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1.
以十六烷基三甲基溴化胺(CTAB)为分散剂,制备改性纳米零价铁颗粒(CNZVI)。比表面积、XRD、SEM和TEM表征结果表明改性的CNZVI比未改性纳米零价铁颗粒(BNZVI)粒径更小、更均匀,具有更好的分散性能和抗氧化性。首次考察了CNZVI对于水中染料橙黄Ⅱ的脱色降解效果。CNZVI对橙黄Ⅱ的脱色率和降解速率均优于未改性纳米铁颗粒BNZVI,脱色率在反应进行10 min后趋于稳定。考察了溶液p H、初始浓度、NZVI投加量和温度对反应脱色率的影响。p H值和初始浓度越高,脱色率越低;脱色率随着投加量和温度提高而增大。最后优化反应条件为:p H值5.96,初始浓度100mg/L,NZVI投加量0.2 g/L,反应温度293 K,CNZVI对橙黄Ⅱ的脱色率为91.8%,比BNZVI的脱色率高出16.1%。动力学分析表明,CNZVI对橙黄Ⅱ降解反应符合伪一级反应动力学。  相似文献   

2.
包覆型纳米零价铁的制备及其去除水中的活性艳蓝   总被引:3,自引:0,他引:3  
采用流变相法,以FeSO4.7H2O∶KBH4=1∶2(摩尔比)为固相介质,0.06 g/mL CMC(羧甲基纤维素)水溶液为液相介质,固液比1∶2,反应2 h制备出包覆型纳米零价铁;采用XRD、TEM等手段对合成的纳米零价铁进行表征。探讨不同反应条件对包覆型纳米铁去除活性艳蓝的影响。实验结果表明,初始活性艳蓝(浓度100 mg/L)pH为5,包覆型纳米铁的投加量为6 g/L,反应时间为30 min时,活性艳蓝的去除率可达96%。通过研究机理,其吸附过程符合二级吸附动力学,降解过程符合一级反应动力学。  相似文献   

3.
生物炭携载纳米零价铁对溶液中Cr(Ⅵ)的去除   总被引:1,自引:0,他引:1  
利用液相还原法,使生物炭携载纳米零价铁,可以有效解决纳米零价铁在水处理应用中自身团聚问题,从而提高Cr(Ⅵ)的去除效率。研究发现:在添加相同剂量纳米的条件下,当炭铁质量比为5∶1时,生物炭携载纳米零价铁对溶液中Cr(Ⅵ)的去除率可达到96.8%,比纯纳米零价铁去除Cr(Ⅵ)的效率高35.9%;TEM和BET分析表明,生物炭携载纳米零价铁比纯纳米零价铁有更好的分散性和更高的比表面积,这是其去除Cr(Ⅵ)效果更好的主要原因;当溶液中Cr(Ⅵ)的反应初始浓度从25 mg/L提升至125 mg/L时,表观速率常数kobs从0.104 1 min~(-1)降低至0.023 5 min~(-1),说明反应速率随着Cr(Ⅵ)初始浓度的增大而降低;当反应溶液初始p H在4.5~8.5之间时,携载纳米零价铁的生物炭对溶液中Cr(Ⅵ)的去除率均达到92.1%以上,表明生物炭携载纳米零价铁具有较广的p H适应范围,且对Cr(Ⅵ)具有较好的去除效果。  相似文献   

4.
建立柱实验装置,探讨了反应柱中填加介质、硝酸盐的初始浓度及不同过水流速时硝酸盐的去除效果及产物的生成情况。4种不同材料,纳米铁、真养产碱杆菌、纳米铁与真养产碱杆菌简单混合体、纳米铁与真养产碱杆菌驯化培养5 d的复合体,分别与初始浓度为65 mg/L硝酸盐溶液反应。结果表明,经培养5 d的纳米铁-真养产碱杆菌复合体对硝酸盐的去除效果最佳,去除率可达到75%,且氨氮的生成量仅为2.99 mg/L;硝酸盐初始浓度分别为32、65和95 mg/L时,32mg/L的体系中硝酸盐的降解效果最好,去除率达78.9%且亚硝酸盐及氨氮的生成量分别为2.34 mg/L和2.89 mg/L,均低于另外2组;溶液流速为6.0 cm/h时,经驯化培养的纳米铁-真养产碱杆菌对硝酸盐的去除率达77%,当控制流速降至2.4cm/h时,亚硝酸盐氮的生成量降至0.34 mg/L。  相似文献   

