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1.
对2013—2015年重庆主城区空气重污染情况进行统计,并结合地面和高空探测手段,分析了一次典型重污染过程的污染特征。结果表明:重庆主城区秋冬季节的空气污染,以受不利气象条件影响的本地细颗粒物(PM_(2.5))累积污染为主,PM_(2.5)占PM_(10)的平均比例为72%左右;大气能见度与颗粒物浓度、相对湿度均呈现明显的负相关性。典型污染期间的近地层颗粒物污染带主要在0~400 m的高度范围,AOD值高达2.0~2.4,α指数在1.0左右。二次粒子、机动车尾气、扬尘是污染期间重庆主城区PM_(2.5)的主要来源。  相似文献   

2.
利用轨迹聚类法,对2014年12月至2015年1月重庆主城区上方的后向轨迹气团进行聚类分组,分析重庆主城区气团来源。结合重庆主城区PM_(2.5)小时浓度资料,分析污染较重时重庆主城区后向轨迹特征。最后结合潜在源贡献因子分析(PSCF)法和浓度权重轨迹分析(CWT)法定性与定量分析了重庆主城区PM_(2.5)的潜在源区。结果表明,重庆本地气团占60.9%,不利于本地污染物的扩散;超过60%的污染事件是由本地颗粒物聚集造成的;重庆主城区颗粒物其潜在污染源区,以西藏与四川交界处、四川东部、贵州北部以及重庆本地为主。  相似文献   

3.
重庆主城区秋冬季逆温对空气质量影响的观测分析   总被引:2,自引:0,他引:2  
2013年9—11月利用RPG-HATPRO地基多通道微波辐射计对重庆主城区大气进行连续探测,统计了大气逆温情况,并对典型重污染天气下大气逆温与空气质量状况进行综合分析。结果表明,逆温出现的频率为63.3%,基本为接地逆温类型,逆温层厚度为953 m,逆温强度为0.3℃/hm;逆温的存在为气溶胶的积聚和凝聚创造了有利条件。  相似文献   

4.
北京春节期间大气颗粒物污染及影响   总被引:13,自引:0,他引:13  
利用2006年春节期间的大气颗粒物浓度及粒径谱分布资料,结合大气能见度及NO2监测数据,分析了北京市鞭炮燃放禁改限后大气颗粒物污染的变化规律,以及对大气消光作用的影响.结果表明:春节期间特别是除夕夜大量鞭炮的集中燃放导致了大气颗粒物浓度的急剧升高,主要以细粒子为主;颗粒物浓度的升高致使大气能见度明显降低,鞭炮燃放最集中的时段,能见度低于2 km;燃放鞭炮产生的颗粒物是造成大气消光作用的主要因素.估算了北京市鞭炮燃放的颗粒物排放量,2006年除夕0:00~1:00市区排放了大约3.0×104kg PM10,官园监测点PM10小时最高质量浓度超过了800 μg/m3.元宵节夜间燃放鞭炮产生的颗粒物半衰期为2.4 h.  相似文献   

5.
通过酸缓冲能力的测定实验,研究杭州市主城区大气颗粒物的酸缓冲能力,并利用二重源解析技术,解析了大气颗粒物中碱性组分的来源.结果表明,杭州市主城区大气颗粒物呈弱碱性,对降水酸度有一定的缓冲作用,但作用较小.总体而言,TSP与PM10的酸缓冲能力与其浓度呈负相关,但相关关系不明显,TSP的酸缓冲能力比PM10强.Ca是影响大气颗粒物酸缓冲能力的关键化学组分.TSP的酸缓冲能力主要来自建筑水泥尘.  相似文献   

6.
当前细颗粒物PM2.5已成为城市环境的主要污染物,研究城市不对称街谷内PM2.5浓度的垂直分布特征,对居民日常生活与健康出行有现实意义。实验选取2013年3个不同阶段对高度在1~35 m范围的街谷进行PM2.5浓度监测,同时引用街谷内流场模型与浓度场模型,对PM2.5浓度垂直分布特征及成因进行探究。结果表明,不对称街谷受大气对流、风速、风向影响,街谷内细颗粒物存在不均匀分布特点,在较高侧随着壁面高度的增加PM2.5浓度大体呈"S"型曲线变化。同时在同一阶段监测的4天中街谷内PM2.5浓度分布特征大体一致,而阶段之间差异明显;街谷内PM2.5浓度垂直分布的最高浓度差出现在阶段1,高达75μg/m3,阶段2与阶段3浓度差相对减弱,仅在20~30μg/m3之间。通过阶段2与阶段3对比可知,北京冬季供暖燃煤对大气细颗粒物的贡献较大,导致颗粒物浓度偏高;而非采暖期气温回升,大气对流作用较强,有助于大气颗粒物扩散,因而街谷内PM2.5污染程度相对较低。  相似文献   

