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1.
为探明典型炼化废水处理系统(简称“系统”)生物毒性削减效果、主要致毒物质类别及微生物功能响应关系,以费氏弧菌和鼠伤寒沙门氏菌为受试生物,测试系统沿程生物急性毒性及遗传毒性,并结合毒性鉴别评价方法甄别系统主要致毒物质,同时利用高通量测序技术探究系统微生物功能结构与主要致毒物质响应关系.结果表明:(1)系统沿程生物毒性总体呈下降趋势,生化处理单元进水为急性毒性微毒、遗传毒性阳性.其中,炼油废水急性毒性总削减率为86.514%,遗传毒性总削减率为96.221%;化工废水急性毒性总削减率为53.281%,遗传毒性总削减率为62.273%.(2)通过毒性鉴别评价方法 (toxicity identification evaluation,TIE)结果推断,炼油废水主要致毒物质可能为阳离子金属及非极性有机物,化工废水主要致毒物质可能为阳离子金属.(3)CCA分析表明,NH3-N浓度(r=0.819,p=0.001)、Cr浓度(r=0.777,p=0.002)、TPH (total petroleum hydrocarbon,总石油烃)浓度(r=0.752,p=0.002)与生化处理前微生物群落结构...  相似文献   

2.
城市污水中的生物毒性及其臭氧削减效果研究   总被引:3,自引:1,他引:2  
分别利用酵母双杂交和umu试验对5个城市9个污水处理厂进出水中生物遗传毒性和视黄酸受体(BAR)结合活性进行了调查.并考察了臭氧氧化对这两种生物效应的去除效果.结果表明,城市污水中存在不同程度的生物遗传毒性和视黄酸受体(RAR)结合活性,通过生物处理可以大幅削减污水中的RAR结合活性和生物遗传毒性,但污水厂出水中仍然普遍具有遗传毒性,部分残留RAR结合活性.5~10mg·L-1的臭氧可以有效削减二级出水中残留的BAR结合活性和遗传毒性,是一种有效的提高水质安全性的污水深度处理技术.  相似文献   

3.
The wastewater effluent from Radix aconiti processing, an important step in the production processes of traditional Chinese medicine (TCM), is a type of toxic wastewater and difficult to treat. Plasma oxidation methods have emerged as feasible techniques for effective decomposition of toxic organic pollutants. This study examined the performance of a plasma reactor operated in a dielectric barrier discharge (DBD) to degrade the effluent from R. aconiti processing. The effects of treatment time, discharge voltage, initial pH value and the feeding gas for the reactor on the degradation of this TCM wastewater were investigated. A bacterium bioluminescence assay was adopted in this study to test the toxicity of the TCM wastewater after non-thermal plasma treatment. The degradation ratio of the main toxic component was 87.77% after 60 min treatment with oxygen used as feed gas and it was 99.59% when the initial pH value was 8.0. High discharge voltage and alkaline solution environment were beneficial for improving the degradation ratio. The treatment process was found to be capable of reducing the toxicity of the wastewater to a low level or even render it non-toxic. These experimental results suggested that the DBD plasma method may be a competitive technology for primary decomposition of biologically undegradable toxic organic pollutants in TCM wastewater.  相似文献   

4.
某制药废水对发光细菌急性毒性的评价研究   总被引:1,自引:6,他引:1  
采用发光细菌法测试某制药厂废水处理站工艺流程中5个节点废水的急性毒性.地下调节池水样EC50为3.44%,TUa为29,LID为625,为极强/高毒废水;地上调节池水样EC50为2.46%,TUa为41,LID为244,为极强/高毒废水;中间沉淀池水样EC50大于100%,LID=10,毒性较弱;二级沉淀池和总排放出口的废水EC50均大于100%,且LID均为1,无毒性.结果表明,现有处理工艺流程有效降低了制药废水对发光细菌的急性毒性,总排出口废水对发光细菌已经没有可见的生物毒性,达到相关制药废水排放标准.同时发现,低浓度废水对发光细菌的发光度不但没有抑制,反而有一定的增强作用.  相似文献   

