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1.
附载TiO2光催化降解咪蚜胺农药   总被引:17,自引:0,他引:17  
以主波长365nm的黑炽荧光灯为光源,研究了由CMC-Na附载TiO2光催化降解咪蚜胺农药的过程。结果表明,咪蚜胺农药在3*8W黑炽荧光灯照射下,经附载TiO2作用3h后可降解50%以上,其光解可用假一级动力学方程表示。  相似文献   

2.
The qualitative and quantitative analyses of reactive oxygen species are essential to determine their steady-state concentration and related reaction mechanisms in environmental aquatic systems. In this study, salicylic acid was employed as an innovative molecular probe of hydroxyl radical(OH) generated in aqueous nitrate and nitrite solutions through photochemical reactions. Kinetic studies showed that the steady-state concentrations of OH in aqueous NO3^-(10 mmol/L, pH=5) and NO2^ (10 mmol/L, pH=5) solutions under ultraviolet irradiation were at a same magnitude, 10v-15 mol/L. Apparent quantum yields of OH at 313 nm were measured as 0.011 and 0.07 for NO3^- and NO2^ respectively, all comparable to the results of previous studies.  相似文献   

3.
高碘酸盐光化学降解水中PFOA研究   总被引:3,自引:2,他引:1  
研究了反应气氛和TiO2对全氟辛酸(PFOA)的光化学降解行为的影响.结果表明,在254 nm紫外光照下,PFOA光解十分微弱,加入IO4-显著增强PFOA光解.与氮气气氛相比,氧气气氛对PFOA光化学降解有抑制作用.PFOA在UV/TiO2/IO4-体系中的降解效果低于在UV/IO4-体系,反应120 min时,PF...  相似文献   

4.
杨俊  张平  刘恋  曾庆福 《环境科学》2011,32(11):3365-3371
以活性艳红X-3B为对象,研究其在不同波段紫外光照射条件下的光催化降解动力学.结果表明,在长波紫外条件下,活性艳红X-3B的降解动力学符合表观一级动力学方程,其反应表观速率常数与光强之间呈对数关系;在短波紫外条件下,活性艳红X-3B的降解动力学可以用二级动力学方程拟合,速率常数与光强之间成正比.通过对比X-3B在2种光源下的降解半衰期发现,在同比条件下,365 nm光源对活性艳红X-3B的降解半衰期为37.263 min,而254 nm光源则下降为0.855 min.短波紫外比长波紫外具有更高的光量子效率,其对X-3B的降解效率也更高.  相似文献   

5.
The degradation of nonylphenol (NP) in aqueous solution with UV, H2O2/UV, and Fenton/photo-Fenton processes was studied. The efficacy of direct and hydrogen peroxide photolysis proved to be dependent on the pH value. The addition of H2O2 to UV treatment improved NP degradation. The application of UV photolysis and the H2O2/UV system at pH 7 resulted in low pseudo first-order rate constants at 10-4 sec-1. In the experiments at elevated pH values the pseudo-first order rate constants increased to 10-3 sec-1. The efficacy of the Fenton process was lower in comparison with UV and hydrogen peroxide photolysis. The addition of UV irradiation to the H2O2/Fe2+ system substantially improved NP degradation efficacy. In terms of performance, the photo-Fenton process was similar to the H2O2/UV process. The most favourable process for complete nonylphenol degradation considering both operational cost and treatment efficacy was H2O2/UV at pH 11 and 250 mol/L H2O2.  相似文献   

6.
紫外光降解水中痕量NDMA的效能研究   总被引:7,自引:6,他引:1  
徐冰冰  陈忠林  齐飞  马军 《环境科学》2008,29(7):1908-1913
采用紫外光降解水中痕量亚硝基二甲胺(NDMA),研究了NDMA初始浓度、溶液pH值、光照面积、紫外光辐射强度以及水质对紫外光降解NDMA的影响.结果表明,紫外光能够有效降解水中的NDMA,紫外光解反应5min, NDMA去除率可以达到97.5%.初始浓度对NDMA的光降解去除率影响不大.随着pH值升高,紫外光解NDMA的反应速率呈现下降趋势,低pH值条件下光量子产率较高,溶液pH=2.2时NDMA具有最大光降解速率.NDMA的去除率随着有效光照面积的增大而增大,紫外光辐射强度的增加有利于NDMA的去除.水质对紫外光降解NDMA具有一定的影响,在自来水和江水为背景的2种对比体系中,光解NDMA去除率分别为96.7%和94.8%  相似文献   