7.
灰霾天气与大气颗粒物的相关性研究综述   总被引:9,自引:0,他引:9  
随着城市化进程的迅速发展,城市大气污染加剧,灰霾天气也随之增多。综述了灰霾天气期间大气颗粒物在时空分布和污染水平2方面的污染特征,分析了大气颗粒物与能见度相关性,介绍了国内外对灰霾天气期间大气污染物的组成及源解析方面的研究进展,并提出了今后灰霾天气的研究方向。  相似文献   

8.
河北廊坊地区一次持续重污染天气分析   总被引:1,自引:0,他引:1  
利用廊坊市环境监测数据及常规气象资料,对2014年2月20—26日廊坊地区持续重污染天气进行分析。结果表明,廊坊地区上空一直受弱脊或浅槽控制,地面维持弱气压场,是典型的静稳天气;边界层内以偏东风、偏南风为主,风速很小甚至出现静风,相对湿度较大,近地面层有较强、较厚的逆温层,导致边界层内大气扩散能力差,与静稳的气象条件配合有助于污染物在低层的持续积累和霾天气的形成;风向、风速以及相对湿度等逐时变化与PM2.5浓度关系密切;混合层高度与静稳天气指数在重污染天气过程中有较好的指示作用。  相似文献   

9.
为应对2017年底绵阳出现的一次重污染天气,绵阳政府于2017年12月25日0时至29日12时首次实行了机动车尾号限行措施。利用2017年12月20日至2018年1月2日绵阳4个国控环境质量监测站点的CO、NO_2、SO_2、O_3、PM_(2.5)、PM_(10)的数据分析限行前后的污染物浓度变化特征,并结合气象数据进行污染成因分析。结果表明,大气颗粒物PM_(2.5)和PM_(10)是此次重污染天气的首要污染物,机动车尾号限行措施对PM_(2.5)和PM_(10)有一定的减排效果。机动车尾号限行措施对NO_2、SO_2、O_3具有明显的减排效果,而对CO几乎没有减排效果。限行前和限行期大气颗粒物主要来源于化学转化形成的二次颗粒物,而限行后则转为沙尘、扬尘等一次颗粒物。江油对绵阳大气颗粒物PM_(2.5)、PM_(10)影响很大,气流轨迹出现频率高,大气颗粒物浓度也高,有必要考虑进行区域联防联控。  相似文献   

10.
基于Mie散射激光雷达探测数据及地面细颗粒物(PM2.5)观测资料和常规气象观测资料,利用logistic曲线计算了混合层顶高度,进一步分析了边界层内混合层以上区域大气消光系数廓线在静稳气象条件下的垂直结构。结果表明:(1)通过高斯误差函数构造数学模型可以将边界层内混合层以上区域进一步细分;(2)成都在轻度污染、中度污染、重度污染和严重污染4类静稳气象条件下大气消光系数廓线自下而上一致呈现出混合层、缓降层、过渡层和自由大气的垂直结构特征;(3)分析一次典型灰霾过程发现,PM2.5对混合层顶高度有显著影响,两者之间存在显著的负相关关系,而对缓降层顶高度和过渡层顶高度影响不大。  相似文献   

11.
为研究城市高密度街区大气颗粒物浓度分布特征,2019年秋季对上海市某高密度街区道路大气颗粒物浓度、空气温度、相对湿度、地理位置、车辆与道路图像视频信息进行了同步移动在线监测,并结合街区内固定站数据和后向轨迹模拟结果,总结了影响街区大气颗粒物浓度变化的主要因素。结果表明:城市大气颗粒物背景拟合值处于较低水平时,街区内的大气颗粒物浓度变化和影响因素易被识别;机动车污染源对大气颗粒物浓度贡献大,其中大型机动车的影响明显;户外施工和道路清扫会引起大气颗粒物浓度上升,其中PM10上升更明显;交通密度大的十字路口大气颗粒物浓度通常较高;城市高架的盖状结构会阻碍大气颗粒物在垂直方向上的扩散,引起局部大气颗粒物浓度上升;街区内高大浓密的乔木对近地面的大气颗粒物屏蔽效果不理想,甚至有助于颗粒物累积;早晚高峰时段大气颗粒物浓度较非高峰时段高。  相似文献   

