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1.
滤后水中NOM经臭氧氧化产生的小分子醛、酮和酮酸   总被引:3,自引:1,他引:2  
鲁金凤  张涛  马军  陈忠林  王群  沈吉敏 《环境科学》2007,28(6):1268-1273
以富集、分离得到的滤后水中6种不同特性的天然有机物(NOM)为对象,测定了臭氧氧化NOM各组分后小分子醛、酮及酮酸的生成情况.NOM各组分臭氧氧化后甲醛和丙酮酸产量最大,特别是憎水中性物质(HON)的甲醛产率是其醛、酮总产率的70.58%,单位DOC丙酮酸的产率达103.2 μg/mg;憎水性NOM组分的小分子醛、酮、酮酸产率比亲水性组分的高,特别是憎水中性物质(HON)和憎水酸(HOA)的小分子醛、酮及酮酸类总产率最高,二者之和分别占NOM各组分的醛酮总产率及酮酸总产率的55.56%和60%; NOM碱性组分的醛、酮、酮酸产量最低.用小分子醛、酮、酮酸总量折算DOC占氧化后NOM的DOC的百分比作为衡量氧化后各组分可生物降解性的参考,则臭氧氧化后HON和HOA的可生物降解性比其他组分高得多.  相似文献   

2.
羟基氧化铁催化臭氧氧化对滤后水卤乙酸生成势的影响   总被引:2,自引:0,他引:2  
张涛  鲁金凤  马军  陈忠林  申素芳  王群 《环境科学》2006,27(8):1580-1585
考察了滤后水经过单独臭氧氧化和羟基氧化铁(FeOOH)催化臭氧氧化后5种卤乙酸生成势(HAA5FP)的生成情况.研究了氧化时间、溴离子浓度、滤后水pH值、碱度和O3投量对2种氧化方式下HAA5FP的影响规律.发现该滤后水氯化后的HAA种类为二氯乙酸(DCAA)、三氯乙酸(TCAA)及溴离子存在时有二溴乙酸(DBAA).无溴离子存在时,催化臭氧氧化在5~20min内使得HAA5FP比臭氧氧化后的降低9.5%~18.3%.溴离子浓度增加使HAA5FP减少,催化臭氧氧化后HAA5FP也比臭氧氧化后低更多.中性pH时,催化臭氧氧化比臭氧氧化有更明显的控制HAA5FP的优势.重碳酸盐碱度升高使HAA5FP降低,且2种氧化后HAA5FP的差别减小.O3/TOC比值为0.45~1.43的臭氧投量范围内,催化臭氧氧化后HAA5FP比臭氧氧化后减少11.2%~28.0%.催化臭氧氧化对滤后水HAA5FP的影响与FeOOH催化臭氧生成羟基自由基的特点密切相关.  相似文献   

3.
羟基氧化铁催化臭氧氧化对滤后水THMs生成势的控制作用   总被引:6,自引:3,他引:3  
鲁金凤  张涛  马军  陈忠林  江进 《环境科学》2006,27(5):935-940
实验比较了滤后水经过单独臭氧氧化和羟基氧化铁催化臭氧氧化后的三卤甲烷生成势(THMFP).考察了不同的溴离子含量、pH值、碱度、O3/TOC比例、氧化反应时间、催化剂投量时,2种氧化条件下滤后水THMFP的变化规律.发现羟基氧化铁催化氧化后,滤后水的THMFP比单独臭氧氧化后的降低了30.5%.溴离子浓度较高时THMs以溴代产物为主,羟基氧化铁催化氧化后溴代的THMFP是单独臭氧氧化后的45%~65.5%.在滤后水pH值为6.33~9.43、O3/TOC比值为0.65~2.05、氧化时间为2~20min的条件下,羟基氧化铁催化氧化都表现出明显降低THMFP的优势.碱度升高使2种氧化后的THMFP都降低,且使其差值减小.催化剂存在降低THMFP的最佳投量.催化氧化降低滤后水THMFP的原因是比单独臭氧氧化提高了对TOC的去除率,催化产生的羟基自由基进一步氧化降低了水中有机物卤代活性位的数量.  相似文献   

