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1.
MBR出水氯、紫外、臭氧单独与组合消毒   总被引:1,自引:0,他引:1  
采用氯、紫外和臭氧单独与2种组合工艺对MBR工艺中试出水进行了消毒实验,研究了不同消毒方式对指示性微生物的去除效果以及消毒副产物三卤甲烷(THMs)生成量随有效氯投加量的变化。结果表明,组合工艺消毒效果明显优于单独消毒效果,紫外剂量为25 mJ/cm2与有效氯投加量为3 mg/L的紫外与氯组合、臭氧投加量为6 mg/L与有效氯投加量为4 mg/L的臭氧与氯组合2种工艺消毒后出水中的总大肠菌群指标均满足《污水再生利用城市杂用水水质》(GB/T 18920-2002)的要求。THMs生成量随着有效氯投加量的增加而增加。相对紫外与氯组合消毒,臭氧与氯组合消毒可以大幅度降低THMs生成量,有效氯投加量为4 mg/L时,THMs生成浓度为14.11μg/L,比氯单独消毒过程降低了37.19%。  相似文献   

2.
乐果是常规饮用水处理技术难以去除的一种典型有机磷农药。为了能够控制并去除饮用水中的农药残留,达到进一步净化水质的目的,建立了降解动力学模型,采用模拟降解饮用水中乐果的方法,对比了乐果在紫外(UV)、氯(Cl2)、紫外/氯(UV/Cl2)、真空紫外/紫外(VUV/UV)和真空紫外/紫外/氯(VUV/UV/Cl2)5种工艺下的去除效果,并考察了乐果初始浓度、Cl2投加量、溶液p H、水中共存天然有机物(NOM)和无机阴离子(N O_3~-、Cl-、HCO_3~-、SO_4~(2-))对VUV/UV/Cl2工艺降解乐果的影响。结果表明:VUV/UV/Cl2对乐果的降解效率最高,乐果的去除率随其初始浓度的增加而减小;适当增加Cl2投加量,可提高乐果的降解效率;提高p H有利于乐果的降解;NOM对乐果的降解有一定的抑制作用;水中共存无机阴离子NO_3~-、Cl-和HCO_3~-可以捕获反应体系中的强氧化性羟基自由基(HO·),对乐果的降解起到抑制作用,而SO_4~(2-)因其捕获HO·的速率很低,无抑制作用。  相似文献   

3.
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   

4.
聚合氯化铝与粉末活性炭联合强化混凝处理垃圾渗滤液   总被引:1,自引:0,他引:1  
研究了联合粉末活性炭与聚合氯化铝(PAC)强化混凝对垃圾渗滤液原水的处理效果。结果表明,在原水COD为4 100 mg/L、浊度为147 NTU、UV254为20的条件下,粉末活性炭的加入可以有效增加垃圾渗滤液中有机物的去除率,PAC投加量为0.6 g/L时,投加0.6 g/L粉末活性炭,COD的去除率由21.6%提高到29.1%,UV254去除率由29.8%提高到39.9%,剩余浊度由138 NTU降到133 NTU。该强化混凝过程使原水中溶解性小分子有机物的去除率提高显著,PAC投加量为0.6 g/L时,投加0.6 g/L粉末活性炭,在分子量小于1 kDa的范围内,UV254去除率由2.9%上升为10%。  相似文献   

5.
以实际印染厂二级生化出水为处理对象,以COD、色度、UV254为评价指标,采用先絮凝沉淀后臭氧氧化及先臭氧氧化后絮凝沉淀2种工艺分别进行印染废水深度处理实验。结果表明,当进水水质为:COD 80~120 mg/L、UV2540.30~0.70、色度72~84倍,在絮凝剂投加量为13.5 mg/L、臭氧投加量为16 mg/L、氧化反应30 min时,先絮凝沉淀后臭氧氧化工艺出水的COD、UV254、色度平均值分别为45.1 mg/L和0.11、4倍;在臭氧投加量为16 mg/L、氧化反应30 min、絮凝剂投加量为10.1 mg/L时,先臭氧氧化后絮凝沉淀工艺出水的COD、UV254、色度分别为45 mg/L和0.10、4倍,说明2种工艺均是可行的,且先臭氧氧化后絮凝沉淀为较优工艺。  相似文献   