12.
为研究城市高密度街区大气颗粒物浓度分布特征,2019年秋季对上海市某高密度街区道路大气颗粒物浓度、空气温度、相对湿度、地理位置、车辆与道路图像视频信息进行了同步移动在线监测,并结合街区内固定站数据和后向轨迹模拟结果,总结了影响街区大气颗粒物浓度变化的主要因素。结果表明:城市大气颗粒物背景拟合值处于较低水平时,街区内的大气颗粒物浓度变化和影响因素易被识别;机动车污染源对大气颗粒物浓度贡献大,其中大型机动车的影响明显;户外施工和道路清扫会引起大气颗粒物浓度上升,其中PM10上升更明显;交通密度大的十字路口大气颗粒物浓度通常较高;城市高架的盖状结构会阻碍大气颗粒物在垂直方向上的扩散,引起局部大气颗粒物浓度上升;街区内高大浓密的乔木对近地面的大气颗粒物屏蔽效果不理想,甚至有助于颗粒物累积;早晚高峰时段大气颗粒物浓度较非高峰时段高。  相似文献   

13.
杭州市空气颗粒物污染特征及变化规律研究   总被引:3,自引:0,他引:3  
根据2006—2010年杭州市空气颗粒物的监测数据及2002、2006、2008年空气颗粒物来源解析结果,对杭州市空气颗粒物浓度、化学组分与污染来源等特征的变化规律进行分析,以期为空气颗粒物污染控制提供决策依据。结果表明,近年来杭州市PM10浓度有所下降,但一类功能区PM10仍超出《环境空气质量标准》(GB 3095—1996)的要求(≤0.04mg/m3),杭州市空气颗粒物污染以细颗粒物为主,空气颗粒物的二次转化、机动车尾气尘等产生的二次粒子污染相对严重;煤烟尘对杭州市PM10的贡献率下降明显,城市扬尘、二次粒子和机动车尾气尘对PM10的贡献率有所增加,是杭州市PM10的主要来源。  相似文献   

14.
INTENTION, GOAL, SCOPE, BACKGROUND: As the strong negative health effect of exposure to the inhalable particulate matter PM10 in the urban environment has been confirmed, the study of the mass concentrations, physico-chemical characteristics, sources, as well as spatial and temporal variation of atmospheric aerosol particles becomes very important. OBJECTIVE: This work is a pilot study to assess the concentration level of ambient suspended particulate matter, with an aerodynamic diameter of less than 10 microm, in the Belgrade central urban area. Average daily concentrations of PM10 and PM2.5 have been measured at three representative points in the city between June 2002 and December 2002. The influence of meteorological parameters on PM10 and PM2.5 concentrations was analyzed, and possible pollution sources were identified. METHODS: Suspended particles were collected on Pure Teflon filters by using a Mini-Vol low-volume air sampler (Airmetrics Co., Inc.; 5 l min(-1) flow rate). Particle mass was determined gravimetrically after 48 h of conditioning in a desiccator, in a Class 100 clean room at the temperature T = 20 degrees C and at about 50% constant relative humidity (RH). RESULTS AND DISCUSSION: Analysis of the PM10 data indicated a marked difference between season without heating--(summer; mean value 56 microg m(-3)) and heating season--(winter; mean value 96 microg m3); 62% of samples exceeded the level of 50 microg m(-3). The impact of meteorological factors on PM concentrations was not immediately apparent, but there was a significant negative correlation with the wind speed. CONCLUSIONS: The PM10 and PM2.5 mass concentrations in the Belgrade urban area had high average values (77 microg m(-3) and 61 microg m(-3)) in comparison with other European cities. The main sources of particulate matter were traffic emission, road dust resuspension, and individual heating emissions. When the air masses are coming from the SW direction, the contribution from the Obrenovac power plants is evident. During days of exceptionally severe pollution, in both summer and winter periods, high production of secondary aerosols occurred, as can be seen from an increase in PM2.5 in respect to PM10 mass concentration. RECOMMENDATION AND OUTLOOK: The results obtained gave us the first impression of the concentration level of particulate matter, with an aerodynamic diameter of less than 10 microm, in the Belgrade ambient air. Due to measured high PM mass concentrations, it is obvious that it would be very difficult to meet the EU standards (EEC 1999) by 2010. It is necessary to continue with PM10 and PM2.5 sampling; and after comprehensive analysis which includes the results of chemical and physical characterization of particles, we will be able to recommend effective control measures in order to improve air quality in Belgrade.  相似文献   

