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1.
Particulate matter having an aerodynamic diameter less than 2.5 μm (PM2.5) is thought to be implicated in a number of medical conditions, including cancer, rheumatoid arthritis, heart attack, and aging. However, very little chemical speciation data is available for the organic fraction of ambient aerosols. A new direct thermal desorption-gas chromatography/mass spectrometry (TD-GC/MS) method was developed for the analysis of the organic fraction of PM2.5. Samples were collected in Golden, British Columbia, over a 15-month period. n-Alkanes constituted 33–98% by mass of the organic compounds identified. PAHs accounted for 1–65% and biomarkers (hopanes and steranes) 1–8% of the organic mass. Annual mean concentrations were: n-alkanes (0.07–1.55 ng m−3), 16 PAHs (0.02–1.83 ng m−3), and biomarkers (0.02–0.18 ng m−3). Daily levels of these organics were 4.89–74.38 ng m−3, 0.27–100.24 ng m−3, 0.14–4.39 ng m−3, respectively. Ratios of organic carbon to elemental carbon (OC/EC) and trends over time were similar to those observed for PM2.5. There was no clear seasonal variation in the distribution of petroleum biomarkers, but elevated levels of other organic species were observed during the winter. Strong correlations between PAHs and EC, and between petroleum biomarkers and EC, suggest a common emission source – most likely motor vehicles and space heating.  相似文献   
2.
室内空气中颗粒物污染特征研究   总被引:1,自引:0,他引:1  
为获得室内空气颗粒物污染特征,2009年8月18~24日在某单位工作及生活区选取4个室内点和1个室外点进行颗粒物采样和成分分析.结果表明,室内粗颗粒(PM10)符合<室内空气质量标准>(GB/T 18883-2002),而细粒子(PM2.5)的浓度水平较高,表明室内PM2.5的污染较重;室内与室外PM2.5比值显示,P...  相似文献   
3.
2015年7月~2016年3月期间在广西玉林市3个空气监测点位共采集环境大气颗粒物PM_(10)样品218份,PM_(2.5)样品202份,利用多波段热/光碳分析仪分析其颗粒物中有机碳和(OC)和元素碳(EC)浓度水平、时空变化、污染特征及可能来源.结果表明,玉林市PM_(10)中OC和EC质量浓度分别为10.99μg·m~(-3)和5.11μg·m~(-3);PM_(2.5)中OC和EC质量浓度分别为7.51μg·m~(-3)和4.70μg·m~(-3).3个监测点位大气中PM_(10)和PM_(2.5)冬季的OC和EC浓度水平均高于其他季节,PM_(10)、PM_(2.5)中OC和EC的相关性较好,R2分别为0.58和0.60(P均小于0.01).应用最小OC/EC比值法对二次有机碳(SOC)含量进行了估算,冬季大气PM_(10)和PM_(2.5)中SOC平均质量浓度分别为14.50μg·m~(-3)和6.74μg·m~(-3),高于其他季节.PM_(10)和PM_(2.5)中SOC/OC比值均0.5,玉林市大气中粗细颗粒物均以SOC为主.夏季PM_(10)和PM_(2.5)中SOC/OC分别为80.6%和77.7%,为四季最高值,与夏季温度较高、光照强烈、有利于光化学反应将OC转化为SOC有关.  相似文献   
4.
Organic carbon (OC) and elemental carbon (EC) in fine particles (PM2.5) at two background sites, Kosan and Kangwha in Korea were measured during intensive field studies between 1994 and 1999. Fine particles were collected on pre-fired quartz filters in a low-volume sampler and analyzed using the selective thermal oxidation method with MnO2 catalyst. The OC and EC concentrations at Kosan located at western tip of Cheju Island in southern Korea are lower than those at Kangwha located at western coastal area in mid-Korean peninsula. Still, the OC concentrations at Kosan are generally higher than those at other background areas in Japan and USA. The EC concentrations at Kosan are lower than or comparable to those at other background areas. The total carbon (TC, sum of OC and EC) to EC ratio values at both sites were higher than those at other background areas in Japan and USA. At Kosan, the OC and EC concentrations when air parcels were from southern China were higher than those when air parcels were coming from northern China. However, at Kangwha, the differences were statistically not clear since most air parcels were from northern China. Except when air parcels were from the North Pacific during summer, the OC and EC concentrations are well correlated indicating that both OC and EC share the same emission/transport characteristics. From the gaseous hydrocarbon data and the OC and EC relationship, it was found that during summer local biogenic emissions of OC might be significant at Kosan.  相似文献   
5.
