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1.
研究了脊髓灰质炎病毒(Poliovirus1,PV1)、脆弱拟杆菌噬菌体(bacteriophage infecting Bacteroides fragilis,B.fp)在不同水样(自来水、超纯水、闽汀水、生活污水和滤膜过滤除菌生活污水),不同温度(4℃、20℃、35℃)条件下的灭活动力学.结果显示:温度是导致病毒灭活的重要因素,温度升高,病毒灭活速率加快.同时,某些水质因子也明显影响病毒的灭活.实验结果还表明,在任一灭活实验条件下,B.fp的灭活速率都比PV1低,表明B.fp是一个更合适的用于指示水体病毒污染程度与灭活效率的指示生物.图4表2参21  相似文献   

2.
研究了脊髓灰质炎病毒 (Poliovirus1,PV1)、脆弱拟杆菌噬菌体 (bacteriophageinfectingBacteroidesfragilis,B .fp)在不同水样 (自来水、超纯水、闽江水、生活污水和滤膜过滤除菌生活污水 ) ,不同温度 (4℃、2 0℃、35℃ )条件下的灭活动力学 .结果显示 :温度是导致病毒灭活的重要因素 ,温度升高 ,病毒灭活速率加快 .同时 ,某些水质因子也明显影响病毒的灭活 .实验结果还表明 ,在任一灭活实验条件下 ,B .fp的灭活速率都比PV1低 ,表明B .fp是一个更合适的用于指示水体病毒污染程度与灭活效率的指示生物 .图 4表 2参 2 1  相似文献   

3.
两栖动物在环境污染生物监测中的应用前景   总被引:14,自引:0,他引:14  
简单介绍了生物监洲的优越性和选择指示生物的一般标准,沦述了不同生态类群作为指示生物的研究;重点讨论了两栖动物作为指示生物在环境监测中的优越性及其与环境的父系,总结了两栖动物在污染环境中的异常反应,综述了两栖动物作为指示生物在环境污染生物监测中的研究历史和现状,提出了利用两栖动物的形态和行为模式建立水体污染生物监测仪器的可能性,为生物监测提供了科学依据,表1参51  相似文献   

4.
水体中隐孢子虫卵囊的检出及其活力分析   总被引:2,自引:0,他引:2  
从水中检测隐孢子虫卵囊是评价水源传播人类隐孢子虫病风险的第一步,从水中检出的卵囊的活力需要进行测定才能估计水源爆发的真正风险,应用聚丙烯盒式过滤器和美国环保局(USEPA)1622过滤方法的囊式过滤器(Gelman,Michigan,USA),分别过滤了当地(法国鲁昂)的环境水和供给水,并用免疫磁分离技术(IMS)进行分离。用免疫荧光检测法(IFA)从浓缩的水样中检测到了隐孢子虫卵囊。环境水中的卵囊浓度是每升水中0.12-2.7个卵囊;供给水中的卵囊浓度是每升水中0.03-0.06个卵囊,用新生小鼠模型初步评价了检出卵囊的感染力。结果证明了隐孢子虫卵囊在环境中尤其是水中的广泛分布;同时表明,评估水源传播的隐孢子虫病的风险时,不仅要从水中检出卵囊,而且要测定检出的卵囊的活力。表1参22。  相似文献   

5.
氯苯类化合物(chlorobenzene,CBs)是一类具有高毒性、难降解和易富集性的有机氯化合物,持续受到广泛关注.污水处理厂在城市水污染控制中发挥着重要作用,然而,目前关于污水处理厂中的CBs研究十分有限,其消减规律与排放特征仍不清楚.本研究系统分析了浙江省两家典型污水处理厂中CBs的赋存特征、去除效率及排放潜在风险.发现CBs在各污水处理厂污水中普遍存在,但污染水平较低,出水中CBs的总浓度范围为17.4—75.1 ng·L-1,远低于我国相关排放标准.二氯苯是进出水中CBs的主要组成成分,占比49.3%—64.1%.厌氧处理及污泥吸附沉淀对CBs的去除效果相对较好,但现有污水处理工艺对CBs的总体去除效果不佳,部分处理单元还存在CBs含量上升情况.基于环境影响度(ambient severity,AS)和风险熵值(risk quotients,RQs)评估结果表明,所研究污水处理厂排放水中CBs对人体健康以及生态风险较小(AS <1,RQs <0.1).研究结果有助于深入了解CBs在污水处理系统中的环境行为和排放风险,也为优化污水处理工艺、进一...  相似文献   

