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1.
杭州市大气PM2.5和PM10污染特征及来源解析   总被引:24,自引:12,他引:24       下载免费PDF全文
2006年在杭州市两个环境受体点位采集不同季节大气中PM2.5和PM10样品,同时采集了多种颗粒物源类样品,分析了其质量浓度和多种化学成分,包括21种无机元素、5种无机水溶性离子以及有机碳和元素碳等,并据此构建了杭州市PM2.5和PM10的源与受体化学成分谱;用化学质量平衡(CMB)受体模型解析其来源。结果表明,杭州市PM2.5和PM10污染较严重,其年均浓度分别为77.5μg/m3和111.0μg/m3;各主要源类对PM2.5的贡献率依次为机动车尾气尘21.6%、硫酸盐18.8%、煤烟尘16.7%、燃油尘10.2%、硝酸盐9.9%、土壤尘8.2%、建筑水泥尘4.0%、海盐粒子1.5%。各主要源类对PM10贡献率依次为土壤尘17.0%、机动车尾气尘16.9%、硫酸盐14.3%、煤烟尘13.9%、硝酸盐粒8.2%、建筑水泥尘8.0%、燃油尘5.5%、海盐粒子3.4%、冶金尘3.2%。  相似文献   

2.
北京市大气PM10源解析研究   总被引:10,自引:5,他引:10  
于2004年在北京市定陵、车公庄、古城、亦庄、房山和奥体中心6个采样点采集大气PM10环境样品,针对北京市颗粒物主要排放源采集土壤尘、建筑水泥尘、燃煤等污染源PM10样品,分别对其中的无机元素、离子、有机碳(OC)和元素碳(EC)进行测定。采用代表北京市颗粒物主要排放源PM10组分特征的成分谱,利用CMB受体模型对PM10来源进行解析。结果表明,PM10的最大来源为土壤尘,其它贡献源类依次为燃煤排放、机动车/燃油排放、二次粒子(SO42-、NO3-和NH4 )、建筑水泥尘。污染源贡献具有明显的季节变化,并存在一定的地域变化。  相似文献   

3.
通过2015年在沈阳市采集PM2.5样品及源类样品,分析样品的质量浓度和化学组成,用化学质量平衡(CMB)模型对该市PM2.5来源进行解析。结果表明:沈阳市大气中PM2.5浓度时空变化特征明显;各主要源类对沈阳市PM2.5的分担率依次为煤烟尘(28.03%)、二次无机离子(22.63%)、机动车尾气尘(17.27%)、城市扬尘(13.28%)、建筑尘(5.94%)、土壤风沙尘(5.82%)、道路尘(3.04%)、生物质燃烧尘(2.74%)和冶金尘(1.25%)。燃煤和机动车的有效控制既能降低本类源的贡献,也能降低二次无机离子,体现了多源类综合治理原则。  相似文献   

4.
采用气相色谱-质谱联用仪定量分析2016年沈阳市PM_(2.5)中16种多环芳烃(PAHs)的质量浓度,探讨其时空分布特征,并解析PAHs的来源。结果表明:沈阳市PAHs的平均质量浓度为71. 5 ng/m3,其中3环、4环PAHs分别占31. 3%和48. 8%;采暖期PAHs浓度明显高于非采暖期,中心城区高于周边。总毒性当量浓度平均值为8. 05 ng/m3。特征比值法和主成分分析法解析的PAHs来源基本一致,主要为燃烧源、石油挥发源和工业生产源,贡献率分别为70. 11%、14. 19%和10. 74%。  相似文献   

5.
2015—2016年在百色市布设3个采样点采集PM_(10)和PM_(2.5)样品,分析其中有机碳(OC)和元素碳(EC)的含量。结果表明,PM_(10)和PM_(2.5)中OC、EC四季均值分别为15.0μg/m~3、5.55μg/m~3和11.7μg/m~3、4.72μg/m~3;OC与EC相关性不显著,存在不同的污染来源;OC/EC值多数2,存在二次污染,主要来源于柴油、汽油车尾气和燃煤的排放。由总碳质气溶胶(TCA)和8个碳组分丰度分析可知,百色市碳气溶胶(CA)来源于汽车尾气、道路扬尘、燃煤的排放。二次有机碳(SOC)在OC中的占比均75%,表明百色市大气颗粒物中OC以SOC为主,夜间污染重于昼间。  相似文献   