华北区域点冬季二次有机气溶胶特征与影响因素   总被引:2,自引:0,他引:2       下载免费PDF全文
为探明二次有机气溶胶(SOA)的污染特征和影响因素,本研究于2018年11月—2019年1月对华北区域点(德州市郊区点)细颗粒物(PM_(2.5))的化学组成进行了在线测量,并分析了PM_(2.5)中有机碳(OC)、元素碳(EC)和水溶性离子组分的污染特征及PM_(2.5)与气象要素之间的相关性.结果表明,观测期间德州PM_(2.5)污染严重,平均质量浓度为(115.6±24.6)μg·m~(-3);其中,有机碳和元素碳是PM_(2.5)的主要成分,平均质量浓度分别为(8.2±5.8)μg·m~(-3)和(2.6±2.2)μg·m~(-3),占PM_(2.5)总质量的7.1%和2.2%;PM_(2.5)与风速呈负相关,与相对湿度呈正相关,与气温的相关性较差,偏北风对PM_(2.5)浓度影响较大.同时,本研究利用EC示踪OC/EC比值法对PM_(2.5)中的二次有机碳(SOC)进行了估算,通过估算得到的SOC结果表明,华北区域点冬季SOCOC的重要组成部分,平均浓度为(4.0±2.9)μg·m~(-3),占OC的45.7%,SOC在白天占比较高(62.7%),早晚由于有局地生物质燃烧影响,SOC占比降低,约占OC的42.7%.本研究还分析了SOC生成的影响因素,分析了德州市冬季O_3、含水量、酸度与SOC的相关性.结果表明,SOC受臭氧浓度影响,但在白天和夜晚表现出不同的相关关系,可能存在不同的生成机制.最后,利用ISORROPIA模型估算了颗粒物的含水量和酸度,发现SOC在高含水量和低含水量下存在不同的关系,高含水量更能促进SOC生成;在高含水量下SOC与H~+具有显著相关性,但在低含水量下则不相关,表明颗粒物含水量较高、H~+浓度较高情况下液相酸催化反应可能对SOC具有重要贡献.  相似文献   
6.
为了解烟花爆竹燃放对保定市大气污染物和PM2.5中水溶性离子及有机碳(OC)、元素碳(EC)浓度的影响,对保定市春节期间大气污染物和颗粒物组分的浓度特征进行了分析,并评估了烟花爆竹的贡献.结果表明: 2019年春节期间烟花爆竹集中燃放期PM2.5、PM10、SO2、NO2、CO平均浓度比非集中燃放期分别增加了1.3、1.0、1.1、0.4、0.02倍;保定市春节期间禁燃措施施行后,除夕、初一2d污染物平均浓度、最高浓度和高浓度持续时间均明显下降,集中燃放期烟花爆竹燃放对PM2.5、PM10和SO2浓度贡献量从50%左右(2018年、2017年)下降至30%左右(2019年),其中SO2贡献量下降幅度超过PM2.5和PM10;组分分析表明,接待中心站点(主城区)、涿州站点(区县建成区)烟花爆竹燃放期K+、Mg2+、Cl-浓度在水溶性离子中的总占比分别为39.3%、51.1%,比非燃放期的占比显著上升;烟花爆竹燃放对PM2.5中K+、Mg2+、Cl-浓度贡献率在50%以上,其中对K+贡献占比高达89.0%,涿州站点SO42-、K+、Mg2+、Cl-的贡献量分别是接待中心站点的2.2、2.1、1.9、1.8倍,燃放期硫氧化率(SOR)、氮氧化率(NOR)相比于非燃放期均有一定程度的升高;集中燃放期OC、EC浓度较非集中燃放期分别升高了2.5、2.1倍,烟花爆竹燃放对OC影响大于EC.  相似文献   
7.
长三角典型站点冬季大气PM2.5中OC、EC污染特征   总被引:1,自引:0,他引:1       下载免费PDF全文
康晖  朱彬  王红磊  施双双 《环境科学》2018,39(3):961-971
对2015年1月9日~2015年1月31日临安、南京和苏州3个站点采集的PM_(2.5)样品(共计279组),使用热光反射法(thermal/optical reflectance,TOR)分析了样品中有机碳(OC)与元素碳(EC)的含量,并研究了长三角地区冬季PM_(2.5)中OC和EC的污染特征.结果表明,采样期间临安、南京和苏州的PM_(2.5)平均质量浓度分别为(123.56±61.11)、(144.77±62.91)和(156.5±68.97)μg·m-3,均超过我国《环境空气质量标准》(GB 3095-2012)规定的PM_(2.5)日均值75μg·m-3;其中3个站点OC与EC的平均质量浓度依次分别为(21.93±11.69)/(6±3.6)、(20.32±10.3)/(5.39±3.07)和(27.08±14.35)/(6.4±4.29)μg·m-3.临安作为长三角大气环境背景点,OC与EC的污染也较为严重.3个站点OC与EC的相关性为临安(R2=0.83)、南京(R2=0.72)和苏州(R2=0.72),表明冬季长三角地区的碳质气溶胶的来源较为一致和稳定.3个站点样品中的OC/EC值均大于2.0,样品的OC/EC值主要分布在2.5~6.0这个区间内,表明燃煤源和机动车尾气排放源是OC与EC的主要来源.使用EC示踪法估算临安、南京和苏州3个站点的二次有机碳(SOC)平均质量浓度分别为(9.23±5.26)、(6.82±4.36)和(12.56±7.52)μg·m-3,在OC中占比为42%、34%和46%,表明SOCOC的重要组成部分.后向轨迹显示,PM_(2.5)、OC和EC的质量浓度与主要气团的传输路径有较好的相关性,自空气质量较差区域气团的PM_(2.5)、OC和EC的质量浓度是来自空气质量较好区域的1.14~1.7倍、1.55~2.1倍和1.94~2.47倍.  相似文献   
8.
