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1.
Addition of H2O2 has been employed to repress bromate formation during ozonation of bromide-containing source water. However, the addition of H2O2 will change the oxidation pathways of organic compounds due to the generation of abundant hydroxyl radicals, which could affect the removal efficacy of trihalomethane precursors via the combination of ozone and biological activated carbon (O3-BAC). In this study, we evaluated the effects of H2O2 addition on bromate formation and trihalomethane formation potential (THMFP) reduction during treatment of bromide-containing (97.6-129.1 μg/L) source water by the O3-BAC process. At an ozone dose of 4.2 mg/L, an H2O2/O3 (g/g) ratio of over 1.0 was required to maintain the bromate concentration below 10.0 μg/L, while a much lower H2O2/O3 ratio was sufficient for a lower ozone dose. An H2O2/O3 (g/g) ratio below 0.3 should be avoided since the bromate concentration will increase with increasing H2O2 dose below this ratio. However, the addition of H2O2 at an ozone dose of 3.2 mg/L and an H2O2/O3 ratio of 1.0 resulted in a 43% decrease in THMFP removal when compared with the O3-BAC process. The optimum H2O2/O3 (g/g) ratio for balancing bromate and trihalomethane control was about 0.7-1.0. Fractionation of organic materials showed that the addition of H2O2 decreased the removal efficacy of the hydrophilic matter fraction of DOC by ozonation and increased the reactivity of the hydrophobic fractions during formation of trihalomethane, which may be the two main reasons responsible for the decrease in THMFP reduction efficacy. Overall, this study clearly demonstrated that it is necessary to balance bromate reduction and THMFP control when adopting an H2O2 addition strategy.  相似文献   

2.
The ozone oxidation of endocrine disruptor bisphenol A in drinking water was investigated. A stainless completely mixed reactor was employed to carry out the degradation experiments by means of a batch model. With an initial concentration of 11.0 mg/L, the removal efficiencies of BPA (bisphenol A) could be measured up to 70%, 82%, and 90% when the dosages of ozone were 1, 1.5, and 2 mg/L, respectively. The impacts on BPA degradation under the conditions of different ozone dosages, water background values, BPA initial concentrations, and ozone adding time were analyzed. The results showed that ozone dosage plays a dominant role during the process of BPA degradation, while the impact of the contact time could be ignored. UV wavelength scanning was used to confirm that the by-products were produced, which could be absorbed at UV254. The value of UV254 was observed to have changed during the ozonation process. Based on the change of UV254, it could be concluded that BPA is not completely degraded at low ozone dosage, while shorter adding time of total ozone dosage, high ozone dosage, and improvement of dissolved ozone concentration greatly contribute to the extent of BPA degradation. The effects of applied H2O2 dose in ozone oxidation of BPA were also examined in this study. The O3-H2O2 processes proved to have similar effects on the degradation of BPA by ozone oxidation. Translated from Environmental Science, 2006, 27(2): 294–299 [译自: 环境科学]  相似文献   

3.
O3/H2O2体系能产生大量自由基,臭氧与自由基的耦合氧化作用能提高苯乙烯的氧化去除效率.采用O3/H2O2氧化高浓度苯乙烯有机废气,研究了臭氧投加量、停留时间、H2O2体积分数、循环液喷淋密度和O3/C8H8摩尔比对苯乙烯去除率的影响.结果表明,O3/H2O2气液两相氧化能高效净化苯乙烯有机废气,苯乙烯去除率可达85.7%.适宜运行条件:停留时间为20.6 s,H2O2体积分数为10%,喷淋密度为1.72 m3·(m2·h)-1,O3/C8H8摩尔比为0.46.采用GC-MS分析O3/H2O2气液两相高级氧化苯乙烯出口气样,研究结果表明苯甲醛(C6H5CHO)和苯甲酸(C6H5COOH)为O3/H2O2氧化苯乙烯的中间产物,并推测出苯乙烯的降解机制.  相似文献   

4.
预臭氧与后臭氧-生物活性炭联用工艺研究   总被引:3,自引:0,他引:3  
利用静态批量和动态连续试验初步研究了预臭氧及预臭氧与后臭氧-BAC组合工艺对南方某含溴离子水库水的处理效果和相应的处理条件.静态实验结果表明,预臭氧反应量在0.5~1.0mg/L范围内,在有效去除消毒副产物(DBPFP,主要包括THMFP和HAAFP)的同时,臭氧副产物溴酸可以控制在10μg/L以下,而继续增加臭氧反应量则会导致DBPFP的增加.当水中溴离子浓度达到96μg/L时,使用臭氧必须采取溴酸控制措施.连续动态实验结果表明,预臭氧与臭氧-生物活性炭组合工艺对于2μm以上颗粒物、CODMn、TOC等的去除均有明显的效果,可以进一步抑制DBPs的形成.  相似文献   

