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1.
采用臭氧(O3)氧化法处理含高浓度黄连素和COD的制药废水,探讨了废水初始pH、O3投加量及初始黄连素浓度等因素对O3氧化过程的影响,确定了O3氧化技术处理黄连素制药废水的最佳操作条件。结果表明,O3能够有效分解废水中的黄连素,降低其COD浓度;黄连素浓度为700 mg/L、COD为3 500 mg/L、pH为0.88的废水,进气O3浓度为14.05 mg/(L?min),处理时间为180 min(即投加量为2 529 mg/L)时,黄连素和COD的降解率分别可达77.46%和41.28%,BOD5/COD比(B/C比)从0.06提高到0.34,增加了4.7倍;随着废水中初始黄连素浓度的升高,废水COD降解率逐渐降低。O3氧化法是一种有效的黄连素制药废水预处理技术,可以大大提高废水的可生化性。  相似文献   

2.
采用O3/UV工艺预处理磺酰脲类除草剂生产废水,考察了初始pH值、臭氧投量、叔丁醇投加等因素对废水处理效果的影响,并初步探讨了该工艺处理废水的反应机理。实验结果表明,在废水初始pH为13.59和臭氧投量为65.08 mg/min的条件下,预处理80 min后废水COD去除率达63.47%,BOD5/COD由0.03提高至0.56,EC50从11%提高至55%。随着叔丁醇浓度的增加,废水COD去除率明显降低,证明该反应体系有?OH存在;体系中加入MnO2后废水COD去除率下降了16%,氧化效率明显下降,证明该反应体系内中间产物H2O2在O3/UV降解有机废水过程中起到了重要的作用。  相似文献   

3.
采用臭氧辅助光芬顿法处理电镀添加剂生产废水,考察双氧水、FeSO4·7H2O、pH和反应时间等因素对废水COD和UV254去除的影响。实验结果表明,pH=4,臭氧通入量为0.25 g,双氧水的投加量93.3 mL/L,FeSO4·7H2O投加量为5.3 g/L,最佳反应时间为30 min,COD和UV254去除率分别达到92.64%和87.95%。这表明,臭氧辅助光芬顿法对电镀添加剂生产废水处理效果显著,处理时间大大减少。  相似文献   

4.
采用改性矿物吸附法和O3氧化法对某制药厂维生素B12废水进行脱色处理。以废水色度去除率大于50%为目的,通过实验确定改性矿物吸附法和O3氧化法处理维生素B12废水的最佳工艺条件:废水的pH为3.00,有机化膨润土的投加量为5 g/L,PAC的投加量为6 g/L,投加有机化膨润土后搅拌时间为30 min时,废水的色度去除率可达到51.3%,处理成本为12.85元/t。O3氧化法的最佳条件:废水的pH保持不变,O3流量为5 g/h,反应时间为2 min,废水的色度去除率可达到68.8%,处理成本为0.96元/t。对比这2种方法,O3氧化法处理该废水成本更低、效率更高,并且能提高废水的可生化性以便后续处理。  相似文献   

5.
催化湿式氧化法处理印染废水的研究   总被引:6,自引:2,他引:4  
张永利 《环境工程学报》2009,3(6):1011-1014
Cu-Fe和Cu-Ce/FSC是优化制备的均相和非均相催化剂,实验中将其应用于实际印染废水的CWAO法处理,考察催化剂的实用性能以及CWAO法对实际印染废水的处理效果。研究结果表明,CWAO法处理印染废水,出水COD、BOD5均达到三级标准,色度和pH均达到一级标准,非均相的Cu溶出浓度达到三级标准;而处理出水BOD5/COD由0.021(处理前)提高到0.423(均相)和0.307(非均相),出水可生化性良好。  相似文献   

6.
采用臭氧/过氧化氢氧化技术对活性红X-3B模拟染料废水进行处理。考察和优化了连续曝气实验条件下臭氧投加流量、反应时间、初始pH、过氧化氢投加量等因素对活性染料废水处理效果的影响。结果表明,最佳操作参数为反应时间60min、pH 10.25、臭氧投加量250mg/(L·h)、过氧化氢投加量36mg/L。在此条件下,COD去除率达到70.09%,色度去除率达到99.95%,BOD5/COD由初始的0.04提高到0.32,废水可生化性得到较好改善。  相似文献   

