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1.
采用SUMMA罐采样-预浓缩-气相色谱/质谱联用技术测定挥发性有机物(VOCs),滤膜采样-高效液相色谱法测定颗粒物中多环芳烃(PAHs)。选取攀枝花市不同功能区的5个测点,分别采集并测定了4个季度的大气样品。共检出VOCs 54种,其中烃类占24%,卤代烃类占52%,含氧化合物占22%,其它化合物占2%,苯系物检出率最高。检出PAHs15种,其中苯并[a]芘等11种PAHs单体的检出率为100%。主要大气有机物分布整体呈现出旱季高,雨季低的特点。应用比值法、相关性及因子分析法对来源进行识别,结果表明机动车、燃煤和炼焦排放是攀枝花市大气有机污染物的主要来源。  相似文献   

2.
建立了快速、简便测定城市污泥中4种主要PAHs污染物(菲、荧蒽、芘、苯并[α]芘)含量的检测方法。利用Qu ECh ERS提取方法,样品经乙腈并以超声波辅助提取,提取液过0.22μm滤膜后,采用气相色谱-质谱法对4种物质进行测定。对QuEChERS萃取条件及超声时间进行了优化,确立最优试验条件,比较建立的萃取方法与传统索氏提取方法对加标样品中4种PAHs的萃取效率。结果表明,4种PAHs得到较好的分离效果,方法检出限为0.27~0.49μg/kg,相对标准偏差为2.8%~8.6%(n=7),加标回收率为81.9%~116.3%,对菲、荧蒽、芘、苯并[α]芘提取效率与索氏萃取方法相当。运用该方法对西安某污水处理厂的原污泥和堆肥处理后污泥进行检测,4种分析物均有检出。该方法具有操作简便、灵敏、环保等特点,适用于城市污泥中菲、荧蒽、芘、苯并[α]芘的定性定量分析。  相似文献   

3.
不同粒径空气颗粒物中11种多环芳烃的分析测定   总被引:8,自引:0,他引:8  
将五段多孔冲击分级器 (粒径分级 :≤ 1 .1 ,1 .1~ 2 .0 ,2 .0~ 3 .3 ,3 .3~ 7.0 ,≥ 7.0μm)与大流量采样器连接 ,采集呼和浩特市冬夏两季空气颗粒物样品 ,用高压液相色谱仪 (HPLC)测定样品中的蒽 (An)、菲 (Ph)、萤蒽 (Fl)、芘 (Py)、(Ch)、苯并 [a]蒽 (Ba A)、苯并 [a]芘 (Ba P)、二甲基苯并 [a]蒽 (DMBa A)、二苯并 [ah]蒽 (DBah A)、苯并 [ghi] (Bghi P)和晕苯 (Cor)等 1 1种多环芳烃化合物 (PAHs)。数据表明 :呼和浩特市空气颗粒物中 PAHs的浓度较高 ;有约 97%的 PAHs富集于可吸入颗粒中。  相似文献   

4.
株洲市区农业土壤中多环芳烃的分布特征研究   总被引:3,自引:1,他引:2  
采集株洲市区农业土壤表层样品185个,用高效液相色谱法对16种多环芳烃(PAHs)进行检测结果表明,除萘外,其余15种PAHs均有不同程度的检出,以苯并[b]萤蒽、萤蒽和苯并菲等3或4环PAHs为主, ~5521μg/kg之间,平均280μg/kg.地域上,石峰区、芦淞区>天元区>荷塘区;从土地利用类型看,旱地>水田>林地.按Maliszewska-Kordybach土壤污染程度分级标准,株洲市区农业土壤总体上受到PAHs轻度污染,这些PAHs主要来源于工业生产、交通运输等过程中化石燃料的燃烧.  相似文献   

5.
以江苏省某大型化工企业周边居民区为研究区域,调查企业主导风的下风向2 km范围内的居民区以及对照区积尘中多环芳烃(PAHs)含量,对16种PAHs污染分布和特征进行研究,并评估积尘PAHs通过暴露途径对人群健康风险。结果表明:居民区积尘中16种PAHs全部检出,污染区∑PAHs均值为2 294μg/kg,明显高于对照区145μg/kg;污染区7个测点中有6个测点苯并(a)芘出现超标,超标倍数为0. 17~2. 5倍;所测的16种PAHs化合物中蒽、荧蒽、芘、、苯并(b)荧蒽、苯并(k)荧蒽、苯并(a)芘浓度相对较高;通过PAHs主成分分析和特征比值判断,不完全燃烧源对积尘中PAHs贡献率达77. 4%,污染区PAHs来源呈现石油燃烧、煤燃烧以及石油源的复合污染特征,对照区PAHs主要来源为煤的不完全燃烧;以苯并(a)芘毒性等效浓度进行风险评估,污染区致癌风险值明显高于对照区,儿童摄入PAHs风险总体高于成人;对照区儿童和成人致癌风险均小于1×10~(-6),不存在致癌风险;污染区儿童和成人平均致癌风险值分别为3. 95×10~(-6)、2. 65×10~(-6),在可接受范围内,但存在潜在致癌风险。  相似文献   

