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1.
多环芳烃(PAHs)是一类极其复杂的有机污染物,衍生物种类较多,1976年美国环保局因其致癌、致畸、致突变将其中的16种列为优先控制污染物。城市污水处理厂作为一个地区污染物迁移和转化的重要媒介,在控制和截断PAHs进入天然水体的过程中扮演着重要的角色。因此,研究污水处理厂中PAHs的浓度水平对于了解和控制PAHs进入天然水体和通过污泥进入到土壤中进而通过食物链危害人类健康具有重要的意义。文章综述了污水处理厂污水和污泥中PAHs的前处理技术、分析方法、浓度水平、生态风险以及国内外污水处理厂污泥土地利用现状。  相似文献   

2.
总汞环境样品的前处理技术及分析方法研究进展   总被引:2,自引:1,他引:1       下载免费PDF全文
对2005—2012年间的环境样品中总汞检测的前处理技术及分析方法文献进行了综述。总结了水体、土壤及废气中总汞样品前处理采用的主要方法及存在的问题,并且对环境样品总汞的现行国标分析方法及新方法(光度法、冷原子吸收法、原子荧光法、电感耦合等离子体-质谱法及生化检测等)的原理和应用进行了归纳。展望了环境样品中总汞检测的发展趋势,为研究者进行总汞新分析方法的开发和标准化提供了借鉴。  相似文献   

3.
概述了多环芳烃(PAHs)的属性和主要来源,介绍了其在不同环境介质中的分析方法、污染状况、迁移转化及风险评估现状,提出了进一步加强复杂环境基质中PAHs分析方法、不同环境介质中PAHs迁移转化特征,以及PAHs环境生态风险和人体健康风险等方面研究的建议。  相似文献   

4.
微波提取高效液相色谱法测定土壤中15种痕量多环芳烃   总被引:6,自引:1,他引:5  
采用微波提取结合高效液相色谱技术测定了土壤中15种PAHs的含量.比较了用微波提取、索氏提取和超声萃取3种土壤样品的前处理方法对多环芳烃测定的影响,考察了色谱柱的性能、梯度洗脱条件的优化、荧光检潮波长程序变换及柱温等因素对15种PAHs组分之同分离的影响.经优化后的HPLC方法对15种PAHs的最低检测限为0.10~0.80 μg/kg,相对标准偏差为0.60%~4.60%,方法的回收率为58.1%~97.8%.实验结果表明,该方法兵有高效、快速、灵敏等特点,可以用于环境土壤样品中痕量PAHs的检测.  相似文献   

5.
环境水体中三氟乙酸的存在现状及分析方法的研究   总被引:1,自引:0,他引:1  
三氟乙酸是一种氟里昂替代品的大气降解产物 ,雨水会将其从空气中去除转移到水体中。三氟乙酸化学性质稳定 ,在自然环境中三氟乙酸易于积累在水体中 ,环境地表水中三氟乙酸浓度可达到 1 0~ 4 0 90 0 ng/L,雨水中 30~ 2 80 ng/L。目前 ,环境水体中关于三氟乙酸的分析方法有 :气相色谱法 ,离子色谱法 ,气相色谱质谱联用。根据各种灵敏度的要求 ,再结合各种不同的前处理方法 ,可对环境水体中三氟乙酸进行分析  相似文献   

6.
以煤矿区及煤矸石的污染特征为依据,选取16种EPA优先控制多环芳烃(PAHs)污染物,采用高效液相色谱法对不同堆积年限的矿区煤矸石山周围塌陷区的水体样品进行测试,分别分析此类水体中单个PAHs和总PAHs的分布情况及水体中PAHs不同环数的组成情况,并采用风险商值法进行水体生态风险评价,指出此类水体的不当开发利用会引起人体健康危害。  相似文献   

7.
环境中邻苯二甲酸酯类物质的污染现状与监测方法   总被引:8,自引:0,他引:8  
综述了环境中邻苯二甲酸酯类物质(PAEs)的理化性质、环境行为及在多介质环境中的污染概况,系统介绍了不同介质中PAEs的前处理与分析方法,总结了我国开展PAEs环境监测存在的问题及其意义.  相似文献   

