Global OH trend inferred from methylchloroform measurements

被引:147
作者
Krol, M [1 ]
van Leeuwen, PJ [1 ]
Lelieveld, J [1 ]
机构
[1] Univ Utrecht, Inst Marine & Atmospher Res, NL-3584 CC Utrecht, Netherlands
关键词
D O I
10.1029/98JD00459
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Methylchloroform (MCF) measurements taken at the Atmospheric Lifetime Experiment/Global Atmospheric Gases Experiment (ALE/GAGE) measurement stations are used to deduce the tropospheric OH concentration and its linear trend between 1978 and 1993. Global three-dimensional fields of OH are calculated with a transport model that includes background photochemistry. Despite the large uncertainties in these OH fields, the simulated MCF concentrations at the five ALE/GAGE stations compare reasonably well to the measurements, As a next step, the OH fields are adjusted to fit the measurements optimally. An ensemble (Monte Carlo) technique is used to optimize the OH scaling factor and to derive the linear trend in OH. The optimized OH fields and trend imply a MCF lifetime in the troposphere of 4.7 years in 1978 and of 4.5 years in 1993. For CH4 these lifetimes (due to OH destruction only) are 9.2 and 8.6 years in 1978 and 1993, respectively. Uncertainties in these estimates are discussed using box-model calculations. The optimized OH concentration is sensitive to the strength of other MCF sinks in the model and is constrained to 1.00(-0.15)(+0.09) x 10(6) molecules cm(-3) in 1978 and to 1.07(-0.17)(+0.09) x 10(6) molecules cm(-3) in 1993. The deduced OH trend is sensitive to the trend in the MCF emissions and is confined to the interval between -0.1 and +1.1% yr(-1) with a most likely value of 0.46% yr(-1). Possible causes of a global increase in OH are discussed. A positive OH trend is calculated due to stratospheric ozone depletion, declining CO concentrations, increased water vapor abundance, and enhanced NOx emissions. Although the changes in the atmospheric composition are to a large extent unknown, it seems that the observed changes are consistent with significant increases in OH over the past decades.
引用
收藏
页码:10697 / 10711
页数:15
相关论文
共 56 条
  • [1] Alyea F., 1996, Climate Change 1995: The Science of Climate Change: Contribution of Working Group I to the Second Assessment Report of the Intergovernmental Panel on Climate Change, V2, P65
  • [2] EFFECT OF OZONE DEPLETION ON ATMOSPHERIC CH4 AND CO CONCENTRATIONS
    BEKKI, S
    LAW, KS
    PYLE, JA
    [J]. NATURE, 1994, 371 (6498) : 595 - 597
  • [3] TRENDS OF TROPOSPHERIC CO, N2O AND CH4 AS OBSERVED AT CAPE POINT, SOUTH-AFRICA
    BRUNKE, EG
    SCHEEL, HE
    SEILER, W
    [J]. ATMOSPHERIC ENVIRONMENT PART A-GENERAL TOPICS, 1990, 24 (03): : 585 - 595
  • [4] OCEANIC CONSUMPTION OF CH3CCL3 - IMPLICATIONS FOR TROPOSPHERIC OH
    BUTLER, JH
    ELKINS, JW
    THOMPSON, TM
    HALL, BD
    SWANSON, TH
    KOROPALOV, V
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1991, 96 (D12) : 22347 - 22355
  • [5] THE CHANGING PHOTOCHEMISTRY OF THE TROPOSPHERE
    CRUTZEN, PJ
    ZIMMERMANN, PH
    [J]. TELLUS SERIES A-DYNAMIC METEOROLOGY AND OCEANOGRAPHY, 1991, 43 (04) : 136 - 151
  • [6] CUNNOLD DM, 1991, J GEOPHYS RES-ATMOS, V96, P17391, DOI 10.1029/91JD01495
  • [7] REACTION OF N2O5 ON TROPOSPHERIC AEROSOLS - IMPACT ON THE GLOBAL DISTRIBUTIONS OF NOX, O3, AND OH
    DENTENER, FJ
    CRUTZEN, PJ
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1993, 98 (D4) : 7149 - 7163
  • [8] DEWINTERSORKINA R, 1997, P 3 C ATM CHEM, P118
  • [9] Changes in CH4 and CO growth rates after the eruption of Mt Pinatubo and their link with changes in tropical tropospheric UV flux
    Dlugokencky, EJ
    Dutton, EG
    Novelli, PC
    Tans, PP
    Masarie, KA
    Lantz, KO
    Madronich, S
    [J]. GEOPHYSICAL RESEARCH LETTERS, 1996, 23 (20) : 2761 - 2764
  • [10] Understanding the production and interconversion of the hydroxyl radical during the Tropospheric OH Photochemistry Experiment
    Eisele, FL
    Mount, GH
    Tanner, D
    Jefferson, A
    Shetter, R
    Harder, JW
    Williams, EJ
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1997, 102 (D5) : 6457 - 6465