6.
在淄博市6 家代表性城市污水处理厂采集12个污泥样品,采用GC-MS法测定污泥中16种多环芳烃(PAHs)的含量,研究分析PAHs分布特征和来源,并作风险评价。结果表明,淄博城市污泥中共检出15种PAHs,总质量比(∑16PAHs)范围为0.23 mg/kg~3.76 mg/kg,平均值为1.20 mg/kg,各污泥间∑16PAHs差异显著;7种致癌性PAHs的质量比为0.11 mg/kg~2.56 mg/kg;污泥以6环PAHs为主。来源分析显示,污泥中PAHs主要来源于生物质和煤的燃烧,兼有汽车尾气排放的特征。风险评价结果显示,6 家污水处理厂污泥中PAHs毒性当量浓度(∑16TEQ)由高到低为Z2>Z5>Z6>Z4>Z1>Z3,7种致癌性PAHs是致癌风险的主要贡献者,其中二苯并[a,h]蒽贡献率最高。  相似文献   

7.
兰州市土壤中PAHs和PCBs的分布特征及风险评价   总被引:4,自引:0,他引:4  
通过采集兰州市各功能区表层土壤样品,分析土壤中PAHs和PCBs的分布特征及潜在风险。结果表明,兰州市土壤中16种PAHs的平均质量比为5 734μg/kg,其中7种致癌芳烃的平均质量比为276μg/kg;18种PCBs的平均质量比为45.9μg/kg,其中7种指示性PCBs的平均质量比为10.8μg/kg。风险评价结果表明,除苊为高生态风险外,兰州市土壤中PAHs其他组分和PCBs均处于低中生态风险。16种PAHs的毒性当量浓度为59.9μg/kg,主要贡献者为苯并[a]芘和苯并[b]荧蒽;7种指示性PCBs的毒性当量浓度为1.96×10~(-4)μg/kg,主要贡献来源为PCB138和PCB118。  相似文献   

8.
典型区域土壤中多环芳烃的污染分布特征   总被引:1,自引:0,他引:1  
以河南省3类典型工业区域为例,分析研究其土壤中多环芳烃类化合物的种类组成及含量分布特征,结果表明:3类典型工业区域周边土壤中均检出14种PAHs,其中萘、芘、艹屈 、苯并[a]蒽具有较高的检出水平;大型化工企业周边土壤中PAHs的检出率高于油田和工业园区;检出的14种PAHs的总质量比均值,大型化工企业明显高于油田和工业园区;3类典型工业区域土壤中PAHs测定值明显高于背景值,表明土壤已受到PAHs的影响;来源分析表明,PAHs的污染主要源自石油和燃料的燃烧.  相似文献   

9.
分析了隧道沥青摊铺过程环境空气中的TSP及多环芳烃质量浓度。TSP用膜法,中流量采样器采样15 min,重量法分析;超声波萃取,高效液相色法分析多环芳烃。结果表明,摊铺机周围空气中TSP超过8 mg/m3,道路空气中TSP超过3 mg/m3;环境空气中苊烯等12种多环芳烃均有检出,苊烯和艹屈质量浓度较高,苯并[a]芘和二苯并[a,h]蒽质量浓度较低。苯并[a]蒽、苯并[a]芘和二苯并[a,h]蒽超标,对人体健康危害较大。建议加强相关行业PAHs的排放水平及其健康风险研究,制定相关限值标准和沥青摊铺过程环境空气的沥青烟监测方法标准。  相似文献   

10.
2011年4月通过GC-MS检测和210Pb测年对灌河口海域沉积物(GHES)中的PAHs进行了分析,柱状沉积物中21种PAHs总浓度为21.0~209.0 ng/g,均值为88.1 ng/g,7种致癌PAHs浓度为7.0~90.0 ng/g,其中致癌剂苯并[a]芘浓度为ND~2.0 ng/g。PAHs浓度与沉积物中有机质含量呈低度正相关,与p H无明显相关性。源解析表明,近50年来GHES中的PAHs大部分来自煤和生物质燃烧。近50年来,总PAHs和16种优控PAHs浓度在波动中升高;近年来苊、苊烯、苯并[b]荧蒽、荧蒽、茚并[1,2,3-cd]芘的浓度增高,需查明来源。生态风险评价表明,GHES中以芴为主的负面生物毒性效应会偶尔发生。芴、苯并[b]荧蒽、苯并[k]荧蒽的浓度介于临界与偶然效应浓度值之间,应尽量减少对该海域沉积物的搅动,防止污染物再悬浮导致水体的二次污染。  相似文献   

