Excitation of the primary tropospheric chemical mode in a global three-dimensional model

被引:90
作者
Wild, O [1 ]
Prather, MJ [1 ]
机构
[1] Univ Calif Irvine, Irvine, CA 92697 USA
关键词
D O I
10.1029/2000JD900399
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Coupling of local chemical processes over the globe by atmospheric transport leads to the existence of chemical modes that are a fundamental characterization of global atmospheric chemistry and provide a true description of the atmospheric response to small changes in trace-gas emissions. Such coupled chemistry-transport modes in global tropospheric chemistry are an inherent feature of three-dimensional chemical transport models (CTMs). In CTMs these modes cannot be solved for explicitly, as they have been for the case of low-order, fully linearized systems, but they are investigated here through a series of perturbation experiments. When using meteorological fields that recycle every year, the long-lived modes are readily seen as seasonal decay patterns that e-fold each year. An important application of chemical modes is the study of how emissions of CO and NO excite perturbations to the CH4-like mode, the longest-lived (primary) mode found in tropospheric chemistry (i,e., with fixed stratospheric composition). Perturbation experiments are conducted with the University of California, Irvine, three-dimensional tropospheric CTM to identify this primary tropospheric mode and to determine its five-dimensional structure. The previous demonstrations of a long-lived chemical mode with 1.5 times the lifetime of CH4 are corroborated. The ability of emissions of CO and NO to excite this mode is then demonstrated, and a quantitative evaluation of the indirect effect of CO emissions on the greenhouse gases CH4 and tropospheric O-3 is made, showing that 100 kg of CO is equivalent to 5-6 kg of CH4 emissions.
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页码:24647 / 24660
页数:14
相关论文
共 57 条
[1]   Evaluated kinetic, photochemical and heterogeneous data for atmospheric chemistry .5. IUPAC Subcommittee on Gas Kinetic Data Evaluation for Atmospheric Chemistry [J].
Atkinson, R ;
Baulch, DL ;
Cox, RA ;
Hampson, RF ;
Kerr, JA ;
Rossi, MJ ;
Troe, J .
JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 1997, 26 (03) :521-1011
[2]   The Mauna Loa observatory photochemistry experiment: Introduction [J].
Atlas, EL ;
Ridley, BA .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1996, 101 (D9) :14531-14541
[3]   Tracer-tracer correlations: Three-dimensional model simulations and comparisons to observations [J].
Avallone, LM ;
Prather, MJ .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1997, 102 (D15) :19233-19246
[4]   TRANSPORT AND RESIDENCE TIMES OF TROPOSPHERIC AEROSOLS INFERRED FROM A GLOBAL 3-DIMENSIONAL SIMULATION OF PB-210 [J].
BALKANSKI, YJ ;
JACOB, DJ ;
GARDNER, GM ;
GRAUSTEIN, WC ;
TUREKIAN, KK .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1993, 98 (D11) :20573-20586
[5]  
BATESON EV, 1995, J PHONETICS, V23, P101
[6]  
Baughcum S.L., 1996, CR4700 NASA, P205
[7]   Global gridded inventories of anthropogenic emissions of sulfur and nitrogen [J].
Benkovitz, CM ;
Scholtz, MT ;
Pacyna, J ;
Tarrason, L ;
Dignon, J ;
Voldner, EC ;
Spiro, PA ;
Logan, JA ;
Graedel, TE .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1996, 101 (D22) :29239-29253
[8]   The ASAD atmospheric chemistry integration package and chemical reaction database [J].
Carver, GD ;
Brown, PD ;
Wild, O .
COMPUTER PHYSICS COMMUNICATIONS, 1997, 105 (2-3) :197-215
[9]   On the climate forcing of carbon monoxide [J].
Daniel, JS ;
Solomon, S .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1998, 103 (D11) :13249-13260
[10]  
DeMore W.B., 1997, JPL PUBL, P97