期刊文献+

厦门城区大气颗粒物PM_(10)中有机酸源谱特征分析 被引量:8

Compositions of Organic Acids in PM_(10) Emission Sources in Xiamen Urban Atmosphere
原文传递
导出
摘要 对厦门城区大气颗粒物PM10中有机酸的可能来源,如烹调油烟、生物质燃烧颗粒、汽车尾气和土壤/路面扬尘等4种不同排放源,采用再悬浮混合箱得到PM10样品.采用BF3/正丁醇衍生-GC/MS分析方法,测定了包括二元羧酸、脂肪酸和芳香酸共15种有机酸.结果表明,烹调油烟中有机酸的含量远高于其它颗粒物,最高可达53%,其中亚油酸和油酸的含量最高,为24%±14%;而汽车尾气颗粒物中乙二酸的含量最高,其次为邻苯二甲酸Ph;汽油燃烧颗粒物中己二酸与壬二酸的比值显著高于其它样品,可用于环境大气中二元羧酸的人为和生物来源的定性判断.除发电机排放样品外,其它样品中丙二酸与丁二酸的比值(0.07~0.44)远低于环境样品中该比值范围(0.61~3.93),表明丙二酸与丁二酸的比值可用于环境大气中二元羧酸的一次/二次来源的定性判断. The possible organic acid emission sources in PM10 in Xiamen urban atmosphere such as cooking,biomass burning,vehicle exhaust and soil/dust were obtained using a re-suspension test chamber.A total of 15 organic acids including dicarboxylic acids,fatty acids and aromatic acids were determined using GC/MS after derivatization with BF3/n-butanol.The results showed that the highest total concentration of 15 organic acids(53%) was found in cooking emission and the average concentration of the sum of linoleic acid and oleic acid was 24%±14%.However,oxalic acid was the most abundant species followed by phthalic acid in gasoline vehicle exhaust.The ratios of adipic to azelaic acid in gasoline combustion emissions were significantly higher than those in other emission sources,which can be used to qualitatively differentiate anthropogenic and biological source of dicarboxylic acids in atmospheric samples.The ratios of malonic to succinic acid in source emissions(except gasoline generator emissions) were lower(0.07-0.44) than ambient PM10samples(0.61-3.93),which can be used to qualitatively differentiate the primary source and the secondary source of dicarboxylic acids in urban PM10.
出处 《环境科学》 EI CAS CSCD 北大核心 2013年第1期8-14,共7页 Environmental Science
基金 国家自然科学基金项目(40971257 41171365) 环境保护公益性行业科研专项(201009004) 福建省自然科学基金计划项目(2009J05106)
关键词 可吸入颗粒物 有机酸 再悬浮装置 源谱特征 来源分析 PM10 organic acids re-suspension test chamber source composition source identification
  • 相关文献

参考文献31

  • 1Yokouchi Y, Ambe Y. Characterization of polar organics in airborne particulate matter [ J ]. Atmospheric Environment, 1967, 20(9) : 1727-1734.
  • 2Facchini M C, Mircea M, Fuzzi S, et al. Cloud albedo enhancement by surface-active organic solutes in growing droplets [J]. Nature, 1999, 401(6750): 257-259.
  • 3Kerminen V M. Relative roles of secondary sulfate and organics in atmospheric cloud condensation nuclei production[ J]. Journal of Geophysical Research, 2001, 106( D15 ) : 17321-17333.
  • 4Galloway J N, Likens G E, Keene W C, et al. The composition of precipitation in remote areas of the world [ J ]. Journal of Geophysical Research, 1982, 87 ( C11 ) : 8771-8786.
  • 5徐刚,李心清,吕迎春,陈颖军,黄代宽.大气降水中低分子有机酸的季节变化及对酸雨形成的贡献(以贵阳市和尚重镇为例)[J].科学通报,2009,54(17):2568-2573. 被引量:16
  • 6Wrigge H, Zinserling J, Neumann P, et al. Spontaneous breathing improves lung aeration in oleic acid-induced lung injury [J]. Anesthesiology, 2003, 99(2): 376-384.
  • 7Kawamura K, Ikushima K. Seasonal changes in the distribution of dicarboxylic acids in the urban atmosphere[ J]. Environmental Science and Technology, 1993, 27(10) : 2227-2235.
  • 8Huang X F, Hu M, He L Y, et al. Chemical characterization of water-soluble organic acids in PM2.5 in Beijing, China [ J]. Atmospheric Environment, 2005, 39( 16): 2819-2827.
  • 9Ho K F, Lee S C, Cao J J, et al. Dicarboxylic acids, ketocarboxylic acids and di-carbonyls in the urban roadside area of Hong Kong[ J]. Atmospheric Environment, 2006, 40 (17) : 3030-3040.
  • 10Kawamura K, Steinberg S, Kaplan I R. Homologous series of C1 - C10 monocarboxylic acids and C1 - C6 carbonyls in Los Angeles air and motor vehicle exhausts [ J ]. Atmospheric Environment, 2000, 34(24): 4175-4191.

二级参考文献77

  • 1何凌燕,胡敏,黄晓锋,张远航.北京市大气气溶胶PM_(2.5)中极性有机化合物的测定[J].环境科学,2004,25(5):15-20. 被引量:20
  • 2韩贵琳,刘丛强.贵阳地区雨水化学与Sr同位素地球化学[J].环境化学,2005,24(2):213-218. 被引量:32
  • 3黄美元,沈志来,刘帅仁,吴玉霞,肖辉,雷恒池,白春红.中国西南典型地区酸雨形成过程研究[J].大气科学,1995,19(3):359-366. 被引量:33
  • 4徐刚,李心清,黄荣生,廖琍.贵阳市区大气降水中有机酸的研究[J].地球与环境,2007,35(1):46-50. 被引量:23
  • 5Facchini M C , Mircea M , Fuzzi S , et al. Cloud albedo enhancement by surface-active organic solutes in growing droplets [ J]. Nat, 1999,401:257 - 259.
  • 6Kerminen V M . Relative roles of secondary sulfate and organics in atmospheric cloud condensation nuclei production [ J ]. Journal of Geophysical Research, 2001,106:17321 - 17333.
  • 7Kawamura K , Ikushima K . Seasonal changes in the distribution of dicarboxylic acids in the urban atmosphere [J]. Environ Sci Technol,1993,27: 2227 - 2235.
  • 8Kawamura K , Sempere R , Imai Y . Water soluble dicarboxylic acids and related compounds in Antarctic aerosols [J]. Journal of Geophysical Research, 1996, 101:18721 - 18728.
  • 9Kawamura K , Steinberg S , Kaplan I R . Concentrations of monocarboxylic and dicarboxylic acids and aldehydes in southern California wet precipitations: comparison of urban and non-urban samples and compositional changes during scavenging [ J ]. Atmos Environ,1996, 30:1035 - 1052.
  • 10Kawamura K , Sakaguchi F . Molecular distribution of water soluble dicarboxylic acids in marine aerosols over the Pacific Ocean including tropics [ J]. Journal of Geophysical Research, 1999,104:3501 - 3509.

共引文献65

同被引文献130

引证文献8

二级引证文献36

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部