11.
The purpose of this study was to determine the degree of contamination with polycyclic aromatic hydrocarbons (PAHs) in samples of urban soil from three European cities: Glasgow (UK), Torino (Italy) and Ljubljana (Slovenia). Fifteen PAHs (naphthalene, acenaphthene, fluorene, phenanthrene, anthracene, fluoranthene, pyrene, benzo[a]anthracene, chrysene, benzo[b]fluoranthene, benzo[k]fluoranthene, benzo[a]pyrene, dibenzo[a,h]anthracene, benzo[g,h,i]perylene, indeno[1,2,3-c,d]pyrene) were measured in urban soil samples, using harmonised sampling, sample extraction and analyte quantification methods. Although the mean concentration of each PAH in urban soils of each city showed a wide range of values, high levels of contamination were only evident in Glasgow, where the sum of concentrations of 15 PAHs was in the range 1487-51,822 microg kg(-1), cf. ranges in the other two cities were about ten-fold lower (89.5-4488 microg kg(-1)). The three predominant PAHs were phenanthrene, fluoranthene and pyrene, with the sum of these compounds about 40% of the total PAH content. These data, together with some special molecular indices based on ratios of selected PAHs, suggest pyrogenic origins, especially motor vehicle exhausts, to be the major sources of PAHs in urban soils of the three cities. The largest concentrations for PAHs were often found in sites close to the historic quarters of the cities. Overall, the different climatic conditions, the organic carbon contents of soil, and the source apportionment were the dominant factors affecting accumulation of PAHs in soil.  相似文献   

12.
Several polycyclic aromatic hydrocarbons (PAHs), including those which are carcinogenic, have been detected in rougan, a traditional Chinese barbecued pork dish. The food samples were cleaned up by caustic digestion, solvent extraction, liquid-liquid partition, and column chromatography. The determination was carried out using capillary gas-chromatography with a flame ionization detector. A 25-m HP-1 capillary column was used. Fluorene, phenanthrene, anthracene, benzo[a]anthracene, chrysene and benzo[k]fluoranthene were detected in three of the five samples within the range of 3-17 ng/g. Fluoranthene and pyrene were detected in only two of the samples at similar levels. Two potent carcinogenic compounds, benzo[a]pyrene and benzo[b,j,k]fluoranthene, were not detected in any of the samples. No detectable PAHs have been found in meat cooked without the direct contact of food with flame and smoke. In barbecuing over an open charcoal fire, animal fat and juices dripping onto the open fire probably enhanced the formation of PAHs.  相似文献   

13.
The concentrations of polycyclic aromatic hydrocarbons (PAHs) were determined in groundwater and soil profiles from upland field and paddy field in the Hunpu wastewater-irrigated area of northeast China. In the study area, the peak concentrations of total PAHs were within or just below the topsoil, and the contents decline with depth at various trend verified by the Spearman's rank correlation test. The total PAH concentrations in upland soil layers ranged from 46.8 to 2,373.0 microg/kg (dry wt.), while the concentrations in paddy soil layers ranged from 23.1 to 1,179.1 microg/kg (dry wt.). The 16 priority PAHs were all detected in the analyzed soil samples, and naphthalene (Nap), phenanthrene (Phe), fluoranthene (Fla), chrysene (Chr), and benzo[a]pyrene (Bap) were selected for further study in terms of their vertical distributions. The concentrations of both total and individual PAHs in upland soil were generally higher than those in the corresponding layers of paddy soil. The concentrations of total and individual PAH were notably different between the corresponding horizons in upland and paddy soil were probably attribute to the different sources and properties of the PAHs and soil; different methods of soil tillage and plant growing. Special PAH compound ratios, such as phenanthrene/anthracene, fluoranthene/pyrene, LMW/HMW, and parent PAH ratios (Ant/178, Fla/202, BaA/228, and Ilp/276) were used to identify the source of soil PAHs. The data suggests that the possible sources of PAHs in the Hunpu wastewater-irrigation area are the incomplete combustion of coal, petroleum and crude oil, automobile exhausts. These sources lead to pollution of the soil and groundwater by wet/dry deposition and vertical downward migration.  相似文献   

