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1.
周红艺  曾思思  梁思  韩鉴 《环境科学》2014,35(9):3430-3435
采用Pd/Fe双金属对2,4-二氯苯氧乙酸(2,4-D)进行催化还原脱氯,以活性污泥对2,4-D脱氯产物进行生物氧化,考察初始pH、活性污泥量、污染物初始浓度、温度等因素对生物氧化的影响情况.通过PCR-变性梯度凝胶电泳分析污泥体系菌群变化情况,高效液相色谱测定来推测目标污染物的降解过程.结果表明:1 Pd/Fe双金属可有效还原2,4-D,其主要先还原为2-氯苯氧乙酸(2-CPA),最终顺序脱氯为苯氧乙酸(PA).2 2,4-D具有较大生物毒性,其脱氯产物毒性下降,更易被生物降解.3 pH=7、污泥量50 mL/200 mL、适量的初始PA浓度(14.6 mg·L-1)和30℃均有利于PA的去除.在该条件下反应96 h,PA去除率可达84.3%.  相似文献   

2.
通过Hummers法及紫外光/热还原工艺制得还原氧化石墨烯(RGO),采用溶胶-凝胶-煅烧法,以RGO和钛酸酊脂为前驱体制备出RGO/TiO2光催化复合材料,并利用XRD、FT-IR等对其进行了表征.对RGO/TiO2光催化降解性能的研究发现,复合光催化剂RGO/TiO2对2,4-二氯苯氧乙酸(2,4-D)的光催化降解活性显著优于纯TiO2,并且发现负载量和pH值对光催化降解性能有较大的影响:RGO/TiO2投加量为1.2g·L~(-1)、RGO负载量2%、pH为3、初始浓度为50 mg·L~(-1)反应12 h,2,4-D去除率达到98.75%;2,4-D降解率随着RGO/TiO2投加量的增大先增大后减小;RGO/TiO2对2,4-D的降解为脱氯还原和催化氧化过程,产生氯酚、苯酚等中间产物.  相似文献   

3.
水中本底成分对O3/H2O2氧化降解2,4-D的影响   总被引:1,自引:0,他引:1  
重点考察了水中本底成分对O3/H2O2高级氧化工艺去除水中微量农药2,4-D的影响规律.实验结果表明,自来水本底比蒸馏水本底更有利于水中2,4-D的去除;自由基捕获剂叔丁醇对于2,4-D的催化臭氧化反应具有比较明显的抑制作用,但是HCO3-却对水中2,4-D的氧化降解有一定的促进作用;一定浓度的腐殖酸对于2,4-D的催化臭氧化反应具有比较明显的促进作用,较高浓度的腐殖酸对于2,4-D的催化臭氧化反应具有明显的抑制作用;水中的Na 、K 、Mg2 、Ca2 、Cu2 、Zn2 在较低浓度时对2,4-D的降解没有明显影响,在高浓度时有一定的抑制作用;Co2 、Ni2 、Ca2 、Cr3 在较低浓度时对2,4-D的氧化降解有促进作用,高浓度时候有一定的抑制作用.  相似文献   

4.
采用水热合成法制备TiO2纳米材料,用BET、XRD、TEM技术对样品进行表征,结果表明,制备出来的样品均为纳米管,随着煅烧温度的增加,晶型从锐钛矿变成金红石相。实验考察了体系参数对臭氧/TiO2纳米管工艺降解2,4-二氯酚废水影响,结果表明:随着臭氧投加量的增加,废水COD的去除效率随之增加,初始浓度的增加会抑制降解效率,中性或弱碱性水环境有利于反应的进行。另外,通过研究叔丁醇对反应体系的影响,表明实验反应遵循羟基自由基的反应机理。  相似文献   

5.
Ozonation of synthetic water containing a type of endocrine disruptor-di-n-butyl phthalate (DBP) was examined. Key impact factors such as pH, temperature, ionic strength, ozone dosage and initial DBP concentration were investigated. In addition, the activities of radicals on uncatalysed and catalysed ozonation were studied. The degradation intermediate products were followed and the kinetic of the ozonation were assessed as well. Results revealed that ozonation of DBP followed two mechanisms. Firstly, the reaction rate of direct ozonation was slower at lower pH, temperature, and ionic strength. Secondly, when these factors were increased for indirect radical reaction, higher percentage of DBP was removed with the increase of the initial ozone dosage and the decrease of the initial DBP concentration. In addition, tea-butanol, humic substances and Fe(Ⅱ) affected DBP ozonation through the radical pathway. It was determined that ozonation was restrained by adding tea-butanol for its radical inhibition effect. Furthermore, humic substances enhanced the reaction to some extent, but a slight negative effect would be encountered if the optimum dosage was exceeded. As a matter of fact, Mn(Ⅱ) affected the ozonation by "active sites" mechanism. In the experiment, three different kinds of intermediate products were produced during ozonation, but the amount of products for each one of them decreased as pH, temperature, ionic strength and initial ozone dosage increased. A kinetic equation of the reaction between ozone and DBP was obtained.  相似文献   