7.
氨吹脱-Fenton氧化预处理阿奇霉素废水的研究   总被引:1,自引:1,他引:0  
采用氨吹脱-Fenton试剂氧化法对阿奇霉素废水进行预处理,考察了各种因素对处理效果的影响。实验结果表明:在pH值为11,吹脱时间160 min,温度30℃的条件下,氨氮浓度从2 458.7 mg/L降低到421.7 mg/L,去除率可达82.85%;Fenton氧化吹脱出水的适宜工艺条件:初始pH值为3、反应时间90 min、FeSO4·7H2O投加量为0.01 mol/L、H2O2/Fe2+的投加比16∶1,此时,COD去除率为72.6%;废水经预处理后,有效地改善了废水水质,提高了废水的可生化性,由初始的0.1增至0.37,为后续废水的生化处理提供了有利条件。  相似文献   

8.
微波-Fenton 氧化-PAFSi 絮凝法处理含油废水   总被引:1,自引:0,他引:1  
采用微波-Fenton氧化-PAFSi絮凝法处理含油废水,结果表明,200 mL水样先经微波辐射6 min,在pH=2,H2O2(30%)3.5 g/L,Fe2+ 1.3 g/L的条件下氧化4 h后,采用聚硅酸铝铁(Al:Fe:Si=10:2:1)和聚丙烯酰胺在pH=8时进行絮凝实验,处理后废水浊度、SS、COD、含油量和色度分别降低了99.46%、96.66%、91.94%、97.97%和95.00%,且经处理后废水的BOD5/COD由原水的0.04提高到0.53。实验还分析了含油废水的降解机理。  相似文献   

9.
臭氧氧化处理养猪场厌氧沼液   总被引:1,自引:0,他引:1  
实验在MAP沉淀处理的基础上,采用臭氧氧化技术对养猪场厌氧沼液进行处理。研究了氧化过程中臭氧的投加量、反应时间对沼液pH、COD和UV254的去除效果、沼液可生化性、氮形态转化的影响。结果表明,在臭氧氧化过程中,随着反应时间的延长,沼液pH呈逐渐下降的趋势。在臭氧投加量为6 mg/L、反应时间为40 min时,COD和UV254去除率达到最大,分别为21.7%和60%。此外,臭氧氧化能把BOD5/COD的比值从0.24提高为0.41,有效提高了沼液的可生化性。在臭氧投加量为6 mg/L、反应时间为2 h时,TN的浓度基本维持在370~410 mg/L之间,氨氮浓度随时间呈现先升高后降低的变化趋势,且最终维持在132.7 mg/L,然而,硝态氮浓度反而升高了近一倍,由此可见,臭氧氧化不能完全脱氮,只能使氮从一种形态转化为另一种形态。  相似文献   

10.
城市污水厂二级处理出水深度处理组合工艺研究   总被引:2,自引:0,他引:2  
为了研究臭氧-曝气生物滤池二级处理出水深度处理组合工艺的处理效果,采用臭氧-曝气生物滤池(biological aerated filter, BAF)组合工艺对城市污水处理厂二级生化处理出水进行深度处理。结果表明,组合工艺对造成水中色度的主要物质腐植酸和富里酸类有机物和嗅味物质中的二甲基三硫和二甲基异莰醇(MIB)能够进行有效去除。臭氧氧化能够显著提高后续BAF单元对CODMn的去除。在进水CODMn6~8 mg/L、色度为25~30度、浊度约为8 NTU的条件下,当臭氧投加量为5~6 mg/L、BAF的水力停留时间为1~1.5 h时,出水CODMn< 5 mg/L、色度<5度、浊度<1 NTU,出水水质可满足生产工艺对回用水的水质要求。  相似文献   

