拉萨市大气中碳颗粒物的浓度变化及特征
Concentration changes and characteristics of atmospheric carbon particulates in Lhasa
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摘要: 利用STAPLEX大流量分级采样器于2014年8—12月采集拉萨市城区大气颗粒物84个样品,测定不同粒径上有机碳(OC)和元素碳(EC)的质量浓度,定性分析二次有机碳(SOC),基于碳质组分和14C值得到其来源.结果表明,不同粒径的OC质量浓度呈双峰分布,较高峰出现在<0.49 μm粒径段,次高峰出现在1.5—3.0 μm粒径段(8—9月)和3.0—7.2 μm粒径段(11—12月);EC主要分布在<0.49 μm粒径段.OC/EC比值为4.15—33.80,表明拉萨大气颗粒物存在二次有机碳.研究表明,拉萨市碳质颗粒物的主要污染源是燃煤、机动车尾气、生物质燃烧和地面扬尘、生物质燃烧和地面扬尘是OC的主要来源,燃煤和机动车尾气则是EC的主要来源.Abstract: Based on carbonaceous components and 14C value, the pollution characteristics and sources of carbonaceous aerosols in Lhasa were investigated through the measurement of mass concentration of size-segregated organic carbon (OC), element carbon (EC) and secondary organic carbon (SOC). 84 samples of atmospheric aerosols in urban area of Lhasa were collected from August to December 2014 by STAPLEX large-flow grading sampler. Two peak values were obtained from mass concentration of size-segregated OC.The highest level of OC mass concentration appeared in the particulate matter smaller than 0.49 μm, and the second highest one existed in the particulate matter with the size ranging from 1.5 to 3.0 μm (in August and September) and from 3.0 to 7.2 μm (in November to December). EC was mainly distributed in the particulate matter smaller than 0.49 μm. The ratio between OC and EC (4.15—33.80) indicated the existence of secondary pollution. The research shows that the main sources of pollution of carbonaceous particulate matter in Lhasa are coal burning, motor vehicle exhaust, biomass combustion and soil dust. Biomass combustion and soil dust are the main sources of OC; while coal and motor vehicle exhaust are the main sources of EC.
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Key words:
- atmospheric particular matter /
- organic carbon /
- elements carbon /
- 14C /
- source analysis /
- Lhasa
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[1] CAO J J,LEE S C,HO K F,et al. Characteristics of carbonaceous aerosol in Pearl River Delta Region,China during 2001 winter period[J]. Atmospheric Environment,2003,37(11):1451-1460. [2] JACOBSON M Z. Strong radiative heating due to mixing state of black carbon in atmospheric aerosol[J]. Nature,2016,409:695-697. [3] CHOW J C,WATSON J G,CHEN L W A,et al. The IMPROVE_A temperature protocol for thermal/optical carbon analysis:Maintaining consistency with a long-term database[J]. Journal of the Air and Waste Management Association,2007,57(9):1014-1023. [4] RAMANATHAN V,LI F,RAMANAM V,et al. Atmospheric brown clouds:Hemispherical and regional variations in long-range transport, absorption,and radiative forcing[J]. Journal of Geophysical Research Atmospheres,2007,112(22):1-26. [5] PACHAURI T,SINGLA V,SATSANGI A,et al. Characterization of carbonaceous aerosols with special reference to episodic events at Agra,India[J]. Atmospheric Research,Elsevier B.V,2013,128:98-110. [6] 吴琳,冯银厂,戴莉,等. 天津市大气中PM10、PM2.5及其碳组分污染特征分析[J]. 中国环境科学,2009,29(11):1134-1139. WU L,FENG Y C,DAI L,et al. Characteristics of PM10,PM2.5 and their carbonaceous species in Tianjin City[J]. China Environmental Science,2009,29(11):1134-1139(in Chinese).
[7] KROLL J H,SEINFELD J H. Chemistry of secondary organic aerosol:Formation and evolution of low-volatility organics in the atmosphere[J]. Atmospheric Environment,2008,42(16):3593-3624. [8] SATSANGI A,PACHAURI T,SINGLA V,et al. Organic and elemental carbon aerosols at a suburban site[J]. Atmospheric Research,Elsevier B.V,2012,113:13-21. [9] WAN X,KANG S,XIN J,et al. Chemical composition of size-segregated aerosols in Lhasa City,Tibetan Plateau[J]. Atmospheric Research, Elsevier B.V.,2016,174-175:142-150. [10] XU J Z,ZHANG Q,WANG Z B,et al. Chemical composition and size distribution of summertime PM2.5 at a high altitude remote location in the northeast of the Qinghai-Xizang(Tibet)Plateau:Insights into aerosol sources and processing in free troposphere[J]. Atmospheric Chemistry and Physics,2015,15(9):5069-5081. [11] HUANG J,KANG S,SHENC,et al. Composition and seasonal variations of carbon isotopes in aerosols of Lhasa,Tibet[J]. Environmental Science,2010,31:1139-1145. [12] [13] 白永飞,吕学斌,平措,等. 2014-2016年拉萨市大气环境质量分析及评价[J]. 气象科技,2018,46(6):1274-1279. BAI Y F,LYU X B,PING C,et al. Assessment and study of environment in Lhasa[J]. Meteorological Science and Technology,2018, 46(6):1274-1279(in Chinese).
