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1.
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
2.
空气中挥发性有机物(VOCs) 的监测方法研究 总被引:11,自引:4,他引:11
建立了热脱附仪和气相色谱-质谱联用测定室内空气和环境空气中35种挥发性有机污染物的分析方法,方法的最低检出限为0.1~0.9μg/m3, 20μg/m3挥发性有机物标准经6次的重复测定,其相对标准偏差小于8.4%.该方法已用于室内空气和环境空气的测定,取得令人满意的结果. 相似文献
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4.
为弄清石家庄市冬季大气中VOCs的污染特征,采用美国环保局TO-15方法对石家庄市冬季大气中VOCs组成进行了定性和定量分析。在此基础上,进行了VOCs的月度变化分析、春节期间的变化分析,并进行了VOCs与空气质量指数AQI、PM2.5等之间的相关性分析;根据VOCs组成及变化情况和相关性,分析了其可能的来源。结果表明,石家庄市冬季大气中VOCs的质量浓度为145.7~1 410.7μg/m3,VOCs组分主要有丙酮、二氯甲烷、苯、乙酸乙酯、甲苯、1,2-二氯丙烷、三氯甲烷。春节期间,大气中VOCs的浓度有大幅的下降,比日常均值下降了40.9%。AQI较高时,大气中VOCs浓度有所升高。石家庄市冬季大气中丙酮、二氯甲烷、乙酸乙酯等主要来源于医药化工生产活动,苯、甲苯主要来源于煤燃烧。 相似文献
5.
于2018年11月—2019年1月采集了青岛、烟台、日照、威海、潍坊、东营和滨州7个沿海城市的环境空气样品,分析了117种VOCs的污染水平、臭氧(O3)生成潜势、二次有机气溶胶(SOA)生成潜势。结果显示,观测期间,7个沿海城市大气VOCs质量浓度表现为东营(422 μg/m3)>滨州(366 μg/m3)>烟台(324 μg/m3)>青岛(261 μg/m3)>威海(226μg/m3)>潍坊(192 μg/m3)>日照(146 μg/m3)。其中,青岛、烟台、日照和东营以卤代烃为主要VOCs污染物,威海、潍坊和滨州以烷烃为主要VOCs污染物。滨州O3生成潜势和SOA生成潜势最大,分别为872 μg/m3和0.70 μg/m3;日照O3生成潜势最小,为220 μg/m3;东营SOA生成潜势最小,为0.22 μg/m3。芳香烃是7个城市SOA的重要前体物。 相似文献
6.
土壤中挥发性有机物的顶空制备方法研究 总被引:2,自引:0,他引:2
对土壤中挥发性有机物(VOCs)有效提取的顶空(HS)前处理条件进行了研究。结果表明,在一定的气相色谱条件下,影响顶空装置对挥发性有机物提取水平的主要有顶空平衡时间、平衡温度、基准修正液的加入量等因素,在一定的HS—GC条件下,土壤中挥发性有机物的准确度可达80%。 相似文献
7.
某乡镇大气中毒害挥发性有机物的研究 总被引:1,自引:0,他引:1
对经济较发达的某乡镇大气的毒害挥发性有机化合物研究表明,该镇城区及其较发达的乡村已受到一定程度的有机污染,大气中主要存在苯系物、萘、氯代烃等毒害挥发性有机化合物.个别样品的苯乙烯含量高达14.50μg/m3,此值已超过中国居住区最高容许浓度. 相似文献
8.
综合考虑国内外优先控制污染物筛选的方法,结合实际调查情况,制定了石家庄市大气中优先控制挥发性有机物筛选的原则。对检出率高、贡献率高,可能对人体健康存在潜在危害性的挥发性有机物作筛选,提出了包含20种化合物的优先控制名单,其中卤代烃7种,芳香烃5种,酯类3种,酮类2种,烯烃、醛类和硫化物各1种。从化合物的用途和应用领域分析,医药化工行业可能是石家庄市区大气中挥发性有机物的主要排放源。 相似文献
9.
