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对长春市供暖季某办公建筑室内PM_(2.5)进行采样,用电感耦合等离子发射光谱法(ICP-OES)对其中金属元素进行检测。采用富集因子法与主成分分析法对PM_(2.5)中的金属元素进行源解析,并对其潜在生态风险和人体健康风险进行评估。结果显示,室内PM_(2.5)中金属元素来源主要有燃煤排放尘、工业过程排放尘、机动车排放尘、室内污染源排放尘及土壤扬尘,5种来源的贡献率分别为27.35%、17.57%、12.44%、8.93%、8.05%。PM_(2.5)中金属元素的综合潜在生态风险指数为1 729.63,存在极强生态危害;金属元素对成人的非致癌暴露量以呼吸摄入为主,对儿童的非致癌暴露量以手口摄入为主,对成人和儿童均具有非致癌风险,但不具有致癌风险。 相似文献
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为探讨济南市大气PM_(2.5)主要化学组分和污染特征,2017年在济南市开展了PM_(2.5)样品采集工作,分析了PM_(2.5)中有机碳(OC)、元素碳(EC)和水溶性离子浓度水平。结果表明:采样期间济南市PM_(2.5)中OC、EC年均质量浓度分别为9.10、2.68μg/m~3,全年OC与EC质量浓度的比值为3.4,二次有机碳污染严重;OC、EC季节分布特征明显,均为冬季浓度最高,且秋、冬季两者相关系数较高,表明秋季和冬季OC、EC来源较为一致。NO_3~-、SO_4~(2-)、NH_4~+年均质量浓度之和为34.29μg/m~3,占水溶性离子总量的88.9%,是济南市PM_(2.5)中最重要的组分;各水溶性离子浓度具有明显的季节变化特征,NO_3~-、SO_4~(2-)、NH_4~+、Cl~-和K~+均冬季浓度最高,而Ca~(2+)春季浓度最高;PM_(2.5)中NO_3~-与SO_4~(2-)质量浓度的比值为1.10,说明相比于固定污染源,移动污染源对济南市PM_(2.5)影响更大。 相似文献
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宁波市大气可吸入颗粒物PM1o和PM2.5的源解析研究 总被引:2,自引:0,他引:2
在宁波市布设4个代表性点位,于2010年春季、夏季和冬季进行大气PM10和PM2.s的采样,同时采集了多种颗粒物源样品,建立了PM10、PM2.5和源样品的化学成分谱.采用化学质量平衡模型(CMB)对宁波市PM10、PM2.5进行源解析.结果表明,城市扬尘、煤烟尘、机动车尾气尘是宁波市PM10、PM2.5的3大污染源,... 相似文献
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2014年7月-2015年5月典型季节期间在重庆城区选择典型站点开展PM2.5样品采集,并测量质量浓度,分析样品中水溶性离子、无机元素、OC和EC等组分,在此基础上对组分化学组成进行了质量重构。结果表明:观测期间PM2.5年均值为76.4 μg·m-3,浓度季节变化为冬季 > 秋季 > 春季 > 夏季;组分方面,以二次转化为主的SO42-、NH4+、NO3-和OC是PM2.5组分中最主要成分,OC/EC比值4个季度均大于2,表明城区二次有机碳生成显著;硫氧化率(SOR)分析,气态污染物SO2的二次转化效率较高,大气存在明显的二次转化过程。PM2.5质量重构后主要组成为有机气溶胶(OM)、二次无机离子(SNA)和矿物尘,重庆城区应协同控制一次排放的颗粒物和气态污染物SO2和NOx,从而控制二次组分浓度。 相似文献
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对2014年上海市大气监测国控点的PM2.5浓度数据进行统计分析和聚类分析。统计分析结果表明,上海市PM2.5浓度冬春季高,夏秋季低,按月呈U形分布,且上海市大气PM2.5浓度在空间上总体趋势呈西高东低。利用MATLAB的聚类分析结果表明上海市的10个监测站可分为4类:1)跨省传输影响显著的青浦淀山湖站;2)受海洋大气影响显著的浦东川沙站;3)不稳定的过渡类,其包括杨浦四漂和浦东张江监测站;4)受本地排放影响显著的中心城区类,其包括普陀、十五厂(卢湾师专附小)、徐汇上师大、虹口凉城、静安和浦东新区监测站。本文聚类分析结果揭示了上海不同地理位置的大气PM2.5浓度的相互关系。 相似文献
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为研究室内PM2.5及其载带重金属元素的污染特征和健康风险,在2017年12月至2018年1月,在株洲市典型的居民住宅和相邻校园的学生宿舍的室内采样收集PM2.5样本,评估重金属元素的污染程度和识别来源,并评价潜在的健康风险。结果表明:(1)宿舍、住宅室内PM2.5分别为(57.20±23.95)、(90.31±27.41)μg/m3。非地壳元素中Fe最高。(2)宿舍和住宅室内PM2.5中Cu、As、Zn、Pb、Sb、Se和Cd均表现出显著富集,人为污染源显著;住宅主要污染源是吸烟和土壤尘再悬浮,宿舍室内主要受室外源影响。(3)采样期间室内PM2.5中Mn存在一定的非致癌风险,As、Cd及Cr存在一定的致癌风险。 相似文献
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为了解北京城区夏季大气颗粒物PM2.5及其不同组分的化学、生物污染特征,于2014年5月末连续采样一个月,采样后超声洗脱并冷冻干燥得到PM2.5颗粒物,在PM2.5颗粒物的基础上制备PM2.5水溶性组分和PM2.5单纯颗粒物,进而对PM2.5颗粒物及另外两种组分样品中的化学及生物成分进行分析测定。结果表明,8种水溶性离子总质量占PM2.5各样品的质量分数依次为67.71%,33.37%,0.09%(依次为PM2.5水溶性组分、PM2.5颗粒物、PM2.5单纯颗粒物,下述数据也按此顺序描述);16种“酸提”元素总质量占PM2.5各样品的质量分数依次为4.84%,1.86%,0.78%;各样品中内毒素含量分别为0.054 7 EU·mg-1,0.433 3 EU·mg-1,0.041 9 EU·mg-1;PM2.5颗粒物可以检测到细菌16S rDNA、真菌18S rDNA,拷贝量分别为(2.6±1.0)×108个·g-1、(4.3±0.9)×108个·g-1。 相似文献
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Xu Peiwei He Xiaoqing He Shengliang Luo Jinbin Chen Qiang Wang Zuoyi Wang Aihong Lu Beibei Wu Lizhi Chen Yuan Xu Dandan Chen Weizhong Chen Zhijian Wang Xiaofeng Lou Xiaoming 《Environmental science and pollution research international》2021,28(6):6691-6699
Environmental Science and Pollution Research - To better understand the cardiopulmonary alterations associated with personal exposed PM2.5-bound heavy meals, we conducted a cross-sectional study in... 相似文献
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Zheng Li Andreas Sjodin Erin N. Porter Donald G. Patterson Larry L. Needham Sangil Lee Armistead G. Russell James A. Mulholland 《Atmospheric environment (Oxford, England : 1994)》2009,43(5):1043-1050
