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1.
臭氧氧化去除吐氏酸溶液COD的动力学研究   总被引:3,自引:0,他引:3  
研究了臭氧氧化条件下,吐氏酸水溶液在鼓光反应器内的COD去除动力学,考察了pH值、温度、自由基抑制剂及进气口臭氧浓度等因素对反应的影响。结果表明:在pH=8左右时,COD去除效果较好;在17-30℃范围内,温度对反应影响不大;自由基抑制剂明显影响氧化效果,说明氧化过程是分子臭氧和其分解产生的自由基共同参与的结果;氧化降解效果与进气中臭氧浓度与正相关;臭氧氧化明显改善吐氏酸的生物降解性能,BOD5/COD可达0.18。研究表明:吐氏酸臭氧化的COD去除过程符合一级反应动力学。  相似文献   

2.
Degradation of nitrobenzene in aqueous solution by ozone-ceramic honeycomb   总被引:4,自引:1,他引:4  
IntroductionAs a promising advanced oxidation technology for watertreatment ,catalytic ozonation has received great attentionforthe efficient degradation of organic compoundsinrecent years(Legube , 1999) . Some studies showed that homogeneousand heterogen…  相似文献   

3.
Fenton and ozone treatment was investigated at laboratory scale for the degradation of aqueous solutions of nitrobenzene (NB).Effects of reactants concentration (O3,H2O2,and Fe(II)),temperature,and pH on NB degradation were monitored.Reaction kinetic of these processes was also assessed.A rapid reaction took place for Fenton process at higher initial concentration of H2O2,higher temperatures,and more acidic conditions(pH 3).Similarly, ozonation reaction exhibited rapid rates for higher ozone dose,higher temperatures,and more basic conditions(pH 11).Complete NB degradation in 65 min Was achieved using Fenton process.The conditions of complete elimination of 100 mg/L of initial NB concentration,were 250 mg/L of H2O2 concentration,pH 3,and 10 mg/L of Fe(Ⅱ) concentration.Under these conditions,55% organic carbon elimination Was achieved.Total organic carbon mineralization Was attained in 240 min reaction time by Fenton process with 900 mg/L of H2O2 concentration,and 30 mg/L of Fe(II) concentration.Fenton reaction showed a pseudo-first order kinetic;the reaction rate constant Was ranged from 0.0226 to 0.0658 min-1.Complete NB degradation wag also achieyed for an ozone dose of the order of 2.5 g/L.The ozonation Was studied at different ozone doses.different initial pH(7-11)and at difierent temperatures(15-35℃).NB ozonation kinetic Was represented by a bi-molecular kinetic model which was reduced to pseudo-first order kinetic.The pseudo-first order reaction rate constant was determined to increase at 20℃ from 0.004 to 0.020 min-1 as the used ozone increased from 0.4 to 1.9g/L.  相似文献   

4.
臭氧降解甲基对硫磷机理研究   总被引:8,自引:0,他引:8  
研究了臭氧降解甲基对硫磷的效果、机理.鉴定了反应中间产物。实验表明臭氧能有效降解甲基对硫磷。通过分别添加自由基抑制剂碳酸氢钠和叔丁醇,初步探讨了反应机理,在自由基抑制剂存在时,甲基对硫磷的降解率明显降低,表明甲基对硫磷的降解遵循自由基机理。对处理过的水样采用GC,HPLC,UV检测.结果表明有未知中间产物生成,同时发现降解产物的极性增强。通过GC-MS检测鉴定了此未知物质的结构,证实臭氧处理不足时会有毒性中间产物生成。  相似文献   