对常州市某典型化工园区大气中挥发性有机物(VOCs)污染状况进行了调查。结果表明,该化工园区大气中检出挥发性有机物共有58种,组分有芳香烃、饱和烷烃、卤代烃、烯烃、醛酯类化合物及其他类;苯、甲苯、乙苯、二甲苯为主要挥发性有机污染物,质量浓度为1.0~194μg/m~3;均未超出参考标准的限值。背景点位和园区点位大气中主要ρ总(VOCs)在秋冬季最高,敏感点大气VOCs随季节变化也较为明显;园区T1和T2ρ总(VOCs)年均值高于敏感点位,背景点位年均值最低;园区点位除了汽车尾气排放之外,溶剂的挥发和生产工艺中污染物的排放也增加了大气中苯系物的浓度,同时也对敏感点位和对照点位的大气质量产生了一定的影响。 相似文献
10.
挥发性有机物(VOCs)具有光化学活性,可产生臭氧污染,形成二次有机气溶胶,是形成大气复合污染的重要前体物之一,并会对人体健康造成一定危害。我国VOCs排放量正逐年增加,引发的光化学烟雾、城市灰霾等复合大气污染问题日益严重。本文概述了VOCs概念定义、主要分类、污染来源与环境危害,阐述了大气、水体、土壤中VOCs监测方法,综述了VOCs三类治理技术,指出VOCs成分极其复杂,不同类型化合物性质各异,大多数行业VOCs又以混合物形式排放,采用单一治理技术难以达到治理效果,经济上不划算,选用组合技术能实现达标排放,降低治理费用,并达到较好治理效果。 相似文献
11.
A new method of determining the composition of sediment/soil gases and their volatile organic compound (VOC) content is described. VOCs were collected in situ from intertidal sediments in the Menai Strait and surrounding areas. The sampling was performed using a portable sampler comprising a funnel coupled to a SPME fibre. Gases were extracted from the sediments using a small vacuum pump pulling 100 mL min(-1) at atmospheric pressure. Sixty one different compounds were detected in the samples, and their fluxes and concentrations were determined. The compounds were classified into groups: halogenated, sulfur containing compounds, aldehydes, BTEXs (benzene, toluene, ethyl benzene and xylene) and aliphatic hydrocarbons. Results of principal component analysis (PCA) showed that the chemical composition of extracted gas was influenced primarily by sediment type. Muddy anoxic sediments were dominated by halogenated and sulfur containing compounds and sandy sediments had more aldehydes and BTEXs. 相似文献
12.
Giakoumi A Maggos T Michopoulos J Helmis C Vasilakos Ch 《Environmental monitoring and assessment》2009,152(1-4):83-95
PM(2.5) and VOCs (benzene, toluene, m-p-o-xylenes) concentrations were measured in an urban and a suburban site in Athens, Greece, during the period between April and November 2004. This period, which is considered to be the warmer period in Greece, is characterized by the development of sea-breeze over the Attica Basin. Additionally strong Northern, North-eastern winds called "The Etesians", predominate during the summer months (July-August), acting positively to the dispersion of pollutants. In this campaign, 24 days with sea-breeze development were observed, 15 days with northern winds, 6 days with southern winds while the rest of the days presented no specific wind profile. Maximum concentrations of PM(2.5), VOCs and nitrogen oxides, were detected during the days with sea-breeze, while minimum concentrations during the days with northern winds. Ozone was the only pollutant that appeared to have higher concentrations in the background site and not in the city centre, where benzene presented strong negative correlation with ozone, indicating the photochemical reaction of hydrocarbons that lead to the ozone formation. The BTX ratios were similar for both sites and wind profiles, indicating common sources for those pollutants. T/B ratio ranged in low levels, between 3-5 for site A and 2-5 for site B, suggesting vehicles emissions as the main sources of volatile compounds. Finally, the strong correlations of PM(2.5) and benzene concentrations, between the two sampling sites, indicate that both the city centre and the background site, are affected by the same sources, under common meteorological conditions (sea-breeze, northern winds). 相似文献
13.