7.
在低压汞灯(LPUV,253.7nm)光照条件下,研究了过氧化氢(H2O2)加入量对二嗪磷降解动力学、产物生成和降解途径的影响规律与作用机理.结果表明,二嗪磷水溶液在单独UV和UV/H2O2工艺中的降解反应均符合准一级反应动力学,且反应速率常数(k)随H2O2加入量的增加而增大,H2O2加入量为0,5,10mg/L时的k分别为0.0234,0.0301,0.0341min-1.在UV光照处理条件下,二嗪磷水溶液中的溶解性有机碳(DOC)随H2O2加入量的增加而降低,但其矿化度均相对较低(光照120min时的DOC去除率均低于20%).此外,UV光照处理时,H2O2的加入对二嗪磷光氧化降解产物的种类及生成量均存在显著影响.二嗪磷水溶液单独UV光照处理60min时检出了8种中间/降解产物,但经UV/H2O2工艺处理60min时仅检出了6种中间/降解产物,且不同H2O2加入量时的光氧化降解产物生成量或浓度及随UV光照处理时间的变化幅度与趋势均存在较大程度的差别.基于二嗪磷及其降解产物的定性、(半)定量分析结果,提出了二嗪磷水溶液在单独UV和UV/H2O2工艺中的降解途径与机理.  相似文献   

8.
以1000W氙灯为光源,研究了阿替洛尔在模拟太阳光照射下的光降解行为,采用HPLC和SPE-LC-MS技术鉴定了阿替洛尔在250~600nm波长照射下的主要光解产物并提出了可能的光解途径.探讨了溶液pH值、硝酸根离子浓度、腐殖质和碳酸氢根离子等因素对阿替洛尔在模拟太阳光照射下光解的影响.结果表明,阿替洛尔在模拟太阳光下的直接光解很难发生,且改变溶液pH值不能促进直接光解.而在250~600nm波长照射下,阿替洛尔4h光解率达42%,光解途径主要有母体羟基化和支链的断裂反应.在模拟太阳光照下,NO3-对阿替洛尔光解有显著的光敏化作用,而富里酸(SRFA)光敏化作用微弱.HCO3-抑制了模拟太阳光照下阿替洛尔在NO3-溶液中的光解,腐殖质则通过自由基淬灭和内滤机制抑制了阿替洛尔在NO3-溶液中的光解.  相似文献   

9.
多菌灵的光化学降解研究   总被引:24,自引:2,他引:24  
以太阳光和高压汞为灯光源研究了多菌灵在溶液相中的光化学降解:在太阳光下,多菌灵在甲醇,正已烷、重蒸水、3种PH缓冲液和不同类型水质中光稳定性很强,但在丙酮中可以光解,光 解半衰期为33.80h光敏剂核黄素、0.5%内酮、e^3+能加快多菌灵在水溶中的光解速率,其中黄素敏化效果最显著,说明在太阳光下多菌灵在水溶液中主要是间接光解,与太阳光源比较,多菌灵在高汞灯下主要进行直接光解,在重蒸水中的光钐半衰  相似文献   

10.
水中萘普生的紫外光降解机制及其产物毒性研究   总被引:4,自引:3,他引:1  
以120 W汞灯为紫外光光源,通过活性氧物种(ROS)的淬灭实验和溶解氧(DO)浓度实验和发光菌毒性实验,对水中萘普生(NPX)的降解机制、反应动力学及其产物毒性进行了研究.结果表明,NPX的紫外光降解过程包括了直接光解和ROS参与的自敏化光解两个过程,同时.OH、1O2、O.2-的自敏化光解贡献率分别为0.1%、80.2%、35.7%;溶解氧浓度实验表明,溶解氧对萘普生的降解具有抑制作用,而且浓度越大,抑制效果越明显;发光菌毒性实验表明,萘普生光降解生成了具有较萘普生更高风险的中间产物.本研究中萘普生的所有光解实验过程均符合准一级动力学方程.  相似文献   

11.
In this study, photocatalytic degradation of phenol selected as model compound of organic pollutant had been investigated in aqueous titanium dioxide (TiO2) dispersion under UV irradiation. The effects of various parameters such as pH, catalyst concentration, phenol concentration, anions, metal ions, electron acceptors, and surfactants on the photocatalytic degradation of phenol were investigated. The degradation kinetics was determined by the change in phenol concentration employing UV-Vis spectrometry as a function of irradiation time. The degradation kinetics of phenol follows pseudo first-order kinetics. The results showed a significant dependence of the photocatalytic degradation of phenol on the functional parameters. The probable promising roles of the additives on the degradation process were discussed.  相似文献   