6.
为了解冬季采暖对济南市大气PM2.5中汞浓度的影响,在济南市城郊开展了为期超过两年的PM2.5样品采集工作,共计采集有效样品481个,测定并分析其中的颗粒汞(PHg)浓度和汞含量变化特征。结果表明,济南市大气PHg在采暖期的浓度均值为583.1 pg/m3,约为非采暖期的1.4倍,在国内外城市中处于中等偏上水平。济南市大气PM2.5对PHg具有极强的富集能力,且在采暖期更强,可能与燃煤等活动排放了更多的超细颗粒物有关。在采暖期,大气PHg浓度主要受煤炭燃烧源和交通排放源影响,两者分别贡献了总方差的39.2%和16.7%;在非采暖期,气象条件季节性变化、交通排放源、煤炭燃烧源的影响显著,三者分别贡献了总方差的32.4%、15.8%、12.0%。高浓度PHg主要来源于分布在采样站点东北偏东方向上的众多燃煤工业企业。此外,济南市大气PHg还主要受来源于鲁西南地区的区域污染气团的影响,途经污染较重的京津冀地区的污染气团对济南市PHg浓度也有较大贡献。在非采暖期,济南市PHg还受到来自东南和西南方向的清洁海洋气团的显著影响。  相似文献   

7.
2020年3月2日—2021年2月28日在安庆市政务服务中心楼顶设置监测点,手工采集PM2.5样品,运用多波段碳分析仪(DRI Model 2015)分析样品中碳质组分有机碳(OC)和元素碳(EC)质量浓度;利用OC/EC法、相关分析法和主成分因子分析法对PM2.5中碳质组分的污染特征和可能来源进行解析。结果显示:安庆市手工采样期间PM2.5平均质量浓度为(45.9±28.1)μg/m3,OC和EC的平均浓度分别为(8.0±3.4)、(1.4±0.6)μg/m3,在PM2.5中占比为17.4%、3.1%。四季OC平均浓度分布为冬季(9.7±4.2)μg/m3 >春季(9.0±2.5)μg/m3 >秋季(8.3±2.9)μg/m3 >夏季(5.1±1.6)μg/m3,EC平均浓度分布为冬季(1.7±0.5)μg/m3 >春季(1.7±0.6)μg/m3 >秋季(1.3±0.4)μg/m3 >夏季(0.8±0.3)μg/m3。OC/EC范围为3.11~12.14,平均值为5.83,表明安庆市存在二次有机碳(SOC),SOC均值为(2.89±1.94)μg/m3,分别占OC和PM2.5浓度的36.1%、6.3%;四季OC、EC相关性不显著,r均小于0.85,说明安庆市的碳质组分较复杂;在不同空气质量等级条件下,OC质量浓度随着污染等级的升高而逐渐升高,EC质量浓度随着污染等级升高而先升高后降低。利用主成分分析法进行来源解析发现,道路扬尘、燃煤、柴油车尾气是碳质组分的主要来源。  相似文献   

8.
为明确青岛市环境受体中PM_(2.5)的化学组分特征及来源,该研究于2016年在青岛市7个点位采集了PM_(2.5)样品,分析了PM_(2.5)中的无机元素、水溶性离子、碳等组分的质量浓度,采用CMB模型估算法,估算了青岛市的一次源类、二次源类对PM_(2.5)的贡献,并结合排放源清单及系数分配得到综合的PM_(2.5)源解析结果。结果表明:青岛市环境受体中PM_(2.5)平均质量浓度为62μg/m~3。PM_(2.5)中占比较高的组分是OC(16.44%)、SO_4~(2-)(15.07%)、NO_3~-(11.27%)、NH_4~+(8.86%)和EC(5.21%)。OC/EC的年平均值为3.62,说明存在二次有机气溶胶污染;SO2-4/NO-3的年平均值为2.71,夏季明显高于其他季节。冬季重污染过程中主要离子呈现出累积的现象。夏季二次硫酸盐的贡献上升为第一位(24.7%);机动车尘四季的贡献均较高(17.5%~20.5%),燃煤在冬季(15.1%)、秋季(13.3%)贡献高,扬尘在春季(16.5%)、冬季(15.6%)贡献高。  相似文献   