6.
引黄水臭氧预氧化强化混凝处理及安全性研究   总被引:1,自引:0,他引:1  
分析了山西省太原段的引黄水水质,探讨了臭氧预氧化强化混凝处理引黄水的适用性、处理效果及安全性。结果表明,引黄水原水中的COD含量较高,而Br-未检出,提示可以采用臭氧预氧化强化混凝处理;总体来说,臭氧低投加量(0.52~0.98mg/L)时的助凝效果更为显著,在不同的聚合氯化铝(PAC)投加量下的除浊效果都优于常规混凝处理;单独投加臭氧时,随着臭氧投加量的增加,水体紫外吸光度(UV254)逐渐降低,当臭氧投加量为2.52mg/L时,UV254去除率为44%;虽然常规混凝处理即可控制出水的浊度和UV254,但由于混凝剂投加量大,综合效益较低,而臭氧预氧化在一定程度上能起到助凝作用,也能对水体UV254起到良好的控制作用;从甲醛、BrO3-产生量控制的角度来看,太原段引黄水水质适用臭氧预氧化强化混凝处理,安全性较好。  相似文献   

7.
臭氧作为强氧化剂对有机物的氧化反应有选择性,能很快氧化分解木质素等发色有机物,中试研究了臭氧投加量、接触时间等对造纸废水生化处理出水深度处理的影响。结果表明:臭氧投加量为63.47~243.49mg/L时,COD、254nm紫外光下的吸光度(UV254)和色度去除率分别为22.61%~46.67%、22.35%~69.09%及55%~93%,其中色度有较高的去除率,即使在臭氧投加量仅为63.47mg/L时色度去除率也达到约55%;在接触时间为0.62~2.53h时,随着接触时间的延长,COD、UV254及色度去除率随之增加,而1.10h后色度去除率增加不多。以深度脱色为目标,完成了5 000m3/d的工程应用,臭氧相对投加率为0.20~0.50mg(以每毫克COD计)时,色度去除率为55.0%~84.0%。  相似文献   

8.
以工业废弃物为主要原料,经过同时聚合制备聚硅酸阳离子絮凝剂(PSiC)。实现硅酸缩合自聚、铁铝离子羟化聚合以及硅与铁铝离子聚合同步交互进行。利用PSiC处理印染废水,研究PSiC去除浊度、色度和和UV254的性能,分析其除污染机理。结果表明,PSiC处理印染废水时最佳投放量为80mg/L,此时浊度和色度去除率分别达到50%和90%。废水pH为7、PSiC投加量80mg/L时对印染废水UV254的去除率为65%。pH和投加量过大或过小都会降低PSiC去除UV254的效果。在混凝搅拌初期UV254迅速下降,停止搅拌后又略有所上升。沉淀初期UV254稍有波动,沉降10min后基本趋于稳定。  相似文献   

9.
造纸中段废水的混凝-臭氧氧化深度处理研究   总被引:15,自引:0,他引:15  
就混凝-臭氧氧化组合工艺对造纸中段废水生物处理出水的净化效果进行了研究.结果表明,Ca(OH)2对废水色度、TOC、COD和254 nm的紫外吸收值(UV254)的去除效果均优于聚合氯化铝/聚丙烯酰胺(PAC/PAM);Ca(OH)2-O3组合工艺的处理效果也优于PAC/PAM-O3工艺.当Ca(OH)2投加量为1 g/L、臭氧投加量为50 mg/L时,废水色度降低至10倍以下,COD小于150 mg/L.经Ca(OH)2混凝处理后,相对分子量在0.5~1.0 ku和10.0 ku以上的有机物显著减少;进一步臭氧氧化处理后,除0.5 ~1.0 ku范围的有机物大幅度增加外,其余分子量有机物显著减少.由于对色度贡献很大的大分子量物质的去除,废水的色度显著下降直至无色.  相似文献   

