简介:通过涂覆热分解法制备了Ti/RuO2-ZrO2-SnO2、Ti/RuO2电极材料,采用X射线衍射(XRD)、扫描电镜(SEM)和循环伏安(CV)对电极材料进行表征,考察了电流密度、NaCl质量浓度、pH值及电极间距对废水COD降解率的影响。结果表明,Ti/RuO2-ZrO2-SnO2电极对COD具有更高的降解率,对其进行工艺优化。电极材料对废水降解的最佳工艺条件为电流密度40mA/cm^2,NaCl质量浓度4g/L,pH=5.0,电极间距10mm,COD的降解率达到90.5%。Ti/RuO2-ZrO2-SnO2电极中SnO2与RuO2生成固溶体,有利于增强涂层与基体之间的结合力,提高电极的稳定性;ZrO2起到细化晶粒的作用,致使电极表面粗糙度增加,增强了电极的电催化性能,且降解过程符合一级动力学模型。
简介:为了探讨有害因子胁迫与二氧化硫(SO2)细胞生物合成的关系,采用体外培养实验方法研究了不同浓度H2O2(0.1、1、10mmol·L^-1)以及不同pH值(6.8、7.2、8.0)培养液对人支气管上皮细胞(BEP2D)SO2产生量(以胞内SO3^2-含量代表)的影响.结果表明:1)培养液过酸(pH6.8)和过碱(pH8.0)均可使BEP2D细胞SO2产生量显著增加(与对照相比,p〈0.05);2)H2O2胁迫也可使BEP2D细胞SO2产生量增加,当H2O2浓度≥1mmol·L^-1时,与对照相比,差异达到显著(p〈0.05).以上结果提示:人支气管上皮细胞在有害因子的胁迫下可产生内源性SO2;SO2可能是一种生物气体应激分子,能像应激蛋白那样提高生物体对有害因子的抵御能力.
简介:为探讨纳米MnO2与常规MnO2粉末对细胞DNA损伤作用的差别,采用不同浓度的纳米MnO2与常规MnO2粉末(0、100、200、400μg·mL^-1)对Hela细胞进行染毒,应用单细胞凝胶电泳(彗星实验)检测Hela细胞的损伤效应.结果表明,与对照组相比,纳米MnO2和常规MnO2各染毒组细胞尾部DNA百分率(TailDNA%)和尾矩(TailMoment)均显著增加(p〈0.01);同一浓度下,纳米MnO2组细胞尾部DNA百分率和尾矩显著高于常规MnO2组(p〈0.01).以上结果表明,纳米MnO2和常规MnO2粉末均能导致Hela细胞DNA损伤,且纳米MnO2的损伤作用强于常规MnO2.
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:HouseholdconsumptionisoneoftheimportantfactorsthatinduceCO2emission.Basedoninput-outputmodel,thisarticlecalculatedtheintensityofCO2emissionofdifferentincomegroupsandsevenprovincesinChina,andthenestimatedtotalCO2emissioninducedbyurbanhouseholdconsumptionfrom1995to2004inChinabasedonstatisticdataofhouseholdlivingexpenditure.TheresultsshowthatCO2emissionpercapitainducedbyhouseholdconsumptionhadincreasedfrom1583to2498kgCO2during1995-2004.Theratioofconsumption-inducedCO2emissiontototalCO2emissionhadrisenfrom19%to30%inthepastdecade.IndirectCO2emissionaccountedforanimportantpartoftheconsumption-inducedemission,theratioofindirectemissiontoconsumption-inducedemissionhadrisenfrom69%to79%duringthesameperiod.Asignificantdifferenceinconsumption-inducedCO2emissionacrossdifferentincomegroupsanddifferentregionshasbeenobserved.CO2emissionpercapitaofhigherincomegroupsanddevelopedregionsincreasedfasterthanthatoflowerincomegroupsanddevelopingregions.ChanginglifestylehasdrivensignificantincreaseinCO2emission.Especially,increasesinprivatetransportexpenditure(forexample,vehicleexpenditure)andhousebuildingexpenditurearekeydrivingfactorsofgrowthinconsumption-inducedCO2emission.TherearebigdifferencesintheamountofCO2emissioninducedbychangeinlifestyleacrossdifferentincomegroupsandprovinces.Itcanbeexpectedthatlowerincomehouseholdsanddevelopingregionswillincreaseconsumptiontoimprovetheirlivingswithincomegrowthinthefuture,whichmayinducemuchmoreCO2emission.AreasonablelevelofCO2emissionisnecessarytosatisfyhumanneedsandtoimprovelivingstandard,butanoticeablefactisthatCO2emissionpercapitainducedbyhouseholdconsumptionindevelopedareasofChinahadreachedaquitehighlevel.Adjustmentinlifestyletowardsalow-carbonsocietyisinurgentneed.
