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H2O2徐正生1,程燕2 (1.,230036;2.,230036) 以高压汞灯和自然光为光源,研究了酰胺类除草剂丙草胺在水体中的光解动态,并以PNDA为探针,初步研究了双氧水对丙草胺光解的影响机理。由于H2O2能通过光解产生羟基自由基,从而对丙草胺表现出显著的光敏化降解作用。在高压汞灯下,H2O2使丙草胺的光解速率提高了1.74~4.55倍,但光敏率随H2O2浓度添加至一定量后而减弱;在太阳光下,H2O2使丙草胺的降解速率提高了33.6~81.58倍,敏化作用却随H2O2添加浓度的升高而增强。 丙草胺;光解;过氧化氢 S481.+8 A 0517-6611(2006)23-6297-02EffectsofH2O2onPretilachlorPhotolysisinAqueousSolutionXUZheng-shengetal (AnhuiEnvironmentalMonitoringCenter,Hefei,Anhui230036)Abstract ThephotolytickineticsofanilideherbicidespretilachlorinaqueoussolutionirradiatedbyHPML,UVandsunlightwasinvestigated.Atthesametime,themechanismoftheeffectofH2O2onpretilachlorwasroughlyexpoundedwithPNDAasthe·OHprobe.H2O2producedhydroxylradical(·OH)uponUVirradiation,sothephotodegradationofpretilachlorwasgreatlypromoted.UnderHPMLirradiation,thephotolysisratesofpretilachlorwereimprovedabout1.74~4.55times.ButwiththeincreasingofH2O2dosage,thephotosensitiveratewasdecreased.Undersunlight,thephotolysisratesofpretilachlorwereimprovedabout33.6~81.58timeswithH2O2andthephotosensitiveratewasimprovedwithincreasingdosageofH2O2.Keywords Pretilachlor;Photodegradation;Hydroxylradical ,,,,。:S+hv※S*,S*+P※S+P*,P*,P,S。H2O2,ZafiriouH2O214~290nmol/L,0.1~7.0mmol/L,、,1.0~33mmol/L。(300nm),,:H2O2+hv※2·OH,、,。(pretilachlor)、、,:2--2′-6′--N-(2-)-。,,。,H2O2。1 1.1 (99.9%,);(,);30%()。1.2 1/10000(FA1104,),25ml,1000mg/L。,。,H2O2,,,10mg/L,H2O20、2、5、10、15、20、 徐正生(1976-),男,安徽巢湖人,工程师,从事环境监测分析研究。 2006-09-0530mmol/L,,10ml,,,,3,5ml。1.3 1:Ct=C0·e-kt,k,C0,Ctt。50%,Ct=C0/2,,T1/2,:T1/2=ln2/k(%)=-×100()(%)=-1-×1002 2.1 Agilent1100,C-18,ThermoHypersil-KeystoneD(mm)250×4.6,215nm,∶(95∶5,),0.7ml/min,5.63min。10、7、5、3、1mg/L,20μl,,(mg/L)、(mm),2。2.2 H2O2 0、2、5、10、15、20、30mmol/LH2O2,H2O2,1。1,,H2O2,2mmol/L,4.55,6.46min1.44min。,H2O2H2O2,30mmol/L,3.72min,1.74。H2O23。3,,H2O2。,JournalofAnhuiAgri.Sci.2006,34(23):6297-6298,6301 金琼琼 金琼琼2 1H2O2H2O2mmol/L1Ct=C0·e-ktR2K∥1/minT1/2∥min 0Ct=9.6354e-0.1072t0.99670.10721.006.462Ct=11.833e-0.4829t0.97810.48294.551.445Ct=11.5e-0.4149t0.98130.41493.871.6710Ct=11.049e-0.3071t0.99330.30712.862.2615Ct=10.509e-0.2274t0.99700.22742.123.0520Ct=10.548e-0.2116t0.99480.21161.973.2830Ct=10.707e-0.1862t0.99150.18621.743.72 :13000lx,10mg/L。3 H2O24 H2O2PNDA H2O2,PNDA,PNDA+·OH※,440nm,PNDA440nm。,。PNDA,。4,PNDAH2O2,,H2O2,H2O2。5,H2O2,,PNDA,,H2O2,。3、5,H2O2H2O2,。,H2O2,H2O2,。5 H2O2PNDA2,6、7,,H2O2,H2O2,H2O230mmol/L,0.988h,81.56,,PNDA,H2O2。,,H2O2,。,,,2,。 2H2O2H2O2mmol/L1Ct=C0·e-ktR2K∥1/minT1/2∥h 0Ct=9.95e-0.0086t0.91730.0086 1.00 80.610Ct=10.09e-0.2892t0.99520.289233.602.420Ct=9.915e-0.5014t0.99890.501458.301.3830Ct=10.423e-0.7014t0.99880.701481.560.988 :30000lx,10mg/L。6 H2O2PNDA3 (1)H2O2:·OH+H2O2(下转第6301页)6298 安徽农业科学 2006,。4.4 “、、、、”,、、。,,,,,;,,。、,。,,“”,,,,,。4.5 。。,,,,,,。,,,,,,[3]。,,。4.6 、、、、、。,,。,,,,。,,,。4.7 , ,,。、、,,,,,,,。,,。[1]沈阳年.土地整理规划设计和实施管理问题探讨[J].国土资源导刊,2006(2):41-42.[2]高向军.土地整理理论与实践[M].北京:地质出版社,2003:148.[3]赵键.农村土地开发整理权属管理初探[J].中国土地,2006(3):21-22.(上接第6298页)7 H2O2※H2O2+HO2·,HO2··OH,H2O2。H2O2,,,,。(2)H2O2,。(3)、,。H2O2,,,H2O2。H2O2,H2O2,。[1]喻子牛,柯云.微生物农药在病虫害可持续控制中的应用及发展策略[M]//喻子牛.微生物农药及其产业化.北京:科学出版社,1997:1-2.[2]顾宝根,姜辉.我国生物农药的现状及问题[M]//喻子牛.微生物农药及其产业化.北京:科学出版社,1997:13-14.[3]姚建仁,焦淑贞.化学农药光解研究进展[J].农药译丛,1989(11):26-30.[4]ZABIKMJ,LEAVITTRA.Photochemistryofbioactivecompounds:Areviewofpesticidephotochemistry[J].AnnualReviewofEntomology,1976(21):61-72.[5]OLIVERC,ZAFIRIOUJJD,RICHARDGZ,etal.Photochemistryofnaturalwaters[J].EnvironSciTechnol,1984,18(12):358-371.[6]韩熹莱.农药概论[M].北京:北京农业大学出版社,1995:214-217.[7]BHAGATRM,BHUIYANSI,MOODYK,etal.Effectofwater,tillageandherbicideonecologyofweedcommunitiesinintensivewet-seededricesystem[J].CropProtection,1999,18(5):293-303.[8]PATNAIKGK.Effectofherbicidesonnitrogenfixationassociatedwithricerhi-zosphere[J].Chemosphere,1995,30(2):339-343.[9]王一茹,刘长武,牛成玉,等.水体中农药与氢氧基的反应活性及持久性的关系[J].环境化学,1998,37(1):60-67.[10]SOO-MK,SVEN-UG,ALFONSV.Landfillleachatetreatmentbyaphotoas-sistedfentonreaction[J].WatSciTech,1997,35(4):239-248.630134卷23期 渠霓等 基本农田土地整理规划设计的制约因素及对策研究
本文标题:H2O2对丙草胺在水体中光解的影响徐正生
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