简介:[1]AnZS,WeiLY,LuYC,1985,ApreliminarystudyofsoilstratigraphyinLuochuanloessprofile.QuaternarySciences,6(1):166-173.(inChinese)[2]AnZS,KutzbacchJE,PrellWLetal.,2001.EvolutionofAsianmonsoonsandphasedupliftoftheHimalaya-TibetanplateausinceLateMiocenetimes.Nature,411:62-66.[3]BarbaraAM,1995.PalaeorainfallreconstructionsfrompedogenicmagneticsusceptibilityvariationintheChineseloessandpalaeosol.QuaternaryResearch,44(3):383-391.[4]DerbyshireE,MengXM,KempRA,1998.Provenance,transportandcharacteristicsofmodemaeoliandustinwesternGansuProvince,China,andinterpretationoftheQuaternaryloessrecord.JournalofAridEnvironments,39:497-516.[5]DingZL,LiuDS,LiuXMetal.,1989.37cyclessince2.5Ma.ChineseScienceBulletin,34(19):1494-1496.[6]DingZL,RutterNW,SunJMetal.,2000.Re-arrangementofatmosphericcirculationatabout2.6MaovernorthernChina:evidencefromgrainsizerecordsofloess-palaeosolandredclaysequences.QuaternaryScienceReviews,19:547-558.[7]DuJ,ZhaoJB,2004.SoilerosionregularitysinceHoloceneinShaolingtablelandofChang′an.JournalofDesertResearch,24(1):63-67.(inChinese)[8]FengZD,WangHB,OlsonCetal.,2004.Chronolgicaldiscordbetweenthelastinterglacialpaleosol(S1)anditsparentmaterialintheChineseLoessPlateau.QuaternaryInternational,117:17-26.[9]GuoZT,LiuDS,FedoroffNetal.,1998.ClimateextremesinloessofChinacoupledwiththestrengthofdeep-waterformationintheNorthAtlantic.GlobalandPlanetaryChange,18:113-128.[10]GuoZT,WillamFRuddiman,HaoQZetal.,2002.OnsetofAsiandesertificationby22MyragoinferredfromloessdepositsinChina.Nature,416:159-163.[11]HeinrichH,1988.OriginandconsequenceofcycliciceraftinginthenortheastAtlanticOceanduringpast130000years.QuaternaryResearch,29:142-152.[12]KempRA,DerbyshireE,
简介:Glacierinventorycompilationduringthepast20yearsandmodificationsofthatfortheEasternPamirandBanggongLakeindicatethatthereare46,342modernglacierswithatotalareaandvolumeof59415km2and5601km3respectivelyinChina.Theseglacierscanbeclassifiedintomaritimeandcontinental(includingsub-continentalandextremelycontinental)types.ResearchesshowthatglaciersinChinahavebeenretreatingsincetheLittleIceAgeandthemasswastagewasacceleratedduringthepast30to40years.BeinganimportantpartofglaciologicalstudiesinChina,icecoreclimaticandenvironmentalstudiesonTibetanPlateauandintheAntarcticahaveprovidedabundant,highresolutioninformationaboutpastclimaticandenvironmentalevolutionovertheTibetanPlateauandAntarctica.ExceptfordifferentparametersrecordedinicecoresrelatingtoclimateandenvironmentchangesonTibetanPlateau,recordsfromicecoresextractedfromdifferentglaciersshowthatthediscrepanciesinclimaticandenvironmentalchangesonthenorthandsouthpartsoftheplateaumaybetheconsequenceofdifferentinfluencingeffectsfromterrestrialandsolarsources.GlaciologicalandmeteorologicalphenomenaimplythatLambertGlaciervalleyisanimportantboundaryofclimateintheeastAntarctica,whichisthoughttobeconnectedwithcyclonicactivitiesandCircum-polarWavesovertheAntarctica.
