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1.
为提高臭氧氧化法对难降解有机污染物的降解效率,采用在催化臭氧氧化体系中引入H_2O_2的方法,建立催化O_3-H_2O_2联合氧化体系,使O_3与H_2O_2在体系中起协同作用。采用等体积浸渍法筛选制备了具有高催化性能的Fe-Mn/γ-Al_2O_3催化剂,应用于O_3/Fe-Mn/γ-Al_2O_3/H_2O_2复合体系协同催化臭氧氧化处理间甲酚模型废水。通过扫描电子显微镜(SEM)、物理吸附、X射线衍射(XRD)、X射线荧光光谱(XRF)、X射线光电子波谱(XPS)对催化剂的物理化学性质进行表征。考察了O_3投加量、H_2O_2投加量、初始pH、空速等因素对Fe-Mn/γ-Al_2O_3催化O_3-H_2O_2氧化间甲酚处理效果的影响,并采用GC-MS和LC-OCD,对Fe-Mn/γ-Al_2O_3催化O_3-H_2O_2氧化间甲酚的中间产物的类型及相对分子质量进行分析。结果表明,当以Fe-Mn/γ-Al_2O_3为催化剂时,协同催化氧化体系的最优处理参数为:间甲酚浓度100 mg·L~(-1),O_3投加量481 mg·L~(-1),反应时间10 min,空速6 h~(-1),H_2O_2投加量211 mg·L~(-1),进水pH 6.7。在此条件下,TOC去除率可达68.37%,间甲酚转化率可达100%。以上研究结果可为2种技术联用降解煤化工废水提供参考。  相似文献   

2.
用浸渍法在活性炭(AC)上负载氧化铈(CeO2)制备催化刺CeO2/AC催化臭氧氧化去除邻苯二甲酸二甲酯(DMP),考察了臭氧投加量,DMP初始浓度和溶液初始pH的影响.结果表明,CeO2/AC催化臭氧氧化去除DMP的最佳臭氧投加量为50mg/h,DMP初始浓度和溶液初始pH对CeO2/AC催化臭氧氧化DMP过程都有一定的影响.在DMP初始质量浓度为30 mg/L、溶液初始pH为5、臭氧投加量为50 mg/h、反应60 min时,CeO2/AC的加入(1.5g/L)有利于催化臭氧氧化DMP过程中总有机碳(TOC)的去除,TOC去除率由AC催化臭氧氧化的48%提高到68%.而单独臭氧氧化过程中的TOC去除率仅22%;且单独臭氧氧化与AC、CeO2/AC催化臭氧氧化DMP的矿化过程均符合二级反应动力学方程,CeO2/AC催化臭氧氧化DMP时TOC降解的二级反应动力学常数为0.0015L/(mg·min),分别是AC催化臭氧氧化的2.5倍和单独臭氧氧化的7.5倍.  相似文献   

3.
以天然锰矿为金属催化剂,研究了锰矿催化臭氧氧化水中4-氯酚的降解效果。采用毛细管电泳方法及色质联用技术.分别对反应的中间产物和终产物进行了分析。推测了锰矿催化臭氧氧化水中4-氯酚的降解反应机理可能为:锰矿的吸附氧化与锰矿生成的Mn^2 催化臭氧分解.产生更多高活性的羟基自由基.从而提高了臭氧的氧化能力。  相似文献   

4.
非均相催化臭氧氧化深度处理炼油废水   总被引:1,自引:0,他引:1  
采用非均相催化剂催化臭氧氧化处理炼油废水,考察了催化剂负载率、p H、催化剂投加量和臭氧投加量及反应时间对处理效果的影响。结果表明,组合工艺最佳工艺条件为:催化剂负载率2.1%、p H 9、催化剂投量80 g/L、臭氧投量8.1 mg/L、反应时间60 min,COD、石油类、NH3-N、硫化物和SS去除率分别为91.3%、92.7%、80.5%、34.5%和59%。处理炼油废水过程中组合工艺存在明显协同效应,协同因子为1.47。中间臭氧氧化和催化臭氧氧化在最优工艺条件下对炼油废水COD的降解均符合准一级动力学规律。基于叔丁醇的实验结果,结合降解动力学可以推测,降解炼油废水过程中非均相催化剂催化臭氧产生高活性羟基自由基是降解效率提高的主导因素。  相似文献   