6.
玉米芯生物炭对2,4-D在土壤中吸附性能的研究   总被引:2,自引:0,他引:2  
研究了玉米芯生物炭剂对土壤中2,4-D的吸附性能,并探讨了影响吸附的因素和吸附机理.结果表明:生物炭可使土壤对2,4-D的吸附容量显著增大.吸附结果用Freundlich和Redlich-Peterson方程都可以较好地拟合(R20.95).60 h后,与对照土壤相比,添加质量分数为0.5%生物炭的土壤对2,4-D的最大吸附量从20.83μg·g-1升高到58.82μg·g-1.吸附动力学研究表明,伪二级动力学速率方程对土壤吸附2,4-D的过程拟合效果较好(R20.99),优于一级动力学速率模型;p H和温度对土壤中2,4-D的吸附影响显著,p H接近3.1和40℃的水浴环境更利于添加生物炭的土壤对2,4-D的吸附.玉米芯生物炭可作为原位修复剂吸附土壤中的2,4-D,从而降低土壤中有机污染物的迁移性和生物有效性.  相似文献   

7.
采用EDTA优化纳米Pd/Fe催化脱氯水中2,4-二氯苯氧乙酸(2,4-D),并考察了EDTA投加浓度、pH、钯化率、温度等因素对2,4-D还原的影响.结果表明,EDTA的加入络合了纳米Pd/Fe在催化脱氯过程中生成的铁离子,抑制纳米Pd/Fe颗粒表面钝化层的形成,提高了体系的反应活性.适宜的EDTA浓度、低pH、高钯化率、低温等有利于2,4-D的还原脱氯.当EDTA浓度为25.0 mmol·L-1,纳米铁含量为1.0 g·L-1,初始pH=4.3、钯化率为0.5%,温度为25.0℃,搅拌速率为200 r·min~(-1)时,反应50 min,10.0 mg·L-1的2,4-D去除率及苯氧乙酸(PA)生成率均达到100%.  相似文献   

8.
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   

9.
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   

10.
Comparative studies of ozonation alone, ceramic honeycomb-catalyzed and Mn-Fe-K modified ceramic honeycomb catalyzed ozonation processes have been undertaken with benzophenone as the model organic pollutant. The experimental results showed that the presence of Mn-Fe-K modified ceramic honeycombs significantly increased the removal rate of benzophenone and TOC compared with that achieved by ozonation alone or ceramic honeycomb-catalyzed ozonation. The electron paramagnetic resonance (EPR) experiments verified that higher benzophenone removal rate was attribute to more hydroxyl radicals generated in the Mn-Fe-K modified ceramic honeycomb-catalyzed ozonation. Under the conditions of this experiment, the degradation rate of all the three ozonation processes are increasing with the amount of catalyst, temperature and value of pH increased in the solution. We also investigated the effects of different process of ozone addition, the optimum conditions for preparing catalyst and influence of the Mn-Fe-K modified ceramic honeycomb after multiple-repeated use.  相似文献   

11.
More efficient oxidation methods are needed to degrade especially newly emerging recalcitrant organic contaminants at low concentrations in the water environment. Reduced photonic efficiency of immobilized TiO2 is a major challenge in TiO2-assisted advanced oxidation processes (AOP). Mineralization of 2,4-dichllorophenoxyacetic acid (2,4-D) in low aqueous solution by O3/UV/TiO2 using the world's first high-strength TiO2 fiber was investigated and compared with O3, UV/TiO2, and O3/TiO2 in laboratory batch ex...  相似文献   

12.
环境中残留的抗生素药物对生态环境的危害受到极大关注。研究了臭氧对水中磺胺嘧啶(SD)的降解,考察了溶液pH、臭氧浓度和HC O 3 - 投加量对臭氧降解SD的影响,并对其降解机理进行了分析。结果表明:初始pH、臭氧浓度及HC O 3 - 均对臭氧氧化降解SD过程造成影响,提高pH、增加臭氧浓度和HC O 3 - 投加量均能提高SD降解速率;在SD浓度为30 mg/L、初始pH为9.14、臭氧浓度为10.0 mg/L、HC O 3 - 投加量为100 mg/L时,反应30 min后SD基本被去除,120 min后SD的最终矿化率为39.44%;臭氧降解SD过程基本符合伪一级动力学模型。液相色谱-质谱分析结果显示:臭氧氧化SD过程中,生成中间产物对氨基苯磺酸(C6H7NO3S),经臭氧进一步氧化分解,最终矿化生成CO2。  相似文献   

13.
硅胶负载纳米TiO2催化臭氧化降解水中微量硝基苯的研究   总被引:11,自引:0,他引:11  
研究了纳米TiO2负载于硅胶表面作为臭氧氧化硝基苯过程中的催化剂时,热处理温度对催化活性的影响.结果表明,在700℃条件下烧结的纳米TiO2/硅胶表现出了最佳活性,反应10min硝基苯去除率相比于单独臭氧氧化提高了约25%.在一定范围内催化剂投量越大,硝基苯去除率越高.碱性pH环境有利于催化臭氧化反应的进行,但当pH值高于10时,硝基苯去除率有所降低.催化臭氧化反应遵循一级反应,反应速率常数与硝基苯的初始浓度无关.典型的自由基捕获剂叔丁醇与碳酸根离子对硝基苯的降解有强烈的抑制作用,间接地证明催化臭氧化反应遵循自由基作用机理.反应温度为10~40℃之间时,硝基苯去除率随着温度升高而提高.催化剂重复使用实验证明TiO2在硅胶表面负载牢固,催化剂具有较好的稳定性与耐用性.  相似文献   

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