简介:Basedonobservationsofurbanmassconcentrationoffineparticulatemattersmallerthan2.5μmindiameter(PM_(2.5)),groundmeteorologicaldata,verticalmeasurementsofwinds,temperature,andrelativehumidity(RH),andECMWFreanalysisdata,themajorchangesintheverticalstructuresofmeteorologicalfactorsintheboundarylayer(BL)duringtheheavyaerosolpollutionepisodes(HPEs)thatoccurredinwinter2016intheurbanBeijingareawereanalyzed.TheHPEsaredividedintotwostages:thetransportofpollutantsunderprevailingsoutherlywinds,knownasthetransportstage(TS),andthePM_(2.5)explosivegrowthandpollutionaccumulationperiodcharacterizedbyatemperatureinversionwithlowwindsandhighRHinthelowerBL,knownasthecumulativestage(CS).DuringtheTS,asurfacehighliessouthofBeijing,andpollutantsaretransportednorthwards.DuringtheCS,astableBLformsandischaracterizedbyweakwinds,temperatureinversion,andmoistureaccumulation.Stableatmosphericstratificationfeaturedwithlight/calmwindsandaccumulatedmoisture(RH>80%)below250matthebeginningoftheCSiscloselyassociatedwiththeinversion,whichisstrengthenedbytheconsiderabledecreaseinnear-surfaceairtemperatureduetotheinteractionbetweenaerosolsandradiationaftertheaerosolpollutionoccurs.AsignificantincreaseinthePLAM(ParameterLinkingAerosolPollutionandMeteorologicalElements)indexisfound,whichislinearlyrelatedtoPMmasschange.Duringthefirst10hoftheCS,themorestableBLcontributesapproximately84%oftheexplosivegrowthofPM_(2.5)mass.Additionalaccumulatednear-surfacemoisturecausedbythegroundtemperaturedecrease,weakturbulentdiffusion,lowBLheight,andinhibitedverticalmixingofwatervaporisconducivetothesecondaryaerosolformationthroughchemicalreactions,includingliquidphaseandheterogeneousreactions,whichfurtherincreasesthePM_(2.5)concentrationlevels.Thecontributionofthesereactionmechanisms
简介:利用ftp向远程上载或下载文件是网络业务的重要内容。在一般网络环境下,实现文件传输可以使用商用ftp软件或自由编程实现。商用软件一般需人工操作,不能实现文件定时自动传输,自由编程的程序控制,既可以人工控制,也可以自动控制,从而可以实现文件定时自动传输。编程实现ftp文件传输一般需InternetTransfer控件或Winsock控件,遗憾的是,这两个控件均不支持sock4代理协议,因此,在sock4代理网络环境下,实现文件自动传输ftp编程需另辟思路。利用MicrosoftWin32网络函数编写专用OCX控件是解决问题的办法之一。
简介:植物排放甲烷(CH4)的来源尚存很大争议,而光照和紫外辐射胁迫可能是植物排放CH4的重要影响因素.本研究选择亚热带常见树种米槠、木荷、浙江桂、罗浮栲、杉木、马尾松和柑橘7种树木为研究对象,利用控制实验研究了光照和增强紫外辐射对树木叶片CH4排放的影响.结果表明:7种树木叶片的平均CH4排放速率在光照条件下(21.176ng·CH4·g^-1DW·h^-1)是在黑暗条件下(9.699ng·CH4·g^-1DW·h^-1)的2.2倍,光照对不同树木叶片CH4排放速率的影响具有显著差异;在高UV-B辐射强度处理下,除浙江桂和柑橘外,其他5种树木的CH4排放速率均显著高于低UV—B辐射强度处理的CH4排放速率;树种及其与光照或UV辐射的交互作用对树木叶片CH4排放速率的都具有显著影响,光照或增强UV辐射强度对排放速率较低的树木种类排放CH4的促进作用更强.
简介:<正>1IntroductionTheundergroundbrineresourcesdistributingwidelyinSichuanBasin,Chinahavedrawnworldwideattentionduetotheirunusualelementabundanceandexcellentquality.