8.
有机紫外吸收剂(OUVs)是广泛应用于个人护理品及工业产品的一种光稳定剂,也是一种新型"准"持久性有机污染物。由于环境样品基质复杂,且OUVs种类多、含量低,快速高效的样品前处理及准确灵敏的检测方法是提高OUVs监测精准度的基础。综述了自2005年以来环境样品中OUVs的常规前处理方法及分析方法。首先,在介绍水体、沉积物、生物样品前处理方法应用的基础上,分析了富集填料、洗脱剂、净化方法等实验条件对回收率的影响,目前在水体、沉积物、生物样品中,OUVs的回收率分别为14%~133.7%、30%~183%、46%~128%。其次,总结了质谱技术在OUVs分析中的应用,表明OUVs检测方法已经由传统的气相色谱-单四极杆联用逐渐过渡到液相色谱-串联质谱联用,并且着重阐述了离子源对OUVs信号强度影响的重要性。最后,结合OUVs监测现状,展望了环境样品中OUVs监测分析方法的发展趋势。  相似文献   

9.
对松花江全流域14个监测断面的16种美国环保局优先控制的多环芳烃(PAHs)的主要来源及其贡献率应用主成分因子分析-多元线性回归模型(PCA-MLR)进行了来源解析。结果表明:松花江全流域为化石和石油燃料的复合PAHs污染,水体环境中PAHs首要污染源为化石燃料燃烧和交通污染,合计贡献率为63.1%,第二大污染源为工业和民用燃煤污染,合计贡献率为36.9%,沿江的石化、石油基地、大型焦化厂、电厂都是PAHs的主要来源。  相似文献   

10.
水环境中PAHs源解析研究方法比较   总被引:6,自引:0,他引:6       下载免费PDF全文
综述了近年来水环境中PAHs源解析的方法,包括化学质量平衡法、因子分析法、稳定碳同位素法和比值法等,重点评述了方法的理论基础、适用条件、应用状况和存在问题,并结合我国情况分析了水环境中PAHs源解析方法的发展趋势.认为因子分析法与多元统计方法结合使用是当前我国PAHs源解析的最适用方法,可以实现对源贡献率的定量分析,与GIS技术结合应用,能实现PAHs源的空间统计分析,反映污染源影响作用的空间分布规律.  相似文献   

11.
气溶胶与降尘中多环芳烃的含量分布研究   总被引:13,自引:1,他引:12  
通过广东省茂名市区四个不同功能点大气气溶胶和降尘中多环芳烃的含量分布研究发现 :1、气溶胶中优控多环芳烃大大高于降尘中的含量 ,为降尘的 5.97~ 1 9.3倍 ;以石化厂区为例 ,非优控多环芳烃在气溶胶中的相对含量更高 ,为降尘的 2 4 .7倍。2、气溶胶中优控多环芳烃和非优控多环芳烃的分布为随分子量增加而含量增高的趋势 ,但降尘中优控多环芳烃的高含量相对集中于萤蒽至苯并 (b)萤蒽之间。3、不同功能区由于排放源的差别所表现出的气溶胶和降尘中优控多环芳烃总量及总量比值、部分强致癌和致癌物含量及含量比值均存在差异。4、对气溶胶和降尘中多环芳烃研究可以对降尘中非优控多环芳烃降解和溶解量进行估算。以石化厂区为例 ,降尘中非优控多环芳烃比原始含量已减少76%。  相似文献   

12.
Polycyclic aromatic hydrocarbons (PAHs) are important organic contaminants with great significance for China, where coal burning is the main source of energy. In this study, concentrations, distribution between different phases, possible sources and eco-toxicological effect of PAHs of the Yangtze River were assessed. PAHs in water, suspended particulate matters (SPM) and sediment samples at seven main river sites, 23 tributary and lake sites of the Yangtze River at the Wuhan section were analyzed. The total concentrations of PAHs in the studied area ranged from 0.242 to 6.235 μg/l in waters and from 31 to 4,812 μg/kg in sediment. The average concentration of PAHs in SPM was 4,677 μg/kg, higher than that in sediment. Benzo(a)pyrene was detected only at two stations, but the concentrations were above drinking water standard. The PAHs level of the Yangtze River was similar to that of some other rivers in China but higher than some rivers in foreign countries. There existed a positive relationship between PAHs concentrations and the TOC contents in sediment. The ratio of specific PAHs indicated that PAHs mainly came from combustion process, such as coal and wood burning. PAHs may cause potential toxic effect but will not cause acute biological effects in sedimentary environment of the Wuhan section of the Yangtze River.  相似文献   