6.
污水处理厂出水是环境中内分泌干扰物的重要来源之一。针对关注较少的抗雄激素样内分泌干扰物,在已有研究基础上,依据抗雄激素样化合物的抗雄激素样活性风险,建立了污水处理厂出水中抗雄激素样化合物控制的优先性排序方法。在污水处理厂出水中,共有147种疑似抗雄激素样化合物需要关注,主要为农药类,约占总数的60%。抗雄激素样活性风险排名前10%的化合物如下:邻苯二甲酸二丁酯、邻苯二甲酸二己酯、双酚A、溴螨酯、对叔辛基酚、腐霉利、烯菌酮、氯苯嘧啶醇、烯酰吗啉、杀螟松、十二烷基酚、敌草隆、咯菌酯、2-羟基-4'-甲氧基二苯甲酮、以及邻苯基苯酚。  相似文献   

7.
滥用药物是一类非医用并被法律明令禁止使用的药物,近年来在世界各地的不同水环境中,包括污水、地表水、地下水甚至饮用水中均有检出,被视为一类新型污染物,逐渐成为环境领域的研究热点之一.本文在总结了国内外滥用药物相关环境学研究进展的基础上,对水环境中滥用药物的生态毒性、污染来源和途径、不同水体中的污染现状、环境行为及风险评估等进行了综述,总结了当前水环境中滥用药物分析检测方法和污水流行病学研究进展,并进一步分析了我国目前在滥用药物研究方面的现状,提出了该领域今后的研究方向和重点.  相似文献   

8.
卤代苯酚(HPs)是一类广泛存在于水体中的污染物,其在污水处理厂出水中的存在及迁移转化会产生一定的健康和生态风险。探究卤代苯酚在环境中的转化行为非常重要。光降解反应是酚类物质在水体中迁移转化的重要途径,实际水体中的有机质等对卤代苯酚的光降解会产生一定的影响。对大连市区6家污水处理厂出水中卤代苯酚的污染状况进行了调查,结果显示在所有出水中总HPs的浓度范围为77.2~168.6 ng·L-1。在所有检出的卤代苯酚中,五氯酚和2,6-二氯酚浓度较高,且检出频率均为100%,检出浓度范围分别为10.8~166.7 ng·L-1和0.1~72.2 ng·L-1。在模拟太阳光照射条件下,选取2种氯酚和2种溴酚研究它们在污水样品与纯水中光降解行为,从卤原子取代的程度和种类两方面对不同卤代苯酚光降解的规律进行类比,分析了其光降解特性。此外,对比分析了不同污水厂出水的对同种卤代苯酚降解速率的影响,发现出水的p H值、溶解性有机质等因素,都可能影响卤代苯酚的光降解。  相似文献   

9.
典型污水处理厂中多环麝香的污染特征   总被引:3,自引:0,他引:3  
多环麝香在日常生活中被广泛使用,在生产和使用过程中会经过污水处理系统而进入环境中.研究了日用化妆品生产工厂排放的多环麝香在污水处理系统中污水和污泥的污染特征.在大型日用化妆品生产工厂污水处理厂的污水和污泥中均检测出较高浓度的多环麝香,HHCB和AHTN是两种主要污染物.其中多环麝香在污水处理系统进水中质量浓度范围为4.7(AHMI)~550 μg·L-1(HHCB),出水中质量浓度范围为:低于检测限(AHMI)~32.1μg·L-1(HHCB),污泥(干物质量)中多环麝香的含量范围为1.78(AHMI)~566 mg·kg-1(HHCB).污水处理系统污水中多环麝香的去除效率非常高,达到了90%以上,然而,污泥中却富集了大量的多环麝香,表明污水中的多环麝香很大一部分转移到了污泥中,从而可能成为环境中一种潜在的多环麝香污染源.  相似文献   

10.
抗生素的长期滥用,使得环境细菌耐药性不断增强,加速了耐药基因(antibiotics resistance genes,ARGs)在环境中的传播扩散,并给饮用水带来健康风险。在介绍饮用水中抗生素和耐药基因污染现状的基础上,阐述了耐药基因在饮用水中的来源和归趋,对环境中抗生素和耐药基因的人体健康风险做了初步探讨,针对目前饮用水的污染现状,对今后有关饮用水中细菌耐药的研究进行了展望。  相似文献   

