拉萨市大气中碳颗粒物的浓度变化及特征

李婧琳, 曾友石, 刘卫, 姚剑, 位楠楠, 单健. 拉萨市大气中碳颗粒物的浓度变化及特征[J]. 环境化学, 2020, (4): 911-919. doi: 10.7524/j.issn.0254-6108.2019092205
引用本文: 李婧琳, 曾友石, 刘卫, 姚剑, 位楠楠, 单健. 拉萨市大气中碳颗粒物的浓度变化及特征[J]. 环境化学, 2020, (4): 911-919. doi: 10.7524/j.issn.0254-6108.2019092205
LI Jinglin, ZENG Youshi, LIU Wei, YAO Jian, WEI Nannan, SHAN Jian. Concentration changes and characteristics of atmospheric carbon particulates in Lhasa[J]. Environmental Chemistry, 2020, (4): 911-919. doi: 10.7524/j.issn.0254-6108.2019092205
Citation: LI Jinglin, ZENG Youshi, LIU Wei, YAO Jian, WEI Nannan, SHAN Jian. Concentration changes and characteristics of atmospheric carbon particulates in Lhasa[J]. Environmental Chemistry, 2020, (4): 911-919. doi: 10.7524/j.issn.0254-6108.2019092205

拉萨市大气中碳颗粒物的浓度变化及特征

    通讯作者: 单健, E-mail: shanjian0666@163.com
  • 基金项目:

    国家自然科学基金(11775180,11705267)和中国科学院上海应用物理研究所育新计划(YX2019007)资助.

Concentration changes and characteristics of atmospheric carbon particulates in Lhasa

    Corresponding author: SHAN Jian, shanjian0666@163.com
  • Fund Project: Supported by the Natural Science Foundation of China(11775180, 11705267)and the Foster Talent Project of Shanghai Institute of Applied Physics, Chinese Academy of Science(YX2019007).
  • 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.
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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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  • 收稿日期:  2019-09-22

拉萨市大气中碳颗粒物的浓度变化及特征

    通讯作者: 单健, E-mail: shanjian0666@163.com
  • 1. 南华大学核科学技术学院, 衡阳, 421001;
  • 2. 中国科学院上海应用物理研究所, 上海, 201800
基金项目:

国家自然科学基金(11775180,11705267)和中国科学院上海应用物理研究所育新计划(YX2019007)资助.

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.

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