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1.
超声波降解水中的氯苯   总被引:3,自引:0,他引:3  
考察了用超声波降解水中氯苯的可行性、动力学、产物和TOC变化。在 2 0kHz和 4 0W的超声波作用下 ,氯苯的一级降解常数为 0 0 5 /min。随着所加超声功率的增高 ,氯苯降解常数呈线性增加。 30min内超声脱氯效率达到 6 6 % ,TOC去除达到 4 3%。  相似文献   

2.
以天津市某给水厂的水源水为实验对象,通过在实验室规模上模拟的给水处理厂工艺流程,比较了3种不同工艺流程中各单元出水的三卤甲烷(THMs)、卤乙酸(HAAs)和总有机物(TOC)浓度变化,分析了水处理单元工艺和TOC浓度对消毒副产物的影响。结果表明,预氯化生成的三卤甲烷和卤乙酸分别占最终出水中三卤甲烷和卤乙酸浓度的55.7%和66.7%,说明预氯化对出厂水中消毒副产物的产生有显著影响;混凝沉淀和过滤对三卤甲烷的去除率分别为17.2%和19.6%,而卤乙酸在水处理过程中变化不大,仅在过滤之后降低了3.32μg/L,说明过滤对三卤甲烷和卤乙酸均有一定的去除作用,而混凝沉淀仅对三卤甲烷有一定的去除作用;TOC浓度经过水处理工艺后整体呈下降趋势,但分析表明,其浓度对三卤甲烷和卤乙酸的生成影响很小,而氯则是三卤甲烷和卤乙酸生成的重要限制因素。  相似文献   

3.
采用生物接触氧化法对北京某水库的微污染水源水中消毒副产物前体物的去除进行了研究。结果表明,水源水和生物接触氧化柱(简称生化柱)出水中的消毒副产物前体物氯化后形成的消毒副产物三卤甲烷(THMs)以CHCl3,CHCl2Br和CHBr2Cl为主,其中CHCl3含量最高,约占THMs的70%。水温对THMs前体物的去除有很大的影响,水温15.8℃时,生化柱对THMs前体物的去除率为65.2%;当水温由15.8℃降至12.8℃时,THMs前体物的去除率由65.2%降至18.8%。2002年11月至2003年1月间,生化柱UV254吸收值的平均去除率为11%。  相似文献   

4.
高压电晕与臭氧联用对不同结构染料脱色效果的比较研究   总被引:1,自引:0,他引:1  
比较研究了高压电晕与臭氧联用对活性艳红X-3B(单偶氮)、活性艳蓝X-BR(蒽醌)、活性黑KN-GRRC(双偶氮)、酸性红ARL(单偶氮)、酸性蓝BRL(蒽醌)、酸性橙AGT(双偶氮)和分散蓝2BLN(蒽醌)7种染料模拟废水的脱色效果.结果显示,酸性橙AGT模拟废水的脱色速度较慢,而其他6种染料在15 min内都能完全脱色,这表明染料结构本身的差异决定了脱色效果;活性染料模拟废水的脱色效果优于酸性染料;蒽醌染料和单偶氮染料模拟废水的脱色效果明显好于双偶氮染料.  相似文献   

5.
在含有真菌G 1培养液中加入染料厂污水排放口的污泥样品 ,从发生快速脱色降解染料的混合培养液中分离出 2株染料脱色细菌L_1和L_2 ,经API鉴定系统鉴定 ,确定菌株L_1为Enterobactersp .,菌株L_2为Peudomonassp .。研究比较了单一和不同组合混合的真菌G_1菌株 (Penicilliumsp .)、细菌L_1菌株 (Enterobactersp .)和L_2菌株 (Pseu domonassp .)对偶氮染料红M - 3BE(C .I .ReactiveRed 2 41)和蒽醌染料艳蓝KN -R(C .1.ReactiveBlue 19)的去除情况 ,发现G - 1真菌和 2种细菌组合的共培养体系对 5 0mg/L红M - 3BE和艳蓝KN -R处理 5h去除率达 10 0 %和 97.9% ,并且是以脱色降解作用为主 ,建立了染料脱色降解菌的最佳组合 ;进一步测定了此最佳共培养体系对另外 13种不同结构染料的脱色降解 ,结果表明 ,除对蒽醌染料R - 478脱色降解较差外 ,对其他染料均可在lh— 3d被完全脱色降解 ,表现出脱色降解染料的广谱性 ;向培养 4d的共培养体系中依次加入 8种染料 ,菌体可对染料连续脱色 ,维持脱色能力达 8d左右  相似文献   