11.
•Phages can be better indicators of enteric viruses than fecal indicator bacteria. •Multiple phages should be added to the microbial source tracking toolbox. •Engineered phage or phage cocktail can effectively target resistant bacteria. •In phage use, phage-mediated horizontal gene transfer cannot be ignored. •More schemes are needed to prevent phage concentration from decreasing. Wastewater is a breeding ground for many pathogens, which may pose a threat to human health through various water transmission pathways. Therefore, a simple and effective method is urgently required to monitor and treat wastewater. As bacterial viruses, bacteriophages (phages) are the most widely distributed and abundant organisms in the biosphere. Owing to their capacity to specifically infect bacterial hosts, they have recently been used as novel tools in water pollution control. The purpose of this review is to summarize and evaluate the roles of phages in monitoring pathogens, tracking pollution sources, treating pathogenic bacteria, infecting bloom-forming cyanobacteria, and controlling bulking sludge and biofilm pollution in wastewater treatment systems. We also discuss the limitations of phage usage in water pollution control, including phage-mediated horizontal gene transfer, the evolution of bacterial resistance, and phage concentration decrease. This review provides an integrated outlook on the use of phages in water pollution control.  相似文献   

12.
China now faces double challenges of water resources shortage and severe water pollution. To resolve Chinese water pollution problems and reduce its impacts on human health, economic growth and social development, the situation of wastewater treatment was investigated. Excess sludge and greenhouse gases (GHGs) emitted during wastewater treatment were also surveyed. It is concluded that Chinese water pollution problems should be systematically resolved with inclusion of wastewater and the solid waste and GHGs generated during wastewater treatment. Strategies proposed for the wastewater treatment in China herein were also adequate for other countries, especially for the developing countries with similar economic conditions to China.  相似文献   

13.
为了研究城市内涝的公共卫生特点,本文分析了广西梧州1994年的抗洪经济:(1)城市内涝是一种特殊的暂时性的废水;(2)水质可在3-5天内恶化变臭,从而在中心城市造成严重的公共卫生问题:93)应防止垃圾烘便及有毒化学物质污染水质,防止居民中毒和传染病发生。最重要的是迅速排除城市内涝废水。  相似文献   

14.
Centralized sewage treatment plants may not be a sustainable solution for a developing country such as India. Therefore, we conducted for the first time an integrated assessment of the different technologies currently used for sewage treatment in the state of West Bengal, India. Five decentralized sewage treatment plants and one centralized sewage treatment plant located in different parts of Kolkata were evaluated. We compared influent and effluent water quality, energy consumed, capital and operating costs, and treated wastewater reuse potential. F test was used to validate results on the effect of working days and holidays and seasons on treated water quality. Wastewater management strategy was assessed by performance indicators. Our results show that treatment efficiency was lowest in anaerobic plants not because of faulty technology but due to unskilled operation. Therefore, performance improvement of plants is expected if factors such as monitoring, training of staff, regular and scrupulous desludging, reuse aspects, and rational water tariff are implemented earnestly.  相似文献   

15.
为探讨污水处理厂不同处理工艺段对轮状病毒(Rotavirus)的去除效果及再生水回用中轮状病毒对暴露人群的健康风险水平,于2006年11月至2007年10月连续对北京市某污水厂各工艺段出水的轮状病毒进行了分析,并应用Beta-Possion模型对回用再生水中轮状病毒对暴露人群的健康风险水平进行了评价.结果表明,36个实测水样中,轮状病毒检测结果为阳性的样品13个,占总样品数的36.1%.阳性样品主要分布在2006年11月、12月和2007年1月、2月、4月、8月和10月所采集的样品中,各月份阳性样品所占比例分别依次为100%、100%、100%、33.3%、66.7%、33.3%和100%.二级处理工艺对轮状病毒的去除率为2.68-lg,二级处理出水经过混凝沉淀和砂滤两种深度处理后得到再生水,深度处理工艺平均去除率为3.01-lg.二沉出水回用对不同职业暴露人群的年均感染概率风险值范围为0.35×10-2~10.36×10-2,再生水回用不同职业暴露人群年平均感染风险概率值范围为0.23×10-2~6.82×10-2,二沉出水、再生水回用导致的道路喷洒职业工人轮状病毒暴露感染风险值最大,分别达到了39.65×10-2和36.82×10-2,存在着一定的健康风险.  相似文献   

16.
Environmental Chemistry Letters - Industrial wastewater often contains different complex impurities that are hazardous to the environment and human health, making wastewater treatment a necessity...  相似文献   

