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1.
水中萘普生的紫外光降解机制及其产物毒性研究   总被引:1,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   

2.
比较采用PS,UV/PS 2种工艺降解2,4-DCP的去除效果、一级反应动力学;考察不同氧化剂(PS)剂量、不同初始浓度的2,4-DCP、腐殖酸条件对该光解反应速率常数的影响以及采用发光菌青海弧菌-Q67来评价2,4-DCP和光解过程中间产物溶液对生态环境的毒性评价.实验结果表明,单独PS工艺光解2,4-DCP去除率仅有4%,而UV/PS光解2,4-DCP去除率高达96.4%,充分说明UV/PS工艺可高效去除2,4-DCP,且其反应基本遵循拟一级反应动力学,一级反应动力学常数为35.1×10~(-3)min~(-1).UV/PS降解2,4-DCP的降解率和反应速率常数随着氧化剂(PS)的增加而增大,随着2,4-DCP初始浓度增大而降低.随着腐殖酸初始浓度的增大,有先增大后变小的过程.毒性评价实验中,随着2,4-DCP光解45min,发光菌抑制率降低,溶液对环境毒性在降低,且从长期时间规律来看,同一氧化时间溶液对发光菌相对抑制率与发光菌接触时间没有关系.  相似文献   

3.
UV-vis光照下唑类抗菌药氟康唑的光化学反应类型   总被引:1,自引:1,他引:0  
以唑类抗菌药氟康唑为模型化合物,考察了其在纯水中的光降解动力学和光化学反应类型,发现模拟日光(λ>290nm)照射下氟康唑未发生光解,在UV-vis(λ>200 nm)光照下,氟康唑发生了光降解并服从准一级反应动力学.采用活性氧物种猝灭实验和竞争动力学方法,研究发现氟康唑发生了直接光解和·OH参与的自敏化光解,氟康唑与.OH的反应速率常数为(5.95±0.58)×109L·(mol·s)-1,表层水体中相应的半减期为(32.41±3.16)h·通过鉴定光解产物,得知氟康唑发生了脱氟、光致水解、光氧化等光化学反应.  相似文献   

4.
以中压汞灯为光源,研究环境浓度范围内硝酸根对甲芬那酸(MEF)光降解的影响机制.结果表明,甲芬那酸在不同浓度硝酸根溶液中的光解反应符合准一级动力学规律,其降解速率常数随硝酸根离子浓度增大而增大,当硝酸根离子浓度由0增至1 mmol·L-1时其速率常数由0.00627 min-1增至0.0232 min-1;以异丙醇为分子探针检测到羟基自由基存在于MEF光解过程中;光解过程中产生亚硝酸根,其浓度随着反应的进行而不断增大;碱性水环境对硝酸根敏化甲芬那酸的光解反应有利;碳酸盐、氯离子、三价铁对硝酸根敏化甲芬那酸光解产生抑制作用.采用UPLC/MS/MS对硝酸根敏化MEF光降解产物进行鉴定,并提出3条可能的光解路径.毒性研究表明,在硝酸根敏化甲芬那酸光降解过程中,生成了具有较甲芬那酸而言更高风险的中间产物.  相似文献   

5.
以中压汞灯为光源,研究水环境中吲哚美辛(IDM)的紫外光降解机制.实验结果表明,IDM的光解反应符合准一级动力学规律,其降解速率常数随自身浓度的增大而减小,当IDM浓度由1 mg·L~(-1)增至12 mg·L~(-1)时,其速率常数由0.0148 min~(-1)减至0.00412 min~(-1).通过模型研究IDM的紫外光解机制时发现,其降解包括直接光解和自敏化光解,直接光解常数为0.0151 min~(-1).研究环境因子对IDM光解的影响时发现,碱性环境有利于IDM的降解,而溶解氧抑制IDM的光解,腐殖酸通过光掩蔽和自由基猝灭两个作用抑制IDM的光解,硝酸根通过接受光量子产生·OH促进IDM的降解,并通过竞争反应实验测得·OH稳态浓度为2.10×10~(-1)4mol·L~(-1),IDM与·OH的二级反应速率常数为9.86×109L·mol~(-1)·s~(-1).  相似文献   

