonthepermeationpropertiesofcompositemembranewerestudied.Toenhancethecompositemembranepermeance,thegutterlayer,madefromreactiveaminosiliconecrosslinkingwithpolydimethylsiloxane(PDMS),wasdesigned.Theinfluenceofcrosslinkingdegreeofthegutterlayeronmembraneperformancewasinvestigated.Asaresult,aPebax/aminoPDMS/PANmultilayermembranewithhexaneresistancewasdeveloped,showingCO2permeanceof350GPUandCO2/N2selectivityover50.Theblendofpolyethyleneglycoldimethylether(PEG-DME)withPebaxascoatingmaterialwasstudiedtofurtherimprovethemembraneperformance.AfterbeingcombinedwithPEG-DMEadditive,CO2permeanceofthefinalPebax-PEG-DME/amino-PDMS/PANcompositemembranereached400GPUabovewithCO2/N2selectivityover65.
简介:从土壤表面的二氧化碳(CO2)的流动在陆上的生态系统介绍碳(C)周期的一个重要部件并且被很多个关於生命、不能生活的因素控制。以便更好在副热带的森林里理解土壤CO2流动(FCO2)的特征,土壤FCO2率在五种邻近的森林类型被确定(樟脑树森林,马森松森林,混合樟脑树和马森消瘦森林,中国香甜的口香糖森林,并且猛砍松森林)在在长沙的Tianjiling国家公园,湖南省在副热带的中国,从1月到2010年12月。土壤温度(Tsoil)的影响,容量的土壤浇内容(土壤),玷污pH,玷污器官的碳(SOC)并且玷污土壤FCO2率上的C/nitrogen(N)比率也被调查。年度吝啬的土壤FCO2率与森林类型变化了。土壤FCO2率在樟脑树森林里是最高的(3.53瑮楲畢楴湯?潴琠敨猠楯??中?湡?桴瑡倠?灡汰捩瑡潩?污潳愠捣汥牥瑡摥???牴湡晳牯慭楴湯椠?潳汩猠飼?飼吗??
简介:Wereportedabifunctionalmaterial,Cr-salenimplantedconjugatedmicroporouspolymer(Cr-CMP),whichisabletocaptureexcellentCO2amountsandhasaremarkablecatalyticactivitytowardsthecycloadditionreactionofCO2toepoxidesformingcycliccarbonatesatmildconditionswithoutadditionalsolvents.ThisheterogeneousCr-CMPcatalysthasasuperiorcatalyticactivitytoitsrelatedhomogeneouscatalystandcanbereusedmorethantentimeswithoutasignificantdecreaseincatalyticactivity.
简介:Asupercriticalcarbondioxide(ScCO2)assistedphaseinversionwasdevelopedtoproducemicroporouspoly(vinylidenefluoride)(PVDF)membraneswhosemorphologycharacteristicsarisefrombothliquid-liquiddemixingandsolid-liquiddemixing(crystallization).ThisresultwasconfirmedbyFouriertransforminfraredspectroscopy(FTIR),fromwhichbothαandβcrystalswerefound.Asrevealedbycontactangleexperiment,thePVDFmembranespreparedviaScCO2assistedphaseinversionweremorehydrophobiccomparedwiththecontrolmembraneproducedviaconventionalimmersionprecipitationtechnique.Inparticular,thesamplewith15wt%PVDFpreparedat45°Cand13MPaexhibitedacontactangleof142°,whichwasmainlycausedbythemultilevelmicro-andnano-structure.Theeffectsofpolyethyleneglycol(PEG),polyvinylpyrrolidone(PVP)andlithiumchloride(LiCl)onthestructuresandcrystalformwereinvestigated.PVPpromotedtheformationofβphasecrystalform,whilePEGbooststheevolutionofαphase.LiClrestrainedthecrystallizationdegreeofPVDFmembraneunderScCO2.