4.
水中羟基氧化铁催化臭氧分解和氧化痕量硝基苯的机理探讨   总被引:31,自引:12,他引:19  
测定了木质颗粒活性炭(GAC)和负载在GAC上的羟基氧化铁(FeOOH)催化水中臭氧分解的速率常数并探讨了催化臭氧分解的途径.以水中几种氧化物表面羟基密度和表面零电荷pH值(pHzpc)为表征氧化物表面性质的参数,考察了2个参数对催化臭氧氧化水中硝基苯的影响.GAC和负载在GAC上的FeOOH使水中臭氧一级分解速率常数分别提高了68%和108%,用叔丁醇捕获掉生成的羟基自由基后,前者的分解速率常数降低了9%,后者降低了20%.GAC在催化臭氧分解时主要起到吸附剂和还原剂的作用,FeOOH催化臭氧分解过程中促进了羟基自由基生成.氧化物表面羟基密度和催化臭氧氧化水中硝基苯的效果之间没有直接的关系,由氧化物的pHzpc决定的表面电荷状态与催化氧化效果有关,表面接近电中性时对催化氧化硝基苯有利.高密度的表面羟基会使表面羟基之间形成较强的氢键,使催化作用减弱.  相似文献   

5.
有机酸在金属氧化物上的吸附对催化臭氧氧化的影响   总被引:2,自引:0,他引:2  
张涛  马军  陈忠林  齐虹  郭瑾 《环境科学》2005,26(5):85-85-88
以苯甲酸(BA)、邻苯二甲酸(PA)、商品腐殖酸(CHA)和反渗透法提取的松花江水腐殖酸(SHA)为目标物,研究了臭氧氧化及羟基氧化铁(FeOOH)和二氧化铈(CeO2)为催化剂时的吸附与催化臭氧氧化去除这些有机物的效果.结果表明,BA在FeOOH表面没有吸附,FeOOH对BA催化氧化的去除率比臭氧单独氧化高45%;PA在FeOOH上的吸附使其溶液中的浓度减少了5%,此时FeOOH对PA的氧化没有催化作用.CeO2有助于催化臭氧氧化在其表面吸附较强的PA,且对氧化产生的草酸根有催化去除作用,但对不吸附在其表面的BA没有催化臭氧氧化作用.CeO2对腐殖酸的吸附比FeOOH强,其催化臭氧氧化去除腐殖酸的作用比FeOOH更显著;当无机阴离子和腐殖酸竞争金属氧化物表面的吸附位时,催化作用受到抑制.  相似文献   

6.
O3/TiO2催化氧化工艺对饮用水中AOC的影响   总被引:3,自引:0,他引:3  
以陶粒、硅胶和沸石为载体,分别负载二氧化钛(TiO2)进行臭氧催化氧化去除硝基苯的实验,并对饮用水中生物可同化有机碳(AOC)所代表的小分子有机物(酮、醛、醇和羧酸类物质)的生成情况进行了研究.发现臭氧催化氧化比单纯的臭氧氧化能更彻底地将部分大分子有机物氧化成小分子中间产物,陶粒、硅胶和沸石负载TiO2 3种催化剂分别将AOC从大约300μg·L-1增加到674.1 μg·L-1、847.2μg·L-1和882.1μg·L-1,并且分别使AOC/TOC从原水的4.68%升高到30.5%、33.21%和46.04%,大大地提高了水中有机物的可生物降解性.如果增加臭氧投量,催化氧化可使小分子有机物部分被氧化,致使水样AOC又略有回降.在这一过程中,AOC-NOX所代表的羧酸类物质急剧增加,达到总AOC的90%以上,取代AOC-P17成为了AOC的主体组成部分.  相似文献   

7.
为提高185nm真空紫外光下甲醛与副产物臭氧的分解效率,以MnOx-TiO2复合催化剂取代TiO2光催化剂,发现甲醛与臭氧的转化率分别从44.7%和38.7%提高到77.5%和96.8%.研究比较了真空紫外光下和暗态下(加臭氧)甲醛与臭氧在MnOx-TiO2催化剂上的分解性能,及UV254nm下光催化分解甲醛的效率.结果表明,真空紫外光下气相活性氧物种的氧化与MnOx表面的臭氧催化氧化过程是甲醛分解的主要途径,而MnOx-TiO2上光催化氧化甲醛效率很低;副产物臭氧主要于MnOx表面活性位上由热催化分解.用真空紫外光辐照MnOx-TiO2催化剂,可提高MnOx催化分解臭氧的稳定性.  相似文献   