13.
The presence of polycyclic aromatic hydrocarbon (PAH) compounds in sediment and water samples collected in the estuary area of Paranagua, southern Brazil, was investigated. There is a lot of port activity in the region. Recreational fishing is widespread; thus, there is concern about possible contamination by PAHs. The 16 priority PAHs were investigated, and only eight were found. The total concentration of PAHs ranged from 40.8 to 406.8 ng/g. High molecular weight were the most abundant, while PAHs with a low molecular weight were absent. There are suspicions that the main source of PAHs is combustion, but some uncertainties exist, and there may even be the presence of PAHs resulting from accidental spills of crude oil. Although the sediments contain PAHs, the amount is below the maximum concentrations allowed by the Brazilian environmental legislation, as well as the maximum levels at which adverse effects are observed. From the analytical results, a probable bioaccumulation was assessed in the local trophic chain using a mathematical model (Arnot and Gobas, Environ Toxicol Chem 23(10):2343?C2355, 2004). The model showed that there is a possibility of biomagnification along the food chain selected. Three fishes with high local consumption were selected, and the concentration of some PAHs could be found in those fishes.  相似文献   

14.
不同土地利用类型作物中多环芳烃含量调查   总被引:6,自引:3,他引:3  
文章调查了江苏苏州某典型生态示范区内,多环芳烃在不同土地利用类型和各种作物的富集、迁移、转化情况并进行比对、分析,确定不同土地利用类型中作物多环芳烃污染水平不同;不同作物对多环芳烃的富集效率不同;同一作物的不同组织(器官)多环芳烃含量也不同,初步分析了多环芳烃在水-土-气各介质之间的迁移富集规律.为推进江苏"生态省"建设与可持续发展提供一定的技术参考依据.  相似文献   

15.
The spatial and temporal distribution of polycyclic aromatic hydrocarbons (PAHs) was investigated in Gomti River, a major tributary of the Ganga river (India). A total of 96 samples (water and sediments) were collected from eight different sites over a period of 2 years and analysed for 16 PAHs. The total concentrations of 16 PAHs in water and bed sediments ranged between 0.06 and 84.21 ??g/L (average (n?=?48), 10.33 ± 19.94 ??g/L) and 5.24?C3,722.87 ng/g dw [average (n?=?48): 697.25 ± 1,005.23 ng/g dw], respectively. In water, two- and three-ring PAHs and, in sediments, the three- and four-ring PAHs were the dominant species. The ratios of anthracene (An)/An + phenenthrene and fluoranthene (Fla)/Fla + pyrene were calculated to evaluate the possible sources of PAHs. These ratios reflected a pattern of pyrolytic input as a major source of PAHs in the river. Principal component analysis, further, separated the PAHs sources in the river sediments, suggesting that both the pyrolytic and petrogenic sources are contributing to the PAHs burden. The threat to biota of the river due to PAHs contamination was assessed using effect range low and effect range median values, and the results suggested that sediment at some occasions may pose biological impairment.  相似文献   