6.
缺氧-好氧生物滤池中高效菌对活性红KN-3B的降解特性   总被引:1,自引:1,他引:0  
为了研究高效脱色菌在缺氧好氧生物滤池(A/O biofilter)中对偶氮染料的降解特性,以活性红KN-3B(C.I. reactive red 180)为降解对象,缺氧生物滤池以火山碎石为填料,接种高效脱色菌CK3柯氏柠檬酸杆菌启动,好氧生物滤池以牡蛎壳为填料,接种污水处理厂活性污泥启动。试验考察了不同工况下缺氧-好氧生物滤池对色度和COD的去除效果,结果表明:生物滤池中微生物对偶氮染料活性红KN-3B的脱色和对COD降解的最适pH条件为弱酸性;缺氧滤池中高效菌对色度的去除需要外加碳源,且增加外加碳源有助于脱色率的提高;该高效菌为耐盐菌,当进水NaCl浓度达30 g/L时,色度去除率仍可达93%以上;当染料负荷达500 mg/L时,脱色率仍可达95%。通过紫外-可见扫描图谱分析初步推断CK-3柯氏柠檬酸杆菌对偶氮染料活性红KN-3B的脱色主要是生物降解作用。  相似文献   

7.
pH对微气泡臭氧氧化处理染料废水影响   总被引:1,自引:0,他引:1  
微气泡技术有助于改善废水臭氧氧化处理效果,p H值是影响微气泡臭氧氧化处理性能的重要因素。考察了不同初始p H值条件下,微气泡臭氧氧化处理酸性大红3R废水性能。结果表明,p H值对微气泡曝气中臭氧分解速率具有显著影响,强酸性和碱性条件下,微气泡曝气中臭氧分解速率均明显高于中性条件。同时,酸性和碱性条件下,微气泡臭氧氧化处理酸性大红3R的脱色速率和TOC去除速率明显高于中性条件。酸性条件下臭氧微气泡氧化能力最强,TOC去除速率约为中性条件的2倍,TOC去除率可达83.1%。酸性、碱性和中性条件下TOC去除量与臭氧消耗量的比值(R)分别为0.0372、0.0298和0.0180 mg/mg。不同初始p H值下微气泡臭氧氧化处理酸性大红3R过程中,臭氧利用率均高于99%。  相似文献   

8.
采用腐殖酸模拟天然水体中消毒副产物前体物,探求了氯氨比、氯胺投加量、总有机碳(TOC)浓度和Br-浓度在氯胺消毒过程中对消毒副产物——三卤甲烷(THMs)生成量的影响。结果表明:(1)随着氯氨比的降低,THMs及各组分的生成量显著减少。(2)THMs的生成量均随着氯胺投加量的增加而增加,且都呈现出了良好的线性关系。当氯胺投加量大于7.0mg/L时,氯代卤化物成了优势产物。(3)随着TOC浓度的增加,THMs生成量增加,且具有一定的线性关系;三氯甲烷和一溴二氯甲烷生成量均增加,氯氨比为3∶1(质量比,下同)时三氯甲烷和一溴二氯甲烷生成量增加了9.86、7.80μg/L,氯氨比为5∶1时则分别增加了15.21、13.62μg/L;三溴甲烷和二溴一氯甲烷生成量均呈现先增加后减少的趋势。(4)随着Br-浓度的增加,THMs、一溴二氯甲烷、二溴一氯甲烷和三溴甲烷生成量均增加,三氯甲烷生成量减少。溴化物的存在会促进THMs的产生。  相似文献   

9.
从纺织厂的工业废水排污口取样,分离筛选出了一株嗜热的高效偶氮染料脱色菌PDR2。通过形态学、生理生化特征以及16S r DNA基因序列分析等方法对该菌株进行鉴定,发现该菌为厌氧芽孢杆菌,与Anoxybacillus sp(GQ471935)同源性最高。此外,分别考察了菌株PDR2在不同碳源、氮源、p H以及培养温度等条件下对偶氮染料直接黑38脱色性能的影响,在此基础上进一步研究了菌株PDR2对不同浓度直接黑38染料的耐受性。结果表明,菌株PDR2在55℃、p H 6.0且以葡萄糖为碳源,牛肉膏和蛋白胨为混合氮源时其脱色效果最佳,且菌株对偶氮染料直接黑38有着较强的耐受能力,在染料浓度低于0.4 g·L~(-1)时其脱色效果良好。在最佳条件下静置培养24 h时,菌株PDR2对0.1 g·L~(-1)直接黑38染料的脱色率高达92.34%,展出了良好的应用潜力。  相似文献   

10.
酸性大红嗜盐菌群的富集及脱色效果   总被引:1,自引:0,他引:1  
为了获得能够在高盐条件下使偶氮染料脱色的微生物菌群,采用驯化的方法,从江苏某印染厂的活性污泥中富集了一个能够在10%盐度下对酸性大红GR脱色的嗜盐菌群,并对其群落结构和脱色特性进行了研究。结果表明,该菌群主要由Halomonas、Salinicoccus、Alcaligenes和Pseudomonas等4个属组成。在10%的盐度下,该菌群在12 h内可以将100mg/L的酸性大红GR完全脱色。高浓度的Na Cl、Na2SO4和Na NO3抑制菌群的脱色效率,Na Cl的抑制作用最强。菌群脱色的适宜p H 5~7,温度范围为30~40℃,10%Na Cl。该菌群可以降解直接耐黑G和分散深蓝S-3BG等偶氮染料。  相似文献   