11.
Treatment of landfill leachate by ozone-based advanced oxidation processes   总被引:13,自引:0,他引:13  
Wu JJ  Wu CC  Ma HW  Chang CC 《Chemosphere》2004,54(7):997-1003
In this study, laboratory experiments are conducted to compare the efficacy using several ozone-based advanced oxidation processes (AOPs), such as O3, O3/H2O2, and O3/UV, to treat landfill leachate. Raw leachate was initially coagulated by ferric chloride (FeCl3) at the experimental-determined optimal dosage of 900 mgl(-1), and the ozone-based AOPs were subsequently applied. Results indicate that all AOPs would result in a significant increase on the ratio of BOD5/COD from 0.06 to 0.5 at the applied ozone dosage of 1.2 gl(-1). The increase on biodegradability for ozonated leachate indicates that these AOPs would be beneficial to the subsequent biological treatment process. To better explain the alteration of high organic molecules after oxidation, ultrafiltration was used to separate the leachate by several molecular weight cutoffs (MWCO). The COD distribution for coagulated leachate is 34% for MWCO>10 kDa, 7% for MWCO between 5 and 10 kDa, 22% for MWCO between 1 and 5 kDa, and 37% for MWCO<1 kDa. Following ozonation or AOPs, the predominant distribution of COD would be obviously shifted to the MWCO less than 1000 gmol(-1) (72-85%) over the other MWCO ranges. In addition, Gel Permeation Chromatograph (GPC) analysis has showed a substantial agreement on the cleavage of larger organic compounds into smaller ones. O3/UV was found to be the most effective approach among these ozone-based AOPs to enhancing the biodegradability and eliminating the color of leachate.  相似文献   

12.
在Ti(Ⅳ)和过氧化氢存在条件下,考察了臭氧化酸性苯乙酮溶液、硝基苯溶液和垃圾渗滤液(浙江衢州某垃圾填埋场)的预处理效能。结果表明,在pH2.86条件下,单独臭氧化处理对苯乙酮、硝基苯和垃圾渗滤液的COD去除率分别为10.1%、44%和28.6%。BOD,/COD值分别从原来的0.039、0.060和0.085提高到了0.130、0.158和0.174,仍属生化难降解废水。当体系加入Ti(Ⅳ)后,臭氧化苯乙酮和硝基苯的COD去除率分别达到了75.5%和65%,BOD;/COD则提高到了0.679和0.314,可生化性提升明显。对于垃圾渗滤液,只有当体系加入Ti(Ⅳ)和H22后,臭氧化COD的去除率达到66.6%,BOD、/COD提高至0.425。上述结果对酸性难降解废水的处理实际意义非常突出。  相似文献   

13.
Fenton's pre-treatment of mature landfill leachate   总被引:20,自引:0,他引:20  
Lopez A  Pagano M  Volpe A  Di Pinto AC 《Chemosphere》2004,54(7):1005-1010
The aim of this study was to check the effectiveness of the Fenton's reagent (Fe2+ + H2O2 + H+) for the pre-treatment of a municipal landfill leachate with the objective of improving its overall biodegradability, evaluated in terms of BOD5/COD ratio, up to a value compatible with biological treatment. The leachate came from a municipal sanitary landfill located in southern Italy and the average values of its main parameters were: pH=8.2; COD=10,540 mgl(-1); BOD5=2,300 mgl(-1); TOC=3,900 mgl(-1); NH4-N=5210 mgl(-1); conductivity=45,350 microScm(-1); alkalinity=21,470 mgl(-1) CaCO3. The effect of initial pH value on the pre-treatment effectiveness was evaluated by titrating the amount of acidic by-products formed. The extent of leachate oxidation was monitored and controlled by both pH and redox potential measurements. The best operational conditions for achieving the desired goal (i.e., BOD5/COD> or =0.5) resulted: Fe2+=275 mgl(-1); H2O2=3,300 mgl(-1); initial pH=3; reaction time=2 h. At the end of the Fenton's pre-treatment, in order to permit a subsequent biological treatment, residual ferric ions were removed increasing the pH up to 8.5 by adding 3 gl(-1) of Ca(OH)2 and 3 mgl(-1) of a cationic polyelectrolyte, the latter as an aid to coagulation. This final step also resulted in a further modest removal of residual COD due to co-precipitation phenomena.  相似文献   

