A Black Carbon-Tracer Method for Estimating Cooking Organic Aerosol From Aerosol Mass Spectrometer Measurements

被引:19
作者
He, Yao [1 ,2 ]
Sun, Yele [1 ,2 ,3 ]
Wang, Qingqing [1 ]
Zhou, Wei [1 ,2 ]
Xu, Weiqi [1 ,2 ]
Zhang, Yunjiang [4 ]
Xie, Conghui [1 ,2 ]
Zhao, Jian [1 ,2 ]
Du, Wei [1 ,2 ,5 ]
Qiu, Yanmei [1 ,2 ]
Le, Lu [1 ,2 ]
Fu, Pingqing [2 ,6 ]
Wang, Zifa [1 ,2 ]
Worsnop, Douglas R. [7 ]
机构
[1] Chinese Acad Sci, Inst Atmospher Phys, State Key Lab Atmospher Boundary Layer Phys & Atm, Beijing, Peoples R China
[2] Univ Chinese Acad Sci, Coll Earth & Planetary Sci, Beijing, Peoples R China
[3] Chinese Acad Sci, Ctr Excellence Reg Atmospher Environm, Inst Urban Environm, Xiamen, Fujian, Peoples R China
[4] Inst Natl Environm Ind & Risques, Verneuil En Halatte, France
[5] Univ Helsinki, Fac Sci, Inst Atmospher & Earth Syst Res Phys, Helsinki, Finland
[6] Tianjin Univ, Inst Surface Earth Syst Sci, Tianjin, Peoples R China
[7] Aerodyne Res Inc, Billerica, MA USA
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
Cooking organic aerosol; aerosol mass spectrometer; Black carbon; Primary organic aerosol; YANGTZE-RIVER DELTA; POSITIVE MATRIX FACTORIZATION; CHEMICAL SPECIATION MONITOR; FINE PARTICULATE MATTER; AIR-POLLUTION SOURCES; NEW-YORK-CITY; SOURCE APPORTIONMENT; SUBMICRON AEROSOLS; PARTICLE COMPOSITION; SEASONAL-VARIATIONS;
D O I
10.1029/2019GL084092
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Cooking organic aerosol (COA) constitutes a considerable fraction of organic aerosol (OA) in urban environments, yet it is often challenging to resolve COA in summer through positive matrix factorization of unit mass resolution spectra of OA from aerosol mass spectrometer measurements. Here we developed a black carbon-tracer method for estimating COA in summer. The estimated COA agreed reasonably well with those from other methods. This method can also be applied to other seasons and megacities without substantial emissions from biomass burning and coal combustion. Globally, much higher COA concentrations in China and India than those in North America and Europe were observed, while the COA contributions were comparable (15.5-20%), highlighting the importance of COA in urban areas. Considering the rapidly increased aerosol mass spectrometer measurements worldwide, this method has significant implications for a better source apportionment of OA and also benefits the health studies associated with cooking exposure. Plain Language Summary Cooking is one of the most important primary sources in urban environments and may have a significant impact on premature mortality in densely populated areas. While aerosol mass spectrometer is capable of measuring cooking organic aerosol (COA) in real time, it is often challenging to separate it from traffic-related primary emissions, especially in summer. Here we found that black carbon is a good tracer to separate traffic and COA in the absence of biomass burning and coal combustion emissions. The successful applications of the black carbon-tracer method to Beijing and Nanjing for COA estimates highlight its wide implications for better source apportionment of organic aerosol and future exposure studies in urban areas.
引用
收藏
页码:8474 / 8483
页数:10
相关论文
共 64 条
  • [1] Mexico City aerosol analysis during MILAGRO using high resolution aerosol mass spectrometry at the urban supersite (T0) - Part 1: Fine particle composition and organic source apportionment
    Aiken, A. C.
    Salcedo, D.
    Cubison, M. J.
    Huffman, J. A.
    DeCarlo, P. F.
    Ulbrich, I. M.
    Docherty, K. S.
    Sueper, D.
    Kimmel, J. R.
    Worsnop, D. R.
    Trimborn, A.
    Northway, M.
    Stone, E. A.
    Schauer, J. J.
    Volkamer, R. M.
    Fortner, E.
    de Foy, B.
    Wang, J.
    Laskin, A.
    Shutthanandan, V.
    Zheng, J.
    Zhang, R.
    Gaffney, J.
    Marley, N. A.
    Paredes-Miranda, G.
    Arnott, W. P.
    Molina, L. T.
    Sosa, G.
    Jimenez, J. L.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2009, 9 (17) : 6633 - 6653
  • [2] Contributions from transport, solid fuel burning and cooking to primary organic aerosols in two UK cities
    Allan, J. D.
    Williams, P. I.
    Morgan, W. T.
    Martin, C. L.
    Flynn, M. J.
    Lee, J.
    Nemitz, E.
    Phillips, G. J.
    Gallagher, M. W.
    Coe, H.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2010, 10 (02) : 647 - 668
  • [3] Chemical and microphysical characterization of ambient aerosols with the aerodyne aerosol mass spectrometer
    Canagaratna, M. R.