11.
基于锰过氧化物酶(MnP)氧化脱色偶氮类染料的原理,实验研究MnP对甲基橙的脱色工艺,采用人工神经网络(ANN)和遗传算法(GA)建立脱色模型并优化工艺。建立的ANN模型的误差、相关系数、均方根误差和绝对平均偏差分别为0.0009、0.9971、1.21和6.82,模型有效且能够用于预测和工艺优化。采用GA对ANN模型进行数值寻优,得到的最佳工艺条件为酶液量0.6 mL,Mn2+浓度4 mmol/L,H2O2浓度0.49 mmol/L。该条件下脱色率达到(90.74±0.59)%。ANN耦合GA有效地建立了锰过氧化物酶脱色甲基橙的模型,并优化了工艺参数,为甲基橙脱色的研究提供一定参考。  相似文献   

12.
用高压电弧放电产生的低温等离子体对含偶氮染料的废水进行了处理,以甲基橙为例研究了电压幅值、处理时间、溶液初始浓度、溶液初始pH值、投加Fe^2+和Fe^3+对染料脱色的影响。实验结果表明,甲基橙浓度为50mg/L时其降解率随时间和电压幅值的增加而增加。溶液初始浓度对染料去除效果影响较为明显,同等条件下初始浓度越低降解率越高。酸性条件下有利于低温等离子体处理甲基橙。Fe^2+和Fe^3+对低温等离子体降解甲基橙有一定的催化作用。电压8kV处理3min,Fe^2+为20mg/L时去除率由89.64%增至99.72%。Fe2(SO4),的最佳投加量为5mg/L(以Fe^3+计),而FeCl,的最佳投加量为80mg/L(以Fe^3+计)。  相似文献   

13.
Statistical analyses of global atmospheric concentrations provide evidence that C2Cl4, CHCl3 and CH3CCl3 (methylchloroform) are more abundant in the tropical boundary layer than above it (α ? 0.09) by 27% (±27%), 21% (?21%, +12%) and 6.4% (±6%) respectively. The air samples on which these results are based were collected by cryogenic techniques during the June 1978 project GAMETAG flights and analyzed soon afterwards by gas chromatography (EC/GC and GC/FID), thus providing latitudinal concentrations of CO, CH4, CCl3F, CCl2F2, CH3CCl3 and light C2-hydrocarbons, both in and above the boundary layer. In August 1980, after further development of analytical techniques, the stored air samples were re-analyzed to establish the latitudinal distributions of CH3I, CHCl3, C2Cl4, C2F3Cl3 (F-113) and CHClF2 (F-22) in and above the boundary layer. Stability studies, spanning a year, show that the concentrations of these gases do not change in the flasks.  相似文献   

14.
针对偶氮类有机物废水具有色度大,难降解的特点,以对二甲基氨基偶氮苯磺酸钠(甲基橙)为模拟研究对象,对水体系中铁炭微电解-Fe2+/K2S2O8降解甲基橙的方法进行了研究。通过正交实验确定出该方法各因素的影响程度,进一步通过单因素影响实验确定该方法的最佳条件是:铁炭微电解填料、FeSO4和K2S2O8投加量分别为300 g/L、1.3mmol/L和0.7 mmol/L,初始pH值为7.0。在最佳条件下,甲基橙COD和色度去除率分别能达到64.7%和68.2%。  相似文献   

15.

Purpose  

The oxone process for azo dye decolorization has drawbacks such as difficulties with reuse, risks of secondary pollution, and high costs associated with UV irradiation. This study aims to explore the use of oxone for decolorization in the absence of catalyst and under natural sunlight conditions (i.e., oxone/natural sunlight system) and evaluate the impacts of operating parameters (reagent dosage, initial methyl orange (MO) concentration, and initial pH) and coexisting substances (humic acid, NO3, metal ions) on the system’s decolorization efficiency.  相似文献   