16.
In order to evaluate the effect of local anthropogenic activities on Chaohu Lake, one of the most eutrophicated lakes in China, surface sediments have been collected from the whole lake with 0.05 × 0.05 degree latitude/longitude resolution and in the estuaries of three main inflowing rivers. The concentrations of the 28 polycyclic aromatic hydrocarbons (PAHs) determined were in a range 82.4-13,000 ng g(-1) with an average value of 1670 ng g(-1) dry weight for total 28 PAHs (referred to as Σ(28)PAH). Amongst the 28 PAHs, 16 are listed as high priority PAHs by the USEPA and they were in the range of 60.8-10,200 ng g(-1) with an average value of 1230 ng g(-1) for the total of them (referred to as Σ(16)PAH); 7 are known as carcinogenic PAHs and their levels ranged from 34.2 to 6400 ng g(-1) with an average of 815 ng g(-1) in total (referred to as Σ(7)PAH). Chaohu Lake was considered significantly polluted by PAHs through the comparison with the PAH burdens in fresh-water lakes both in China and worldwide. Toxic units (TUs) evaluation showed some sampling locations possibly were over the median lethal level for benthic invertebrate. The highest PAH concentrations were found in sediments from the Nanfei River estuary, suggesting the major contributor of PAHs contamination to the lake. The PAHs with four and five rings were found to be dominant among the PAHs detected in all of the sediment samples, and perylene was the most abundant. Σ(16)PAH had a good correlation with those PAHs from pyrogenic sources, such as anthracene and phenanthrene, but a poor correlation with perylene. The results demonstrated that the environmental behavior of PAHs from pyrogenic sources is significantly different to that of perylene from diagenetic sources. The PAHs in sediments were mainly from traffic-related emission by qualitatively assessing with the diagnostic ratios of PAH isomers, and the ratios for low molecular weight PAHs were strongly altered during their transport.  相似文献   

17.
To reduce environmental and human health risks of contaminated sites, having a comprehensive knowledge about the polycyclic aromatic hydrocarbon (PAH) removal processes is crucial. PAHs are contaminants which are highly recognized to pose threats to humans, animals, and plants. PAHs are hydrophobic and own two or more benzene rings, and hence are resistant to structural degradation. There are various techniques which have been developed to treat PAH-contaminated soil. Four distinct processes to remove PAHs in the contaminated soil, thought to be more effective techniques, are presented in this review: soil washing, chemical oxidation, electrokinetic, phytoremediation. In a surfactant-aided washing process, a removal rate of 90% was reported. Compost-amended phytoremediation treatment presented 58–99% removal of pyrene from the soil in 90 days. Chemical oxidation method was able to reach complete conversion for some PAHs. In electrokinetic treatment, researchers have achieved reliable results in removal of some specific PAHs. Researchers’ innovations in novel studies and advantages/disadvantages of the techniques are also investigated throughout the paper. Finally, it should be noted that an exclusive method or a combination of methods by themselves are not the key to be employed for remediation of every contaminated site but the field characteristics are also essential in selection of the most appropriate decontamination technique(s). The remedy for selection criteria is based on PAH concentrations, site characteristics, costs, shortcomings, and advantages.  相似文献   

18.
底泥中多环芳烃提取方法评述   总被引:6,自引:0,他引:6  
总结了底泥中多环芳烃 (PAHs)提取的处理流程和国内外多种提取方法 ,比较了几种在我国较为常用的提取方法的效率。同时还提出了PAHs分离纯化的方法和步骤 ,并指出了提取过程中影响实验回收率的几个因素  相似文献   

19.
武汉市东西湖农场表层土壤中多环芳烃的含量分布特征   总被引:2,自引:0,他引:2  
对武汉市东西湖农场土壤中多环芳烃的含量调查表明,除紧靠马路边、居民区的土壤中多环芳烃的浓度高于荷兰制定的土壤修复标准之外,其余地方均在此标准值之内,其中主要是高环多环芳烃含量超标严重。证明了汽车尾气所排放的多环芳烃要高于居民日常生活的排放量。多环芳烃在水平方向上的迁移存在色谱效应。  相似文献   

20.
利用高效液相色谱分析技术对福建省茶园土壤中16种多环芳烃进行了定量分析,结果表明,PAHs的总量在0.622~812.0μg/kg之间,平均值为48.4μg/kg。其组成以3环的为主,4环次之,主成分分析和PAHs特征参数分析发现,福建省茶园土壤中多环芳烃主要以燃油、木柴和煤燃烧来源为主,部分样点存在油类排放污染。生态风险评价结果显示,福建省茶园土壤中多环芳烃已具有不利生物影响效应。  相似文献   

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