9.
利用南京市2022年挥发性有机物(VOCs)在线监测数据,对VOCs污染特征、来源及对臭氧的影响进行了分析研究。结果表明:2022年南京市φ(TVOCs)年均值为25.1×10-9,其中各组分占比为烷烃>含氧挥发性有机物(OVOCs)>氯代烃>烯烃>芳香烃>炔烃。TVOCs及烷烃、烯烃和芳香烃的体积分数季节变化表现为冬季>秋季>春季>夏季,φ(OVOCs)季节变化表现为夏季>秋季>春季>冬季。烷烃、烯烃和炔烃日变化呈“双峰型”特征,芳香烃和氯代烃为“单峰型”。臭氧生成潜势(OFP)贡献总体表现为OVOCs>烯烃>芳香烃>烷烃>氯代烃>炔烃,但冬季烯烃的贡献率最高。南京市臭氧生成的关键VOCs物种为乙醛、乙烯、丙烯、间/对-二甲苯和甲苯。正交矩阵因子分解结果显示,机动车尾气、生物质燃烧和工业生产是南京VOCs的主要来源;对南京臭氧生成贡献最大的VOCs来源为溶剂涂料使用和石化行业。  相似文献   

10.
宜兴市细颗粒物化学特征和来源解析   总被引:2,自引:0,他引:2  
通过在宜兴市3个监测站点对细颗粒物(PM_(2.5))开展不同季节采样,对样品做化学分析,结合化学质量平衡(CMB)模型解析PM_(2.5)来源贡献。结果表明,宜兴市PM_(2.5)年均质量浓度为37.5μg/m~3,冬季质量浓度最高,为53.1μg/m~3。PM_(2.5)主要化学成分为SO_4~(2-)、NO_3~-、OC、EC、NH_4~+、Cl~-、Ca、Na、Al。PM_(2.5)的主要排放源贡献为二次硫酸盐(21.0%)、二次有机气溶胶(14.9%)、二次硝酸盐(14.1%)和燃煤电厂(8.0%)。利用本地排放源清单进行二次来源解析,得到全年主要排放源贡献为工业(33.1%)、燃煤(23.1%)、移动源(17.6%)、扬尘(9.3%)和其他来源(16.9%)。减轻颗粒物污染,重点是控制工业生产、燃煤及机动车中的排放。  相似文献   

11.
郑州市 PM2.5和 PM10质量浓度变化特征分析   总被引:3,自引:0,他引:3  
根据郑州市2013年PM2.5和PM10颗粒物连续自动监测数据,对郑州市各国控站点的PM2.5和PM10的达标情况、变化趋势等进行探讨分析。结果表明:2013年郑州市PM10和PM2.5的年均质量浓度均超过了新标准规定的年均值二级标准限值。 PM10和PM2.5月均值峰值出现在1月和10月,谷值出现在8月,各月PM2.5的超标天数都大于PM10。PM10和PM2.5冬季的日均值浓度明显高于其他季节,呈双峰型,夜晚浓度整体高于白天;PM2.5春、夏、秋三季日变化呈单峰型,PM10夏季和秋季呈单峰型,春季呈双峰型。 PM2.5和PM10日均值有着非常显著的线性相关关系,PM2.5和PM10浓度的比值(p)10月最高。  相似文献   

12.
为研究乌鲁木齐市冬季采暖期间大气颗粒物污染特征,通过采样和在线监测二种手段分析了2015年1~2月大气颗粒物样品,采用重量法分析颗粒物质量浓度,并对其相关性进行分析。结果表明:依据《环境空气质量标准》(GB 3095-2012),采样期间乌鲁木齐市大气PM_(10) 和PM_(2.5)的日均质量浓度均超过了国家二级标准,颗粒物污染严重;PM_(10) 和PM_(2.5)存在显著相关性,PM_(2.5)和PM_(10) 浓度的比值均大于0.5,采暖期PM2.5对乌鲁木齐市大气颗粒物贡献显著。  相似文献   

13.
Aerosol samples of PM10 and PM2.5 are collected in summertime at four monitoring sites in Guangzhou, China. The concentrations of organic and elemental carbons (OC/EC), inorganic ions, and elements in PM10 and PM2.5 are also quantified. Our study aims to: (1) characterize the particulate concentrations and associated chemical species in urban atmosphere (2) identify the potential sources and estimate their apportionment. The results show that average concentration of PM2.5 (97.54 μg m−3) in Guangzhou significantly exceeds the National Ambient Air Quality Standard (NAAQS) 24-h average of 65 μg m−3. OC, EC, Sulfate, ammonium, K, V, Ni, Cu, Zn, Pb, As, Cd and Se are mainly in PM2.5 fraction of particles, while chloride, nitrate, Na, Mg, Al, Fe, Ca, Ti and Mn are mainly in PM2.5-10 fraction. The major components such as sulfate, OC and EC account for about 70–90% of the particulate mass. Enrichment factors (EF) for elements are calculated to indicate that elements of anthropogenic origins (Zn, Pb, As, Se, V, Ni, Cu and Cd) are highly enriched with respect to crustal composition (Al, Fe, Ca, Ti and Mn). Ambient and source data are used in the multi-variable linearly regression analysis for source identification and apportionment, indicating that major sources and their apportionments of ambient particulate aerosols in Guangzhou are vehicle exhaust by 38.4% and coal combustion by 26.0%, respetively.  相似文献   