    Jayne, J. T.
    Jimenez, J. L.
    Allan, J. D.
    Alfarra, M. R.
    Zhang, Q.
    Onasch, T. B.
    Drewnick, F.
    Coe, H.
    Middlebrook, A.
    Delia, A.
    Williams, L. R.
    Trimborn, A. M.
    Northway, M. J.
    DeCarlo, P. F.
    Kolb, C. E.
    Davidovits, P.
    Worsnop, D. R.
    [J]. MASS SPECTROMETRY REVIEWS, 2007, 26 (02) : 185 - 222
  • [4] Chase studies of particulate emissions from in-use New York City vehicles
    Canagaratna, MR
    Jayne, JT
    Ghertner, DA
    Herndon, S
    Shi, Q
    Jimenez, JL
    Silva, PJ
    Williams, P
    Lanni, T
    Drewnick, F
    Demerjian, KL
    Kolb, CE
    Worsnop, DR
    [J]. AEROSOL SCIENCE AND TECHNOLOGY, 2004, 38 (06) : 555 - 573
  • [5] Measurements of Black and Organic Carbon Emission Factors for Household Coal Combustion in China: Implication for Emission Reduction
    Chen, Yingjun
    Zhi, Guorui
    Feng, Yanli
    Liu, Dongyan
    Zhang, Gan
    Li, Jun
    Sheng, Guoying
    Fu, Jiamo
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2009, 43 (24) : 9495 - 9500
  • [6] ACTRIS ACSM intercomparison - Part 1: Reproducibility of concentration and fragment results from 13 individual Quadrupole Aerosol Chemical Speciation Monitors (Q-ACSM) and consistency with co-located instruments
    Crenn, V.
    Sciare, J.
    Croteau, P. L.
    Verlhac, S.
    Froehlich, R.
    Belis, C. A.
    Aas, W.
    Aijala, M.
    Alastuey, A.
    Artinano, B.
    Baisnee, D.
    Bonnaire, N.
    Bressi, M.
    Canagaratna, M.
    Canonaco, F.
    Carbone, C.
    Cavalli, F.
    Coz, E.
    Cubison, M. J.
    Esser-Gietl, J. K.
    Green, D. C.
    Gros, V.
    Heikkinen, L.
    Herrmann, H.
    Lunder, C.
    Minguillon, M. C.
    Mocnik, G.
    O'Dowd, C. D.
    Ovadnevaite, J.
    Petit, J. -E.
    Petralia, E.
    Poulain, L.
    Priestman, M.
    Riffault, V.
    Ripoll, A.
    Sarda-Esteve, R.
    Slowik, J. G.
    Setyan, A.
    Wiedensohler, A.
    Baltensperger, U.
    Prevot, A. S. H.
    Jayne, J. T.
    Favez, O.
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2015, 8 (12) : 5063 - 5087
  • [7] Identification of marine and continental aerosol sources in Paris using high resolution aerosol mass spectrometry
    Crippa, Monica
    El Haddad, Imad
    Slowik, Jay G.
    DeCarlo, Peter F.
    Mohr, Claudia
    Heringa, Maarten F.
    Chirico, Roberto
    Marchand, Nicolas
    Sciare, Jean
    Baltensperger, Urs
    Prevot, Andre S. H.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2013, 118 (04) : 1950 - 1963
  • [8] New insights into PM2.5 chemical composition and sources in two major cities in China during extreme haze events using aerosol mass spectrometry
    Elser, Miriam
    Huang, Ru-Jin
    Wolf, Robert
    Slowik, Jay G.
    Wang, Qiyuan
    Canonaco, Francesco
    Li, Guohui
    Bozzetti, Carlo
    Daellenbach, Kaspar R.
    Huang, Yu
    Zhang, Renjian
    Li, Zhengqiang
    Cao, Junji
    Baltensperger, Urs
    El-Haddad, Imad
    Prevot, Andre S. H.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2016, 16 (05) : 3207 - 3225
  • [9] Primary and secondary organic aerosols in Fresno, California during wintertime: Results from high resolution aerosol mass spectrometry
    Ge, Xinlei
    Setyan, Ari
    Sun, Yele
    Zhang, Qi
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2012, 117
  • [10] The formation, properties and impact of secondary organic aerosol: current and emerging issues
    Hallquist, M.
    Wenger, J. C.
    Baltensperger, U.
    Rudich, Y.
    Simpson, D.
    Claeys, M.
    Dommen, J.
    Donahue, N. M.
    George, C.
    Goldstein, A. H.
    Hamilton, J. F.
    Herrmann, H.
    Hoffmann, T.
    Iinuma, Y.
    Jang, M.
    Jenkin, M. E.
    Jimenez, J. L.
    Kiendler-Scharr, A.
    Maenhaut, W.
    McFiggans, G.
    Mentel, Th. F.
    Monod, A.
    Prevot, A. S. H.
    Seinfeld, J. H.
    Surratt, J. D.
    Szmigielski, R.
    Wildt, J.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2009, 9 (14) : 5155 - 5236