17.
Results The available research results concerning the application of innovative methods of wastewater and drinking water purification to eliminate pharmaceuticals are summarized in the present paper. An increase of the activated sludge (aerobic sludge) age to 8–10 days in treatment plants can improve the metabolization of less persistent pharmaceutical agents whereas expansion of the sojourn time beyond 10 days will not result in a remarked increase of degradation for most pharmaceutical substances. First results have shown that wastewater treatment plants with integrated membrane bioreactors (MBR) using micro- and ultrafiltration membranes do not provide significantly better results compared to the conventional wastewater treatment plants with respect to the removal of organic micropollutants (including pharmaceutical residues). The use of powdered carbon in biologically treated wastewater is able to reduce pharmaceutical residues up to 80?% in the run-off water. Pilot studies scrutinize the treatment of highly contaminated effluents via catalytic photooxidation. Regarding the suitability of the method to reduce the contamination of drinking and wastewater with pharmaceuticals yet only few data from laboratory scale testing are available. Activated carbon filtration is preferably used for drinking water treatment. Primarily against the background of disinfection, ozonation is widely used for drinking water treatment, but for wastewater treatment the method is still at the experimental stage and will hardly become of practical importance because of high costs. Sustainable wastewater separation is grounded on decentralized concepts by considering material cycles (recycling) at the place of origin. In the long term, separation measures can significantly contribute to declining drug concentrations in drinking water. Regarding the quarrying of drinking water by bank filtration water, river water or artificially enriched ground water, end-of-pipe techniques are vital. Most commonly, activated carbon or activated carbon combined with ozonization is applied and assures a high drinking water quality. Discussion The advantages and disadvantages of the different water treatment methods mainly concern the varying degrees of effectiveness with respect to the elimination of very persistent pharmaceutical agents, the generation of problematical metabolites and additional waste materials, hygienic problems, energy needs and the necessity to employ appropriate technical staff for operation. Although the biodegradation of very persistent drugs cannot be enhanced by an extension of the activated sludge age, this modification should be considered in sewage plants to reduce the contamination with less persistent medical agents. Compared with conventional wastewater treatment, membrane bioreactors provide the advantage of a better control of biological activities on the plant and a comparably small plant size but high investment and operation costs. Additionally, pharmaceuticals such as carbamazepin are only insufficiently removed from wastewater by membrane bioreactors. The regular use of powdered activated carbon in sewage treatment plants would also increase the costs of wastewater treatment and would additionally exclude the further use of sewage sludge in agriculture. Currently, in Germany the further use of sewage sludge is handled differently by the Federal States and discussed controversially. The implementation of ozonation as an additional treatment method in wastewater treatment plants is not realistic because of cost concerns. Additionally, the method produces analytically as yet not assessed metabolites with unknown (eco-)toxicological impacts. For this reason ozonation should currently not be applied unless the reaction products are removed subsequently by filtration through activated carbon. For industrial sewage photooxidation is in a state of testing but an application for municipal wastewater is, up to now, out of question. When river bank filtration is used for the supply of drinking water the use of activated carbon for purification should be essential. The lifetime of the filters is often defined by the filter capacities to eliminate radiocontrast media (e.?g., iopamidole, amidotrizoic acid). Many water supply companies already apply the ozonization prior to activated carbon filtration which supports the elimination of pharmaceuticals from the sewage. The unique developmental potential of the wastewater separation can be seen in the possibility to link up these methods with sustainable exploitation techniques and concepts (re-use of sanitized water, production of fertilizer, compost and biogas). Wastewater separation will not make ‘middle/end-of-pipe’ techniques dispensable but will make their handling more effective because concentrations of pharmaceutical agents are higher in separated effluents compared to those usually found in municipal wastewater, which in mixing sewage systems is even diluted by surface runoff. Conclusions Following today’s state of knowledge activated carbon filtration (eventually coupled with ozonization) is best suited to remove drug residues and other xenobiotics from raw water. Water works that do not apply the activated carbon filtration technique for cleanup of bank filtration water should consider an upgrade. The ozonization is primarily required for disinfection of the water. As no acute health hazard proceeds from drinking water contamination by pharmaceuticals at the present time, the upgrade of wastewater treatment plants by one of the aforementioned innovative methods is currently not required in view of drinking water quality. This offers the opportunity to develop sustainable approaches that already aim to reduce drug contaminations of wastewater and hence of ground-, surface- and drinking water. Recommendations and perspectives On a short- to mid-term perspective enriched sewage of hospitals, nursing homes and other medical facilities should be collected and treated separately. From a technical point of view the conditioning of separated hospital effluents (yellow- and greywater) via activated carbon or membrane filtration is possible but should be combined with disinfection. On a mid- and long-term scale sustainable sanitary concepts based on wastewater separation (black-, grey- and/or rainwater) associated with the recycling of mineral nutrients (nitrogen, phosphorous and potassium) should be realized for development, industry and trade areas, buildings with public lavatories, airports, motorway service areas, and large office and hotel buildings. Strategies focusing primarily on up-grading of municipal wastewater treatment plants are currently existing but the related technologies are largely in a test phase. This is why a particular technique should not be favored at the moment. The combination of various techniques (i.?e., ozonization combined with activated carbon filtration) is known to be very efficient for the removal of pharmaceutical residues from water, but the combination cannot be expected to become of importance in treatment of domestic wastewater because of high costs. Moreover, improvement of wastewater treatment technologies to remove pharmaceutical residues will not make the employment of end-of-pipe techniques in water works redundant and therefore will not lead to saving of expenses.  相似文献   