6.
游离羟基及表面活性剂对乙草胺光解的影响   总被引:2,自引:0,他引:2  
以高压汞灯为光源,以p-亚硝基-N,N-二甲基苯胺(PNDA)作为·OH自由基的探针,研究了H2O2及表面活性剂0206-B(苯乙烯苯酚聚氧乙烯醚和十二烷基苯磺酸钙混剂)对除草剂乙草胺在水中间接光解作用的影响.结果表明,H2O2对水中乙草胺具有光敏化降解作用,其敏化作用效应与·OH有关;而0206-B对乙草胺具有光猝灭降解作用,光猝灭降解作用效应与0206-B减少水溶液中的·OH自由基含量有关.乙草胺直接光解与H2O2作用的乙草胺间接光解相同的产物有Rf(比移值)为0.12、0.52、0.61、0.72的化合物;H2O2敏化降解抑制了乙草胺直接光解产物Rf为0.04、0.10、0.18、0.21、0.79的化合物产生,但促进乙草胺间接光解Rf为0.45、0.66的新光解产物生成.  相似文献   

7.
偶氮染料4BS光解动力学和总氮脱除的初步研究   总被引:1,自引:1,他引:0       下载免费PDF全文
采用单独紫外光氧化降解偶氮染料直接耐酸大红(4BS),研究了不同因素对4BS光解效果的影响,并初步考察了光解对4BS溶液总氮的去除效果. 结果表明,单独紫外光氧化法对4BS及溶液中的总氮有一定的去除效果. 在非强碱性条件下,4BS的光解过程符合准一级反应动力学模型. 速率常数随紫外光强的增强而增大,并且与初始ρ(4BS)呈负相关关系. 溶液pH是影响光解反应的重要因素,速率常数随pH升高而增加显著,强碱性条件下光解速率最快. 光解对溶液中总氮的去除分为三步,含氮结构的发色基团易吸收紫外光,在反应初期被降解而生成气态含氮物,生成的中间产物比较稳定,需要经过一段时间的能量积累才能继续降解,从而总氮的去除率再次升高.   相似文献   

8.
哒嗪硫磷在液相中的光化学降解   总被引:1,自引:0,他引:1  
赵锋  罗婧  王鸣华 《环境科学学报》2012,32(11):2755-2762
以高压汞灯为光源,研究了哒嗪硫磷在液相中的光化学降解及影响因素.结果表明,哒嗪硫磷浓度为5mg·L-1时,在纯水中光解半衰期为9.82h,哒嗪硫磷在不同有机溶剂中的光解速率大小依次为正己烷>乙酸乙酯>甲醇>乙腈,在碱性溶液中比中性和酸性溶液中光解快.在2~20mg·L-1浓度范围内,哒嗪硫磷在水与甲醇中光解速率均随初始浓度的增加而降低.硝酸盐对哒嗪硫磷水中光解有一定的光敏化作用,而表面活性剂(SDS)则表现出显著的光猝灭作用,且猝灭作用与剂量比正相关.Fe3+和Fe2+对哒嗪硫磷水中光解有极强的光敏作用,并且光敏效应随着离子浓度的提高表现出先增加后减小的现象.光解产物的HPLC-MS检测表明,哒嗪硫磷在水中光解主要的途径是发生光氧化和光异构化作用.  相似文献   

9.
含碳酸盐水溶液中扑热息痛的光解研究   总被引:2,自引:2,他引:0  
高颖  杨曦  刘钰 《环境科学》2008,29(3):643-649
采用动力学方法研究了环境浓度范围内的扑热息痛在含碳酸盐溶液中的光解,比较了碳酸盐自由基和羟基自由基对扑热息痛的光解效果,探讨了pH值、硝酸根离子、腐殖质、氯化钠、钙镁离子等因素对扑热息痛光解的影响.利用GC/MS技术鉴定了扑热息痛的光解产物,并探讨了扑热息痛在碳酸根体系中可能的光解途径.结果表明,扑热息痛与碳酸盐自由基反应的二级反应速率常数为 k.=5.0×107L·(mol·s)-1,低于与羟基自由基反应的二级反应速率常数kb=8.1×109L·(tool·s)-1,但是由于天然水体中碳酸盐自由基的稳态浓度较高,所以碳酸盐自由基对扑热息痛光解的影响和羟基自由基大致相当.提高体系pH值,加入硝酸根离子、氯化钠或者钙镁离子都会加快扑热息痛的光解速率;而加入Suwannee河富里酸则会降低光解速率.  相似文献   