Colomb A Yassaa N Williams J Peeken I Lochte K 《Journal of environmental monitoring : JEM》2008,10(3):325-330
Five marine cosmopolitan phytoplankton species namely; Calcidiscus leptoporus, Emiliania huxleyi, Phaeodactylum tricornutum, Chaetoceros neogracilis and Dunaliella tertiolecta were screened for emissions of selected VOCs using head space gas chromatography/mass spectrometry (HS-GC/MS) in single ion mode. The VOCs investigated included isoprene and various halogenated compounds. Among the different algae groups, the two diatoms Ch. neogracilis and P. tricornutum were the strongest emitters of methyl bromide (CH3Br), and Ch. neogracilis was the strongest emitter of isoprene. Furthermore, we present evidence that several chlorinated organic compounds, normally considered as anthropogenic, can be produced from marine phytoplankton (namely chloroform, dichloromethane, trichloroethylene, tetrachloroethylene, chlorobenzene and dichlorobenzene). 相似文献
14.
In this study mould damaged materials, including carpet, concrete, gypsum board, insulation, plastic, sand and wood, from 20 different buildings with moisture problems were collected. To study emissions from these materials both conventional methods for sampling, such as collection on Tenax TA, were used as well as complementary methods for sampling a wider spectrum of compounds, such as more volatile VOCs, amines and aldehydes. Analysis was carried out using gas chromatography and high-performance liquid chromatography. Mass spectrometry was used for identification of compounds. Alcohols and ketones were almost exclusively emitted from the materials after they had been wet for a week. Acids were also emitted in large quantities from wet gypsum board and plastic. No primary or secondary amines could be identified, but two tertiary amines, trimethylamine and triethylamine, were emitted from sand contaminated by Bacillus. The most common moulds found were Penicillium and Aspergillus. A multivariate method (partial least squares, PLS) was used to investigate the emission patterns from the materials. Materials with bacterial growth had a different VOC profile to those with only mould growth. 相似文献
15.
P. Ciccioli A. Cecinato E. Brancaleoni A. Brachetti M. Frattoni 《Environmental monitoring and assessment》1994,31(1-2):211-217
HRGC-MS determinations carried out on samples collected in urban, suburban, rural, forest and remote areas suggest that several other classes of non-methane VOC than isoprene and monoterpene hydrocarbons can be emitted by plants. Because of their high photochemical reactivity, they can contribute to tropospheric ozone production which, in turn, can cause climate changes through radiative forcing. 相似文献
16.
A method has been developed for the speciation and quantitative determination of hydrocarbons in urban air in the city of Leeds. Hydrocarbons were pre-concentrated by adsorbent tube air sampling and analyzed using thermal desorption and gas chromatography with flame ionization detection and structural confirmation by mass spectrometric detection. While automated volatile organic compound (VOC) analyzers produced data for a maximum of about 30 compounds simultaneously, with the method described here, a total of 68 C6-C12 hydrocarbons were measured simultaneously in one analysis at parts per billion (ppb) levels. Several monitoring surveys were performed, one during the winter of 1993 and the other in the summer of 1994, at a number of sites to investigate the levels of VOCs identified in the urban air of Leeds. 相似文献
17.
Characterizations of volatile organic compounds during high ozone episodes in Beijing,China 总被引:3,自引:0,他引:3
Air samples were collected in Beijing from June through August 2008, and concentrations of volatile organic compounds (VOCs)
in those samples are here discussed. This sampling was performed to increase understanding of the distributions of their compositions,
illustrate the overall characteristics of different classes of VOCs, assess the ages of air masses, and apportion sources
of VOCs using principal compound analysis/absolute principal component scores (PCA/APCS). During the sampling periods, the
relative abundance of the four classes of VOCs as determined by the concentration-based method was different from that determined
by the reactivity approach. Alkanes were found to be most abundant (44.3–50.1%) by the concentration-based method, but aromatic
compounds were most abundant (38.2–44.5%) by the reactivity approach. Aromatics and alkenes contributed most (73–84%) to the
ozone formation potential. Toluene was the most abundant compound (11.8–12.7%) during every sampling period. When the maximum
incremental reactivity approach was used, propene, toluene, m,p-xylene, 1-butene, and 1,2,4-trimethylbenzene were the five
most abundant compounds during two sampling periods. X/B, T/B, and E/B ratios in this study were lower than those found in
other cities, possibly due to the aging of the air mass at this site. Four components were extracted from application of PCA
to the data. It was found that the contribution of vehicle exhaust to total VOCs accounted for 53% of VOCs, while emissions
due to the solvent use contributed 33% of the total VOCs. Industrial sources contributed 3% and biogenic sources contributed
11%. The results showed that vehicle exhausts (i.e., unburned vehicle emissions + vehicle internal engine combustion) were
dominant in VOC emissions during the experimental period. The solvent use made the second most significant contribution to
ambient VOCs. 相似文献
18.