5.
为了高效、快速治理高浓度难降解PCB(printed circuit board)有机废液,研究了氧化钙非均相催化臭氧氧化降解PCB废液的催化机理和催化性能。采用叔丁醇淬灭自由基实验和水杨酸羟基化实验探究催化机理;通过GC/MS研究了PCB废液中有机物可能降解途径;通过单纯形优化法对实验因素进行优化,并通过XRD和BET探究催化剂的循环稳定性。结果表明:氧化钙非均相催化臭氧氧化过程遵循羟基自由基机理;在pH为12.97、CaO质量为1.0 g、废液深度为11 cm、降解时间为150 min、臭氧用量为120 mg·min~(-1)时,COD去除率可达到90.045%;氧化钙经过5次循环后,废液的COD去除率没有显著降低,从92.78%降低至84.04%。CaO应用于催化臭氧氧化过程处理高浓度且难降解的PCB废液,能维持良好的催化性能和循环稳定性,具有良好的应用前景。  相似文献   

6.
催化臭氧氧化降解糖蜜酒精废水的研究   总被引:7,自引:0,他引:7  
以SnO2为催化剂,研究糖蜜酒精废水在臭氧条件下的氧化降解反应,为糖蜜酒精废水的治理提供一种新的处理方法.研究表明,SnO2加速了臭氧氧化反应,使糖蜜酒精废水的氧化降解加快.影响糖蜜酒精废水氧化降解的主要因素有臭氧流量、废水的初始pH和催化剂用量等.加大臭氧流量及增加催化剂用量,均有利于糖蜜酒精废水的降解.适宜的反应条件是:糖蜜酒精废水的稀释倍数为10倍,臭氧流量为130 mg/h,催化剂用量为2.500 g/L,废水的初始pH为4.25,温度为30 ℃.在该条件下反应60 min,废水的脱色率为60.2%,COD去除率为44.5%.动力学分析表明,单独臭氧氧化降解糖蜜酒精废水和SnO2催化臭氧氧化降解糖蜜酒精废水均为拟一级反应.  相似文献   

7.
以苯胺为研究对象,在Fe~0/O_2体系中开展了降解实验。考察了苯胺在Fe~0/O_2体系与单一Fe0体系和单一O2体系下的降解效果,探究了Fe~0/O_2体系中活性氧化物的产生及降解苯胺的可能途径。结果表明:初始浓度为5.1 mg·L~(-1)的苯胺在Fe~0/O_2体系中可完全降解,降解过程存在协同效应,在Fe~0/O_2体系下降解速率常数为单一零价铁体系与单一氧化体系降解速率常数之和的46.15倍;Fe~0/O_2体系中活性氧化物主要有H2O2和·OH等自由基,苯胺在体系中的降解以·OH氧化为主,可能的降解途径为矿化和聚合,并以矿化为主;苯胺降解过程中氮素产物的变化表明降解体系中存在大量含氮有机物等中间产物。  相似文献   

8.
苯胺黑药(学名:二苯胺基二硫代磷酸)是一种良好的有色金属硫化矿浮选捕收剂,属于典型的难降解有机污染物。为研究臭氧氧化苯胺黑药的条件和氧化反应的动力学,选用臭氧作为氧化剂,对苯胺黑药浓度和模拟废水的COD进行测定。结果表明,用5 g/h的臭氧氧化20 min后,初始浓度50、75和150 mg/L的苯胺黑药模拟废水的COD去除率分别为56%、59%和76%,苯胺黑药浓度的去除率分别达到100%、99%和88%,反应后废水p H变为强酸性(4)。对应的氧化反应动力学表观一级速率常数k为-0.372 s-1、-0.331 s-1和-0.259 s-1;R2为0.9926、0.9949和0.9903。探讨了臭氧氧化苯胺黑药前后p H变化的机理。  相似文献   