5.
羊角月牙藻在制药废水毒性评价中的应用   总被引:1,自引:0,他引:1       下载免费PDF全文
以羊角月牙藻(FACHB-271 Selenastrum capricornutum)作为测试生物,分别采用EC50(半数抑制浓度)、TUa(急性毒性单位)和LID(最低无效应稀释度)指标对某制药厂污水处理站4个工艺节点和总出水排放口的水样进行急性毒性效应评价. 结果表明:地下调节池(工艺节点①)水样EC50为15.12%±3.82%,TUa为6.6,LID为16,为极毒/中毒废水;地上调节池(工艺节点②)水样EC50为15.81%±1.04%,TUa为6.3,LID为16,为极毒/中毒废水;中间沉淀池(工艺节点③)水样EC50为62.12%±3.83%,TUa为1.6,LID为8,为中毒/低毒废水;二级沉淀池(工艺节点④)水样EC50为89.10%±1.43%,TUa为1.1,LID为4,为低毒废水;总出水排放口水样EC50>100%,TUa<1,LID为1,为无毒或微毒废水. 经过各污水处理工艺节点后,制药废水对羊角月牙藻的急性毒性逐级减弱,并且毒性指标与ρ(CODCr)具有较好的线性关系. 研究还发现,采用毒性指标LID表征该制药废水的生物毒性,对废水样品的毒性分辨能力更强.   相似文献   

6.
印染废水处理回用工艺现状研究   总被引:1,自引:0,他引:1  
印染废水产生量大、有机物含量高、具有一定的毒害性,因此印染废水的回用是降低印染废水污染和印染用水消耗的重要途径,印染废水回用包括原废水和二级生化出水的处理回用。印染废水主要回用于印染生产过程,在以印染原废水处理回用时,典型工艺是生化处理+膜分离组合工艺;在以印染废水处理后的二级生化出水进行处理回用时,其典型工艺分别是超滤+反渗透组合工艺,工艺出水可回用于印染漂洗、染色等生产过程,实现废水厂内循环利用。  相似文献   

7.
石化工业园区有毒废水来源识别研究   总被引:4,自引:1,他引:3  
杨茜  于茵  周岳溪  陈学民  伏小勇  王淼 《环境科学》2014,35(12):4582-4588
针对石化废水对综合污水处理厂的毒性冲击问题,采用耗氧速率抑制试验评价不同石化废水对活性污泥的毒性,评价对象包括石化工业园区内不同生产装置和装置内不同生产节点的废水.试验发现废水的有机质含量与毒性效应之间没有直接的相关性,并不能单从废水的有机质含量预测其毒性.同时,研究中针对活性污泥敏感性在不同批次试验之间的差异问题,将各废水对活性污泥的毒性数据转化为标准毒性物质3,5-二氯苯酚的浓度,提高了数据之间的可比性.在此基础上,根据废水流量和对应3,5-二氯苯酚浓度,计算废水对应标准毒性物质质量排放负荷,作为评价废水毒性排放贡献的指标.对不同装置和节点石化废水的毒性贡献进行排序,有效识别了该石化工业园区内有毒废水的产生来源,为从生产源头控制废水毒性提供有效指导.  相似文献   

8.
印染废水处理过程中有机污染物及急性毒性变化规律研究   总被引:1,自引:0,他引:1  
我国印染废水排放量大,对于印染废水中典型毒害物质的控制日趋严格,且生物毒性控制越来越受到重视.因此,本文以掌握典型印染废水处理中污染物去除特性和毒性转化机制为目标,解析印染废水水质特征及其在典型处理工艺中的变化.结果发现,典型印染废水处理工艺对典型污染物的去除效率较好,出水COD、苯胺浓度、色度分别为46 mg·L~(-1)、0.86 mg·L~(-1)、6倍,去除效率分别为78%、95%、86%;但对急性毒性的控制不足,尤其是有机组分的急性毒性控制不足.典型印染废水处理中,生物曝气处理是控制典型污染物的主要阶段,对COD、色度、苯胺的去除效率分别达60%、23%、50%,对生物毒性的去除率为48%.氯氧化和混凝沉淀是保障印染废水中苯胺类有毒物质和色度达到排放标准的重要深度处理阶段,对色度、苯胺的去除效率分别为86%、95%;然而,深度处理却会引发印染废水急性毒性急剧升高,升高比例达150%.印染废水中的急性毒性组分包括有机组分和无机组分,生物曝气主要去除有机组分毒性;氯化深度处理会增加有机组分毒性和无机组分毒性,其中,无机组分毒性可通过还原脱氯削减,但有机组分毒性控制需综合考虑前处理阶段提质增效或实施氯氧化替代工艺.  相似文献   