10.
采用紫外(UV)/TiO_2/H_2O_2去除水中聚丙烯酰胺(PAM),研究了H_2O_2投加量、TiO_2投加量、UV光照强度以及PAM初始浓度等因素对PAM去除效果的影响,并对降解体系是否产生丙烯酰胺单体(AM)进行验证。试验结果表明,在20℃、H_2O_2投加量为20mmol/L、催化剂TiO_2投加量为10mg/L、PAM初始质量浓度为100mg/L,UV光照强度为140μW/cm~2时,反应120min后的PAM去除率达97.4%,且无AM产生。  相似文献   

11.
A study on chlorination of raw greywater with hypochlorite is reported in this paper. Samples were chlorinated in a variety of conditions, and residual chlorine (Cl2) was measured spectrophotometrically. For each sample, the chlorination curve (chlorine residuals versus chlorine dose) was obtained. Curves showed the typical hump-and-dip profile attributable to the formation and destruction of chloramines. It was observed that, after reactions with strong reductants and chloramines-forming compounds, the remaining organic matter exerted a certain demand of chlorine. The evolution of chlorination curves with addition of ammonia and dodecylbencene sulfonate sodium salt and with dilution of the greywater sample were studied. In addition, chlorination curves at several contact times have been obtained, resulting in slower chlorine decay in the hump zone than in the dip zone. In addition, the decay of coliforms in chlorinated samples was also investigated. It was found that, for a chlorination dosage corresponding to the maximum of the hump zone (average 8.9 mg Cl2/ L), samples were negative in coliforms after 10 to 30 minutes of contact time. After-growth was not observed within 3 days after chlorination. Implications in chlorination treatments of raw greywater can be derived from these results.  相似文献   

12.
Yamamoto T  Yasuhara A 《Chemosphere》2002,46(8):1215-1223
The chlorination of bisphenol A (BPA) in aqueous media was investigated in order to describe the degradation profile of this compound and the formation of chlorinated products. Aqueous solutions of BPA (approx. 1 mg/l) were chlorinated by sodium hypochlorite solution at room temperature and under weakly alkaline conditions. Chlorinated compounds were extracted with dichloromethane and determined by gas chromatography/mass spectrometry (GC/MS). BPA was consumed completely within 5 min of chlorination, when the initial chlorine concentration was 10.24 mg/l (molar ratio to BPA, 58.7). On the other hand, when the initial chlorine concentration was 1.03 mg/l (molar ratio, 6.56), 9.3% of BPA still remained after 60 min chlorination. Five chlorinated BPA congeners, 2-chlorobisphenol A (MCBPA), 2,6-dichlorobisphenol A (2,6-D2CBPA), 2,2'-dichlorobisphenol A (2,2'-D2CBPA), 2,2',6-trichlorobisphenol A (T3CBPA) and 2,2', 6,6'-tetrachlorobisphenol A (T4CBPA) were formed in the earlier stages of chlorination. Several chlorinated phenolic compounds, 2,4,6-trichlorophenol (T3CP), 2,6-dichloro-1,4-benzoquinone (D2CBQ), 2,6-dichloro-1,4-hydroquinone (D2CHQ), C9H10Cl2O2, C9H8Cl2O and C10H12Cl2O2, were also formed by further chlorination.  相似文献   