5.
唑类抗真菌剂广泛应用于药物和个人护理品(pharmaceutical and personal care products,PPCPs)中,常规污水处理工艺难以将其有效去除. 大量唑类抗真菌剂排入受纳环境后会对生态系统造成一系列负面影响. 为了解唑类抗真菌剂的臭氧氧化降解过程和机理,以氯咪巴唑(climbazole,CZ)为例,通过设置不同条件的对比试验,系统研究CZ在臭氧氧化过程中的影响因素及其去除规律,同时采用超高效液相色谱-飞行时间质谱联用仪UPLC-Q/TOF对其降解产物进行鉴定. 影响因素试验结果表明:①CZ起始浓度由1.0 mg/L增至4.0 mg/L时,臭氧氧化20 min下CZ的降解率从99.1%降至69.3%;②反应体系起始pH由5.0升至9.0时,CZ臭氧降解半衰期由1.38 min延长至7.18 min;③臭氧流速由0.1 L/min增至0.4 L/min时,臭氧氧化20 min时CZ的降解率从66.5%提至99.4%,但臭氧流速超过0.3 L/min以后,CZ降解率的增幅较小;④自然水体及其高浓度共存组分(碳酸氢根和腐殖酸)均会明显抑制CZ的臭氧氧化反应速率,CZ降解半衰期大多数超过6 min (空白对照组为1.99 min). 因此,在臭氧氧化降解新兴有机污染物或对臭氧氧化工艺进行优化时,应充分考虑起始污染负荷、pH、臭氧流速、水体水质状况等对处理效果的影响. 产物鉴定结果表明:臭氧氧化反应可将CZ碎裂重组形成两个主要降解产物——TP269和TP297,二者的产率分别为11.45%和8.90%. 研究显示,起始污染负荷、pH、臭氧流速、水体水质状况均会明显影响CZ的臭氧降解效果;两个CZ臭氧降解产物的产率虽不高,但其毒性有待进一步研究.   相似文献   

6.
臭氧氧化反渗透浓缩垃圾渗滤液动力学   总被引:5,自引:2,他引:3  
郑可  周少奇  沙爽  杨梅梅 《环境科学》2011,32(10):2966-2970
采用臭氧氧化法处理经反渗透膜处理后的浓缩垃圾渗滤液,并建立了氧化降解反应动力学模型.结果表明,氧化降解初始反应速率主要与初始pH、臭氧投量、反应温度和初始COD有关.在pH 8.0,温度30℃,臭氧投量5.02 g/h,反应时间90 min的条件下,反渗透浓缩渗滤液的COD去除率达到67.6%;并且在pH为2.0~8....  相似文献   

7.
臭氧氧化降解除草剂草甘膦的实验研究   总被引:6,自引:2,他引:4  
以有机磷农药草甘膦作为目标污染物,进行了臭氧氧化试验.研究了不同臭氧投量、草甘膦初始浓度、初始pH对臭氧氧化去除草甘膦的影响,并对降解途径进行了探究.实验结果表明:臭氧投量越大,草甘膦初始浓度越低,臭氧氧化草甘膦的反应速率越快;不同pH条件下,碱性体系中草甘膦的去除速率最快,中性次之,酸性体系中草甘膦的去除速率最慢;臭...  相似文献   

8.
张静  杨忆新  马军  汤黎 《中国环境科学》2014,34(6):1457-1462
采用溶胶凝胶的方法制备CoOx-TiO2催化剂,对臭氧流量、催化剂投量、反应温度、草酸初始浓度、pH值等影响草酸去除率的因素进行了研究,并探讨了催化机理.实验结果表明,溶液初始pH值对草酸的去除率有显著的影响,溶液初始pH值为3时,草酸具有去95.7%的最高去除率.催化氧化过程中草酸被彻底矿化为CO2和H2O.通过叔丁醇实验和电子顺磁共振波谱仪(ESR)证明,在催化过程中有羟基自由基的生成,但羟基自由基并不是主要的氧化剂.草酸可能首先在催化剂表面发生吸附或者络合,然后被羟基自由基或者臭氧分子直接氧化.  相似文献   

9.
臭氧降解高浓度腐殖酸动力学   总被引:4,自引:1,他引:3  
郑可  周少奇  杨梅梅 《环境科学》2012,33(3):879-884
采用臭氧氧化法降解高浓度腐殖酸废水,并研究了臭氧对腐殖酸的降解动力学,考察了臭氧投量、初始腐殖酸浓度、初始pH和反应温度对臭氧降解高浓度腐殖酸废水的影响.结果表明,在臭氧投量为3.46 g.h-1,初始腐殖酸浓度为1 000mg.L-1,初始pH=8.0,反应温度为303 K,反应30 min的条件下,腐殖酸的去除率达到89.04%.在臭氧投量为1.52~6.01g.h-1,初始腐殖酸浓度为250~1 000 mg.L-1,初始pH为2.0~10.0,反应温度在283~323 K的范围内,臭氧降解腐殖酸符合拟一级动力学模型,通过对实验数据拟合,得到反应动力学方程,反应活化能较低(Ea=1.30×104J.mol-1),并且模型计算数值与实际数据吻合良好(平均相对误差为7.62%).  相似文献   