[14] 张丹,楚宝临,赵丽,等. 拉萨市大气颗粒物碳组分污染特征及来源分析[J]. 环境影响评价,2018,40(3):65-70. ZHANG D,CHU B L,ZHAO L,et al. Characteristics and source of carbonaceous species in PM of Lhasa City[J]. Environmental Impact Assessment,2018,40(3):65-70(in Chinese).
[15] WEI N,XU Z,LIU J,et al. Characteristics of size distributions and sources of water-soluble ions in Lhasa during monsoon and non-monsoon seasons[J]. Journal of Environmental Sciences(China),Elsevier B.V.,2019,82:155-168. [16] 刘卫,位楠楠,王广华等. 碳同位素比技术定量估算城市大气CO2的来源[J]. 环境科学,2012,33(4):1041-1049. LIU W,WEI N N,WANG G H,et al. Quantitative estimation source of urban atmospheric CO2 by carbon isotope composition[J]. Environmental Science,2012,33(4):1041-1049(in Chinese).
[17] 叶巡,程晋俊,郑磊,等. DRI-2001A型有机碳/元素碳分析仪日常维护及故障排除[J]. 分析仪器,2018,219(4):184-187. YE X, CHEN J J, ZHENG L,et al. DRI-2001A OC/EC analyzer routine maintenance and toubleshooting[J]. Analytical Instrumentation, 2018,219(4):184-187(in Chinese).
[18] HILDEMANN L M,MARKOWSKI G R,JONES M C,et al. Submicrometer aerosol mass distributions of emissions from boilers,fireplaces,automobiles,diesel trucks,and meat-cooking operations[J]. Aerosol Science and Technology,1991,14(1):138-152. [19] 程水源,刘超,韩力慧,等. 北京市采暖期PM2.5中有机碳和元素碳的污染特征与来源解析[J]. 北京工业大学学报,2014,40(4):586-591. CHENG S Y,LIU C,HAN L H,et al.Characteristics and source apportionment of organic carbon and elemental carbon in PM2.5 during the heating season in Beijing[J]. Journal of Beijing University of Technology,2014,40(4):586-591(in Chinese).
[20] 安欣欣,赵越,魏强,等. 北京城区PM2.5中有机碳和元素碳的变化特征[J]. 环境科学与技术,2015,38(8):214-219. AN X X,ZHAO Y,WEI Q,et al. Characteristics of organic carbon and elemental carbon in PM2.5 in urban of Beijing[J]. Environmental Science & Technology,2015,38(8):214-219(in Chinese).
[21] ADAMOPOULOS A D,KAMBEZIDIS H D,KASKAOUTIS D G,et al. A study of aerosol particle sizes in the atmosphere of Athens, Greece,retrieved from solar spectral measurements[J]. Atmospheric Research,2007,86(3-4):194-206. [22] ZHANG Q,PAN K,KANG S,et al. Mercury in wild fish from high-altitude aquatic ecosystems in the Tibetan Plateau[J]. Environmental Science and Technology,2014,48(9):5220-5228. [23] ZHANG J,SUN Y,WU F,et al. The characteristics,seasonal variation and source apportionment of VOCs at Gongga Mountain,China[J]. Atmospheric Environment,Elsevier Ltd,2014,88:297-305. [24] WANG J,PAN Y,TIAN S,et al. Size Distributions and health risks of particulate trace elements in rural areas in northeastern China[J]. Atmospheric Research,Elsevier B.V.,2016,168:191-204. [25] LIM S,LEE M,LEE G,et al. Ionic and carbonaceous compositions of PM10,PM2.5 and PM1.0 at Gosan ABC Superstation and their ratios as source signature[J]. Atmospheric Chemistry and Physics,2012,12(4):2007-2024. [26] ZHANG R,JING J,TAO J,et al. Chemical characterization and source apportionment of PM2.5 in Beijing:Seasonal perspective[J]. Atmospheric Chemistry and Physics,2013,13(14):7053-7074. [27] LI J J,WANG G H,WANG X M,et al. Abundance,composition and source of atmospheric PM2.5 at a remote site in the Tibetan Plateau, China[J]. Tellus B:Chemical and Physical Meteorology,2013,65(1):20281. [28] 袁宁,刘卫,赵修良,等. 上海市含碳大气颗粒物的粒径分布[J]. 环境科学, 2013, 34(5):1997-2002. YUAN N,LIU W,ZHAO X L,et al. Size distribution of carbonaceous particulate matter in atmosphere of Shanghai,China[J]. Environmental Science,2013,34(5):1995-2002(in Chinese).