Twenty-four hour PM2.5 samples from a rural site, an urban site, and a suburban site (next to a major highway) in the metropolitan Atlanta area in December 2003 and June 2004 were analyzed for 19 polycyclic aromatic hydrocarbons (PAH). Extraction of the air samples was conducted using an accelerated solvent extraction method followed by isotope dilution gas chromatography/mass spectrometry determination. Distinct seasonal variations were observed in total PAH concentration (i.e. significantly higher concentrations in December than in June). Mean concentrations for total particulate PAHs in December were 3.16, 4.13, and 3.40 ng m?3 for the urban, suburban and rural sites, respectively, compared with 0.60, 0.74, and 0.24 ng m?3 in June. Overall, the suburban site, which is impacted by a nearby major highway, had higher PAH concentration than did the urban site. Total PAH concentrations were found to be well correlated with PM2.5, organic carbon (OC), and elemental carbon (EC) in both months (r2 = 0.36–0.78, p < 0.05), although the slopes from the two months were different. PAHs represented on average 0.006% of total PM2.5 mass and 0.017% of OC in June, compared with 0.033% of total PM2.5 and 0.14% of OC in December. Total PAH concentrations were also correlated with potassium ion (r2 = 0.39, p = 0.014) in December, but not in June, suggesting that in winter biomass burning can potentially be an important source for particulate PAH. Retene was found at a higher median air concentration at the rural site than at the urban and suburban sites—unlike the rest of the PAHs, which were found at lower levels at the rural site. Retene also had a larger seasonal difference and had the weakest correlation with the rest of the PAHs measured, suggesting that retene, in particular, might be associated with biomass burning. 相似文献
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分析了2015年南京市PM2.5和PM10的浓度特征和大致来源类型。PM2.5和PM10的年均浓度分别为56.6 μg·m-3和96.5 μg·m-3,污染水平较高。颗粒物浓度的季节变化特征一致:冬 > 春 > 秋 > 夏;PM2.5的日变化呈"单峰单谷"型,而PM10的呈"单峰双谷"型。颗粒物浓度在城区高于郊区;植被茂盛区域的浓度较低。对PM2.5/PM10而言,比值在冬季和梅雨期较大,分别受取暖和降水的影响;比值在春季和夏末秋初较小,分别受沙尘和秸秆焚烧的影响。PM2.5多为二次颗粒物,PM10多为一次颗粒物;固定污染源对PM2.5的间接贡献和对PM10的直接贡献较移动污染源而言更大。 相似文献
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Wang Xing Wang Bin Xiao Lili Cui Xiuqing Cen Xingzu Yang Shijie Mu Ge Xu Tao Zhou Min Chen Weihong 《Environmental science and pollution research international》2021,28(22):27555-27564
Environmental Science and Pollution Research - Atmospheric PM2.5-bound metals have been widely addressed, but research on the exposure levels and sources of personal PM2.5-bound metals among urban... 相似文献
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Lu Hao Wang Shengsheng Li Yun Gong Hui Han Jingyi Wu Zuliang Yao Shuiliang Zhang Xuming Tang Xiujuan Jiang Boqiong 《Environmental science and pollution research international》2017,24(19):16195-16205
Environmental Science and Pollution Research - To reveal the seasonal variations and sources of PM2.5-bound polycyclic aromatic hydrocarbons (PAHs) during haze and non-haze episodes, daily PM2.5... 相似文献
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Measurements of PM10 and PM2.5 in urban area of Nanjing,China and the assessment of pulmonary deposition of particle mass 总被引:3,自引:0,他引:3