5.
对铁阳极电化学处理直接大红4BE染料废水脱色率和脱色能耗的影响因素进行研究。考察了电流密度、染料溶液初始pH值、染料初始浓度和支持电解质Na2SO4浓度对脱色性能的影响。结果表明,电流密度、染料废水初始pH、染料初始浓度、支持电解质浓度对脱色率和脱色能耗产生较大影响。在电流密度1.667 mA/cm2、pH值6.54、染料浓度50mg/L、Na2SO4浓度0.01 mol/L、温度20℃、搅拌速度600 r/min、电解时间60 min条件下,脱色率达到92.1%,脱色能耗1.298 kWh/kg染料、铁阳极消耗量41 mg/400 mL染料模拟废水。  相似文献   

6.
将Fe3+负载在活性炭上制得载铁催化剂Fe/AC,并研究了该催化剂对邻苯二甲酸二甲酯(DMP)的催化降解性能。通过正交实验和单因素实验,探讨了催化剂投加量、H2O2投加量、溶液pH值和反应温度对水中DMP降解率的影响,同时对DMP矿化度进行了分析。实验结果表明,制得的载铁催化剂具有较高的催化活性;降解效果的影响顺序是反应温度催化剂投加量H2O2投加量溶液pH值;在反应温度为80℃、催化剂投加量为4 g/L、H2O2投加量为20 mL/L和溶液pH值为3的条件下反应120 min后,质量浓度为10 mg/L的DMP降解率最高可达97.73%;在优化的实验条件下反应150 min,DMP矿化度可达62.73%;催化剂反复使用5次仍具有较好的催化活性,DMP降解率仍可达到77%以上;反应过程中溶液Fe3+浓度的变化维持在1.07 mg/L左右,且可推测催化降解DMP主要是由非均相和均相催化氧化反应共同作用的。  相似文献   

7.
为了综合处理水中的阿特拉津,以绿茶萃取液为还原剂,以活性炭为载体,采用液相还原法绿色合成了纳米铁/活性炭复合材料,研究了活性炭投放量、阿特拉津的初始浓度、溶液初始pH值及反应时间对阿特拉津去除率的影响,探讨了不同影响因素下阿特拉津的降解动力学。结果表明:阿特拉津降解反应近似符合二级反应动力学,反应速率常数0.001 08~0.002 73 L·(mg·min)~(-1)。在纳米铁/活性炭复合材料去除阿特拉津过程中,纳米铁的还原和活性炭的吸附共同作用。  相似文献   

8.
以高压汞灯为光源 ,采用浸涂 -烧结法制备的负载型纳米TiO2 作为光催化剂 ,通过对水中微量溶解性间二甲苯的光催化氧化过程的研究表明 ,初始浓度在 6 .6 8— 17.36mg/L的范围内 ,间二甲苯的光催化反应遵循表观一级反应动力学规律 ,反应的表观速率常数随溶液初始浓度的增大而减小 ,半衰期则随初始浓度的增大而增加 ,经 1.5h反应后 ,溶液中间二甲苯的去除率从 17.36mg/L的 5 4 .4 4 %增加到 6 .6 8mg/L的 75 .90 %。  相似文献   