[29] TURPIN B J,HUNTZICKER J J. Secondary formation of organic aerosol in the Los Angeles basin:A descriptive analysis of organic and elemental carbon concentrations[J]. Atmospheric Environment. Part A. General Topics,Elsevier,1991,25(2):207-215. [30] 刘新民,邵敏,曾立民,等. 珠江三角洲地区气溶胶中含碳物质的研究[J]. 环境科学,2002(S1):54-59. LIU X M,SHAO M,ZENG L M,et al. Study on EC and OC compositions of ambient particles in Pearl River Delta region[J]. Environmental Science,2002 (S1):54-59(in Chinese).
[31] CHOW J C,WASTON J G,LU Z,et al. Descriptive analysis of PM2.5 and PM10 at regionally representative locations during SJVAQS/AUSPEX[J]. Atmospheric Environment,1996,30(12):2079-2112. [32] SCHAUER J J,KLEEMAN M J,CASS G R,et al. Measurement of emissions from air pollution sources. 2. C1 through C30 organic compounds from medium duty diesel trucks[J]. Environmental Science and Technology,1999,33(10):1578-1587. [33] CHEN Y,ZHI G,FENG Y,et al. Measurements of emission factors for primary carbonaceous particles from residential raw-coal combustion in China[J]. Geophysical Research Letters,2006,33(20):2-5. [34] ZHANG Y X,SHAO M,ZHANG Y H,et al. Source profiles of particulate organic matters emitted from cereal straw burnings[J]. Journal of Environmental Sciences,2007,19(2):167-175. [35] SCHAUER J J,KLEEMAN M J,CASS G R,et al. Measurement of emissions from air pollution sources. 3. C1-C29 organic compounds from fireplace combustion of wood[J]. Environmental Science and Technology,2001,35(9):1716-1728. [36] HE L Y,HU M,HUANG X F,et al. Measurement of emissions of fine particulate organic matter from Chinese cooking[J]. Atmospheric Environment,2004,38(38):6557-6564. [37] SAARIKOSKI S,TIMONEN H,SAARNIO K,et al. Sources of organic carbon in fine particulate matter in northern European urban air[J]. Atmospheric Chemistry and Physics,2008,8(20):6281-6295. [38] WATSON J G,CHOW J C,LU Z,et al. Chemical mass balance source apportionment of PM10 during the southern california air quality Study[J]. Aerosol Science and Technology,1994,21(1):1-36. [39] WAN X,KANG S,WANG Y,et al. Size distribution of carbonaceous aerosols at a high-altitude site on the central Tibetan Plateau(Nam Co Station,4730ma.s.l.)[J]. Atmospheric Research,Elsevier B.V.,2015,153:155-164. [40] CONG Z,KAWAMURA K,KANG S,et al. Penetration of biomass-burning emissions from South Asia through the Himalayas:New insights from atmospheric organic acids[J]. Scientific Reports,2015,5:1-7. [41] CHOW J C,WATSON J G,KUHNS H,et al. Source profiles for industrial,mobile,and area sources in the Big Bend Regional Aerosol Visibility and Observational study[J]. Chemosphere Pergamon,2004,54(2):185-208. [42] CAO J J,CHOW J C,LEE S C,et al. Characterization and source apportionment of atmospheric organic and elemental carbon during fall and winter of 2003 in Xi'an,China[J]. Atmospheric Chemistry and Physics,2005,5(3):3561-3593. [43] ZHU C S,CHEN C C,CAO J J,et al. Characterization of carbon fractions for atmospheric fine particles and nanoparticles in a highway tunnel[J]. Atmospheric Environment,Elsevier Ltd,2010,44(23):2668-2673. [44] WATSON J G,CHOW J C,LOWENTHAL D H,et al. Differences in the carbon composition of source profiles for diesel- and gasoline-powered vehicles[J]. Atmospheric Environment Pergamon,1994,28(15):2493-2505. [45] CURRIE L A,KLOUDA G A. Mini-radiocarbon measurements,chemical selectivity,and the impact of man on environmental pollution and climate[J]. Radiocarbon,1980,22(2):349-362.
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