18.
三维荧光光谱技术在水环境修复和废水处理中的应用   总被引:4,自引:0,他引:4  
近年来我国水环境污染问题情况日益严重,其引发的水华问题频发,藻类生长代谢过程释放的各类衍生物对水生生态系统及原水处理工艺性能造成影响。为此,分析环境水体、废水处理系统中溶解性有机污染物(DOM)的组成、性质和来源,对水环境安全及水污染控制具有重要意义。三维荧光光谱技术通过在不同的激发波长上扫描发射荧光谱以获得激发.发射矩阵(EEM),基于EEM数据构建三维立体图或等高线(指纹图)描绘监测对象特性,可分析水体溶解性有机物、藻类及藻毒素等,近年来已在饮用水源水质监测、湖库富营养化成因分析及废水生物处理性能评价等方面得到应用。与传统分析方法相比,该技术具有灵敏度高、操作简便、检测快速、试剂消耗量少等优点。文章从荧光光谱分析技术基本原理出发,对三维荧光峰的分类、影响因素及其在水环境中的应用进行了综述,并对今后该技术在环境领域的研究方向进行了展望,以期为水污染控制、污染环境修复提供先进可靠的分析方法。  相似文献   

19.
普遍认为,邻苯二甲酸酯类物质(Phthalic Acid Esters,PAEs)是内分泌干扰物质(Endocrine Disrupting Chemicals,EDCs),被广泛应用于增塑剂、化妆品中,具有致畸性,致癌性,致突变性以及拟/抗雌激素活性、拟/抗甲状腺激素活性等内分泌干扰特性。邻苯二甲酸酯类物质很容易扩散到环境中,在土壤、大气、水环境中均有检出,是环境中常见污染物,严重威胁人体健康和生态环境,已经引起国内外的广泛关注。在综述邻苯二甲酸酯类物质的物理化学性质、毒性影响、国内外天然水体、地下水和生活污水中的污染现状的基础上,讨论消除水环境中PAEs污染的强化混凝、吸附、膜处理、生物处理和高级氧化技术。高级氧化技术因其能够快速有效地去除饮用水和污水中不同种类的有机污染物而备受关注,且发展迅速。重点介绍了高级催化氧化法对水环境中PAEs的去除,包括催化湿式过氧化物氧化过程,催化臭氧氧化过程,光催化氧化过程,超声波、微波辅助催化氧化过程以及高级纳米催化氧化过程。其中,Fenton催化氧化技术在氧化过程中通过使用催化剂或协同紫外光等方式产生高度反应性羟基自由基,可无选择性地将PAEs完全降解为无毒无害的小分子物质,对PAEs的氧化去除效果最好。虽然在高级氧化过程中应用催化剂可大大提高氧化效率和降解程度,但催化氧化法耗能较大、催化剂消耗量大、受水体pH值的影响,且研究大多限于实验室阶段,未能大量投入工业应用,需要进一步发展创新。因此,开发新型高效催化剂、提高催化剂选择性、优化催化氧化反应条件、优化设计催化反应器、与其他技术耦合是水体中PAEs类环境激素污染控制技术的发展方向。  相似文献   

20.
环境水体中检测到大量药物的存在,主要包括抗生素,抗惊厥抗抑郁药物,解热和非甾体消炎药,血脂调整剂,β-阻滞剂等。传统的水处理技术并不能有效地去除这些药物,存在于水体中的环境药物对公共健康的潜在危害引起了广泛的关注。文中简要地介绍了近年来光催化技术在降解环境药物动力学和机理方面的研究进展,试图找出水体中环境药物降解的一般规律,为环境水体中该类物质的迁移和转化提供理论依据。  相似文献   

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