14.
On 27 July 2003, Tasman Spirit spilled 31,000 tonnes of crude oil into the sea at the Karachi coast. This disaster badly affected the marine life (Flora and Fauna.) Present research has been proposed to ascertain the level of Polycyclic Aromatic hydrocarbons (PAHs) contamination in different fisheries including Fishes, Crustaceans; Crabs and Shrimps, Mollusks and Echinoderms along with passing time. Heavier components of crude oil such as Polycyclic Aromatic Hydrocarbons (PAHs) appear to cause most damages as these are relatively unreactive and persist in water. High concentrations of toxic PAHs were observed in all the fisheries and shellfishes caught form oil-impacted area. In this study fishes were found most contaminated than shellfishes i.e. summation operator 16 PAH = 1821.24 microg/g and summation operator 1164.34 microg/g, respectively. Naphthalene was found in the range of 0.042-602.23 microg/g. Acenaphthylene, acenaphthene, fluorene, phenanthrene and anthracene were detected in the range 0.008-80.03 microg/g, fluoranthene, pyrene, benzo(a)anthracene and chrysene 0.0008-221.32 microg/g, benzo(b) fluoranthene, benzo(k)fluoranthene and benzo(a) pyrene 0.0005-7.71 microg/g, benzo(g,h,i)perylene and indeno(1,2,3-c,d)pyrene 0.02-503.7 microg/g. Dibenzo(a,h)anthracenre was not detected in any specie.  相似文献   

15.
Biomonitoring of polycyclic aromatic hydrocarbons (PAHs) in the leaves of Calotropis gigantea R.Br. were performed at seven sites in the surrounding areas of a Thermal Power Plant (TPP), using the gas chromatography and mass spectrometry technique. The primary objective of the study was to monitor the degree of PAHs load in the nearby sites around TPP compared to distant sites. Total PAH (SigmaPAH) concentrations in the leaves ranged from 372.18 (at control site 7) to 4362.35 ng g(-1) d.w. (at highest polluted site 4). The concentration factors ranged from 2.65 to 11.72 for the sites located at 1 km to the point source and 1.0 to 7.08 for distant sites. The share of carcinogenic PAHs to the total PAHs differed with the site, ranging from 10.76% to 26.92%. The sites located closer to TPP have shown higher concentrations of medium and high molecular weight PAHs, which decreased gradually with the distance from the source. The total PAH burden at control site was dominated by the low and medium molecular weight PAHs compounds viz., naphthalene, acenaphthylene, acenaphthene, phenanthrene, fluoranthene, pyrene, chrysene, coronene., whilst at other sites medium and high PAHs viz., fluoranthene, pyrene, benzo (a) anthracene, chrysene, benzo (b) fluoranthene, benzo (e) pyrene and coronene showed the highest values. These results support the biomonitoring ability of Calotropis gigantea R.Br. leaves to monitor PAHs contamination.  相似文献   

16.
Increasing urbanization and changes in land use in Langat river basin lead to adverse impacts on the environment compartment. One of the major challenges is in identifying sources of organic contaminants. This study presented the application of selected chemometric techniques: cluster analysis (CA), discriminant analysis (DA), and principal component analysis (PCA) to classify the pollution sources in Langat river basin based on the analysis of water and sediment samples collected from 24 stations, monitored for 14 organic contaminants from polycyclic aromatic hydrocarbons (PAHs), sterols, and pesticides groups. The CA and DA enabled to group 24 monitoring sites into three groups of pollution source (industry and urban socioeconomic, agricultural activity, and urban/domestic sewage) with five major discriminating variables: naphthalene, pyrene, benzo[a]pyrene, coprostanol, and cholesterol. PCA analysis, applied to water data sets, resulted in four latent factors explaining 79.0% of the total variance while sediment samples gave five latent factors with 77.6% explained variance. The varifactors (VFs) obtained from PCA indicated that sterols (coprostanol, cholesterol, stigmasterol, β-sitosterol, and stigmastanol) are strongly correlated to domestic and urban sewage, PAHs (naphthalene, acenaphthene, pyrene, benzo[a]anthracene, and benzo[a]pyrene) from industrial and urban activities and chlorpyrifos correlated to samples nearby agricultural sites. The results demonstrated that chemometric techniques can be used for rapid assessment of water and sediment contaminations.  相似文献   