A method has been developed for concurrent analysis of C2-C7 hydrocarbons and C2-C5 oxygenated volatile organic compounds (o-VOCs) including alcohols, aldehydes, ketones and ethers. A multi-bed, Peltier-cooled adsorbent trap, consisting of Carboxen 1000 and Carbopack B, was used to acquire one sample per hour. Upon injection the sample was split in an approximately 50:50 ratio between a 50 m aluminium oxide (Al2O3) porous layer open tubular (PLOT) column and a 10 m LOWOX column. Eluents from each column were then analysed using flame ionisation detection (FID). Regular calibration of the system was performed using a standard cylinder mixture at the parts per billion by volume (ppbV) level for non-methane hydrocarbons (NMHCs) and a permeation tube method for the oxygenated species. The system is fully automated with NMHC detection limits between 1 and 10 parts per trillion by volume (pptV) and o-VOC detection limits between 10 and 40 pptV. 相似文献
19.
A canister-based 1 week sampling method using a mechanical flow controller and a 6 L fused-silica-lined canister was evaluated for the long-term measurement of 47 VOCs in ambient air at pptv (volume/volume) to ppbv levels by use of a three-stage preconcentation method followed by GC-MS analysis. The GC conditions were initially optimized for complete separations of several pptv-level VOCs (e.g. vinyl chloride, 1,3-butadiene, acrylonitrile, 1,2-dichloroethane and chloroform) in ambient air because the selected ions are easily interfered with by coexisting C4-, C5-hydrocarbons and analytes presented at ppbv levels. Thirty-four VOCs determined by the 1 week and 24 h sampling method in December 16-22 (2002) had concentrations of 6.0-15000 pptv per compound. Concentrations of 28 VOCs (including polar VOCs (e.g. methyl isobutyl ketone and butyl acetate)) obtained by the method were approximately equal to the mean values calculated from 24 h sampling (< +/- 10% deviation). Six VOCs that had low concentrations of 6.0-43 pptv showed more than +/- 10% deviation. Thirteen VOCs were not detected during the entire sampling period. The effect of relative humidity or ozone for the specific VOCs (e.g. MIBK, butyl acetate, vinyl chloride, 1,3-butadiene and styrene) was negligible. 相似文献
20.
Comprehensive screening and priority ranking of volatile organic compounds in Daliao River,China 总被引:1,自引:0,他引:1
Huilian Ma Haijun Zhang Longxing Wang Jincheng Wang Jiping Chen 《Environmental monitoring and assessment》2014,186(5):2813-2821
An analytical strategy for comprehensive screening of target and non-target volatile organic compounds (VOCs) in surface water was developed, and it was applied to the analysis of VOCs in water samples from Daliao River. The target VOCs were quantified using purge and trap-gas chromatography-mass spectrometry (P&T-GC/MS). Among 20 water samples, 34 VOCs were detected at least once. For the screening of non-target VOCs, the double distillation apparatus was used for the pre-concentration of VOCs prior to P&T-GC/MS analysis. Subsequently, deconvolution software and NIST mass spectral library were applied for the identification of the non-target compounds. A total of 17 non-target VOCs were identified. The most frequently detected VOCs (detection frequencies >80 %) included toluene, benzene, naphthalene, 1,2-dichloroethane, 1,1,2-trichloroethane, and methyl tert-butyl ether. The distribution of VOCs obviously varied according to the sampling sites. The total concentrations of VOCs in water samples collected from the heavily industrialized cities (Anshan and Liaoyang) and the busy port city (Yingkou) were relatively high. The top ten priority VOCs, including naphthalene, 1,2-dichloroethane, o-xylene, 1,3-dichlorobenzene, tetrachloroethene, 1,2-dichlorobenzene, 1,2,4-trichlorobenzene, ethylbenzene, m-xylene, and p-xylene, were obtained by the ranking of the detected VOCs according to their occurrence and ecological effects. These compounds should be given more attention in monitoring and drainage control strategies. 相似文献