14.
针对垃圾渗滤液污染物浓度高、可生化性差等特点,采用准好氧矿化垃圾反应床+超声/芬顿联用技术对垃圾渗滤液进行预处理。准好氧矿化垃圾床处理后渗滤液中COD、氨氮、总磷、色度的去除率分别为80%、85%、92%和85%。通过单因素实验和正交实验,确定了超声/Fenton法最佳工艺条件。经该组合工艺后,渗滤液中COD、氨氮、总磷和色度的最高去除率分别可达96%、86%、94%和95%,且出水无臭,颜色为淡黄色,BOD5/COD从0.16增至0.35左右,可生化性基本满足后续生物处理需要,且COD、总磷这2个指标达到《生活垃圾填埋场污染控制标准》(GB16889—2008)规定的排放标准。  相似文献   

15.
微波强化氧化处理垃圾渗滤液工艺研究   总被引:3,自引:1,他引:2  
考察了最优作用方式下单独微波、单独氧化剂以及两者的结合工艺对垃圾渗滤液的处理效果。单独微波工艺在功率为700 W,辐射10 min,COD、氨氮、磷和色度去除率分别为37.66%、96.14%、40%和80%,BOD5/COD由0.16增加到0.43。渗滤液先微波再氧化,氨氮去除率增加显著,节省了氧化剂用量。微波后渗滤液在pH=5,T=50℃,NaClO=24 mL/L时COD、氨氮、磷和色度去除率分别为98.63%、99.67%、97.25%和98%,BOD5/COD=0.8。总处理效率:微波-NaClO微波-Fenton微波-KMnO4微波-H2O2,微波-Fenton处理效率低于微波-NaClO主要取决微波后滤液中小表观分子质量增加导致氧化剂的混凝作用减弱,其次受反应后pH值变化的影响。  相似文献   

16.
分别采用脉冲电解法、混凝沉淀法、芬顿氧化法、高铁酸钾氧化法对垃圾渗滤液生化出水进行处理,考察了处理效果。结果表明:铁电极电解法和芬顿试剂氧化法均能脱除垃圾渗滤液的色度,去除有机物质。铁电极电解对色度的去除率可达98.4%,COD去除率可达84.4%;芬顿试剂氧化对色度的去除率可达99%,COD去除率可达85.8%。两种方法均能使出水达到排放标准。同时比较了各种处理方法的运行成本,在达到同样出水标准的前提下,铁电极电解运行成本远低于芬顿试剂氧化,为3.67元/t水,而芬顿试剂药剂成本为8.67元/t水。  相似文献   

17.
The removal performance of typical refractory organic compounds in landfill leachate was investigated during the electrochemical (EC) oxidation and anaerobic process combined treatment system in this paper. The results indicated that the treatment of landfill leachate by the combined system was highly effective. The toxicity of leachate was notably decreased after the electrochemical oxidation process and the biodegradability was improved. The concentration of the organic acid with low molecular weight in the leachate increased from 28% to 90% based on the biodegradability assays after the EC oxidation process. The anaerobic digestion could further remove the residual organic compounds. At a hydraulic retention time (HRT) of 16 hours and an organic loading rate (OLR) of 8 kg COD/m3 d, the concentration of COD, SS, ALK, VA, N-TKN, N-NH4+ and P-PO4(3)- [corrected] in UASB effluent were 532, 12, 6744, 400, 540, 455 and 11.6 mg/L, respectively, with approximately 90% removal efficiency of COD. The organic compounds in the landfill leachate revealed different degradation characteristics in the combined system. p-chloroaniline, bisphenol A, 6-methyl-2-phenyl-quinoline, dimethylnaphthaline and N'-(2-methyl-4-chlorophenyl)-N-cyclohexyformamidine, classified into the first group in this paper, were completely removed by the EC oxidation and did not reappear in the effluent of the UASB reactor. Phenylacetic acid, 3-methyl-indole and N-cyclohexyl-acetamide, called the second group, were completely removed, but reappeared in the UASB reactor. 4-methyl-phenol, 3,4-dihydroisoquinoline, 2(3H)-benzothiazolone, exo-2-hydroxycineole and benzothiazole, the third group, were degraded little in the EC oxidation process, but extensively removed by the anaerobic process. Benzoic acid, benzenepropanoic acid and 2-cyano-3,5-dimethyl-1-hydroxypyrrole, the fourth group, concentration obviously increased in the EC process, but was completely removed in the UASB reactor. The content of volatile fatty acids (VFAs) markedly increased from 0.68% in the leachate to 16.18% in the effluent from the electrochemical oxidation process (EC(effl)). In addition, the degradation rate of organic compounds from the landfill leachate was different in the EC oxidation and anaerobic process.  相似文献   