8.
水中天然有机物的臭氧强化光催化降解研究   总被引:5,自引:0,他引:5  
简丽  张彭义  毕海 《环境科学学报》2005,25(12):1630-1635
研究了饮用水源中大分子天然有机物(NOM)的臭氧强化光催化降解,考察了臭氧投加量、反应时间和HCO3^-浓度对NOM降解速率的影响;分析了臭氧强化光催化过程中NOM相对分子质量的变化,并比较不同相对分子质量大小NOM的降解速率.研究结果表明,臭氧强化光催化比单独臭氧氧化、光催化能更有效地降解NOM,同时增加臭氧投加量和反应时间才能有效提高臭氧强化光催化对TOC的去除率,而单独增加臭氧投加量可显著提高生物可降解性;HCO3^-显著降低光催化的降解效果,臭氧强化光催化能有效地减弱HCO3^-的不利影响;臭氧强化光催化过程中大分子NOM分解为小分子,SUVA值迅速下降,且相对分子质量越大矿化速度越快.  相似文献   

9.
再生水中有机物的臭氧氧化研究   总被引:1,自引:0,他引:1  
以某城市污水处理厂深度处理的反硝化生物滤池出水为原水,研究了臭氧氧化对再生水中有机物的去除效果及臭氧氧化后醛类的生成规律.结果表明,臭氧能有效降解水中有机物,臭氧投加量为8 mg·L~(-1)时,DOC、UV254、色度的去除率分别为9.5%、45.6%和80.2%.三维荧光光谱荧光峰各区的荧光强度均随臭氧投加量的增加而降低,臭氧投加量为4 mg·L~(-1)时,再生水中的微生物代谢产物和腐殖质类物质的去除率分别为65.8%和63.2%.臭氧氧化产生的醛类副产物中甲醛和乙醛是主要的组成部分,当O3/DOC(质量浓度比)=1.1时,除丙烯醛外,其他几种醛类的浓度均达到最大值;臭氧氧化能够降低后续氯消毒过程中三卤甲烷类消毒副产物的生成浓度,对三卤甲烷生成潜能(THMFP)的去除率为17%.  相似文献   

10.
臭氧-生物活性炭对有机物分子量分布的影响   总被引:3,自引:0,他引:3       下载免费PDF全文
测定了南方某水厂中试规模的臭氧-生物活性炭工艺不同处理阶段(原水、沉淀水、砂滤水、臭氧化水、生物活性炭出水)有机物(TOC和UV254)的分子量(MW)分布.分析了原水中生物可同化有机碳(AOC)的分子量分布.结果表明,AOC主要属于天然有机物(NOM)中MW<1kDa的部分.MW<1kDa的部分占可溶解性有机碳(DOC)的53%~67%,而AOC只占DOC的2.65%~5.91%,表明去除大部分DOC的臭氧-生物活性炭工艺并不能有效去除AOC.  相似文献   

11.
Endocrine disrupting chemicals (EDCs) in the secondary effluent discharged from wastewater treatment plants (WWTPs) are of great concern in the process of water reuse. Ozonation has been reported as a powerful oxidation technology to eliminate micropollutants in water treatment. Due to the complexity of the wastewater matrix, orthogonal experiments and single factor experiments were conducted to study the influence of operational parameters on the degradation of 17αup-ethinylestradiol (EE2) in the synthetic secondary effluent. The results of the orthogonal experiments indicated that the initial ozone and natural organic matter (NOM) concentration significantly affected EE2 degradation efficiency, which was further validated by the single factor confirmation experiments. EE2 was shown to be effectively degraded by ozonation in the conditions of low pH (6), NOM (10 mg/L), carbonate (50 mg/L), but high suspended solid (20 mg/L) and initial ozone concentration (9 mg/L). The study firstly revealed that the lower pH resulted in higher degradation of EE2 in the synthetic secondary effluent, which differed from EDCs ozonation behavior in pure water. EE2 degradation by ozone molecule instead of hydroxyl radical was proposed to play a key role in the degradation of EDCs by ozonation in the secondary effluent. The ratio between O3 and TOC was identified as an appropriate index to assess the degradation of EE2 by ozonation in the synthetic secondary effluent.  相似文献   