简介:PermafrostinChinaincludeshighlatitudepermafrostinnortheasternChina,alpinepermafrostinnorthwesternChinaandhighplateaupermafrostontheTibetanPlateau.Thehighaltitudepermafrostisabout92%ofthetotalpermafrostareainChina.Thesouthboundaryorlowerlimitoftheseasonallyfrozengroundisdefinedinaccordancewiththe0℃isothermallineofmeanairtemperatureinJanuary,whichisroughlycorrespondingtothelineextendingfromtheQinlingMountainstotheHuaiheRiverintheeastandtothesoutheastboundaryoftheTibetanPlateauinthewest.SeasonalfrozengroundoccursinlargepartsoftheterritoryinnorthernChina,includingNortheast,North,NorthwestChinaandtheTibetanPlateauexceptforpermafrostregions,andaccountingforabout55%ofthelandareaofChina.Thesouthernlimitofshort-termfrozengroundgenerallyswingssouthandnorthalongthe25°northernlatitudeline,occurringinthewetandwarmsubtropicmonsoonclimaticzone.Itsareaislessthan20%ofthelandareaofChina.
简介:针对北京市农村地区居民居住相对分散、生活污水集中处理难度大的状况,在北京市杨镇一中,建立了经济且简便易行的用于处理污水的人工湿地。该人工湿地由地埋式一体化预处理、多级复合式人工湿地系统、景观湿地系统三部分组成。通过单元实验,对人工湿地的填料结构、植物选择、布水设计、水位调节、湿地防堵系统设计、预处理系统设计进行了创新,研究了1d、2d和3d水力停留时间对污水中有机物处理效应的影响,并开展了人工湿地基质堵塞实验、冬季保温措施研究以及人工湿地脱氮除磷效果研究。结果表明,比较而言,1d和3d的水力停留时间不利于有机物的去除,2d的水力停留时间有利于有机物的去除;人工湿地0~10m的水平距离内,0~5cm、30~35cm、60~65cm深度的基质的堵塞差异显著(n=10,p〈0.05),从水平上看,在0m、2m、4m处基质的堵塞最为明显,因此,在更换人工湿地基质时,只需更换0~4m内的基质;棚膜+蒲席覆盖系统去除污水中总氮的效果要优于结冰盖系统,更适宜于北方使用;预处理系统、人工湿地系统、景观湿地系统三部分共同处理污水,优势互补,能使处理后的出水符合北京市水污染排放标准一级B限值。
简介:[1]BrownL,1995.WhoWillFeedChina:Wake-upCallforaSmallPlanet.TheWorldWatchEnvironmentalAlertSeries.NortonandCo.,NewYork,USA.[2]CaiYunlong,1990.Land.In:ZuoDakang(eds.),ADictionaryofModernGeography.Beijing:TheCommercialPress,ppl11.(inChinese)[3]CaoM,MaS,HanC,1995.Potentialproductivityandhumancarryingcapacityofanagro-ecosystem:ananalysisoffoodproductionpotentialofChina.AgriculturalSystems,47:387-414.[4]ChenLiding,WangJun,FuBojieetal.,2001.Land-usechangeinasmallcatchmentofnorthernLoessPlateau,China.Agriculture,Ecosystems&Environment,86(2):163-172.[5]DaiFC,LeeCF,ZhangXH,2003.GIS-basedgeo-environmentalevaluationforurbanland-useplanning:acasestudy.EngineeringGeology,61(4):257-271.[6]DingChengri,2003.LandpolicyreforminChina:assessmentandprospects.LandUsePolicy,20:109-120.[7]FuBojie,WangJun,ChenLidingetal.,2003a.TheeffectsoflanduseonsoilmoisturevariationintheDanangoucatchmentoftheLoessPlateau,China.Catena,54:197-213.[8]FuCongbin,2003b.Potentialimpactsofhuman-inducedlandcoverchangeonEastAsiamonsoon.GlobalandPlanetaryChange,37(3-4):219-229.[9]FischerG,SunLaixiang,2001.Modelbasedanalysisoffutureland-usedevelopmentinChina.Agriculture,Ecosystems&Environment,85(1-3):163-176.[10]GuoXiaomin,NiuDekuietal.,2000.TheexplorationofdevelopingfruitindustrymodewithsoilandwaterconservationinsouthJiangxiarea.ResearchofSoilandWaterConservation,7(3):187-218.(inChinese)[11]HeXiubin,LiZhanbin,HaoMingdeetal.,2003.Down-scaleanalysisforwaterscarcityinresponsetosoil-waterconservationonLoessPlateauofChina.Agriculture,EcosystemsandEnvironment,94:355-361.[12]HeiligGK,1999.CanChinafeeditself?Asystemforevaluationofpolicyoptions.ScienceforGlobalInsight,IIASA,Laxenburg(CD-ROMVers.1.1).[13]HuWei,1997.HouseholdlandtenurereforminChina:itsim