18.
An integrated technique consisted of ozonation and coagulation/flocculation processes was studied, aiming to provide an efficient method for the treatment of stabilized/biologically pre-treated leachates, in order to reduce the organic pollutants' content to concentration values lower than the corresponding limits, imposed by the legislation. Leachates were collected from a municipal landfill site; samples containing around 1000 mg l(-1) COD and BOD(5)/COD ratio about 0.17 were treated by using two different processes or combinations between them, i.e. ozonation, coagulation-flocculation, ozonation followed by coagulation/flocculation and coagulation/flocculation followed by ozonation. The application of single ozonation resulted to the efficient removal of color and organic loading, due to the respective oxidation, induced by ozonation; however, COD values lower than 200 mg l(-1) could be only achieved after prolonged reaction times and for high ozone production rates. The coagulation of leachate samples was studied by the addition of ferric chloride or poly-aluminum chloride agents at various dosages. Maximum COD removal rates (up to 72%) were achieved by the addition of 7 mM Fe, or of 11 mM Al respectively. However, final COD values higher than 200 mg l(-1) were obtained indicating the requirement of an additional treatment step. Pre-ozonation followed by coagulation/flocculation was not found to be an efficient treatment approach for this aim, but coagulation/flocculation followed by ozonation, was proved to be an efficient process for the reduction of COD to lower than 180 mg l(-1).  相似文献   

19.
垃圾渗滤液生物处理出水臭氧氧化的研究   总被引:3,自引:1,他引:2  
对垃圾渗滤液生物处理出水进行了臭氧氧化的研究。研究表明,随着氧化时间的延长,CODCr去除率增大;在碱性条件下进行臭氧氧化。pH越高,CODCr去除效率越高。采用BOD5/CODCr来表征垃圾渗滤液的生物降解性,研究了臭氧氧化前后垃圾渗滤液生物处理出水的生物降解性变化规律,表明臭氧氧化可以提高垃圾渗滤液生物处理出水的生物降解性,但提高的幅度不大。通过色谱-质谱法(GC—MC)对臭氧氧化前后垃圾渗滤液的成分进行分析,结果表明,臭氧氧化前后废水中的主要成分没有发生变化,仍然为难降解物质;臭氧氧化使废水中的部分物质发生了结构上的变化,减少、消失和生成的物质多为可降解物质。  相似文献   

20.
针对实验室所得垃圾渗滤液专用铁镁铝复合絮凝剂配方进行了批量扩大化生产,设计开发了中试专用絮凝反应设备,在垃圾填埋现场进行了絮凝中试实验。研究结果表明,最佳搅拌速度为170 r/min,最佳投药量为20%,COD去除率大于50%,BOD去除率大于30%,渗滤液可生化性由0.4提高到0.65,色度去除率约70%~80%,重金属去除率大于80%,优于同类常规市售絮凝剂聚铁、聚铝、聚铝铁;垃圾渗滤液处理专用絮凝反应器能满足设计开发要求,具有处理效果好、结构紧凑、多功能、自动化程度高、方便移动适于现场实验等特点;为适应渗滤液絮凝反应剧烈、产生大量泡沫、影响固液分离效果的特点,专用絮凝反应器固液分离部分的细部尺寸应进一步优化调整。  相似文献   

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