12.
为了解硝酸根(NO3-)的光化学活性对水体中有机磷间接光解释放磷酸根过程的影响,采用室内模拟实验,研究了NO3-在草甘膦光解转化为磷酸根中的作用及NO3-浓度对该反应速度的影响,并以甲醇为羟基自由基(·OH)猝灭剂,印证了NO3-对富营养化湖泊水体中有机磷光解释放磷的作用.结果表明,在紫外光(UV)照射下,草甘膦可以直接光解转化为磷酸根,其磷酸根的释放量随着溶液初始pH和草甘膦浓度的增加而增大.加入NO3-处理,光照60min后,磷酸根的释放量由空白处理的0.05mg/L增加到了0.43mg/L.添加Fe3+可促进这一过程,而添加腐殖酸(HA)和碳酸氢根(HCO3-)则可以显著抑制磷酸根的释放.在湖泊水体中,添加草甘膦,磷酸根的释放量显著高于空白,而增加湖水中NO3-浓度时,磷酸根的释放量则进一步增大.在湖水/草甘膦/NO3-体系中添加·OH猝灭剂甲醇后,磷酸根的释放量显著降低.可见在紫外光条件下,NO3-的光化学作用对有机磷释放磷酸根过程具有重要影响.  相似文献   

13.
为了探明自然光和紫外光(UV)对二级处理出水中溶解性有机物(DOM)及其毒性效应的削减特性,研究了在自然光和UV两种不同光源的辐照条件下,二级处理出水中DOM的光谱特性、遗传毒性和植物毒性变化,阐明了毒性效应变化的成因.结果表明:相比于自然光照,UV辐照可以明显降低二级处理出水的UV254,并达到21%矿化.自然光和UV均可降低二级处理出水中有色溶解性有机物(CDOM),但去除的组分有所差异.同时,自然光照与UV辐照均可降低二级处理出水的遗传毒性,其削减率分别达到92%和61%.遗传毒性的变化与CDOM荧光强度变化有显著相关性.UV辐照可降低二级处理出水的植物毒性,削减率达到81%,而自然光照对二级处理出水植物毒性的削减率仅为19%,削减效果较差.利用UPLC-MS检测二级出水中的除草剂,发现植物毒性削减的差异主要是由于自然光照下二级处理出水中的阿特拉津降解缓慢,表观降解速率常数为0.0033h-1;但是UV辐照下二级处理出水中的阿特拉津可快速降解,其表观速率常数为0.2225h-1.这为污水厂排放水毒性效应控制及生态安全保障提供了一定的依据.  相似文献   

14.
IntroductionNitrobenzene (NB) was mainly used in theproduction of aniline, also used as a solvent inpetroleum refining, as well as used in the manufactureof other organic compounds such as dinitrobenzenes,dichloroanilines and acetaminophen (WHO, 2003).Nit…  相似文献   

15.
许多实验研究都关注大气凝聚相中单一有机化合物的液相光化学,对于实际大气液相环境中溶解性有机质(DOM)的液相光化学氧化的研究还很少.为此,本文报道了模拟太阳光和紫外光辐照下,大气气溶胶水相萃取的DOM直接或·OH氧化的实验结果.不同光解阶段的产物的吸光、氧化特性采用UV-vis和黑炭气溶胶质谱仪(SP-AMS)分析.结果表明,紫外光体系中DOM得到不断降解,相应的产物f44值远低于太阳光体系;液相光解时会生成多种羧酸,草酸的生成量最高.太阳光照反应条件下吸光度和HULIS浓度变化不大;而UV和UV+·OH条件下,HULIS浓度随反应时间不断增加,UV+·OH中反应23 h时HULIS浓度约为初始的4倍,说明含羧基、羟基和芳香基等官能团的棕色碳的形成.综合研究结果表明,太阳光作用下实际DOM液相氧化时吸光性和棕色碳的形成速率不是很快,而紫外光作用下大部分DOM不断分解为HULIS或小分子物质,剩余的有机物的吸光性可能比较强,导致最终产物的单位质量吸收效率(MAE)比较高.本文首次探讨了实际膜液相氧化过程,结果对厘清大气复合污染的形成机制提供重要依据.  相似文献   

16.
水中普萘洛尔的紫外光降解机制及其产物毒性   总被引:1,自引:1,他引:0  
彭娜  王开峰  刘国光  曾令泽  姚锟  吕文英 《环境科学》2014,35(10):3794-3799
以高压汞灯为光源,研究了紫外光照条件下水中普萘洛尔(PRO)的光解行为、机制及安全性.PRO光解机制通过活性氧物种(ROS)猝灭实验来确定,光解产物安全性通过发光菌毒性实验来评价.结果表明,PRO的光解速率常数(k)随初始浓度的增加而下降,两者呈显著负相关关系(r2>0.95).随着溶液初始pH的升高,PRO的光解加快,pH 5~9的PRO溶液的k值为0.0953~0.267 min-1.ROS猝灭实验表明,PRO的紫外光解过程包括了激发三重态PRO(3PRO*)参与的直接光解,以及羟基自由基(·OH)和单线态氧(1O2)参与的自敏化光解,直接光解速率常数大于自敏化光解速率常数.采用FFA探针方法测定了不同实验条件下1O2的浓度,其总体变化规律与猝灭实验所得结论一致.发光菌毒性实验表明,PRO光解生成了比母体化合物毒性更强的中间产物.  相似文献   