5.
为合理评估应用臭氧生物活性炭工艺中溴酸盐的生成情况,提出既能保证出水水质又能降低溴酸盐超标风险的方案.进行了小试与中试试验,系统地从原水水质和工艺参数两个方面入手,研究水质因素、初始溴离子浓度和臭氧氧化条件等对溴酸盐生成的影响,同时分析生物活性炭对溴酸盐的去除能力.结果表明:高初始溴离子浓度水平和臭氧接触程度(Ct值)促使更多BrOx-生成.在相同Ct值条件下,升高臭氧投加浓度可使溴酸盐生成量增高200%左右.以长江南京段江心洲夹江下游原水进行臭氧生物活性炭深度处理不会产生溴酸盐超标风险.生物活性炭(BAC)对于溴酸盐去除效果并不明显.运用臭氧生物活性炭工艺进行深度处理时,工艺中应着重注意控制溴酸盐在臭氧化过程中的生成而非依靠后续生物活性炭将其去除.  相似文献   

6.
采用连续流O_3-BAC对华北某石化废水处理厂尾水进行了中试处理实验,研究了O_3氧化对COD及UV254处理效果的影响,同时对处理过程中有机物的变化特性及稳定运行30 d时BAC填料中的微生态环境进行了分析.结果表明,在O_3接触时间为40 min,O_3投加量为20 mg·L-1,BAC单元空床停留时间为1.5 h条件下,O_3-BAC工艺出水COD为24 mg·L-1,平均去除率为40.4%,相对于单独BAC工艺去除率提高10.0%,UV254的平均去除率为55.1%,且COD与UV254之间呈一定的相关性,相关系数R2为0.89;O_3氧化后相对分子质量1×103的比例由尾水中的69.0%提高到了87.0%,O_3-BAC工艺中NPOC的去除率为45.8%,较单独BAC工艺提高23.0%,且BAC单元去除的NPOC主要由相对分子质量1×103的组分所贡献;经GC-MS图谱及有机物统计分析,经O_3氧化后烷烃类、不饱和酯类及酚类等有机物得到明显的去除;O_3氧化后BAC单元的微生态环境得到明显改善,其中微生物种类(丰度在1.0%以上)由6种增加到了11种.O_3-BAC工艺可以有效应用于石化尾水的深度处理中.  相似文献   

7.
UV/H2O2工艺降解微囊藻毒素-LR   总被引:1,自引:1,他引:0  
采用UV/H2O2联合工艺,研究了光强、初始浓度、H2O2投加量、pH及阴离子对微囊藻毒素-LR (MC-LR)去除率的影响.结果表明,单独H2O2对MC-LR基本无去除效果;单独UV工艺可以一定程度上降解MC-LR;而UV/H2O2联合工艺由于发生协同作用明显提高降解效率.试验发现,随着光强的增大,MC-LR的去除率不断提高;随着MC-LR初始浓度的增大,其去除率不断降低;随着H2O2投加量的增大,降解速率常数逐渐增大,当H2O2投加量由1 mmol/L增大到3 mmol/L时,降解速率常数由0.084 4上升到0.166 4;当pH为3.13时,在相同条件下MC-LR的去除效果最好;阴离子的投加不利于MC-LR的降解,其中CO2-3、NO-3影响最大.  相似文献   

8.
柴铖  许路  金鑫  石烜  吴晨曦  金鹏康 《环境科学》2022,43(2):896-906
系统研究了新型氮掺杂生物炭材料(N-C)催化臭氧对于水中布洛芬(IBP)的氧化降解效能及机制,并深入探究了初始pH、臭氧投加量、催化剂投加量、不同阴离子和背景水质条件对IBP降解效率的影响.结果 表明,相较于一些常见的碳基催化剂(g-C3N4、生物炭、颗粒活性炭)及金属催化剂(MnO2、Fe3O4),N-C催化臭氧体系...  相似文献   