13.
Yu RF 《Chemosphere》2004,56(10):973-980
In this study, a simple automatic pH-ORP titration device was developed for identifying the various ammonia concentrations and chlorine dose requirements for wastewater chlorination by identifying the peaks in the ORP-slope profiles and knees/valleys in the pH profiles. In addition, breakpoint chlorination experiments have shown that the ORP values at the monochloramine humps and breakpoints are linearly correlated with the ammonia concentrations. Therefore, a feed-forward control strategy, based on the chlorine/ammonia weight ratio (Cl/N), is proposed in this paper, to control the chlorine doses for a continuous wastewater chlorination experiment in a laboratory-scale reactor. The result of this continuous wastewater chlorination experiment has shown that the pH-ORP titration was able to precisely determine the variations of ammonia concentrations in the chlorination influent. Under this control strategy, effective and stable disinfection efficiencies in terms of total coliform count were obtained.  相似文献   

14.
Chlorination is often used to control filamentous bulking in activated sludge systems. Pure culture and mixed-liquor experiments showed that soluble potassium (K+) concentrations increased by 2.4 mg/L (80%) and 1.5 to 3.6 mg/L (11 to 30%) in the bulk liquid phase of pure and activated sludge cultures that were exposed to chlorine, relative to unchlorinated controls. Effluent turbidity and total suspended solids from settled mixed liquor increased significantly in both short-term batch and sequencing batch reactor experiments when chlorine mass load increased above 6 milligrams of chlorine per gram mixed liquor volatile suspended solids (mg Cl2/g MLVSS) in a single dose, which correlated with a localized chlorine concentration at the dose point of 10 mg/L as Cl2 or greater. The results support the hypothesis that the glutathione-gated potassium efflux (GGKE) bacterial stress response may contribute to increased effluent turbidity associated with high doses of mixed-liquor chlorination. It is suggested that potassium is a useful parameter to monitor at full-scale facilities when determining chlorine mass doses that should be used to control filaments and minimize increases in effluent turbidity.  相似文献   

15.
通过对松花江水进行大量实验 ,找出TOC的含量、投氯量、温度和 pH值等对氯仿形成的定量关系 ,确定了饮用水氯化的优化条件 ,使饮用水氯化过程中形成的氯仿含量不超过国家饮用水的标准  相似文献   

16.
Antibiotic-resistant bacteria are an emerging threat to public health during drinking water consumption and reclaimed water reuse. Several studies have shown that the proportions of antibiotic-resistant bacteria in waters may increase when exposed to low doses of UV light or chlorine. In this study, inactivation of tetracycline-resistant Escherichia coli and antibiotic-sensitive E. coli by UV disinfection and chlorination was compared to determine the tolerance of tetracycline-resistant E. coli to UV light and chlorine, and tetracycline resistance of a tetracycline-resistant E. coli population was studied under different doses of the disinfectants. Our results showed that relative to antibiotic-sensitive E. coli, tetracycline-resistant E. coli had the same tolerance to UV light and a potentially higher tolerance to chlorination. The mortality frequency distributions of tetracycline-resistant E. coli exposed to tetracycline were shifted by both chlorination and UV disinfection. When compared to the hemi-inhibitory concentrations (IC50) of tetracycline-resistant E. coli with no exposure to UV or chlorination, the IC50 of tetracycline-resistant E. coli treated with tetracycline was 40% lower when inactivation by UV light or chlorination reached 3-log but was 1.18 times greater when inactivation by chlorination reached 4.3-log. Chlorination applied to drinking water or reclaimed water treatment may increase the risk of selection for highly tetracycline-resistant E. coli.  相似文献   

17.
Samples from two Dutch raw water sources were chlorinated in the laboratory at different pH:s and chlorine doses, and were analysed for mutagenic activity and the mutagenic compound 3-chloro-4-(dichloromethyl)-5-hydroxy-2(5H)-furanone (MX). Chlorination produced mutagenic activity as well as MX in both waters. The formation of MX was favoured by acidic reaction conditions and high chlorine doses, but in waters treated with excess chlorine at pH 9, no MX was detected. The mutagenicity was approximately on the same level after chlorination of both water types but the MX concentration was significantly higher in the water containing mainly humic material.