On-road driving emissions of six liquefied natural gas(LNG) and diesel semi-trailer towing vehicles(STTVs) which met China Emission Standard IV and V were tested using Portable Emission Measurement System(PEMS) in northern China.Emission characteristics of these vehicles under real driving conditions were analyzed and proved that on-road emissions of heavy-duty vehicles(HDVs) were underestimated in the past.There were large differences among LNG and diesel vehicles, which also existed between China V vehicles and China IV vehicles.Emission factors showed the highest level under real driving conditions, which probably be caused by frequent acceleration, deceleration, and start-stop.NOx emission factors ranged from 2.855 to 20.939 g/km based on distance-traveled and 6.719–90.557 g/kg based on fuel consumption during whole tests, which were much higher than previous researches on chassis dynamometer.It was inferred from tests that the fuel consumption rate of the test vehicles had a strong correlation with NOx emission, and the exhaust temperature also affected the efficiency of Selected Catalytic Reduction(SCR) aftertreatment system, thus changing the NOx emission greatly.THC emission factors of LNG vehicles were 2.012–10.636 g/km, which were much higher than that of diesel vehicles(0.029–0.185 g/km).Unburned CH_4 may be an important reason for this phenomenon.Further on-road emission tests, especially CH_4 emission test should be carried out in subsequent research.In addition, the Particulate Number(PN) emission factors of diesel vehicles were at a very high level during whole tests, and Diesel Particulate Filter(DPF)should be installed to reduce PN emission.  相似文献   
9.
我国工程机械排放控制起步较晚.为研究实际工况下工程机械的PM2.5排放特性及其碳质组分构成,采用便携式颗粒物稀释采样系统,对3台工程机械(2台挖掘机和1台装载机)在不同典型工况(行驶、作业和怠速)下的PM2.5及其碳质组分〔OC(有机碳)和EC(元素碳)〕的现场排放特征进行了测试.结果表明:沃尔沃挖掘机、山河智能挖掘机的PM2.5排放因子(基于燃油)分别为1.85~3.26和1.56~2.62 g/kg,厦工装载机的PM2.5排放因子为0.98~1.48 g/kg.不同工况对PM2.5排放因子影响较大,怠速工况下PM2.5排放因子是行驶工况下的1.49~1.76倍.工程机械排放的PM2.5中,碳质组分是最主要的成分,其质量分数高达71.0%~84.5%.其中,w(OC)为44.6%~72.0%,在怠速工况下最高;w(EC)则为8.6%~30.9%,在行驶工况下较高.测试工程机械的PM2.5排放水平较高,因此应尽快加强工程机械排放的污染防治.  相似文献   
10.
陈惠雨  刘刚  徐慧  李久海  吴丹 《环境科学》2015,36(3):824-830
为了探讨不同燃烧条件下树叶烟尘中有机碳(OC)、元素碳(EC)及8种碳组分(OC1~OC4、POC、EC1~EC3)的质量分数及分布,利用自制的燃烧采样装置,对10种绿叶进行了阴、明燃两种条件的燃烧,并用热/光碳分析仪对产生的烟尘进行了测定.结果表明,10种绿叶阴燃烟尘中的OC、EC质量分数均值分别为48.9%和4.5%,焦炭char-EC(定义为EC1-POC)的质量分数均值为4.4%.该条件下绿叶燃烧的烟尘(PM)、OC及EC的排放因子均值分别为102.4、50.0和4.7 g·kg-1,烟尘中OC/EC、OC1/OC2及焦炭和炭灰的比值char-EC/soot-EC(定义为EC1-POC/EC2+EC3)的均值分别为11.5、1.9和48.1.明燃条件下,10种绿叶烟尘中OC、EC及char-EC的质量分数均值分别为44.9%、10.9%和10.7%,PM、OC及EC的排放因子均值分别为59.2、26.6和6.0 g·kg-1.10种绿叶明燃烟尘中上述三特征比值的均值分别为4.8、1.1和133.0.树叶阴燃烟尘中OC1质量分数及OC1/OC2值均显著高于明燃,而明燃烟尘中的char-EC质量分数及char-EC/soot-EC显著大于阴燃.树叶烟尘中OC、EC的组成在不同树种及燃烧条件间均体现出一些差异,同时也明显区别于其他生物质烟尘.  相似文献   
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