17.
Photocatalytic degradation of phenol selected as model compound of organic pollutant had been investigated in aqueous titanium dioxide (TiO2) dispersion under UV irradiation. The e ects of various parameters such as pH, catalyst concentration, phenol concentration, anions, metal ions, electron acceptors, and surfactants on the photocatalytic degradation of phenol were investigated. The degradation kinetics was determined by the change in phenol concentration employing UV-Vis spectrometry as a function of irradiation time. The degradation kinetics of phenol follows pseudo first-order kinetics. The results showed a significant dependence of the photocatalytic degradation of phenol on the functional parameters. The probable promising roles of the additives on the degradation process were discussed  相似文献   

18.
In this study, ultraviolet (UV) and vacuum ultraviolet (VUV) photolysis were investigated for the pre-treatment and post-treatment of coking wastewater. First, 6-fold diluted raw coking wastewater was irradiated by UV and VUV. It was found that 15.9%-35.4% total organic carbon (TOC) was removed after 24 hr irradiation. The irradiated effluent could be degraded by the acclimated activated sludge. Even though the VUV photolysis removed more chemical oxygen demand (COD) than UV, the UV-irradiated effluent demonstrated better biodegradability. After 4 hr UV irradiation, the biological oxygen demand BOD5/COD ratio of irradiated coking wastewater increased from 0.163 to 0.224, and its toxicity decreased to the greatest extent. Second, the biologically treated coking wastewater was irradiated by UV and VUV. Both of them were able to remove 37%-47% TOC within 8 hr irradiation. Compared to UV, VUV photolysis could significantly improve the transparency of the bio-treated effluent. VUV also reduced 7% more ammonia nitrogen (NH4+-N), 17% more nitrite nitrogen (NO2--N), and 18% more total nitrogen (TN) than UV, producing 35% less nitrite nitrogen (NO3--N) as a result. In conclusion, UV irradiation was better in improving the biodegradability of coking wastewater, while VUV was more effective at photolyzing the residual organic compounds and inorganic N-species in the bio-treated effluent.  相似文献   

19.
The photodegradation of bisphenol S (BPS) in aqueous solutions was studied under different conditions. Photolysis and kinetics were investigated, as were the photolysis mechanism and the influences of initial pH value, light source, and environmental substances in water. The results showed that the photolysis of BPS occurred under UV light, and the rate increased with light source intensity. The photolysis of 5.0-50.0 mg/L BPS in water followed first-order kinetics: the rate was γ= 0.0161CBPS under a 40-W UV-lamp, and the degradation half-life was 43.1 min. Due to its absorption of light, direct photolysis of BPS was a predominant pathway for BPS but was not obviously affected by reactive oxygen species. The results confirmed that the photolysis rates of BPS in alkaline water solution were faster than those in acidic and neutral water solution because of the ionization of BPS. The photodegradation rate of BPS increased in the presence of chloride and ferric ions, while the rate was inhibited by nitrate and phosphate in aqueous solution.  相似文献   

20.
In this study, ultraviolet (UV) and vacuum ultraviolet (VUV) photolysis were investigated for the pre-treatment and post-treatment of coking wastewater. First, 6-fold diluted raw coking wastewater was irradiated by UV and VUV. It was found that 15.9%–35.4% total organic carbon (TOC) was removed after 24 hr irradiation. The irradiated effluent could be degraded by the acclimated activated sludge. Even though the VUV photolysis removed more chemical oxygen demand (COD) than UV, the UV-irradiated effluent demonstrated better biodegradability. After 4 hr UV irradiation, the biological oxygen demand BOD5/COD ratio of irradiated coking wastewater increased from 0.163 to 0.224, and its toxicity decreased to the greatest extent. Second, the biologically treated coking wastewater was irradiated by UV and VUV. Both of them were able to remove 37%–47% TOC within 8 hr irradiation. Compared to UV, VUV photolysis could significantly improve the transparency of the bio-treated effluent. VUV also reduced 7% more ammonia nitrogen (NH4+–N), 17% more nitrite nitrogen (NO2–N), and 18% more total nitrogen (TN) than UV, producing 35% less nitrite nitrogen (NO3–N) as a result. In conclusion, UV irradiation was better in improving the biodegradability of coking wastewater, while VUV was more effective at photolyzing the residual organic compounds and inorganic N-species in the bio-treated effluent.  相似文献   

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