12.
郭瑾  马军 《环境科学》2007,28(3):556-562
为进一步明确臭氧预氧化对颗粒的脱稳作用,选用氧化铝(α-Al2O3)作为悬浮颗粒,考察了臭氧氧化后天然有机物(natural organic matters,NOM)特性及吸附行为的变化.结果表明,臭氧氧化能够破坏NOM的芳香结构,SUVA值降低25%~35%,氧化后酸性官能团含量增多,总酸度增加0.3~1.4 mmol·g-1,分子量和极性的变化与NOM的性质有关;有机物初始浓度相对于臭氧投量较低时,NOM的溶解性增强,与其酸性官能团增加产生的吸附促进作用相抵消,因而吸附性能出现不变甚至降低的现象;有机物初始浓度较高时,臭氧能够起到强化NOM吸附的作用.采用2.5 mg·L-1臭氧进行氧化后,以商用腐殖酸为代表的NOM的吸附形貌,由密集分布的球形对称聚集结构向网状结构过渡,分子之间的交联作用十分明显,吸附高度低于其氧化处理前,云母的表面覆盖率较氧化前略有提高.  相似文献   

13.
Reactivity of chlorine towards hydrophobic groups present in natural organic matter(NOM)provokes the formation of carcinogenic disinfection byproducts such as trihalomethanes in chlorinated water. The present study aimed to investigate the variations in coagulant activity of alum using two different bioflocculants(coagulant aid) namely, Moringa oleifera and Cyamopsis tetragonoloba for the removal of hydrophobic fractions of NOM and subsequent chlorine consumption by treated water. Effect of dual coagulants on trihalomethane surrogate parameters such as total organic carbon, dissolved organic carbon, UV absorbing materials and prominent hydrophobic species such as phenolic groups along with aromatic chromophores, polyhydroxy aromatic moiety have also been studied. The concept of differential spectroscopy and absorbance slope index has been employed to understand the combined effects of alum-bioflocculants on the reactivity of NOM with chlorine. Our result shows that the combination of alum and C. tetragonoloba is more efficient for reducing trihalomethane surrogates from chlorinated water as compared to M. oleifera. C. tetragonoloba elicited synchronized effects of sweep coagulation and particle bridging-adsorption which eventually facilitated efficient removal of hydrophobic fractions of NOM. The variation in the mechanistic approach of bioflocculants was due to the presence of cationic charge on M. oleifera and adhesive property of C. tetragonoloba.  相似文献   

14.
XAD-8 resin isolation of organic matter in water was used to divide organic matter into the hydrophobic and hydrophilic fractions. A pilot plant was used to investigate the change in both fractions during conventional and advanced treatment processes. The treatment of hydrophobic organics (HPO), rather than hydrophilic organicas (HPI), should carry greater emphasis due to HPO’s higher trihalomethane formation potential (THMFP) and haloacetic acid formation potential (HAAFP). The removal of hydrophobic matter and its transmission into hydrophilic matter reduced ultimate DBP yield during the disinfection process. The results showed that sand filtration, ozonation, and biological activated carbon (BAC) filtration had distinct influences on the removal of both organic fractions. Additionally, the combination of processes changed the organic fraction proportions present during treatment. The use of ozonation and BAC maximized organic matter removal e ciency, especially for the hydrophobic fraction. In sum, the combination of pre-ozonation, conventional treatment, and O3-BAC removed 48% of dissolved organic carbon (DOC), 60% of HPO, 30% of HPI, 63% of THMFP, and 85% of HAAFP. The use of conventional treatment and O3-BAC without pre-ozonation had a comparable performance, removing 51% of DOC, 56% of HPO, 45% of HPI, 61% of THMFP, and 72% of HAAFP. The e ectiveness of this analysis method indicated that resin isolation and fractionation should be standardized as an applicable test to help assess water treatment process e ciency.  相似文献   