9.
将Fe3+负载在活性炭上制得载铁催化剂Fe/AC,并研究了该催化剂对邻苯二甲酸二甲酯(DMP)的催化降解性能。通过正交实验和单因素实验,探讨了催化剂投加量、H2O2投加量、溶液pH值和反应温度对水中DMP降解率的影响,同时对DMP矿化度进行了分析。实验结果表明,制得的载铁催化剂具有较高的催化活性;降解效果的影响顺序是反应温度〉催化剂投加量〉H2O2投加量〉溶液pH值;在反应温度为80℃、催化剂投加量为4 g/L、H2O2投加量为20 mL/L和溶液pH值为3的条件下反应120 min后,质量浓度为10 mg/L的DMP降解率最高可达97.73%;在优化的实验条件下反应150 min,DMP矿化度可达62.73%;催化剂反复使用5次仍具有较好的催化活性,DMP降解率仍可达到77%以上;反应过程中溶液Fe3+浓度的变化维持在1.07 mg/L左右,且可推测催化降解DMP主要是由非均相和均相催化氧化反应共同作用的。  相似文献   

10.
一种新型光催化剂用于降解腈纶废水研究   总被引:5,自引:2,他引:3  
将1,10菲啰啉和铁Fe2+溶液配成络合物负载到D113树脂上作为可见光催化剂,利用该催化剂对腈纶废水进行了降解研究,考察了该负载型铁氮配合物催化剂处理腈纶废水的影响因素。由实验结果可知,该催化剂处理腈纶废水最佳条件为:过氧化氢浓度为400 mg/L,催化剂用量为5 g/L,最佳pH值范围为4~9,COD降解率可达68.7%,实现了在温和的反应条件下,即常温、常压、宽pH范围进行反应,充分利用了可见光来处理难降解有机物。  相似文献   

11.
采用脱色菌Citrobacter sp. CK3,以活性红KN-3B染料为处理对象,在厌氧批式反应条件下,系统考察了pH值,温度和染料浓度对脱色反应速度的影响;通过动力学模拟及反应过程中染料的UV-Vis扫描图分析,探讨了脱色反应机理。结果表明:Citrobacter sp. CK3对活性红KN-3B的脱色反应的适宜pH为7~9;脱色反应速度在温度为32℃时达到最大。染料初浓度从57 mg/L逐渐增大到458 mg/L时脱色率逐渐降低。脱色过程中染料的偶氮键发生断裂,脱色反应符合二级反应动力学。  相似文献   

12.
直接红染料的臭氧脱色与中间产物研究   总被引:1,自引:0,他引:1  
以直接红B模拟染料废水为研究对象,考察了臭氧化过程中染料溶液的吸光度和TOC的变化,同时利用离子色谱仪和GC/MS对染料的降解过程进行了分析,最后用发光细菌法检测了染料溶液急性毒性的变化。结果表明,臭氧对染料的降解符合一级反应动力学,20 min时对染料的脱色率达到99.2%;反应40 min后TOC减少32.55%,染料分子有97.8%的S被氧化为SO2-4,偶氮键被臭氧化为N2,分子中的仲胺基小部分转化成游离NH+4和NO-3;在臭氧化过程前期新生成的醛类和酰胺类物质使溶液急性毒性迅速上升,25 min后溶液毒性开始逐渐下降。  相似文献   

13.
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   

14.
以模拟酸性大红3R染料废水为对象,在单因素实验基础上,选取温度、初始染料浓度、酵母粉浓度三因素为影响因子,以染料脱色率为响应值,利用Box-Behnken设计及响应面分析法研究了各因素对一株广谱型染料脱色菌株Enterobacter cloacae strain M3脱色效果的影响及各因素间交互作用,建立了二次多项式回归方程的预测模型,确定了菌株脱色酸性大红3R废水的优化条件。结果表明:回归方程极显著,拟合性好。最优脱色条件为温度36℃,染料浓度121.12 mg/L,酵母粉浓度1.99%,在此条件下,染料脱色率可达99.21%。经实验验证,实际值与模型预测值拟合良好,偏差仅为0.79%。  相似文献   