16.
In this paper, degradation of a mixture of three azo dyes was studied by the photo-assisted electrochemical process using an O2-diffusion cathode containing carbon nanotubes and boron-doped diamond (BDD) anode. The concentration of three textile dyes (C.I. Acid Orange 8 (AO8), C.I. Acid Orange 10 (AO10), and C.I. Acid Orange 12 (AO12)) was determined simultaneously despite the severe overlap of their spectra. For this purpose, partial least square (PLS), as a multivariate calibration method, was utilized based on recording UV–Vis spectra during the decolorization process. Moreover, the central composite design was used for the modeling of photo-assisted electrochemical decolorization of the aqueous solutions containing three dyes. The investigated parameters were the initial concentration of three dyes, applied current and reaction time. Analysis of variance (ANOVA) revealed that the obtained regression models match the experimental results well with R (Khataee et al. 2010, Clean-Soil Air Water 38 (1):96–103, 2010) of 0.972, 0.971, and 0.957 for AO8, AO10, and AO12, respectively. Three-dimensional surface and contour plots were applied to describe the relation between experimental conditions and the observed response. The results of TOC analysis confirmed good ability of proposed photo-assisted electrochemical process for degradation and mineralization of textile industry wastewater.  相似文献   

17.
Activated carbon fiber (ACF) has become an emerging activator for peroxydisulfate (PDS) to generate sulfate radical (SO4??). However, the relative low activation efficiency and poor contaminant mineralization limited its widespread application. Herein, ultrasound (US) was introduced to the ACF activated PDS system, and the synergistic effect of US and ACF in PDS activation and the enhancement of contaminant mineralization were investigated. The synergistic effect of US and ACF was observed in the PDS activation to decolorize orange G (OG). The decolorization efficiency increased with increasing ACF loading and US power, and PDS/OG ratio from 1 to 40. The activation energy was determined to be 24.065 kJ/mol. The radical-induced decolorization of OG took place on the surface of ACF, and both SO4?? and hydroxyl radical (?OH) contributed to OG decolorization. The azo bond and naphthalene ring on OG were destructed to other aromatic intermediates and finally mineralized to CO2 and H2O. The introduction of US in the ACF/PDS system significantly enhanced the mineralization of OG. The combination of US and PDS was highly efficient to activate PDS to decolorize azo dyes. Moreover, the introduction of US remarkably improved the contaminant mineralization.  相似文献   

18.
以陶瓷为载体,采用溶胶-凝胶法制备了银离子和铈离子共掺杂TiO2的负载型光催化剂——T-AC/陶瓷,研究了pH值、双氧水用量、催化剂用量、紫外灯强度、废水的初始浓度等因素对T-AC/陶瓷光催化剂降解甲基橙染料废水的影响。结果表明,当pH为2、双氧水用量为0.5 mL/100 mL、催化剂用量为3 g/L、紫外灯功率为20 W、废水初始浓度为10mg/L时,甲基橙的降解率可达85.9%,并且甲基橙的光催化降解属于一级动力学方程,T-AC/陶瓷催化剂有较高的活性和稳定性,在废水处理中具有较好的应用前景。  相似文献   

19.
In the present work, nanoscale zero-valent iron/activated carbon (NZVI/AC) was investigated as heterogeneous Fenton catalyst in three-dimensional (3D) electrode system for methyl orange (MO) degradation. Some important operating parameters such as cathodic potential, pH, and O2 flow rate were investigated, exhibiting good decolorization. The mineralization of MO was significantly improved by 20–35 % compared to two-dimensional (2D) AC system at the optimum conditions. Although the TOC removal of AC was higher than NZVI/AC due to its good adsorption capacity initially, heterogeneous Fenton catalysis played a more and more important roles in the following test. After eight runs, NZVI/AC still exhibited excellent catalytic properties with low iron leaching. Further, a relatively comprehensive mechanism of NZVI/AC as particle electrodes in 3D system was proposed.  相似文献   

20.
Photocatalytic degradation of azo dyes by nitrogen-doped TiO2 nanocatalysts   总被引:7,自引:0,他引:7  
Liu Y  Chen X  Li J  Burda C 《Chemosphere》2005,61(1):11-18
This study examined the photocatalytic degradation of three azo dyes, acid orange 7 (AO7), procion red MX-5B (MX-5B) and reactive black 5 (RB5) using a new type of nitrogen-doped TiO2 nanocrystals. These newly developed doped titania nanocatalysts demonstrated high reactivity under visible light (lambda>390 nm), allowing more efficient usage of solar light. The doped titania were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). Experiments were conducted to compare the photocatalytic activities of nitrogen-doped TiO2 nanocatalysts and commercially available Degussa P25 powder using both UV illumination and solar light. It is shown that nitrogen-doped TiO2 after calcination had the highest photocatalytic activity among all three catalysts tested, with 95% of AO7 decolorized in 1 h under UV illumination. The doped TiO2 also exhibited substantial photocatalytic activity under direct sunlight irradiation, with 70% of the dye color removed in 1h and complete decolorization within 3 h. Degussa P25 did not cause detectable dye decolorization under identical experimental conditions using solar light. The decrease of total organic carbon (TOC) and evolution of inorganic sulfate (SO4(2-)) ions in dye solutions were measured to monitor the dye mineralization process.  相似文献   

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