9.
Photocatalytic oxidation (PCO) process is an effective way to deal with organic pollutants in wastewater which could be difficult to be degraded by conventional biological treatment methods. Normally the TiO2 powder in nanometre size range was directly used as photocatalyst for dye degradation in wastewater. However the titanium dioxide powder was arduous to be recovered from the solution after treatment. In this application, a new form of TiO2(i. e. pillar pellets ranging from 2.5 to 5.3 mm long and with a diameter of 3.7 mm) was used and investigated for photocatalytic degradation of textile dye effluent. A test system was built with a flat plate reactor(FPR) and UV light source(blacklight and solar simulator as light source respectively) for investigating the effectiveness of the new form of TiO2. It was found that the photocatalytic process under this configuration could efficiently remove colours from textile dyeing effluent. Comparing with the TiO2 powder, the pellet was very easy to recovered from the treated solution and can be reused in multiple times without the significant change on the photocatalytic property. The results also showed that to achieve the same photocatalytic performance, the FPR area by pellets was about 91% smaller than required by TiO2 powder. At least TiO2 pellet could be used as an alternative form of photocatalyst in applications for textile effluent treatment process, also other wastewater treatment processes.  相似文献   

10.
The reclamation and disinfection of waters impacted by human activities (e.g., wastewater effluent discharges) are of growing interest for various applications but has been associated with the formation of toxic nitrogenous disinfection byproducts (N-DBPs). Monochloramine used as an alternative disinfectant to chlorine can be an additional source of nitrogen in the formation of N-DBPs. Individual toxicity assays have been performed on many DBPs, but few studies have been conducted with complex mixtures such as wastewater effluents. In this work, we compared the cytotoxicity and genotoxicity of wastewater effluent organic matter (EfOM) before and after chloramination. The toxicity of chloraminated EfOM was significantly higher than the toxicity of raw EfOM, and the more hydrophobic fraction (HPO) isolated on XAD-8 resin was more toxic than the fraction isolated on XAD-4 resin. More DBPs were also isolated on the XAD-8 resin. N-DBPs (i.e., haloacetonitriles or haloacetamides) were responsible for the majority of the cytotoxicity estimated from DBP concentrations measured in the XAD-8 and XAD-4 fractions (99.4% and 78.5%, respectively). Measured DBPs accounted for minor proportions of total brominated and chlorinated products, which means that many unknown halogenated compounds were formed and can be responsible for a significant part of the toxicity. Other non-halogenated byproducts (e.g., nitrosamines) may contribute to the toxicity of chloraminated effluents as well.  相似文献   

11.
二氧化氯消毒前后污水毒性的变化及消毒条件的影响   总被引:2,自引:0,他引:2  
采用发光细菌试验和umu试验,分别考察了二氧化氯投加量和反应时间对污水二氧化氯消毒后急性毒性和遗传毒性变化的影响.结果表明,随着二氧化氯消毒剂投加量的增加,消毒后水样的急性毒性不断增大,但遗传毒性逐渐减小后趋于稳定.随着反应时间的延长,二氧化氯的消耗量不断增大,消毒后水样的急性毒性先增大后减小,遗传毒性逐渐减小后趋于稳定.由于消毒条件对污水急性毒性和遗传毒性有着不同的影响,说明污水中产生急性毒性和产生遗传毒性的物质不同,对于某一种污水,通过控制消毒条件可以使消毒后污水的急性毒性和遗传毒性都较低.  相似文献   