15.
The decolorization of the azo dye Reactive Red 2 (RR2) under anoxic conditions was investigated using a mesophilic (35 degrees C) halotolerant enrichment culture capable of growth at 100 g/L sodium chloride (NaCl). Batch decolorization assays were conducted with the unacclimated halotolerant culture, and dye decolorization kinetics were determined as a function of the initial dye, biomass, carbon source, and an externally added oxidation-reduction mediator (anthraquinone-2,6-disulphonic acid) concentrations. The maximum biomass-normalized RR2 decolorization rate by the halotolerant enrichment culture under batch, anoxic incubation conditions was 26.8 mg dye/mg VSSxd. Although RR2 decolorization was inhibited at RR2 concentrations equal to and higher than 300 mg/L, the halotolerant culture achieved a 156-fold higher RR2 decolorization rate compared with a previously reported, biomass-normalized RR2 decolorization rate by a mixed mesophilic (35 degrees C) methanogenic culture in the absence of NaCl. Decolorization kinetics at inhibitory RR2 levels were described based on the Haldane model (Haldane, 1965). Five repetitive dyeing/decolorization cycles performed using the halotolerant culture and the same RR2 dyebath solution demonstrated the feasibility of biological renovation and reuse of commercial-strength spent reactive azo dyebaths.  相似文献   

16.
He F  Hu W  Li Y 《Chemosphere》2004,57(4):293-301
A microbial consortium consisting of a white-rot fungus 8-4* and a Pseudomonas 1-10 was isolated from wastewater treatment facilities of a local dyeing house by enrichment, using azo dye Direct Fast Scarlet 4BS as the sole source of carbon and energy, which had a high capacity for rapid decolorization of 4BS. To elucidate the decolorization mechanisms, decolorization of 4BS was compared between individual strains and the microbial consortium under different treatment processes. The microbial consortium showed a significant improvement on dye decolorization rates under either static or shaking culture, which might be attributed to the synergetic reaction of single strains. From the curve of COD values and the UV-visible spectra of 4BS solutions before and after decolorization cultivation with the microbial consortium, it was found that 4BS could be mineralized completely, and the results had been used for presuming the degrading pathway of 4BS. This study also examined the kinetics of 4BS decolorization by immobilized microbial consortium. The results demonstrated that the optimal decolorization activity was observed in pH range between four and 9, temperature range between 20 and 40 degrees C and the maximal specific decolorization rate occurred at 1,000 mg l(-1) of 4BS. The proliferation and distribution of microbial consortium were also microscopically observed, which further confirmed the decolorization mechanisms of 4BS.  相似文献   

17.
Solar photocatalytic decolorization of methylene blue in water   总被引:8,自引:0,他引:8  
Kuo WS  Ho PH 《Chemosphere》2001,45(1):77-83
In this study, a photocatalytic decolorization system equipped with immobilized TiO2 and illuminated by solar light was used to remove the color of wastewater. To examine the decoloring efficiency of this system, photocatalytic decolorization of an organic dye such as methylene blue was studied as an example. The effects of light source, pH, as well as the initial concentration of dye were also investigated. It was observed that the solution of methylene blue could be almost completely decolorized by the solar light/TiO2 film process while there was about 50% color remaining with solar irradiation only. In addition, it was found that the decoloring efficiency of solution was higher with solar light irradiation than with artificial UV light irradiation, even though the artificial UV light source supplied higher UV intensity at 254 nm. The color removal rate of methylene blue with solar light irradiation was almost twice that of artificial UV light irradiation. This phenomena was mainly attributed to that some visible light range of solar light was useful for exciting the methylene blue molecules adsorbed on TiO2 film, leading to a photosensitization process undergoing and decoloring efficiency promoted. This solar-assisted photocatalytic device showed potential application for decoloring organic dyes in wastewater.  相似文献   