简介:为探究并比较淡水鱼种日本青鳉早期发育阶段对Cu2+和Cd2+等重金属胁迫的响应,在实验室通过半静态方式,对日本青鳉受精卵和仔稚鱼分别进行了48h和96h急性毒性实验。结果表明:Cu2+对日本青鳉胚胎24、48h-LC_(50)分别为8.164mg·L(-1)和6.965mg·L(-1);Cd2+对日本青鳉胚胎24、48h-LC_(50)分别为63.084mg·L(-1)和53.093mg·L(-1);较低浓度组Cu(2+)(≤1.97mg·L(-1))时日本青鳉胚胎的发育速率快于对照组,而较高浓度组(≥3.87mg·L(-1))胚胎的发育速率则慢于对照组;与Cu(2+)略有不同,无论浓度高低Cd(2+)对胚胎的孵化速率均产生抑制作用;Cu(2+)和Cd(2+)质量浓度分别高于1.97mg·L(-1)和19.68mg·L(-1)时,两种重金属离子均显著降低胚胎的孵化率(P〈0.05)。Cu(2+)对日本青鳉初孵仔鱼24、48、72和96h-LC_(50)分别为5.361mg·L(-1)、2.844mg·L(-1)、2.020mg·L(-1)和1.352mg·L(-1);Cd(2+)对日本青鳉初孵仔鱼24、48、72和96h-LC_(50)分别为15.907mg·L(-1)、10.550mg·L(-1)、7.986mg·L(-1)和6.346mg·L(-1);Cu(2+)对日本青鳉稚鱼24、48、72和96h-LC_(50)分别为5.732mg·L(-1)、4.037mg·L(-1)、2.498mg·L(-1)和1.955mg·L(-1);Cd(2+)对日本青鳉稚鱼的24、48、72和96h-LC_(50)分别为16.419mg·L(-1)、11.745mg·L(-1)、8.516mg·L(-1)和6.776mg·L(-1)。与其它淡水水生生物相比,日本青鳉仔稚鱼对铜和镉离子较为敏感。
简介:AftertheKyotoProtocolwasimplemented,carbonleakageexertsgreatinfluencesoninternationaltradeandeconomy.Tradecreatesamechanismforconsumerstoshiftenvironmentalpollutionassociatedwiththeirconsumptiontoothercountries.ChinahasovertakentheU.S.astheworld'sbiggestCO2emittersince2006.AsChina'ssecondlargesttradepartner,theU.S.hasthebiggesttradedeficitwithChinawhichhasarousedalotofdisputesbetweenthetwoparties.ButsofartheassessmentsofthetradeimbalanceofChina-U.S.havepaidlittleattentiontoenvironmentalimpactsassociatedwiththetradeimbalance.Appliedaninput-outputapproach,thearticleestimatestheamountofCO2embodiedinChina-U.S.tradeduring1997-2007.ItwasfoundthatthroughtradewithChina,theU.S.reduceditsCO2emissionscomparedwithanon-tradescenario.Duetothegreatercarbon-intensityandrelativelylessefficientproductionprocessesofChineseindustry,China-U.S.traderesultedinmoreCO2emissionsinChinaandtheworld.Intheend,thearticlegivessomesuggestions:itisequalandsustainablethattheinternationalaccountingmethodologiesshouldbeimproved,forCO2emissionsresponsibilitymustbedesignedtoaccountforthedynamicnatureofinternationaltrade.