MX was found to be quantitatively extracted from acidified waters by the XAD resin adsorption technique.  相似文献   


18.
Ryu JY  Mulholland JA  Chu B 《Chemosphere》2003,51(10):1031-1039
Dibenzofuran (DF) is formed from phenol and benzene in combustion gas exhaust streams prior to particle collection equipment. Subsequent chlorination at lower temperatures on particle surfaces is a potential source of chlorinated dibenzofuran (CDF). Gas streams containing 8% O2 and approximately 0.1% DF vapor were passed through particle beds containing copper (II) chloride (0.5% Cu, mass) at temperatures ranging from 200 to 400 °C to investigate the potential for CDF formation during particle collection. Experiment duration was sufficient to provide an excess amount of DF (DF/Cu=3). The efficiency of DF chlorination by CuCl2 and the distribution of CDF products were measured, with effects of temperature, gas velocity, and experiment duration assessed. Results of a more limited investigation of dibenzo-p-dioxin (DD) chlorination by CuCl2 to form chlorinated DD (CDD) products are also presented.

The efficiency of DF/DD chlorination by CuCl2 was high, both in terms of CuCl2 utilization and DF/DD conversion. Total yields of Cl on CDF/CDD products of up to 0.5 mole Cl per mole CuCl2 were observed between 200 and 300 °C; this suggests that nearly 100% CuCl2 was utilized, assuming a conversion of two moles of CuCl2 to CuCl per mole Cl added to DD/DF. In a short duration experiment (DF/Cu=0.3), nearly 100% DF adsorption and conversion to CDF was achieved. The degree of CDF chlorination was strongly dependent on gas velocity. At high gas velocity, corresponding to a gas–particle contact time of 0.3 s, mono-CDF (MCDF) yield was largest, with yields decreasing with increasing CDF chlorination. At low gas velocity, corresponding to a gas–particle contact time of 5 s, octa-CDF yield was largest. DF/DD chlorination was strongly favored at lateral sites, with the predominant CDF/CDD isomers within each homologue group those containing Cl substituents at only the 2,3,7,8 positions. At the higher temperatures and lower gas velocities studied, however, broader isomer distributions, particularly of the less CDD/CDF products, were observed, likely due to preferential destruction of the 2,3,7,8 congeners.  相似文献   


19.
Six strains of white rot fungi were tested for their biodegradation ability of low chlorinated polychlorinated biphenyl (PCB) commercial mixture (Delor 103) in real soil system. Phanerochaete chrysosporium and Trametes versicolor did not show any ability to degrade PCBs in soil. On the contrary, four strains of Pleurotus ostreatus were able to remove about 40% of Delor 103 in two months. All P. ostreatus strains decomposed PCBs selectively with the preference for congeners with chlorine atoms in ortho > meta > para position. Degradation efficiency decreased with increasing number of chlorination.  相似文献   

20.
Ryu JY 《Chemosphere》2008,71(6):1100-1109
Formation of polychlorinated dibenzo-p-dioxins (PCDDs), polychlorinated dibenzofurans (PCDFs), and chlorinated phenols on CuCl(2) from unsubstituted phenol and three monochlorophenols was studied in a flow reactor over a temperature range of 100-425 degrees C. Heated nitrogen gas streams containing 8.0% oxygen were used as carrier gas. The 0.00024mol of unsubstituted phenol and 0.00039mol of each monochlorophenol were passed through a 1g and 1cm SiO(2) particle containing 0.5% (Cu by mass) CuCl(2). Chlorination preferentially occurred on ortho-(2, 6) and para-(4) positions. Chlorination increased up to 200 degrees C, and thereafter decreased as temperature increased. Chlorination of phenols plays an important role in the formation of the more chlorinated PCDD/Fs. Chlorinated benzenes are formed possibly from both chlorination of benzene and chlorodehydroxylation of phenols. Chlorinated phenols with ortho chlorine formed PCDD products, and major PCDD products were produced via loss of one chlorine. For PCDF formation, at least one unchlorinated ortho carbon was required.  相似文献   

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