10.
臭氧氧化饮用水过程中可同化有机碳生成的影响因素   总被引:1,自引:1,他引:0  
董秉直  张佳丽  何畅 《环境科学》2016,37(5):1837-1844
研究臭氧化过程中,臭氧投加量、p H值和离子强度对可同化有机碳(assimilable organic carbon,AOC)生成量的影响.结果表明,臭氧投加量在1~5 mg·L~(-1)范围,AOC的生成量随着投加量的增加而增加,但过高的臭氧投加量(9 mg·L~(-1))反而导致AOC生成量下降.p H越高(6~9),AOC的生成量也越高.AOC的生成量随着离子强度的升高而下降.臭氧氧化强疏组分AOC的生成量最高,其次为弱疏,而极亲和中亲最低.研究发现,AOC的生成量与小分子有机物的SUVA有密切的关系,较低的SUVA产生较多的AOC.  相似文献   

11.
敌敌畏的臭氧氧化处理   总被引:3,自引:1,他引:2  
在12 L的反应器中,观察了臭氧浓度分别为4.9、6.7和7.6 mg/L,溶液温度10.50℃,pH值为3.1、5.3、7.2、9.4和11.2条件下,臭氧氧化浓度为30 mg/L的有机磷杀虫剂敌敌畏的处理效果,并计算了臭氧氧化敌敌畏的反应动力学.结果表明,臭氧氧化法是处理敌敌畏的高效方法.不同浓度臭氧处理5 min时敌敌畏的去除率均在96%以上,6.7 mg/L的臭氧氧化处理敌敌畏4 min时矿化度(以TOC 计)可达34.8%.臭氧浓度越高,敌敌畏的降解速率越快.随着敌敌畏初始浓度的升高,敌敌畏的氧化去除率下降,但绝对去除量升高.试验范围内的pH值和温度对敌敌畏的臭氧氧化去除效果影响不大.在臭氧浓度6.7 mg/L,pH 7.2和室温20℃的条件下,臭氧氧化敌敌畏的反应级数为0.11,反应速率常数k为7.72 mg·(L·min)-1.  相似文献   

12.
活性炭催化臭氧氧化扑热息痛的机制研究   总被引:2,自引:2,他引:0  
采用活性炭催化臭氧处理典型解热镇痛药扑热息痛,研究了活性炭/臭氧体系的协同效应,优化了工艺参数,分析了降解产物并探讨了降解机制.结果表明:在臭氧活性炭体系下,反应60 min后,TOC的去除率为55.11%,效果明显优于臭氧体系的20.22%和活性炭体系的27.39%之和,具有明显的协同作用,并且BOD5/COD比值从反应前的0.086提高到反应后的0.543,可生化性显著提高.研究了pH、臭氧投加量、污染物初始浓度和活性炭投加量等操作参数的作用规律.在此基础上,探讨了臭氧活性炭体系在不同pH下的催化反应机制,发现在酸性条件下是吸附和臭氧直接氧化共同作用,在碱性条件下以活性炭催化臭氧氧化为主.  相似文献   

13.
Nanometer zinc oxide (ZnO) powders were used as a catalyst to enhance the ozonation for the degradation of dichloroacetic acid (DCAA) in aqueous solution. The batch experiments were carried out to investigate the e ects of key factors such as catalyst dosage, ozone dosage, solution pH and tert-butyl alcohol (t-BuOH) on the degradation e ciency of DCAA. Density functional theory (DFT) was adopted to explore the mechanism of generating hydroxyl radical (.OH) on the ZnO surface. The results showed that adsorption and ozonation processes were not e ective for DCAA removal, and the addition of ZnO catalyst improved the degradation e ciency of DCAA during ozonation, which caused an increase of 22.8% for DCAA decomposition compared to the case of ozonation alone after 25 min. Under the same experimental conditions, the DCAA decomposition was enhanced by increasing catalyst dosage from 100 to 500 mg/L and ozone dosage from 0.83 to 3.2 mg/L. The catalytic ozonation process is more pronounced than the ozonation process alone at pH 3.93, 6.88, and 10. With increasing the concentration of t-BuOH from 10 to 200 mg/L, the degradation of DCAA was significantly inhibited in the process of catalytic ozonation, indicating that ZnO catalytic ozonation followed .OH reaction mechanism. Based on the experimental results and DFT analysis, it is deduced that the generation of .OH on the ZnO surface is ascribed to the adsorption of molecule ozone followed by the interaction of adsorbed ozone with active sites of the catalyst surface. It is also concluded that ZnO may be an e ective catalyst for DCAA removal, which could promote the formation of .OH derived from the catalytic decomposition of ozone.  相似文献   