12.
The freshwater luminescent bacteria Vibrio-qinghaiensis sp.-Q67 test and the Vicia faba root tip test associated with solid-phase extraction were applied for cytotoxicity and genotoxicity assessment of organic substances in three rivers, two lakes and effluent flows from two wastewater treatment plants (WWTPs) in Xi'an, China. Although the most seriously polluted river with high chemical oxygen demand (COD) and total organic carbon (TOC) showed high cytotoxicity (expressed as TII50, the toxicity impact index) and genotoxicity (expressed as RMCN, the relative frequency of micronucleus), no correlative relation was found between the ecotoxicity and organic content of the water samples. However, there was a linear correlative relation between TII50 and RMCN for most water samples except that from the Zaohe River, which receives discharge from WWTP and untreated industrial wastewaters. The ecotoxicity of the organic toxicants in the Chanhe River and Zaohe River indicated that cytotoxic and genotoxic effects were related to the pollutant source. The TII50 and RMCN were also found to correlate roughly to the dissolved oxygen concentration of the water. Sufficient dissolved oxygen in surface water is thus proved to be an indicator of a healthy water environmental condition.  相似文献   

13.
废硅藻土在小城镇印染废水预处理中的应用   总被引:2,自引:0,他引:2  
随着小城镇的发展,多种行业的企业不断引进,逐渐形成了城镇的多产业型格局。青岛地区周边村镇的印染企业较多,产生的废水色度较大,这对适合于村镇的土地处理法会产生很大的影响,为了保证土地处理系统的出水水质,需要对进入土地处理系统的印染废水进行一定的预处理。文章通过对啤酒厂用于过滤后的废硅藻土对印染废水的脱色实验,以期找到一种较经济的小城镇印染废水预处理方法,同时实现废物再利用。实验研究表明,废硅藻土仍有吸附能力,具有再利用价值。它对实验选取的5种染料废水脱色效率均在50%以上;对阳离子染料脱色效果达到90%,效果最佳。因此废硅藻土在部分印染废水处理中可以替代常规混凝剂,大大降低处理成本。可以预测废硅藻土在印染废水预处理中的应用有很大潜力。  相似文献   

14.
介绍某化纤厂的废水处理经验,采用两级混凝气浮、水解酸化、多段接触氧化法的处理工艺:对废水处理站进行调试,并对在调试期间出现的问题进行整改;最终废水出水的各项水质指标均达到《污水综合排放标准》(GB 8978-1996)中的一级排放标准.  相似文献   

15.
张秋亚  马晓妍  王晓昌  游猛 《环境科学》2017,38(3):1084-1092
为了更加准确评估城市生活污水的综合生物毒性以及处理工艺对污水毒性的削减状况,本研究通过发光菌急性毒性、遗传毒性、雌激素活性检测方法对A~2/O工艺处理前后污水的毒性进行评价,同时通过斑马鱼暴露实验分析污水和回用水对水生生物内分泌干扰效应的作用模式.结果表明,污水厂进水具有较强的急性毒性、遗传毒性以及雌激素活性,水质较差.经二级生物处理后,上述毒性显著性降低,污水厂出水水质提高.但污水出水雌二醇当量为1.89 ng·L-1,仍可能会对受纳水体的水生生物产生潜在危害.浓缩2.5倍的水样导致雄性斑马鱼肝脏的卵黄原蛋白基因(vtg1)和雌激素受体基因(esr1)的表达水平显著上升,由此可以得出污水可通过干扰目的基因的表达来调控水生生物的内分泌活动.而esr1基因在肝脏的表达被抑制说明污水可能具有抗雌激素作用,同时反映进行生物毒性效应分析时应从多个组织或器官考虑,以获得比较全面的信息.  相似文献   

16.
In this work, a pilot-scale (300 m3/d) wastewater reclamation system was tested for printing and dyeing wastewater treatment from a textile factory. The wastewater was first hydrolyzed under anoxic condition, and then was treated under aerobic condition. Biologically treated wastewater was filtered by sub-filter technology (Patent: CN1308024A). The results showed that the average concentration of CODcr, color and turbidity in the effluent were less than 50 mg/L, 10 times and 2 NTU, respectively. The average CODcr, color and turbidity removal efficiencies were 91%, 92.5% and 90.9%, respectively. The treated effluent quality satisfied the requirement of water quality for printing and dyeing process. The most attracting part of the work was its extremely low color, low turbidity, low concentration of Fe and Mn, which was always demanded in textile sectors for an improved finish and better quality dyeing.  相似文献   