9.
UV/H2O2降解羟苯甲酮反应动力学及影响因素   总被引:1,自引:1,他引:1  
有机防晒剂随着日常使用不断进入环境中,成为一类新兴污染物.考察了UV/H2O2工艺对典型有机防晒剂羟苯甲酮(BP-3)的水相光化学降解特征,并对BP-3降解反应的影响因素包括初始BP-3浓度、H2O2浓度、UV光强、共存阳离子和阴离子、叔丁醇和腐殖酸投加量等进行了研究.结果表明,BP-3的降解速率常数随初始BP-3浓度升高而降低,随着H2O2浓度增大而增高,随着UV光强增强而增大;阴离子会在一定程度上降低反应速率,阳离子中Fe3+会产生类芬顿反应,促进生成·OH,对降解反应有显著的促进作用,投加叔丁醇和腐殖酸皆会抑制降解反应进行.采用每一对数减小级电能输入(EEo)指标对UV/H2O2工艺的电能利用效率进行了评价,Fe3+的加入显著减小了EEo.研究不同因素对UV/H2O2工艺降解效果的影响,可对实际工程中采用UV/H2O2去除苯甲酮类有机防晒剂提供参考.  相似文献   

10.
利用波长为254 nm的紫外灯活化过氧化氢(H_2O_2)氧化降解美罗培南(MPN),考察了H_2O_2投加量、初始pH值、水中常见共存阴离子(Cl~-、HCO~-_3、NO~-_3)和天然有机化合物(NOM)等重要影响因素对MPN降解的影响.结果表明,紫外光功率为4 W,初始pH为7.0,n(H_2O_2)/n(MPN)=20∶1时,反应20 min后,MPN的降解率达到97.8%.H_2O_2投加量的增加会加快MPN的降解速率,Cl~-和HCO~-_3对UV/H_2O_2体系中MPN去除效果的影响较小,极少量的NO~-_3会促进MPN的降解,当NO~-_3的浓度≥10 mg·L~(-1)时,MPN的降解受到抑制,且离子浓度越高,抑制程度表现越明显.NOM的存在对MPN的降解有抑制作用.与纯水相比,MPN在实际水体中的去除受到抑制,归因于水体基质的影响.大肠杆菌的急性毒性实验研究表明,MPN的中间转化产物保留了一些抗菌性能,但光解的最终产物无抗菌性能.  相似文献   

11.
There are regular problems of musty odor in the Huangpu River,a major source of drinking water for Shanghai,China.In this study,the musty odor and its main causative compounds in the Huangpu River source water were confirmed through a yearly investigation using flavor profile analysis combined with HSPME-GC-MS analysis.The investigation showed that 2-methylisoborneol (2-MIB) with a concentration level between 28.6 and 71.0 ng/L was responsible for the musty odor in summer from July to September.Microscopic observation confirmed with the cloning results showed that Phormidium spp.,which accounted for 80%-95% of the algal cell density,was the microorganisms responsible for the production of 2-MIB and the estimated 2-MIB yield was 0.022 pg/cell.Results from a wide-area sampling campaign in the Huangpu River watershed showed that,other than the large tributaries receiving water from Tai Lake,several small creeks close to the intake may have contributed most of the 2-MIB and the Phormidium spp.to the Huangpu River source water.This study provides methodology for the investigation of odor causing compounds and microorganisms in river-type source water,and the result will be useful for water quality control in both source water and drinking water.  相似文献   

12.
Wet scrubbing combined with ozone oxidation has become a promising technology for simultaneous removal of SO2 and NOx in exhaust gas. In this paper, a new 20-species, 76-step detailed kinetic mechanism was proposed between O3 and NOx. The concentration of N2O5 was measured using an in-situ IR spectrometer. The numerical evaluation results kept good pace with both the public experiment results and our experiment results. Key reaction parameters for the generation of NO2 and N2O5 during the NO ozonation process were investigated by a numerical simulation method. The effect of temperature on producing NO2 was found to be negligible. To produce NO2, the optimal residence time was 1.25 sec and the molar ratio of O3/NO about 1. For the generation of N2O5, the residence time should be about 8 sec while the temperature of the exhaust gas should be strictly controlled and the molar ratio of O3/NO about 1.75. This study provided detailed investigations on the reaction parameters of ozonation of NOx by a numerical simulation method, and the results obtained should be helpful for the design and optimization of ozone oxidation combined with the wet flue gas desulfurization methods (WFGD) method for the removal of NOx.  相似文献   