14.
以水/载O3有机溶剂(全氟萘烷)为新型两相臭氧氧化体系,研究了臭氧在全氟萘烷中的溶解度和稳定性,并以水体中2,4-二氯苯氧乙酸(2,4-D)为研究对象,考察了初始pH值、臭氧投加量、自由基抑制剂对两相臭氧氧化体系降解2,4-D效果的影响.结果表明:臭氧在全氟萘烷中有很高的溶解度和很好的稳定性;碱性pH环境有利于2,4-D的降解,随着水相初始pH的增加,2,4-D在水/载饱和O3全氟萘烷两相体系中的去除率明显增加;随着初始全氟萘烷载O3量与2,4-D物质的量比的增加,2,4-D总去除率明显增加;叔丁醇(20mg·mL-1)对两相体系中2,4-D降解影响不显著.  相似文献   

15.
Enhanced ozonation degradation of atrazine (ATZ) with nano-ZnO (nZnO) as catalyst and the influences of the operational parameters have been investigated through semi-continuous experiments in this study. The results demonstrated that the combination of ozone (O3) and nZnO showed an obvious synergetic effect and the ATZ degradation conformed to pseudo-first-order kinetics. An improvement of ATZ degradation efficiency by 41.8% and pseudo-first-order rate constant by more than a factor of four was obtained in the O3/nZnO process after 5 min of reaction compared to O3 alone. Meanwhile, the degradation efficiency of ATZ was gradually enhanced with increasing nZnO dosage and initial pH in the range from 3.0 to 8.0, and a higher amount of ATZ was degraded when the initial concentration of ATZ rose from 0.5 to 5 mg/L. Additionally, sulfate ion, chloride ion, nitrate ion and low concentrations of humic acid substances led to enhancement of the ATZ degradation. The notable decrease of ATZ removal efficiency observed in the presence of radical scavengers and the results of free radical tests indicated that OH is the dominant active radical species. The mechanism investigation demonstrated that the enhancement effect could be attributed to the introduction of nZnO, which could promote the utilization of O3, enhance the formation of superoxide radical, and further accelerate the production of hydrogen peroxide and the generation of OH/O2-.  相似文献   

16.
The ozonation of nitrobenzene in aqueous solution was carried out in a semi-batch reactor to investigate the degradation efficiency, the effect factors, and the reaction mechanism, where honeycomb ceramic was used as a catalyst. The presence of honeycomb ceramic could improve the degradation rate of nitrobenzene by 15.46% compared to the results of ozonation alone. Under the conditions of this experiment, the degradation rate of honeycomb ceramic-catalyzed ozonation increased by 12.94% with the increase of the amount of catalyst from 1 to 5 blocks. The degradation rates all increased greatly with the increase of temperature and pH of the solution in the processes of honeycomb ceramiccatalyzed ozonation and ozonation alone. But, when the pH of the solution increased to 9.50, the advantage of the honeycomb ceramic-catalyzed ozonation process would be lost. The experimental findings indicated that in the processes of ozonation alone and honeycomb ceramic-catalyzed ozonation, nitrobenzene was primarily oxidized by ·OH free radical in aqueous solution. The adsorption of nitrobenzene was too limited to have an important influence on the degradation rate of nitrobenzene. With the same total dosage of applied ozone, the multiple step addition of ozone showed much higher removal efficiency than that obtained by one step in the two processes.  相似文献   