简介:Sandydesertificationislanddegradationcharacterizedbywinderosionmainlyresultedfromtheexcessivehumanactivitiesinarid,semiaridandpartofsub-humidregionsinnorthernChina.Theresearchonsandydesertificationhasexperiencedmorethan5decadesofarduouscourseofthestrugglealongwiththeestablishmentanddevelopmentofChina′sdesertscience.Researchesinthisfieldhavemadeagreatcontributiontothenationaleconomicconstruction,andenvironmentalprotection.Thispaperfocusesonpresentingthemajorprogressandachievementsinthesandydesertificationresearchduringthelast50years,includingthestagesofstudyonsandydesertification,backgroundenvironmentofsandydesertificationanditschanges,theconception,causes,process,monitoringandassessmentofsandydesertification,thevegetationsuccession,landscapeecology,plantphysiology,impactsonecosystem,high-effectiveuseofwaterandlandresourcesandsustainabledevelopmentinsandydesertifiedregions,sandydesertificationcontrolmodelsandtechniquesetc.
简介:人类对自然界的认识过程总是由浅入深循序渐进的。回顾过去,中国黄土成因经历了从“水成”到“风成”这样一个曲折的认识过程。通过分析黄土成因争论的历程,得到如下启示:1)过去的黄土成因争论源于人们不认识黄土层中的古土壤,因此识别地层中古土壤对重建古地理环境具有重大意义。2)水平层状地层并非都是水平沉积层理,也有可能是古土壤发生层次,具有水平层理的沉积地层则可能意味着在水中沉积形成,而古土壤层则是在地表环境形成。3)古土壤层的特点是古土壤层具有土壤发生层次,因此各层次之间一般呈现为渐变特征。而沉积地层通常具有明显的顶部和底部,显示着截然变化。4)在总结新生代古土壤特点的基础上,重新认识更老地层的古地理环境,发挥古土壤在研究地层成因、重建古气候等方面的作用。
简介:AstochasticmodelfordailyprecipitationsimulationinChinawasdevelopedbasedontheframeworkofa′Richardson-type′weathergeneratorthatisanimportanttoolinstudyingimpactsofweather/climateonavarietyofsystemsincludingecosystemandriskassessment.ThepurposeofthisworkistodevelopaweathergeneratorforapplicationsinChina.Thefocusisonprecipitationsimulationsincedeterminationofotherweathervariablessuchastemperatureisdependentonprecipitationsimulation.AframeworkoffirstorderMarkovChainwithGammaDistributionfordailyprecipitationisadoptedinthiswork.Basedonthisframework,fourparametersofprecipitationsimulationforeachmonthat672stationsalloverChinaweredeterminedusingdailyprecipitationdatafrom1961to2000.Comparedwithpreviousworks,ourestimationfortheparameterswasmadeformorestationsandlongerobservations,whichmakestheweathergeneratormoreapplicableandreliable.Spatialdistributionsofthefourparametersareanalyzedinaregionalclimatecontext.Theseasonalvariationsoftheseparametersatfivestationsrepresentingregionaldifferencesarediscussed.Basedontheestimatedmonthlyparametersat672stations,dailyprecipitationsforanyperiodcanbesimulated.A30-yearsimulationwasmadeandcomparedwithobservationsduring1971-2000intermsofannualandmonthlystatistics.Theresultsaresatisfactory,whichdemonstratestheusefulnessoftheweathergenerator.