Measurement of PM10 and PM2.5 was carried out at six sites of Nanjing, China in the period of February-May 2001. The pH and conductivity of water-soluble matter of PM10 and PM2.5 were determined, and the samples were analyzed for total carbon (TC), organic carbon (OC) and inorganic carbon (IC) of the water-soluble fraction. The distribution of aerosol mass concentration in size was also measured at one site SB by a nine-stage impactor followed to assess the pulmonary deposition of particles in different tracts of the human respiratory system. Compared with National Ambient Air Quality Standard (NAAQS) of the USA, the level of PM10 and PM2.5 in Nanjing was much higher. Especially for site SY, the average particle mass concentrations (774.5 micrograms/m3 for PM10 and 481.4 micrograms/m3 for PM2.5) were more than five times the NAAQS standard. At site SB aerosol mass distribution in size had shown the similar characteristics with accumulation (Dp < 1 micron) and coarse (Dp > 1 micron) modes. More than 70% of total suspended particles is of a size that they are deposited in the respiratory tract below trachea, whereas about 22% of the mass is respirable and will reach the alveoli. Water-soluble fractions of PM10 and PM2.5 in Nanjing are acidic, and the pH of PM2.5 is lower than that of PM10. OC makes up the majority of TC and accounts for 3-14% of mass concentration of PM10 and/or PM2.5, while IC only accounts for 0.1-0.5% of PM10 and/or PM2.5 mass. 相似文献
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对2005年7月至2006年2月采集到的南京市气溶胶Pm2.5 进行季节性初步分析,并对其中的15种优控多环芳烃(PAHs)进行分析研究,通过比值法判断南京市PAHs夏季主要来源于柴油型燃烧,冬季主要来源于柴油和煤型相结合的燃烧.对15种优控PAHs两两之间的相关性分析,发现各化合物之间显著相关,表明各化合物的来源有相似之处. 相似文献
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研究了杭州西湖景区PM_(2.5)中12种重金属元素的污染特征、来源及健康风险。结果表明,2018年杭州西湖景区PM_(2.5)年均质量浓度为36.40μg/m~3,其中V、Cr、Mn、Fe、Ni、Cu、Zn、As、Nb、Ag、Sn、Pb的年均质量浓度分别为3.16、3.61、22.68、304.84、2.58、9.69、96.38、5.26、197.45、3.89、5.65、27.85ng/m~3,12种重金属元素合计占PM_(2.5)的质量分数为1.88%,总体上冬春季高于夏秋季。Cr、Mn、Fe、Cu、Zn、As、Pb主要来源于机动车尾气和交通二次扬尘,Sn主要来源于工业排放,V和Ni主要来源燃油,Nb和Ag来源未知。健康风险评价显示,杭州西湖景区PM_(2.5)中重金属的非致癌健康风险和致癌健康风险均处在安全范围内,表现出冬春季高于夏秋季的特征。 相似文献
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《Atmospheric environment (Oxford, England : 1994)》2002,36(12):1941-1950
In this study aerosol samples of PM10 and PM2.5 collected from 18 February 2001 to 1 May 2001 in Nanjing, China were analyzed for their water-soluble organic compounds. A series of homologous dicarboxylic acids (C2–10) and two kinds of aldehydes (methylglyoxal and 2-oxo-malonaldehyde) were detected by GC and GC/MS. Among the identified compounds, the concentration of oxalic acid was the highest at all the five sites, which ranged from 178 to 1423 ng/m3. The second highest concentration of dicarboxylic acids were malonic and succinic acids, which ranged from 26.9 to 243 ng/m3. Higher level of azelaic acid was also observed, of which the maximum was 301 ng/m3. As the highest fraction of dicarboxylic acids, oxalic acid comprised from 28% to 86% of total dicarboxylic acids in PM10 and from 41% to 65% of total dicarboxylic acids in PM2.5. The dicarboxylic acids (C2, C3, C4) together accounted for 38–95% of total dicarboxylic acids in PM10 and 59–87% of dicarboxylic acids in PM2.5. In this study, the total dicarboxylic acids accounted for 2.8–7.9% of total organic carbon (TOC) of water-soluble matters for PM10 and 3.4–11.8% of TOC for PM2.5. All dicarboxylic acids detected in this study together accounted for about 1% of particle mass. The concentration of azelaic acid was higher at one site than others, which may be resulted from higher level of volatile fat used for cooking. The amounts of dicarboxyic acids (C2,3,4,9) and 2-oxo-malonaldehyde of PM2.5 were higher in winter and lower in spring. Compared with other major metropolitans in the world, the level of oxalic acid concentration of Nanjing is much higher, which may be contributed to higher level of particle loadings, especially for fine particles. 相似文献