10.
溶液pH对电助光催化氧化苯甲酰胺的影响研究   总被引:6,自引:3,他引:3  
溶液pH是电助光催化氧化技术的重要影响因素.采用溶胶-凝胶法制备TiO2/Ti固定膜光催化剂,对苯甲酰胺进行电助光催化氧化降解,考察溶液pH对苯甲酰胺降解速率的作用规律及作用途径.结果表明,无论以Na2SO4还是以NaCl为支持电解质,苯甲酰胺降解的准一级反应速率常数(k)均先随初始pH增加而增加,达到最大值后,继续增加初始pH,k下降,即k随溶液初始pH的变化呈现"火山形"的曲线,存在最佳初始pH使k达到最大.在这2种支持电解质中,苯甲酰胺的准一级反应速率常数(k)达到最大值的溶液初始pH不同,以Na2SO4为支持电解质时最佳初始pH为5.6,以NaCl为支持电解质时最佳初始pH为9.8.分析表明,溶液pH对半导体的平带电位、半导体催化剂表面的物种吸附、以及羟基自由基的生成量等方面具有重要影响.综合考虑溶液pH对电助光催化氧化热力学和动力学过程的影响,可以合理解释溶液pH对苯甲酰胺降解速率的作用规律.  相似文献   

11.
Tetracyclines constitute one of the most important antibiotic families and represent a classic example of phototoxicity. The photoproducts of tetracyclines and their parent compounds have potentially adverse effects on natural ecosystem. In this study, the self-sensitized oxidation products of tetracycline (TC) and oxytetracycline (OTC) were determined and the effects of Ca2+ and Mg2+on self-sensitized degradation were investigated. The Ca2+ and Mg2+ in the natural water sample accounted for enhancement (pH 7.3) and inhibition (pH 9.0) of photodegradation of TC and OTC due to the formation of metal-ions complexes. The formation of Mg2+ complexes was unfavorable for the photodegradation of the tetracyclines at both pH values. In contrast, the Ca2+ complexes facilitated the attack of singlet oxygen (1O2) arising from self-sensitization at pH 7.3 and enhanced TC photodegradation. For the first time, self-sensitized oxidation products of TC and OTC were verified by quenching experiments and detected by LC/ESI-DAD-MS. The products had a nominal mass 14 Da higher than the parent drugs (designated M+14), which resulted from the 1O2 attack of the dimethylamino group on the C-4 atom of the tetracyclines. The presence of Ca2+ and Mg2+ also affected the generation of M+14 due to the formation of metal-ions complexes with TC and OTC. The findings suggest that the metal-ion complexation has significant impact on the self-sensitized oxidation processes and the photoproducts of tetracyclines.  相似文献   

12.
Norfloxacin (NOR), an ionizable antibiotic frequently used in the aquaculture industry, has aroused public concern due to its persistence, bacterial resistance, and environmental ubiquity. Therefore, we investigated the photolysis of different species of NOR and the impact of a ubiquitous component of natural water — dissolved organic matter (DOM), which has a special photochemical activity and normally acts as a sensitizer or inhibiter in the photolysis of diverse organics; furthermore, scavenging experiments combined with electron paramagnetic resonance (EPR) were performed to evaluate the transformation of NOR in water. The results demonstated that NOR underwent direct photolysis and self-sensitized photolysis via hydroxyl radical (·OH) and singlet oxygen (1O2) based on the scavenging experiments. In addition, DOM was found to influence the photolysis of different NOR species, and its impact was related to the concentration of DOM and type of NOR species. Photolysis of cationic NOR was photosensitized by DOM at low concentration, while zwitterionic and anionic NOR were photoinhibited by DOM, where quenching of UOH predominated according to EPR experiments, accompanied by possible participation of excited triplet-state NOR and 1O2. Photo-intermediate identification of different NOR species in solutions with/without DOM indicated that NOR underwent different photodegradation pathways including dechlorination, cleavage of the piperazine side chain and photooxidation, and DOM had little impact on the distribution but influenced the concentration evolution of photolysis intermediates. The results implied that for accurate ecological risk assessment of emerging ionizable pollutants, the impact of DOM on the environmental photochemical behavior of all dissociated species should not be ignored.  相似文献   

13.
The photochemical degradation of bisphenol A (BPA) was studied in the presence of natural humic substances from different origins under simulated solar irradiation. BPA underwent insignificant direct photolysis in neutral water, but rapid photosensitized degradation in four humic substances solutions via pseudo-first-order reaction occurred. The photo-degradation rate of BPA was insensitive to the different initial BPA concentrations and was inhibited in aerated solution compared with the deoxygenated medium. The reactive oxygen species (ROS) such as ·OH and 1O2 produced from excitation of humic substances under irradiation was determined from the quenching kinetic experiment using molecular probe. The five main intermediate photoproducts of BPA in Nordic lake fulvic acid (NOFA) were tentatively identified using gas chromatography/mass spectrometer (GC/MS). Based on the identification of ROS and the analysis of photoproduct formation, the possible phototransformation pathways of BPA were proposed, involving the direct photolysis due to the energy transfer from the triplet state humic substance (3HS*) to BPA molecules and hydroxyl radical addition and oxidation as well. Translated from Acta Scientiae Circumstantiae, 2005, 25(6): 816–820 [译自: 环境科学学报]  相似文献   