15.
The city of Santiago is characterized by low average rainfall and atmospheric thermal inversion layers. Air pollution levels are high. Dichotomous sampling of inhalable particulate matter (IPM) has been conducted at a fixed station on the Universidad de Santiago de Chile (USACH) campus from October 1981 to March 1983. The air sampling inlet cutoff was 15 μm, the fractioning cut being located at a 2.5 μm aerodynamic diameter. The samples were analyzed qualitatively by X-ray fluorescence (XRF) spectrometry. Information on the IPM component of urban air pollution in Santiago by particle sizing sampling methods was not previously available, nor had XRF spectrometry been applied to local IPM samples. A multivariate statistical analysis of the body of data comprising sample masses and XRF elemental intensities is presented and discussed. The group of elements Al, Si, K, Ca, Ti and Fe shows strong statistical correlations in the coarse particle fraction; correlations in the fine particle fraction include Br/Pb. Evidence for seasonal variations in the air pollution pattern is presented. Pollution by sulfur is discussed.  相似文献   

16.
Total suspended particulate matter and heavy metal (Pb, Mn, Cd and Hg) concentrations were measured at the location in the vicinity of the waste dump to determine the air pollution level of these pollutants prior to the operation of the Mobile Thermal Treatment Plant. Samples were collected over one year period. Seasonal differences, and the influence of meteorological parameters (temperature, relative humidity, pressure and wind direction) on the air pollution levels were studied. Results show relatively low concentrations of TSP, Pb, Mn and Cd, while Hg levels were higher compared to the guideline values. Good weather conditions are connected to long range transport of particulate matter, while higher temperatures result in elevated mercury concentrations. Because of the predominant northeast wind direction, the contribution of air pollution from the direction of the waste dump at the measuring site is significant, but that does not necessarily mean that the pollutants originated from that source.  相似文献   

17.
This report covers the results of one-year exposure studies of cotton fabrics exposed at different environmental sites in the metropolitan St. Louis, Mo., and Chicago, III. areas. The 12 sites range from heavy industrial to essentially rural. The data presented definitely establish a relationship between air pollution and accelerated degradation of cotton fabrics. The data include strength retention of several cotton fabrics and air pollution data, as determined by periodic measurement of dustfall, suspended particulate matter, sulfation, and sulfur dioxide.  相似文献   

18.
Mexico City frequently experiences high levels of air pollution. This is due mainly to its topography and meteorology that suppress pollutant diffusion and dispersion. The atmospheric mixing is extremely poor, especially during the dry winter months. The levels of certain pollutants, such as particulate matter, are of concern since they have severe effects on public health. Visibility deterioration is one of the most noticeable effects in large cities. Biological effects of particulate matter on man and animals, ranging from mild eye irritation to death, have been reported. The effects depend on the size of the particles, their solubility, and toxicity. The main objective of this paper is to present the results of a chemical mass balance receptor model applied to a well-characterized data set of particulate matter collected in the Mexico City Metropolitan Area (MCMA). Samples of particulate matter were collected using a denuder and a Hi-Vol system for the respi-rable fraction and total suspended particles, respectively. In this paper the analysis of a database consisting of the chemical composition of 33 samples of respirable particulate matter (aerosols with diameter less than 2.5 µm) is presented. The 12-hour samples were acquired during day and night periods in a typical medium-income neighborhood from December 19, 1989 through February 5, 1990.  相似文献   

19.
Environmental Science and Pollution Research - Exposure to air pollution during physical exercise is a health issue because fine particulate matter (dimension < 10 μm; PM10) includes...  相似文献   

20.
The organic compositions of atmospheric particulate matter from Bab-Ezzouar (Algiers) have been investigated to assess the air pollution levels suspected to be caused by asphalt product and yeast manufactures. After a medium-volume air sampling, soxhlet extraction, alumina elution and HPLC separation, the extracts were analysed by high-resolution gas chromatography (HRGC) and gas chromatography coupled to mass spectrometry (GC-MS). The composition of n-alkane and polycyclic aromatic hydrocarbons (PAH) fractions reflected the petrogenic origin from the emission of asphalt materials production in addition to vascular plant wax emissions. In contrast, microbial activities seemed to play the main role for the presence of n-alkanoic acids at Bab-Ezzouar. The sole nitrated polycyclic aromatic hydrocarbons (NPAH) observed, i.e., 2-nitrofluoranthene (2NFA), was very likely to arise from gas-phase photochemical reaction of parent PAH in the atmosphere. The total aerial levels ranged from 75 to 206 ng m(-3) for n-alkanes, from 153 to 345 ng m(-3) for n-alkanoic acids and from 44 to 100 ng m(-3) for PAH and NPAH. Although the samples were collected during the hot season, the levels of these pollutants seemed to be important and of environmental concern, especially for PAH species.  相似文献   

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