18.
The decolorization of two anthraquinone dyes (Reactive Blue 4 [RB4] and Reactive Blue 19 [RB19]) and two phthalocyanine dyes (Reactive Blue 7 [RB7] and Reactive Blue 21 [RB21]) was investigated at an initial dye concentration of 300 mg/L using an unacclimated, enrichment culture. The culture was fed a mixture of organic compounds and maintained initially under aerobic conditions, and then progressively developed anoxic/ anaerobic conditions. Biotransformation-related decolorization of the dyes did not take place under aerobic conditions, but use of the feed organic mixture and biomass production by the enrichment culture were not affected. Complete ammonia removal occurred in the control and all dye-amended cultures. The development and extent of nitrification were much lower in the latter cultures, in which ammonia removal via air stripping was the dominant mechanism. Prolonged incubation of the culture under anoxic/anaerobic conditions with multiple carbon source additions resulted in a high decolorization extent of anthraquinone dyes (over 84%) and only partial decolorization of phthalocyanine dyes (49 to 66%). Development of significant methanogenic activity took place in the control and, to a lesser extent, in the two phthalocyanine dye-amended cultures, but the anthraquinone dyes severely inhibited the development of methanogenic activity. The RB4 and RB19 decolorization was attributed to nonreversible, microbially mediated dye transformation(s), demonstrated by the accumulation of decolorization products with absorbance maxima in the 420- to 460-nm region. The decolorization of RB4 and RB19 followed Michaelis-Menten kinetics. At an initial dye concentration of 300 mg/L, the observed maximum decolorization rate per unit biomass was 9.1 and 37.5 mg dye/mg volatile suspended solids x day for the RB4 and RB19, respectively. Thus, partial decolorization of reactive phthalocyanine dyes and extensive biological decolorization of reactive anthraquinone dyes is feasible only under anoxic/anaerobic conditions.  相似文献   

19.
Decolorization of dyes and textile wastewater by potassium permanganate   总被引:2,自引:0,他引:2  
Xu XR  Li HB  Wang WH  Gu JD 《Chemosphere》2005,59(6):893-898
Decolorization of 10 types of dye solutions by potassium permanganate was studied. Effects of reaction conditions on the decolorization efficiency were examined in batch experiments. The pH value had a significant effect on the decolorization efficiency. When pH value <1.5, the decolorization efficiency was very high. When pH value >4.0, the dye solutions were almost not decolorized. Concentration of potassium permanganate and temperature also showed significant effects on the decolorization efficiency. The decolorization rate of dye solutions by potassium permanganate was rapid, and most of dye solutions can be decolorized effectively. The results of total organic carbon indicated that dye solutions were degraded incompletely by potassium permanganate. The results of treatment of textile wastewater by potassium permanganate indicated that the oxidation with potassium permanganate might be used as a pre-treatment process before biological treatment.  相似文献   

20.
采用湿法制备了高铁酸钾(K2FeO4)氧化剂,研究了其对染料活性艳红X-3B(X-3B) 和分散蓝2BLN(2BLN)在不同pH条件下的脱色效果,并对Al2 (SO4)3、K2FeO4及O3对活性及分散染料的脱色效果进行了比较。结果表明:高铁酸钾对活性及分散染料的脱色效果明显, X-3B脱色率随pH的增加不断提高,2BLN脱色率在pH 6~10范围内无明显变化,在pH=5时达到最大值。在X-3B及2BLN浓度同为100 mg/L,pH分别为10、5, K2FeO4浓度分别为100 mg/L和200 mg/L时,BLN及X-3B的脱色率分别达到92.3%和87.3%。在相同条件下,K2FeO4对活性艳红X-3B的脱色效果好于Al2(SO4)3和O3; 而K2FeO4对分散蓝2BLN的脱色效果虽比Al2 (SO4)3稍差,但比臭氧的脱色效果要好。同时还研究了K2FeO4对活性及分散染料的脱色机理,结果表明: 高铁酸钾对X-3B的脱色依赖于K2FeO4的氧化作用,而对的2BLN的脱色则以絮凝为主。  相似文献   

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