14.
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   

15.
萘普生(NP)是一种广泛使用的消炎镇痛类药.本文研究了水中不同形态无机氮对萘普生及其两种重要的光解中间产物NP_1和NP_2光降解的影响.结果表明,NH~+_4对于NP及产物的光解几乎没有影响,NO~-_2和NO~-_3对NP、NP_1和NP_2的光解均表现出抑制作用.NO~-_2和NO~-_3对NP的影响主要是光屏蔽效应,而对NP_1和NP_2光解影响的主导因素是由光化学环境中产生的·NO、·NO_2同·OH的竞争关系造成的间接抑制.光化学环境中·OH、·NO_2、·NO氧化NP_1和NP_2的化学反应活化能垒呈现上升趋势(NP_1:7.0、21.2、54.4 kcal·mol~(-1);NP_2:34.5、47.1、70.3 kcal·mol~(-1)).活化能垒的差异表明,光化学反应体系中生成的·NO_2和·NO将会导致反应速率下降,这也诠释了NO~-_2和NO~-_3对NP_1和NP_2光解抑制的差异性.  相似文献   

16.
异丙草胺光解体系中溶解氧的增强效应   总被引:1,自引:0,他引:1  
研究了异丙草胺光解过程中溶解氧的协同效应,在不同初始浓度溶解氧存在时异丙草胺在水中的光解规律.随着溶解氧初始浓度的增加,光解速率和效率均有提高,其中最高和最低光解效率相差30%.初始溶解氧浓度达到7.5mg/L后,光解速率和效率出现了平台效应,并且随着溶解氧浓度增加而有所下降.伴随异丙草胺的光解,溶解氧也有消耗,可以推测溶解氧也参与了光反应.通过对降解产物的分析,发现含高浓度溶解氧和缺氧条件下的光解产物基本一致,但部分光解产物生成量不同.通过光解体系做自旋捕捉实验,推测可能是通过单线态氧1O2机制进行光氧化.  相似文献   

17.
准分子灯光照降解水相中烷基酚的动力学   总被引:1,自引:1,他引:0  
准分子灯辐射的206 nm紫外光可以直接光解4-壬基酚(4-NP)和4-辛基酚(4-OP),但不能使之完全氧化为CO2.相同光照条件下,4-OP的去除率高于4-NP.采用拟一级动力学模型和修正的动力学模型对光解过程进行拟合,得到两种烷基酚206 nm直接光解的速率常数.结果表明,烷基酚初始浓度越低,光解速率常数越高.两种动力学模型对低浓度烷基酚直接光解都具有一定的适用性,但修正的模型不适合高浓度4-OP直接光解.UV/H2O2体系中,烷基酚的降解速率明显提高,但只有当H2O2加入量很高时,TOC去除才比较明显.最后,推导出4-OP直接光解的速率常数kd为0.0328 min-1,4-OP与H2O2反应的速率常数kpH为17.4520 L·(mol·min)-1.  相似文献   

18.
Reactive oxygen species(ROS) can be produced by interactions between sunlight and light-absorbing substances in natural water environment.ROS may participate in the indirect photolysis of trace organic pollutants,therefore resulting in changes in their environmental fates and ecological risks in natural water systems.Bisphenol A(BPA),an endocrine-disrupting chemical,exits widely in natural waters.The photodegradation of BPA promoted by ROS(.OH,1O2,HO2./O2·-),which were produced on the excitation of ubiquito...  相似文献   

19.
172nm真空紫外辐射降解水相有机染料的机理研究   总被引:6,自引:0,他引:6  
研究了氙准分子灯的172nm真空紫外辐射对水相有机染料枣红的分解机理.氙准分子灯为平面状结构,反应溶液作为灯的一端电极直接与灯表面接触.分别在枣红溶液中通入氧气和氮气以及加入KCl,以具体确定172nm辐射对枣红分子的降解是通过直接光分解还是自由基起作用.研究结果表明,在枣红的降解过程中,直接光分解起主要作用,光降解过程符合准一级动力学反应,光量子产率为6 8×10 - 3mol·eistein- 1 .在HO·、HO2 ·和O2 ·- 自由基作用下,枣红的降解在10min后偏离了准一级反应.枣红降解效率达到约80 %后,COD去除率开始增大.GC MS分析表明,在光分解和热氧化作用下,枣红分子在降解过程中形成了许多小分子碎片.  相似文献   

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