17.
Atmospheric particulate and gaseous polycyclic aromatic hydrocarbons (PAHs) samples were collected from an urban area in Dokki (Giza) during the summer of 2007 and the winter of 2007–2008. The average concentrations of PAHs were 1,429.74 ng/m3 in the particulate phase, 2,912.56 ng/m3 in the gaseous phase, and 4,342.30 ng/m3 in the particulate + gaseous phases during the period of study. Dokki has high level concentrations of PAH compounds compared with many polluted cities in the world. The concentrations of PAH compounds in the particulate and gaseous phases were higher in the winter and lower in the summer. Total concentrations of PAHs in the particulate phase and gaseous phase were 22.58% and 77.42% in summer and 36.97% and 63.03% in winter of the total (particulate + gaseous) concentrations of PAHs, respectively. The gaseous/particulate ratios of PAHs concentration were 3.43 in summer and 1.71 in winter. Significant negative correlation coefficients were found between the ambient temperature and concentrations of the total PAHs in the particulate and gaseous phases. The distribution of individual PAHs and different categories of PAHs based on aromatic ring number in the particulate and gaseous phases during the summer and winter were nearly similar, indicating similar emission sources of PAHs in both two seasons. Benzo(b)fluoranthene in the particulate phase and naphthalene in the gaseous phase were the most abundant compounds. Diagnostic concentration ratios of PAH compounds indicate that these compounds are emitted mainly from pyrogenic sources, mainly local vehicular exhaust emissions. Health risks associated with the inhalation of individual PAHs in particulate and gaseous phases were assessed on the basis of its benzo(a)pyrene equivalent concentration. Dibenzo(a,h)anthracene and benzo(a)pyrene in the particulate phase and benzo(a)pyrene and benzo(a)anthracene in the gaseous phase were the greatest contributors to the total health risks. The relative mean contributions of the total carcinogenic activity (concentrations) of all PAHs to the total concentrations of PAHs were 29.37% and 25.15% in the particulate phase and 0.76% and 0.92% in the gaseous phase during the summer and winter, respectively. These results suggest that PAHs in the particulate phase in the ambient air of Dokki may pose a potential health risk.  相似文献   

18.
The concentrations, distribution and sources of 16 polycyclic aromatic hydrocarbons (PAHs) were determined in 30 agricultural soil and 16 vegetable samples collected from subtropical Shunde area, an important manufacturing center in China. The total PAHs ranged from 33.7 to 350 μg/kg in soils, and 82 to 1,258 μg/kg in vegetables. The most abundant individual PAHs are phenanthrene, fluoranthene, chrysene, pyrene and benzo(b)fluoranthene for soil samples, and anthracene, naphthalene, phenanthrene, pyrene and chrysene for vegetable samples. Average vegetable–soil ratios of total PAHs were 2.20 for leafy vegetables and 1.27 for fruity vegetables. Total PAHs in vegetable samples are not significantly correlated to those in corresponding soil samples. Principal component analyses were conducted to distinguish samples on basis of their distribution in each town, soil type and vegetable specie. Relatively abundant soil PAHs were found in town Jun’an, Beijiao, Chencun, Lecong and Ronggui, while abundant vegetable PAHs were observed in town Jun’an, Lecong, Xingtan, Daliang and Chenchun. The highest level of total PAHs were found in vegetable soil, followed by pond sediment and “stacked soil” on pond banks. The PAHs contents in leafy vegetables are higher than those in fruity vegetables. Some PAH compound ratios suggest the PAHs derived from incomplete combustion of petroleum, coal and refuse from power generation and ceramic manufacturing, and paint spraying on furniture, as well as sewage irrigation from textile industries. Soil PAHs contents have significant logarithmic correlation with total organic carbon, which demonstrates the importance of soil organic matter as sorbent to prevent losses of PAHs.  相似文献   

19.
广东省南海市主干道气溶胶中多环芳烃(PAHs)的研究   总被引:1,自引:0,他引:1  
气溶胶采样点位于广东省南海市桂江路边缘及两侧 ,采集时间为 2 4 h,连续采集三天。使用仪器为国产大体积采样器。同时在公园内设点采样 ,以作背景研究。样品经超声波抽提和层析柱分离得到正构烷烃、芳烃 (AHs)和极性组分等三种有机组分。对 PAHs进行 GC MS分析 ,气溶胶中具有较高含量的芴、菲、蒽、荧蒽、芘、苯并 [a]蒽、、苯并 [b]荧蒽、苯并 [k]荧蒽、苯并 [a]芘、茚并 [1 ,2 ,3-cd]芘、二苯并 [a,h]蒽、苯并 [g,h,i]等。通过 TSP研究认为 ,主干道的机动车排放和扬尘是气溶胶的主要来源 ,气候改变也是 TSP变化的另一重要因素。  相似文献   

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