9.
马栋  段锋 《环境工程学报》2020,14(4):984-992
针对煤化工高盐废水中有机物难降解问题,采用浸渍-煅烧法制备了负载有活性金属氧化物的活性氧化铝型催化剂,探索催化剂的制备工艺和反应操作条件对废水COD去除率的影响。结果表明:活性氧化铝载体催化性能优于陶粒,活性氧化铝负载Cu、Mn、Ni的催化活性较高,将2种活性组分进行组合制得的MnO_xNiO_x/γ-Al_2O_3催化剂,在经过60 min的臭氧催化氧化后,COD的去除率可达51.3%;利用BET、SEM-EDS、XRD对催化剂进行了表征和分析,Mn、Ni成功负载到活性氧化铝表面和孔隙内,2种元素负载量摩尔比约为2:1,且主要以氧化物形式存在;通过计算臭氧利用效率,发现MnO_x-NiO_x/γ-Al_2O_3臭氧催化氧化的_η值低于单独的臭氧氧化,这意味着通过MnO_x-NiO_x/γ-Ak_2O_3催化剂可以有效地将臭氧分解成活性氧;通过优化臭氧和催化剂投加量后发现,在臭氧为350 mg·(L·h)~(-1)、催化剂投加量为100 g·L~(-1)废水中,反应180 min后,COD去除率可达到72.3%;在连续进行4 h的臭氧催化氧化实验后,MnO_x-NiO_x/γ-Al_2O_3稳定性和重复利用性均较好,COD去除率能维持在约42%,锰、镍离子的溶出量均小于0.5 mg·L~(-1)。以上研究结果可为高效的臭氧催化体系在煤化工高盐废水处理领域的应用提供参考。  相似文献   

10.
臭氧/Mn2+催化降解水溶液中的2,4-二氯苯氧乙酸   总被引:1,自引:0,他引:1  
以Mn2 为催化剂与臭氧联合降解除草剂2,4-二氯苯氧乙酸(2,4-D).考察了反应温度、pH、2,4-D初始浓度和臭氧气体流量等因素对2,4-D降解效果的影响.pH对2,4-D降解效果影响很大,当pH=2.0、反应5 min时,2,4-D的去除率达99.8%;当pH=10.1、反应20min时,2,4-D的去除率仅为50.0%.反应温度升高、臭氧气体流量增加、2,4-D初始浓度降低均有助于2,4-D降解速率的提高.单独臭氧氧化2,4-D的表观反应速率常数为0.170 min-1;催化臭氧氧化2,4-D的表观反应速率常数为0.295min-1,是单独臭氧氧化的1.74倍.2,4-D的Mn2 催化臭氧反应遵循拟一级反应动力学方程.  相似文献   

11.
The ozone initiated oxidation of 1,3,7-trimethylxanthine (caffeine), commonly found in wastewaters as model compound is reported using cerium (Ce)/titanium dioxide (TiO2) as catalyst. The effect of pH and loading of ceria on titania were investigated. Effect of reaction conditions on degradation of caffeine based on their pseudo first-order rate constants were compared. The combination of catalyst Ce-TiO2 and ozone aeration significantly enhanced the degradation of caffeine compared to uncatalysed ozonation. The oxidation of caffeine ensued via the free radical mechanism, through enhanced ozone decomposition into OH radicals. Ce/TiO2(0.5?wt%) showed good activity in degradation of caffeine at pH 6, in both natural stream and river water samples showing about 60% total organic carbon removal in 2?h ozonation period. Using liquid chromatography-mass spectroscopy, degradation products were analysed. A reaction intermediate and one final product were positively identified. Nano-catalysts with different loadings of Ce on TiO2 synthesized by sol-gel route were characterized by scanning electron microscope, transmission electron microscopy, BET and powder X-ray diffraction spectrum techniques. The results showed that the material retained a highly ordered mesoporous structure and possessed large surface area.  相似文献   