简介:Ba1.0Co0.7Fe0.2Nb0.1O3-δ(BCFN)oxidewithperovskitecubicstructurewassynthesizedbysolidstatereactionmethod.CO2corrosionofBCFNmembranewasinvestigatedbyX-raydiffraction(XRD),scanningelectronmicroscopy(SEM),diffusereflectanceinfraredFouriertransformedspectroscopy(DRIFT)andX-rayabsorptionfinestructurespectroscopy(XAFS).Cobalt(Co)K-edgeabsorptionspectraofBCFNannealedinCO2revealthattheoxidationstatesofCoinallthesampleswerelargerthan+3andtheydecreasedwiththeincreaseofcalcinationtime.At800℃,1%CO2introducedintoHecouldspeedupthereductionofCocationsincomparisonwithpureHe.Inaddition,sulfateionsinthebulkofBCFNmembranepreferredtomigratetothesurfaceunderCO2calcinationandformmonoclinicBa(CO3)0.9(SO4)0.1besidesorthorhombicwitherite.Moreover,SEMresultsindicatethatthenucleationandgrowthofcarbonatesgrainsstartedatthegrainboundaryofthemembrane.
简介:InthispaperweusedMOF-5andCu3(BTC)2toseparateCO2/CH4andCH4/N2mixturesunderdynamicconditions.Bothmaterialsweresynthesizedandpelletized,thusallowingforameaningfulcharacterizationinviewofprocessscale-up.ThematerialswerecharacterizedbyX-raydiffraction(XRD)andscanningelectronmicroscopy(SEM).Byperformingbreakthroughexperiments,wefoundthatCu3(BTC)2separatedCO2/CH4slightlybetterthanMOF-5.BecausethecrystalstructureofCu3(BTC)2includesunsaturatedaccessiblemetalsitesformedviadehydration,itpredominantlyinteractedwithCO2moleculesandmoreeasilycapturedthem.Conversely,MOF-5withasuitableporesizeseparatedCH4/N2moreefficientlyinourbreakthroughtest.
简介:摘要目的探究并分析CO2激光联合匹多莫德治疗尖锐湿疣的临床疗效。方法选取尖锐湿疣患者68例,随机分为治疗组、对照组,每组34例。其中,治疗组采用CO2激光联合匹多莫德治疗;对照组采用单纯CO2激光治疗。结果1月后,治疗组痊愈30例,痊愈率88.24%;对照组痊愈28例,痊愈率82.35%。两组无显着性差异(P>0.05);3月后,治疗组复发4例,复发率为13.33%(4/30);对照组复发16例,复发率为57.14%(16/28)。两组差异有统计学意义(P<0.05)。治疗期间,两组均未出现明显不良反应。结论CO2激光联合匹多莫德治疗尖锐湿疣疗效显着,疣体清除快速,3月内复发率低,是治疗尖锐湿疣较好的方法之一。
简介:为了研究旁路/离线人工湿地系统在净化水体时的温室气体排放状况及其与环境因子的关系,于2010年7~11月,采用静态箱~气相色谱法,对罗马湖旁路/离线人工湿地系统的3个不同景观结构单元f温榆河龙道河交叉处河岸带S1采样点、龙道河河道s2采样点和罗马东湖湖岸带s3采样点)的CO2、CH,和N2O排放通量进行了同步采样和对比研究,探讨了影响温室气体排放的主要环境因子。研究结果表明,该湿地系统CO2、CH。和N:O的排放通量都有明显的时空变化特征。从空间上看,S1采样点和s2采样点的CO:月平均排放通量较高,分别为73.5mg/(m2.h)和75.1mg/(m2.h),与其表层(0--5cm)沉积物中较高的有机质含量(7.04±29.4g/kg)有关。S2采样点的CH4月平均排放通量[4.78mg/(m2·h)]高于s1采样点[1.59mg/(m2·h)]和s3采样点[1.70mg/(m2·h)],其与该采样点水体中的氧化还原电位显著负相关(r=-0.779,p〈0.01)。3个不同景观结构单元的N2O排放通量差异不大[0.022~0.025mg/(m2.h)】;相关性分析结果表明,N2O排放通量与表层沉积物的N02-—N含量显著正相关fr=0.689,p〈0.05)。从时间上看,水温是影响旁路/离线人工湿地系统运行时CH4和N2O排放通量的重要环境因子。