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:Inthispaper,weconstructamodelinwhichtheimpactofpollutiononhealthisexertedthroughbothdirectandindirectchannels.Theindirectchanneliscapturedbyaproductionfunc-tioninwhichtheprincipalhealth-improvingfactor,incomegrowth,canberealizedonlyinthecostofpollutionincrease.Thismodelisthentestedbytheaggregatedchroniclediseasedatainover78Chinesecounties.Ourresultsshow,afterattainingthethresholdof8μg/m2,continuousincreaseinindustrialSO2emissiondensitywillleadtheratioofpopulationsufferingchroniclediseases,amongwhichrespiratorydiseasesoccupyasignificantproportion,torise.However,owingtotechnologicalprogressinpollutioncontrolactivities,theneededSO2emissiontoproduceoneunitofGDPdiminisheswithtime.Therefore,thenegativeeffectfrompollutionaugmentationonpublichealthseemstoberecompensedmoreandmorebythepositiveeffectofeconomicgrowth.
简介:ThispaperproposestouseDEAmodelswithundesirableoutputstoconstructtheMalmquistindexthatcanbeusetoinvestigatethedynamicchangesofCO2emissionperformance.Withtheindex,theauthorshavemeasuredtheCO2emissionperformanceof28provincesandautonomousregionsinChinafrom1996to2007;withtheconvergencetheoryandpaneldataregressionmodel,theauthorsanalyzetheregionaldifferencesandtheinfluencingfactors.ItisfoundthattheperformanceofCO2emissionsinChinahasbeencontinuouslyimprovedmainlyduetothetechnologicalprogress,andtheaverageimprovementrateis3.25%,withacumulativeimprovementrateof40.86%.Inaddition,theCO2emissionperformancevariesacrossfourregions.Asawhole,theperformancescoreofeasternChinaisthehighest.ThenortheasternandcentralChinahasrelativelylowerperformancescores,andthewesternChinaisrelativelybackward.Theregionaldifferencesaredecreasing,andtheperformanceofCO2emissionsisconvergent.TheinfluenceofsomefactorsontheperformanceofCO2emissionsissignificant,suchasthelevelofeconomicdevelopment,thelevelofindustrialstructure,energyintensity,andownershipstructure.Theinfluenceofsomefactors,suchasopening-uptotheoutsideworld,ontheperformanceofCO2emissionsisnotsignificant..
简介:为研究城市不同区域植物叶面滞尘和叶片形态结构特征,以西安市不同区域的大叶女贞(Ligustrumlucidum)和小叶女贞(Ligustrumquihoui)为研究对象,用重量法测定叶面滞尘量,用激光粒度分析仪测定叶面尘的粒径分布,用图像分析法测定叶片形态结构(叶长、叶宽、叶面积、叶柄长)和表皮特征(气孔密度和气孔面积)。结果表明,大叶女贞和小叶女贞叶面滞尘量在不同区域具有显著差异(ANOVA,p<0.05),其变化范围分别为0.96~5.56g/m2、1.04~6.70g/m2,且表现出小叶女贞显著大于大叶女贞(t检验,p<0.05)。大叶女贞叶面尘粒径累积曲线呈双峰分布,小叶女贞呈单峰分布。从粒径分布来看,大叶女贞叶面上滞留颗粒物粒径更小,且随污染程度的增加,叶面滞留的小粒径颗粒物亦增加。受不同区域微环境的影响,大叶女贞叶片形态发生明显变化,而小叶女贞变化不明显。总体而言,大叶女贞叶宽、叶面积、叶柄长和气孔面积随污染程度的加剧而减小,气孔密度则随污染程度的增加而增加。小叶女贞除气孔密度随污染程度的增加升高外,其他叶片结构特征,如叶长、叶宽、叶面积和气孔面积均较相对清洁区稍有增大。叶片形态特征值与滞尘量之间存在显著关系,除气孔密度与叶面滞尘量呈极显著对数正相关(p<0.05)外,其他特征值均与叶面滞尘量呈极显著的对数负相关关系(p<0.05)。
简介:采用球衣菌(Sphaerotilwsnatans)FQ32为生物吸附剂,研究了Pb^2+初始浓度、吸附剂用量、菌龄、pH值、温度和吸附时间等理化因素对球衣菌吸附硝酸铅溶液模拟废水中Pbc的影响。结果表明,球衣菌在Pb^2+初始质量浓度为50mg/L、吸附剂0.6g/L用量、菌龄32h、pH=7、温度30℃、吸附时间60min的条件下,对Pb^2+的吸附率为89.98%,吸附量为74.98mg/g;该吸附过程是一个快速的过程,在吸附5min时,吸附量已达总吸附量的94%,90min达到吸附平衡。球衣菌对Pb^2+的吸附基本为细胞表面的被动吸附,吸附条件对吸附效率有较大影响。