简介:本研究通过收集国内已发表的文献中具有凋落物分解常数的数据,采用SPSS13.0软件综合分析中国森林凋落物分解速率的影响因素.结果发现:凋落物类型对凋落物分解速率有显著影响(P〈0.05),凋落叶氮含量与分解速率呈极显著正相关(P〈0.01).在同一样地的研究中,混合分解的凋落叶分解常数极显著高于单独分解的(P〈0.01).叶习性对凋落叶分解速率没有显著影响(P〉0.05),但在中国的温带地区则有显著影响(P〈0.05).在全国尺度上树种组成对凋落物分解速率没有显著影响(P〉0.05).凋落叶分解速率与经度、年均温和降水量成极显著正相关(P〈0.01),与纬度和海拔成极显著负相关(P〈0.01).凋落叶分解速率的Q10值为1.768.网袋孔径与土壤类型对凋落叶分解速率亦均有极显著影响(P〈0.01).
简介:[1]ChinaCommunicationsSecondHighwaySurveyDesignandResearchInstitute(CCSHSDRI),1996.HighwayDesignHandbook:Subgrade(2ndedn.).Beijing:ChinaCommunicationsPress.(inChinese)[2]GengTading,ChenChuankang,YangWuyangetal.,1978.OnthehighwaynaturalregionalizationofChina.ActaGeographicaSinica,33(1):49-62.(inChinese)[3]HighwayPlanningandDesignInstituteoftheMinistryofCommunications,1986.StandardofClimaticZoningforHighway(JTJ003-86).Beijing:ChinaCommunicationsPress.(inChinese)[4]JillOvik,BjornBirgisson,DavidENewcomb,1999.CharacterizingSeasonalVariationsinFlexiblePavementMaterialProperties.TransportationResearchRecord,1684:1-7.[5]KennedyTKetal.,1994.SuperiorPerformingAsphaltPavement(Superpave):TheProductoftheSHRPAsphaltResearchProgram.SHRP,NationalResearchCouncil,WashingtonD.C.[6]LiBin,1957.Someproblemsaboutregionalizingclimaticzoningforhighway.EngineeringConstruction,5:19-23.(inChinese)[7]LiBin,1959.Explanationsaboutrevisionofnationalclimaticzoningforhighway.Highway,15(SpecialIssue):33-36.(inChinese)[8]LiBin,1980.Chinahighwaynaturalregionalizationofpermafrost.AutomobileandHighway,1:39-55.(inChinese)[9]LiGuishun,1996.TertiaryhighwaynaturalregionalizationofShanxiprovince.ScienceandTechnologyofShanxiCommunication,5:13-18.(inChinese)[10]MaureenAKestler,GordonLHanek,MarkATruebe,2001.Evaluatingmoisturesensorsandmonitoringseasonalmoisturevariationinlow-volumeroads.TransportationResearchRecord,1755:97-107.[11]MohseniA,1996.LTTPSeasonalACPavementTemperatureModels.FHWA,U.S.DepartmentofTransportation,WashingtonD.C.[12]PeterJBosscher,HussainUBahia,SuwithoThomasetal.,1997.Relationshipbetweenpavementtemperatureandweatherdata:Wisconsinfieldstudytoverifysuperpavealgorithm.TransportationResearchRecord,1609:1-11.[13]RabinowSD,RadaGR,TayabjiSDetal.,1993.De
简介:湿地被称为"地球之肾",具有独特的生态结构与功能.中国湿地面积约占全球湿地面积的10%,但近年来湿地面积逐渐萎缩,已造成了极为严重的生态恶果.因此总结以往湿地研究成果,确立包括遥感在内的各种湿地信息提取方法,形成包含各种湿地信息的湿地数据子库和管理操作这些数据的湿地信息系统,并确立湿地信息的共享与发布机制,从而加快湿地科研步伐,成为湿地与遥感科技工作者共同关注的问题.WebGIS技术是GIS融合Internet技术发展起来的新技术,具有对大批量数据进行有效的分析管理和快速的查询检索功能.基于WebGIS技术的中国沼泽信息系统的建立有效地满足了湿地科研和开发保护的需要.