13.
兰亚琼  刘锐  马正杰  陈吕军 《环境科学》2018,39(12):5541-5549
以长三角地区J市典型有机微污染水源P水厂为研究对象,考察了臭氧-生物活性炭深度处理工艺对微污染水源水中有机物的去除效果.结果表明,臭氧-生物活性炭深度处理使高锰酸盐指数、总有机碳(TOC)和UV254的平均去除率分别提升19. 2%、10. 4%和23. 0%.水厂原水中检出8种多环芳烃(polycyclic aromatic hydrocarbon,PAHs)、16种有机氯农药(organochlorine pesticides,OCPs)、5种卤乙酸(haloacetic acids,HAAs),其总浓度分别为53. 9~100. 0、6. 5~41. 8、2. 5×103~1. 1×104ng·L~(-1),臭氧-生物活性炭深度处理对多环芳烃和有机氯农药的平均去除率分别为32. 5%和25. 9%,比常规处理工艺出水的水质有显著提升.卤乙酸的去除率为33. 8%~87. 0%,主要通过常规处理工艺去除;臭氧-生物活性炭深度处理对氯代乙酸略有去除,溴代乙酸有少量生成.  相似文献   

14.
魏红  孙博成  杨小雨  李克斌 《环境科学》2017,38(6):2393-2399
实验以H_2O_2和KI作为分子碘(I2)的来源,研究比较了超声、紫外分别增强H_2O_2/KI降解磺胺甲基嘧啶(sulfamerazine,SMR)的效果、主要影响因素、分子碘的生成、主要活性物种和产物.结果表明,超声、紫外均能有效增强H_2O_2/KI对磺胺甲基嘧啶的降解,超声的增强效果明显;pH值对磺胺甲基嘧啶的去除率影响较大,pH为2.6~5.6,去除率随pH升高而降低;自由基抑制结果表明,碘自由基(I·和I-2·)是超声、紫外增强H_2O_2/KI降解磺胺甲基嘧啶的主要活性物质.HPLC/MS/MS分析检测到一碘代苯.  相似文献   

15.
张薛  赵璇 《环境科学学报》2015,35(3):750-755
表面活性剂是一类特殊的有机污染物,在去污、洗衣、印染等废水中广泛存在.本文以某电厂实用的5种去污剂为研究对象,考察了UV/H2O2对5种去污剂的矿化能力,研究了H2O2和去污剂初始浓度、初始p H值、去污剂种类、辐照时间等因素对氧化效果的影响.结果表明,5种去污剂在254 nm处均无较强吸收,单独UV辐照对其降解效果不明显.当去污剂初始DOC浓度为50 mg·L-1,H2O2最佳投加量为1 m L·L-1,反应时间为90 min时,对5种去污剂的矿化率(即DOC去除率)在53%~87%,矿化率随去污剂种类的不同而不同.对去污剂的矿化率随着UV辐照时间的延长而增大,去除率曲线符合一级反应动力学方程.废水初始p H值对氧化效果的影响不显著,H2O2/DOC比值对氧化效果有显著影响.研究表明,UV/H2O2技术能高效矿化水中的去污剂,H2O2/DOC比值和UV辐照时间是影响氧化效率的关键因素.  相似文献   

16.
孙正男  杨琦  纪冬丽  郑琳 《环境科学》2015,36(6):2154-2160
以浸渍法制备的新型纳米Fe3O4/Ce O2为催化剂,3,4-二氯三氟甲苯(3,4-DCBTE)为目标污染物,在Fe3O4/Ce O2-H2O2非均相类Fenton体系中对目标污染物的降解进行研究,考察催化剂的催化效果和温度、p H、H2O2投加量等因素对催化剂催化效果的影响.结果表明,以纳米Fe3O4/Ce O2作为催化剂的非均相类Fenton体系对3,4-二氯三氟甲苯的处理效果极佳;随着温度的升高,纳米Fe3O4/Ce O2的催化效果不断提高;在偏酸性环境中,p H越低催化效果越好,p H=2时反应去除效率可达96.67%;随着H2O2投加量的增加,3,4-二氯三氟甲苯的降解效率先提高后降低,投加量为15 mg·L-1时去除效果最好可达99.47%;随着催化剂投加量的增加,同样出现了处理效果先升高后降低的现象,投加量为0.5 g·L-1时催化效果最好可达99.64%.在以纳米Fe3O4/Ce O2为催化剂的非均相类Fenton体系中,3,4-二氯三氟甲苯的降解符合一级反应动力学,反应所需活化能较低只需30.26 k J·mol-1.  相似文献   