14.
This research paper aims at establishing baseline PM10 and PM2.5 concentration levels, which could be effectively used to develop and upgrade the standards in air pollution in developing countries. The relative contribution of fine fractions (PM2.5) and coarser fractions (PM10-2.5) to PM10 fractions were investigates in a megacity which is overcrowded and congested due to lack of road network and deteriorated air quality because of vehicular pollution. The present study was carried out during the winter of 2002. The average 24h PM10 concentration was 304 μg/m3, which is 3 times more than the Indian National Ambient Air Quality Standards (NAAQS) and higher PM10 concentration was due to fine fraction (PM2.5) released by vehicular exhaust. The 24h average PM2.5 concentration was found 179 μg/m3, which is exceeded USEPA and EU standards of 65 and 50 μg/m3 respectively for the winter. India does not have any PM2.5 standards. The 24 h average PM10-2.5 concentrations were found 126 μg/m3. The PM2.5 constituted more than 59% of PM10 and whereas PM10-PM2.5 fractions constituted 41% of PM10. The correlation between PM10 and PM2.5 was found higher as PM2.5 comprised major proportion of PM10 fractions contributed by vehicular emissions.  相似文献   

15.
分别在冬季及夏季选取具有典型气候特性的天气,采集空气中TSP和PM10.根据采样前、后滤膜重量之差及采样标况体积,计算TSP质量浓度,分析了TSP和PM10在大气中污染状况,研究了TSP和PM10的相关性及PM10占TSP的比例,并得出结论:在冬、夏二季TSP和PM10的浓度值变化趋势非常相似,在冬季时TSP和PM10...  相似文献   

16.
This paper describes concentration amounts of arsenic (As), particulate mercury (Hg), nickel (Ni) and lead (Pb) in PM10 and PM2.5, collected since 1993 by the Technological and Nuclear Institute (ITN) at different locations in mainland Portugal, featuring urban, industrial and rural environments, and a control as well. Most results were obtained in the vicinity of coal- and oil-fired power plants. Airborne mass concentrations were determined by gravimetry. As and Hg concentrations were obtained through instrumental neutron activation analysis (INAA), and Ni and Pb concentrations through proton-induced X-ray emission (PIXE). Comparison with the EU (European Union) and the US EPA (United States Environmental Protection Agency) directives for Ambient Air has been carried out, even though the sampling protocols herein – set within the framework of ITN's R&D projects and/or monitoring contracts – were not consistent with the former regulations. Taking this into account, 1) the EU daily limit for PM10 was exceeded a few times in all sites except the control, even if the number of times was still inferior to the allowed one; 2) the EU annual mean for PM10 was exceeded at one site; 3) the EPA daily limit for PM2.5 was exceeded one time at three sites; 4) the EPA annual mean for PM2.5 was exceeded at most sites; 5) the inner-Lisboa site approached or exceeded the legislated PMs; 6) Pb levels stayed far below the EU limit value; and 7) concentrations of As, Ni and Hg were also far less than the reference values adopted by EU. In every location, Ni appeared more concentrated in PM2.5 than in coarser particles, and its levels were not that different from site to site, excluding the control. The highest As and Hg concentrations were found in the neighbourhood of the coal-fired, utility power plants. The results may be viewed as a “worst-case scenario” of atmospheric pollution, since they have been obtained in busy urban-industrial areas and/or near major power-generation and waste-incineration facilities.  相似文献   

17.
徐锋 《干旱环境监测》2012,26(2):81-84,111
利用乌鲁木齐市PM2.5//PM10自动监测数据,分析PM2.5与PM10的浓度分布特征和时间变化规律。结果表明,按照《环境空气质量标准》(二次征求意见稿)的标准限值,乌鲁木齐市冬季PM2.5污染重于PM10。PM2.5浓度为0.164mg/m3,超过二级年标准限值的3.7倍,超标率为73.9%。PM2.5浓度日变化曲线昼高夜低,呈单峰型,峰值出现在13:00~14:00(北京时间)。PM10中PM2.5所占比例较高,PM2.5/PM10为0.79,相关分析和检验显示PM2.5与PM10的线性相关显著,相关系数为0.92。  相似文献   