简介:[1]AiNanshan,1999.Makingforfractalphysiognomy.GeographyandTerritorialRes.,15(1):92-96.(inChinese)[2]AiNanshan,1993.FromMandelbrotlandscapetofractalphysiognomy.NatureJ.,16(1):13-17.(inChinese)[3]AiNanshan,ZhuZhijunetal.,1998.OnthestochasticnatureofexogenicprocessandthestabilityoffractionalBrownianlandscape.GeographicalResearch,17(1):23-29.(inChinese)[4]BBMandelbrot,1967.HowlongisthecoastofBritain?Statisticalself-similarityandfractaldimension.Science,150(3775):636-638.[5]ChenHui,GuoShichang,1997.ThemultifractalstudyofchangesofclimateinKunmingarea.ClimaticandEnvironmentResearch,2(4):261-268.(inChinese)[6]ChenYanguang,1999.Geography:thefailureofcomputionmotionandthegrowingupoffractalstudies.JournalofXinyangNormalUniversity(NaturalScienceEdition),12(3):310-314.(inChinese)[7]ChenYanguang,1997.Onfractalsandtouristlandscape.HumanGeography,12(1):62-66.(inChinese)[8]ChenYanguang,WangYimin,1999.Fractal,1/ffluctuationandtheaestheticessenceoftouristresorts.ExplorationofNature,18(3):51-54.(inChinese)[9]ChenYanguang,LiBaolin,2003.StudiesofthefractalnetworkcompositionofriversinJilinprovince,China.AdvanceinEarthSciences,18(2):178-184.(inChinese)[10]DingYizhong,LouYong,1998.Applicationoffractaltheoryintheevaluationontransportationnetwork.JournalofShanghaiMaritimeUniversity,19(4):7-12.(inChinese)[11]DingWenfeng,DingDengshan,2002.ThefractalfeaturesofsoilgranulestructurebeforeandaftervegetationdestructiononLoessPlateau.GeographicalResearch,21(6):700-706.(inChinese)[12]FengJinliang,ZhengLi,1997.Thesimpleanalysisofgeographicsignificanceoffractaldimensionofcoastline.MarineGeologyandQuaternaryGeology,17(1):35-51.(inChinese)[13]HuangGuilan,ZhengZhaobao,1995.Theapplicationoffuzzyclusteranalysisinimagetexturebasedonfractal.JournalofWuha
简介:近年来,在中国滨海地区,大规模围填海活动导致滨海湿地持续减损,湿地生物栖息地的丧失和滨海湿地生态系统功能的退化,严重削弱了滨海地区可持续发展的资源基础。为了定量分析围填海活动对中国滨海湿地的影响,以辽河三角洲、黄河三角洲、长江三角洲和珠江三角洲滨海湿地为例,利用湿地遥感分类数据,通过建立滨海湿地生态地理单元,比较了1990年和2008年两个时期四大三角洲滨海湿地的状况,定量评估了围填海活动对中国滨海湿地影响的区域和类型差异。研究结果表明,与1990年时相比,至2008年,无论是中国滨海湿地整体还是四大三角洲局域尺度,围填海活动都是滨海湿地减损的重要驱动力,尤其体现在对北方滨海潮间滩涂和南方红树林等类型滨海湿地的大面积侵占,威胁到滨海湿地生物多样性最关键的生境类型和关键生态系统服务区域。在四大三角洲,围填海区域的主要土地利用类型在空间分布上存在一致性和差异性,表现在4种主要土地利用类型所占面积比例排序具有一致性,即水产养殖用地面积所占比例最大,农田次之,其后是工业建筑、港口建筑;以及在四大三角洲中4种主要土地利用类型所占面积比例的差异性,即黄河三角洲的水产养殖用地面积相对最大,长江三角洲的其他3种土地利用类型所占面积相对最大。为了避免围填海活动对滨海湿地的进一步破坏,在确定保护和修复优先区域的基础上,应该着手强化滨海潮间滩涂和盐沼等关键生境类型的保护、修复和生态补偿模式的相关研究和实践工作。