17.
以某制药企业的二级出水为研究对象,对比了UV/TiO2、UV/H2O2、UV/TiO2/H2O2 3种高级氧化工艺的处理效果,利用自主设计的一体化光催化装置进行了连续动态试验,并通过凝胶渗透色谱(GPC)、傅里叶变换红外光谱(FT-IR)、三维荧光光谱(EEM)、斑马鱼急性毒性试验等方法研究了处理前后有机物特性和生物毒性的变化.结果表明,与UV/TiO2和UV/H2O2体系相比,UV/TiO2/H2O2光芬顿体系对有机物的去除效果更好,当TiO2投加量为1 g·L-1,H2O2投加量为100 mg·L-1时,处理效果达到最佳.一体化光催化装置能够利用UV/TiO2/H2O2光芬顿技术快速高效地降解二级出水中的有机污染物,反应30 min时COD去除率达到50%以上.经UV/TiO2/H2O2深度处理后,废水中的大分子有机物分解转换为小分子,有机物中的不饱和结构明显减少,腐殖质等溶解性有机物基本降解完全.毒性试验结果表明,该二级出水的生物毒性经深度处理后显著降低,对斑马鱼胚胎不存在致畸致死效应.  相似文献   

18.
We used a ultrasound/Fe2+/H2O2 process in continuous dosing mode to degrade the alachlor.Experimental results indicated that lower pH levels enhanced the degradation and mineralization of alachlor. The maximum alachlor degradation(initial alachlor concentration of 50 mg/L) was as high as 100% at pH 3 with ultrasound of 100 Watts, 20 mg/L of Fe2+, 2 mg/min of H2O2 and 20℃ within60 min reaction combined with 46.8% total organic carbon removal. Higher reaction temperatures inhibited the degradation of alachlor. Adequate dosages of Fe2+and H2O2 in ultrasound/Fe2+/H2O2process not only enhance the degradation efficiency of alachlor but also save the operational cost than the sole ultrasound or Fenton process. A continuous dosing mode ultrasound/Fe2+/H2O2 process was proven as an effective method to degrade the alachlor.  相似文献   

19.
为了降低准好氧矿化垃圾床渗滤液尾水中有机物浓度和提高体系可生化性,构建了GAC(粒状活性炭)-O_3/H_2O_2体系催化降解矿化垃圾床渗滤液尾水中有机物.同时,考察了体系O_3、GAC和H_2O_2投加量、初始pH值对GAC-O_3/H_2O_2体系处理渗滤液尾水的影响,并使用分子量分布、紫外-可见光谱和三维荧光光谱解析了难降解有机物在GAC-O_3/H_2O_2体系的转化机制.结果表明:在GAC投加量为10 g·L-1,O_3投加量为32.16 mg·min-1,H_2O_2投加量为3 m L·L-1,初始pH值为5的条件下,反应20 min后,其渗滤液尾水的COD和UV245分别从700.08 mg·L~(-1)和0.488下降到393.85 mg·L~(-1)和0.244,COD和UV254的去除率分别为43.80%和50.00%.经GAC-O_3/H_2O_2体系处理后,得益于含芳香环有机物的有效降解,渗滤液尾水中大分子有机物(大于50 k Da)明显减少,分子量小于1 k Da的有机物比例增多.与此同时,紫外区类富里酸荧光区及可见光区类富里酸荧光区峰值也大幅降低,其去除率分别为70.20%和58.69%,B/C从0.04增加到0.35,这也使得废水可生化性大幅提高.  相似文献   

20.
作为钝感炸药的重要成分,DNAN(2,4-二硝基茴香醚)可以在炸药合成中替代TNT。随着对含DNAN废水的关注增多,发展了几种处理含DNAN废水的方法。其中,UV/H2O2氧化被证明是一种很有效的处理废水中DNAN的方法。本研究开展了DNAN降解的一系列批处理实验,研究碳酸根、初始pH和H2O2剂量对DNAN降解过程的影响。分别采用DI水(去离子水)和自来水配置与含DNAN废水相同浓度的DNAN溶液进行处理,比较和分析DNAN的降解过程和影响因素。结果显示:DI水溶液中DNAN的降解速率要快于自来水溶液,表明碳酸根和初始pH会影响DNAN的降解过程。配置溶液中DNAN的降解速率快于含DNAN废水中DNAN的降解速率,因为废水其他有机物的存在会与DNAN形成竞争。DNAN废水中的氮都被UV/H2O2氧化为硝态氮,表明该方法是处理污水中DNAN的有效技术。另外,溶液中的碳酸根、初始pH、H2O2剂量和其他有机物成分都会影响DNAN的降解过程。研究结果为DNAN废水处理的最优降解条件确定提供理论支撑。  相似文献   

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