15.
Systematic investigation on enhancing removal of natural organic matter (NOM) using inorganic polymer flocculant (IPF), polyaluminum chloride(PACI) and polyacrylamide(PAM) was performed in a typical south-China source water. Enhanced coagulation and applying polymer flocculant-aid were compared through jar tests and pilot tests. Raw water and settled water were characterized and fractionated by resin adsorption. The results show that DOC composes major part of TOC. The DOC distribution keeps relatively stable all around the year with typical high amounts of the hydrophilic matter around 50%. The distribution between HoB, HoA and HoN varies and undergoes fluctuation with the year round. During the summer season, the HoN becomes gradually the major part in hydrophobic parts. PACI with the species being tailor-made shows little pH effect during coagulation. The enhanced coagulation dosage for PACI could be 4.5 mg/L for the typical source water. The highest TOC removal achieved 31%. To be economically, 3 mg/L dose is the optimum dosage. Although hydrophilic fractions of NOM of both treatment strategies are removed about 30%, NOM causing UV254 absorbance were well removed(about 90%). Hydrophobic bases and acids fractions are much more removed under enhanced conditions. The hydrophilic fraction could be better removed using PAM, the polymer coagulant aid.  相似文献   

16.
研究目的在于调查寒冷季节城市污水处理厂出水中天然有机物化学组分分级,探讨各分级组分与消毒副产物生成潜能间之关系。采集污水厂二级出水,以三种不同树脂把污水厂出水中有机物分离成六类不同组分,其中A水厂含量最高的物质为亲水酸性物质(33%)而B水厂的疏水性中性物质含量最多约占总有机物的64%。从总体来看两水厂的疏水性物质含量大于亲水性物质含量,疏水性物质的三卤甲烷生成势也较大,是水体中消毒副产物的主要前驱物质。疏水性有机物质较多,代表受生活污水污染严重,得知该城市污水主要受民生污染较多。  相似文献   

17.
This work aims at characterizing organic matter produced by an alga Euglena gracilis and a cyanobacteria Microcystis aeruginosa and assessing the evolution of its characteristics during growth. A culture medium was optimized. The species growth phases were monitored using both visible spectrophotometry and flow cytometry cell counting. Organic matter fractionation according to hydrophobicity and specific UV absorbance (SUVA) index were used to specifically characterize the produced algal organic matter (AOM). The AOM characteristics were both growth phase and species dependent. However, a similar evolution was observed. The hydrophilic fraction (HPI) was the major fraction whatever the growth phases and was almost the only one produced during lag and exponential phases. It represented around 75% of AOM during exponential phase and then decreased when the stationary phase appeared. It represented 46% and 60% of the AOM during late decline phase for the cyanobacteria and the alga respectively. The hydrophobic (HPO) and transphilic (TPH) fractions started to appear from the beginning of the stationary phase with more hydrophobic compounds coming from intracellular organic material of dying cells. HPO and TPH percentages still increased during the decline phase probably because of two additional processes: photo-dissolution and leaching of particulate organic matter from cells fragments. A comparison of AOM during late decline phase and natural organic matter (NOM) from Glane River (France) underlined that AOM was more hydrophilic and presented a lower SUVA for each fractions than NOM. However, the difference between NOM and AOM hydrophobicity narrowed during decline phase.  相似文献   

18.
松花江水中天然有机物的提取分离与特性表征   总被引:13,自引:4,他引:9  
郭瑾  马军 《环境科学》2005,26(5):77-77-84
将反渗透与XAD大孔树脂吸附技术相结合,对松花江水中天然有机物(NOM)进行了浓缩和分离,并采用紫外光谱、红外光谱、液相凝胶色谱、官能团滴定1、HNMR核磁共振等分析手段,对松花江水中NOM及其各分离组分和一种商用腐殖酸CHA的特性进行了比较和表征.结果表明,利用反渗透进行NOM浓缩对水中有机物具有很高的回收率;松花江水中NOM组成为:富里酸>腐殖酸>亲水部分;各组分芳香性为:腐殖酸>憎水部分>富里酸>亲水部分,E4/E6与芳香性之间缺乏必然的联系;腐殖酸和商用腐殖酸具有较高的不饱和性,NOM和亲水部分次之,憎水部分和富里酸中饱和烃含量较多;紫外吸收较弱的有机成分对NOM分子量的贡献较大;NOM及其分离组分的总酸度为9.84~12.15meq/g,羧酸含量为CHA>亲水>憎水>NOM>富里酸>腐殖酸;NOM及其各分离组分的溶解性有机物构成以脂肪烃为主.  相似文献   

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