17.
北京市城市污水雌激素活性的研究   总被引:10,自引:5,他引:5  
周海东  黄霞  王晓琳  文湘华 《环境科学》2009,30(12):3590-3595
采用重组酵母雌激素筛检法(YES法)对北京市3个城市污水处理厂工艺流程污水样品的雌激素活性进行了评价,并采用GC/MS分析了样品中8种内分泌干扰物(EDCs),以进一步阐明城市污水雌激素活性的变化.结果表明,污水处理厂能较好地降低污水雌激素活性,降低率为82.2%~97.0%,但出水仍具有一定的雌激素活性,雌二醇(E2)当量浓度(EEQ)为2.6~16.0 ng/L.GC/MS检测显示,污水处理厂并不能完全去除目标化合物,出水中平均浓度最低的是17α-E2,为13.5 ng/L,最高的是BPA,为106.4 ng/L;出水的雌激素活性主要来自类固醇雌激素.污水厂的出水排放具有潜在的环境风险,在污水处理过程中,应特别关注对类固醇雌激素的去除.  相似文献   

18.
垃圾渗滤液含有高浓度难降解毒性污染物及致癌、致诱变和致畸物质,其较为成熟的处理工艺主要有硝化反硝化(SND)、超滤(UF)和反渗透(RO)等.目前,关于SND/UF/RO技术对渗滤液处理前后的毒性降低情况尤其与细胞凋亡相关的研究较缺乏,故本文选用HepG2细胞为评价对象,研究经SND/UF/RO处理前后垃圾渗滤液的细胞...  相似文献   

19.
制革废水和印染废水的综合毒性评估及鉴别   总被引:3,自引:3,他引:0  
黄利  陈文艳  万玉山  郑国娟  赵远  蔡强 《环境科学》2015,36(7):2604-2609
研究采用成组生物毒性试验(发光菌急性毒性、斑马鱼幼鱼急性毒性,斑马鱼胚胎发育毒性和小球藻急性毒性),结合理化指标,通过毒性单位、平均毒性(average toxicity,Av Tx)、毒性指数(toxic print,Tx Pr)、最敏感的测试(most sensitive test,MST)和潜在毒性效应指数(potential ecotoxic effects probe,PEEP)对不同工艺阶段印染及制革废水进行毒性削减评估.结果表明PEEP能兼顾废水排放量与毒性效应,更为客观地表征了废水综合毒性,PEEP评价结果显示制革废水和印染废水的毒性削减率分别达到36.8%和23.2%.最后,以发光菌作为受试生物,采用毒性鉴别评估(toxicity identification evaluation,TIE)技术,对印染废水进行毒性鉴别.结果表明,印染废水中主要的致毒物质为非极性有机污染,其次为可滤性化合物,然后是重金属、氧化性物质以及挥发性物质.  相似文献   

20.
采用ABR-CASS耦合工艺在中试反应器中处理某制药厂3批制药综合废水。针对不同进水,ABR和CASS反应器表现出了不同的处理能力。其中,不同成分的3批进水对ABR反应器运行影响不明显。在处理第1批进水的ABR出水时,CASS能够在污泥负荷为0.012 kg/(kg·d)(以MLSS计,全文同)时稳定运行,整个系统对COD的去除率达92.54%,对NH3-N的去除率达95.77%;而在处理第3批进水的ABR出水时,CASS反应器几乎不能耐受该废水。GC-MS的测定结果表明,与第1批进水相比,第3批进水的ABR出水中存在具有毒性的三正丁胺和对甲基苯酚,可能是造成CASS反应器生物系统崩溃的主要原因。为保证ABR-CASS的稳定运行,需重点考察ABR对原水中关键毒害物的去除能力,从而为CASS提供合适的进水条件。  相似文献   

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