12.
以市售活性炭、硅藻土和氧化铝小球为载体,考察了负载铁基活性组分对催化臭氧化过程中溴酸盐的控制情况,其中,铁基复合氧化铝小球体现出更好的溴酸盐还原特性和催化剂稳定性,证实催化剂中铁氧化物是溴酸盐得到有效控制的主要活性组分。进一步考察了铁基复合氧化铝小球催化臭氧化处理实际原水过程中对溴酸盐的生成控制,以及反应过程中溶解性有机碳(DOC)的去除情况。结果表明,与单独臭氧化相比,该催化剂既能有效去除水中的溶解性有机物,又能明显抑制溴酸盐的生成,反应50 h,其活性并没有明显下降。催化剂失活主要归因于吸附位点数量的下降,可以通过负载铁氧化物来实现催化剂的再生。  相似文献   

13.
微波辅助双氧水氧化降解水中磺胺二甲嘧啶   总被引:1,自引:0,他引:1  
赵方  张从良  王岩 《环境工程学报》2012,6(11):4074-4078
采用微波辐照技术辅助双氧水氧化降解水中磺胺二甲嘧啶(SM2),研究了微波辅助双氧水氧化降解水中SM2的影响因素。结果表明,单纯使用微波辐照并不能显著降解SM2,而微波辐照可显著促进双氧水对SM2的氧化作用,提高SM2的降解率。在初始浓度为50 mg/L,微波功率为900 W,加入0.25 mL质量分数为30%的双氧水,pH值为4的条件下辐照6 min,SM2的降解率可达96.5%,COD去除率为72%。  相似文献   

14.
为了提高有机物的臭氧化降解效率,工作中利用浸渍法制备了一种新型的三组分催化剂(记为V2O5-TiO2-AlF3/Al2O3)。催化臭氧化降解2,4-滴丙酸的实验结果表明,该催化剂能有效提高臭氧化的效率,体系可能遵循羟基自由基的作用机理。利用相对法计算结果表明,与单独臭氧化相比,V2O5-TiO2-AlF3/Al2O3催化臭氧化体系具有更大的Rct值。重复实验结果表明,该催化剂具有相对较好的稳定性。以上研究结果对推广催化臭氧化技术在实际废水处理中的应用具有重要的实际意义。  相似文献   

15.
探讨了有机物特性及中间产物H2O2在催化臭氧化中的作用。结果表明,有机物在自由基链反应过程中的特性直接影响催化臭氧化的降解效率。当目标有机物是对链反应具有促进作用的甲酸时,自由基引发反应可以明显提高甲酸的臭氧化效率。当目标有机物是对自由基链反应具有抑制剂作用的乙酸时,O3和Fe2+/O3对乙酸有着相似的降解效率。以上结果表明,自由基引发反应并不是臭氧化降解效率提高的充分条件。另外,当臭氧化过程有H2O2产生时,必须考虑类Fenton反应对臭氧化效率的影响。  相似文献   

16.
采用O3/H2O2法对嘧啶废水进行处理,考察了不同反应条件对嘧啶和COD去除率的影响,并对O3/H2O2降解嘧啶的反应机制和动力学进行了初步探讨.实验结果表明,在pH值为11,反应时间为70 min,O3流量为4g/h,H2O2投加量为50 mmol/L的条件下,废水的嘧啶和COD的去除率分别达到86.46%和74.9...  相似文献   

17.
微波辐射Bi2O3/沸石-H2O2体系降解废水中的硝基苯   总被引:2,自引:1,他引:1  
研究了微波辐射下,以负载于沸石上的三氧化二铋为催化剂,以双氧水为氧化剂的催化氧化体系处理硝基苯工艺。通过单因素实验法,从反应催化剂负载量、pH、双氧水用量、微波功率、反应时间、催化剂用量等方面初步考察了硝基苯在该体系中的催化氧化效果。在氧化铋负载量3%(质量比),pH=2,2 mL 30%双氧水,火力为中火,催化剂投加量为0.7 g,反应2 min,对降解过程所得的中间产物和终产物进行了分析。结果表明,该体系对硝基苯的去除率能够达到99.2%,COD去除率为73.91%。  相似文献   