17.
王胜军  马军  杨忆新  张静  秦庆东  梁涛 《环境科学》2007,28(11):2520-2525
研究了以负载于陶粒、硅胶、沸石表面的纳米TiO2作为催化剂时,催化臭氧化松花江水过程中氨氮浓度的变化.结果表明,在单独臭氧化过程中,氨氮浓度先升高后下降,反应30 min后的氨氮浓度与初始浓度相近.在以TiO2/陶粒、TiO2/硅胶为催化剂的催化臭氧化过程中,氨氮浓度也是先升高后下降,但反应过程中氨氮的平均浓度要高于单独臭氧化过程.以TiO2/沸石为催化剂时,催化臭氧化过程中氨氮浓度先下降,然后略有升高,继而又下降,30 min时对氨氮的去除率接近80%.单独臭氧化和催化臭氧化过程中,增大臭氧投量,氨氮浓度最大值出现的时间提前,并且反应过程中氨氮浓度平均值降低.增大催化剂TiO2/陶粒、TiO2/硅胶的投量,催化臭氧化过程中氨氮浓度平均值升高.增大TiO2/沸石投量,有利于氨氮的去除,但投量增大到50g以上时,对氨氮的去除效果影响很小.温度从10℃升高到30℃,对TiO2/陶粒、TiO2/硅胶催化臭氧化过程中氨氮浓度的变化影响不大.而以TiO2/沸石为催化剂时,温度升高有利于催化臭氧化过程中氨氮的去除.  相似文献   

18.
为考察水中PCN(青霉素G)在臭氧氧化过程中的降解规律与特征,采用臭氧直接氧化法处理模拟废水中的PCN,研究了初始pH、ρ(臭氧)、初始ρ(PCN)、自由基抑制剂TBA(叔丁醇)、反应温度等对水中PCN去除效果的影响,并分析了PCN在臭氧氧化降解过程中的降解特性和动力学特征.结果表明:①在溶液体积为1 L、初始ρ(PCN)为50 mg/L、初始pH为11、ρ(臭氧)为15 mg/L、反应温度为20℃时,反应5 min时PCN去除率为100%,反应2 h时TOC去除率为28.98%.②PCN的降解速率和TOC去除效果随pH的增大而升高,碱性环境有利于PCN的矿化.③臭氧氧化过程中,PCN的降解以臭氧直接氧化为主,其降解中间产物的矿化主要以臭氧间接氧化为主,TBA可抑制强氧化性羟基自由基的产生效率,因而对TOC的矿化有明显的抑制作用.④对PCN的降解过程进行一级、伪一级和二级动力学方程拟合,结果表明,伪一级动力学方程拟合相关性(R2=0.999 7)最高,k(反应速率常数)最大值为0.825 5 min-1.研究显示,臭氧直接氧化可有效降解水中PCN,但对中间产物的矿化去除效果较为有限,臭氧氧化降解PCN的过程遵循伪一级反应动力学方程.   相似文献   

19.
有机废水湿式O_3氧化降解过程的研究   总被引:9,自引:1,他引:9  
采用 O3 湿式氧化降解含氯乙烯的有机废水 ,实验研究了不同 p H、不同温度以及不同初始氯乙烯浓度对反应过程的影响 ,初步探讨了在高 p H时 O3 的自分解催化产生自由基 OH·机理和污染物的氧化降解过程。通过实验研究与分析 ,获得了氯乙烯有机废水 O3 氧化过程的动力学方程  相似文献   

20.
天然水体腐殖质对双酚A光降解影响的研究   总被引:13,自引:1,他引:12  
以中压汞灯模拟太阳光光源,研究了双酚A(BPA)在水体腐殖质中的光降解过程,探讨了不同来源的腐殖质、腐殖质浓度、BPA初始浓度、溶解氧等因素对BPA光解速率的影响,实验结果表明,BPA在纯水体系中直接光解很慢,但在腐殖质溶液中光解迅速,符合拟一级动力学反应,改变BPA初始浓度对BPA光解速率的影响不明显,增大溶解氧浓度会抑制BPA光解,通过活性氧分子探针鉴定了腐殖质吸收光辐射产生的羟基与单线态氧,利用GC-MS鉴定了双酚A在Nordic湖富里酸(NOFA)中的光敏化降解产物,推测出BPA敏化降解的可能历程为能量转移导致的直接光解、羟基加成和羟基氧化。  相似文献   

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