18.
This article presents results from the particulate monitoringcampaign conducted at Qalabotjha in South Africa during the winter of 1997. Combustion of D-grade domestic coal and low-smoke fuels were compared in a residential neighborhood to evaluate the extent of air quality improvement by switchinghousehold cooking and heating fuels.Comparisons are drawn between the gravimetric results from the two types of filter substrates (Teflon-membrane and quartz-fiber) as well as between the integrated and continuous samplers. It is demonstrated that the quartz-fiber filters reported 5 to 10% greater particulate mass than the Teflon-membrane filters, mainly due to the adsorption of organic gases onto the quartz-fiber filters. Due to heating of sampling stream to 50 °C in the TEOM continuous sampler and the high volatile content of the samples, approximately 15% of the particulate mass was lost during sampling.The USEPA 24-hr PM2.5 and PM10 National Ambient Air Quality Standards (NAAQS) of 65 g m-3 and 150 g m-3, respectively, were exceeded on several occasions during the 30-day field campaign. Average PMconcentrations are highest when D-grade domestic coal was used, and lowest between day 11 and day 20 of the experiment when a majority of the low-smoke fuels were phased in. Source impacts from residential coal combustion are also found to be influenced by changes in meteorology, especially wind velocity.PM2.5 and PM10 mass, elements, water-soluble cations (sodium, potassium, and ammonium), anions (chloride, nitrate, and sulfate), as well as organic and elemental carbonwere measured on 15 selected days during the field campaign. PM2.5 constituted more than 85% of PM10 at three Qalabotjha residential sites, and more than 70% of PM10 at the gradient site in the adjacent community of Villiers. Carbonaceous aerosol is by far the most abundant component, accounting for more than half of PM mass at the three Qalabotjha sites, and for more than a third of PM mass at the gradient site. Secondary aerosols such as sulfate, nitrate,and ammonium are also significant, constituting 8 to 12% of PM mass at the three Qalabotjha sites and 15 to 20% at the Villiers gradient site.  相似文献   

19.
通过对鞍山市(1个工业区、2个工业区周边、3个居住区、1个对照点)2015年1月采暖期大气PM_(2.5)中多环芳烃(PAHs)的监测,采用BaP当量致毒系数TEF,分析了鞍山市大气PM_(2.5)中典型PAHs毒性当量分布特征。研究表明,鞍山市大气PM2.5中工业区及工业区周边Ba P毒性当量浓度要远高于居住区和对照点,污染物主要由4~6环的PAHs组成,很强致癌BaP当量浓度为9.351~38.59 ng/m3。  相似文献   

20.
Ecological health in a temperate stream impacted by acid mine drainage (AMD) was evaluated by using a multimetric approach of the Index of Biological Integrity (IBI) based on natural fish assemblage. Recently, this approach has been widely used in many developed countries as a tool for ecological risk assessments of water environments. We used 10 metric systems, instead of 12 metrics suggested by Barbour, M. T., Gerritsen, J., Snyder, B. D., & Stribling, J. B. (1999). Rapid Bioassessment Protocols for Use in Streams and Wadeable Rivers: Periphyton, benthic Macroinvertebrates and Fish, 2nd edn. EPA 841-B-99-002. Washington, DC: U.S. Environmental Protection Agency, Office of Water, for a development of the regional IBI model, and used trophic guilds, habitat guilds, and richness variables for the calculation of IBI values. In the model, the attributes of four of 11 metrics were modified for the regional application. IBI values in the stream averaged 20.6 (n = 5), indicating a “poor condition” in terms of ecological health according to the modified criteria of U.S. EPA (1993). Fish Field and Laboratory Methods for Evaluating the Biological Integrity of Surface Waters. EPA 600-R-92-111. Environmental Monitoring systems Laboratory – Cincinnati office of Modeling, Monitoring systems, and quality assurance Office of Research Development, U.S. EPA, Cincinnati, Ohio, 45268. In particular, mean IBI values in the impacted areas of sites 2 and 3 were 13, and this health condition was categorized as “very poor condition.” IBI values in the impacted sites were significantly lower than the values found in the control. Also, we found that fishes in site sites 2 and 3 were not present during the study, and morphological deformity of Rhynchocypris oxycephalus was observed in site 4, influenced directly by sites 2 and 3, indicating a chemical impact in the sites. From the results of experiments in which AMD was treated with marine shells at stagnant condition, pH increased up to 6.0 from 3.1, and Fe and Al were removed up to 99% within 6 h. In the reactor experiment considering field application, pH of effluent maintained around 7.0. In addition, concentrations of Fe, Al, and heavy metals decreased remarkably in the effluents, and bottom-opened screen between neutralizer basins showed high effectiveness in the treatment of AMD.  相似文献   

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