18.
Two surface soils contaminated with polychlorinated biphenyls (PCBs) collected from Superfund sites in the New England region of the United States, Fletcher Paints and Merrimack Industrial Metals, were evaluated for field treatment at the bench level using catalyzed H2O2 propagations (CHP—modified Fenton’s reagent). The two soils were first evaluated for the potential for in situ treatment based on two criteria: (1) temperature (<40 °C after CHP reagent addition), and (2) hydrogen peroxide longevity (>24 h). In situ CHP remediation was more applicable to the Fletcher soil, while the Merrimack soil was better suited to ex situ treatment based on temperature increases and hydrogen peroxide lifetimes. Using the highest hydrogen peroxide concentrations appropriate for in situ treatment in each soil, PCB destruction was 94% in the Fletcher soil but only 48% in the Merrimack soil. However, 98% PCB destruction was achieved in the Merrimack soil using conditions more applicable to ex situ treatment (higher hydrogen peroxide concentrations with temperatures >40 °C). Analysis of degradation products by gas chromatography/mass spectroscopy showed no detectable chlorinated degradation products, suggesting that the products of PCB oxidation were rapidly dechlorinated and degraded. The results of this research document that the two PCB-contaminated soils studied can be effectively treated using aggressive CHP conditions, and that such a detailed bench study provides important information before implementing field treatment.  相似文献   

19.
Triclopyr is a widely used pesticide which is non-biodegradable and enters aquatic systems. The ozone facilitated photocatalyzed degradation and mineralization of Triclopyr using Au-loaded titania as heterogeneous catalyst is reported. The oxidative degradation activity of the hazardous pesticide was investigated at pH 7.8 under varied reaction conditions, including in presence and absence of ozone, titania alone, in presence and absence of light and with different loadings of Au on support. Photocatalysis with 2% Au/TiO2 in the presence of ozone yielded 100% degradation of Triclopyr in 2 h. The extent of degradation of pesticide and its mineralization were confirmed by GC-MS. For 10 mg/L of Triclopyr, 0.1 g/L of catalyst was found to be the optimum for mineralization. Results show that photocatalyzed ozonation with Au/TiO2 as catalyst is a very effective for its removal. No leaching of Au was observed in triplicate runs. Catalyst was fully recoverable and reusable with no loss of activity.  相似文献   

20.
Photocatalytic degradation of the herbicide, pendimethalin (PM) was investigated with BaTiO3/TiO2 UV light system in the presence of peroxide and persulphate species in aqueous medium. The nanoparticles of BaTiO3 and TiO2 were obtained by gel to crystallite conversion method. These photo catalysts are characterized by energy dispersive x-ray analysis (EDX), scanning electron microscope (SEM), x-ray diffraction (XRD), and Brunauer-Emmett-Teller (BET) adsorption isotherm and reflectance spectral studies. The quantum yields for TiO2 and BaTiO3 for the degradation reactions are 3.166 Einstein m?2 s?1 and 2.729 Einstein m?2 s?1 and catalytic efficiencies are 6.0444 × 10?7 mg?2h?1L2 and 5.403 × 10?7 mg?2h?1L2, respectively as calculated from experimental results. BaTiO3 exhibited comparable photocatalytic efficiency in the degradation of pendimethalin as the most widely used TiO2 photocatalyst. The persulphate played an important role in enhancing the rate of degradation of pendimethalin when compared to hydrogen peroxide. The degradation process of pendimethalin followed the first-order kinetics and it is in agreement with Langmuir-Hinshelwood model of surface mechanism. The reason for high stability of pendimethalin for UV-degradation even in the presence of catalyst and oxidizing agents were explored. The higher rate of degradation was observed in alkaline medium at pH 11. The degradation process was monitored by spectroscopic techniques such as ultra violet-visible (UV-Vis), infrared (IR) and gas chromatography mass spectroscopy (GC-MS). The major intermediate products identified were: N-propyl-2-nitro-6-amino-3, 4-xylidine, (2, 3-dimethyl-5-nitro-6-hydroxy amine) phenol and N-Propyl-3, 4-dimethyl-2, 6-dinitroaniline by GC-MS analysis and the probable reaction mechanism has been proposed based on these products.  相似文献   

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