ORIGIN OF TROPOSPHERIC NOX OVER SUB-ARCTIC EASTERN CANADA IN SUMMER

被引:77
作者
FAN, SM
JACOB, DJ
MAUZERALL, DL
BRADSHAW, JD
SANDHOLM, ST
BLAKE, DR
SINGH, HB
TALBOT, RW
GREGORY, GL
SACHSE, GW
机构
[1] UNIV CALIF IRVINE, DEPT CHEM, IRVINE, CA 92171 USA
[2] UNIV NEW HAMPSHIRE, COMPLEX SYST RES CTR, DURHAM, NH 03814 USA
[3] GEORGIA INST TECHNOL, SCH EARTH & ATMOSPHER SCI, ATLANTA, GA 30332 USA
[4] NASA, LANGLEY RES CTR, HAMPTON, VA 22331 USA
[5] NASA, AMES RES CTR, MOFFETT FIELD, CA 94305 USA
关键词
D O I
10.1029/94JD01122
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The origin of NO(x) in the summertime troposphere over subarctic eastern Canada is investigated by photochemical modeling of aircraft and ground-based measurements from the Arctic Boundary Layer Expedition (ABLE 3B). It is found that decomposition of peroxyacetyl nitrate (PAN) can account for most of the NO(x) observed between the surface and 6.2 km altitude (aircraft ceiling). Forest fires represent the principal source of PAN in the region, implying the same origin for NO(x). There is, however, evidence for an unidentified source of NO., in occasional air masses subsiding from the upper troposphere. Isoprene emissions from boreal forests maintain high NO(x) concentrations in the continental boundary layer over eastern Canada by scavenging OH and NO3, thus slowing down conversion of NO(x) to HNO3, both in the daytime and at night. This effect is partly compensated by the production of CH3CO3 radicals during isoprene oxidation, which slows down the decomposition of PAN subsiding from the free troposphere. The peroxy radical concentrations estimated from concurrent measurements of NO and NO2 concentrations during ABLE 3B are consistent with values computed from our photochemical model below 4 km, but model values are low at higher altitudes. The discrepancy may reflect either a missing radical source in the model or interferences in the NO2 measurement.
引用
收藏
页码:16867 / 16877
页数:11
相关论文
共 64 条
[1]   GAS-PHASE TROPOSPHERIC CHEMISTRY OF ORGANIC-COMPOUNDS - A REVIEW [J].
ATKINSON, R .
ATMOSPHERIC ENVIRONMENT PART A-GENERAL TOPICS, 1990, 24 (01) :1-41
[2]   RATE CONSTANTS FOR THE GAS-PHASE REACTIONS OF THE NO3 RADICAL WITH A SERIES OF ORGANIC-COMPOUNDS AT 296+/-2-K [J].
ATKINSON, R ;
ASCHMANN, SM ;
PITTS, JN .
JOURNAL OF PHYSICAL CHEMISTRY, 1988, 92 (12) :3454-3457
[3]   MEASUREMENTS OF NOX AND NOY CONCENTRATIONS AND FLUXES OVER ARCTIC TUNDRA [J].
BAKWIN, PS ;
WOFSY, SC ;
FAN, SM ;
FITZJARRALD, DR .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1992, 97 (D15) :16545-16557
[4]  
BAKWIN PS, 1994, J GEOPHYS RES, V99, P1027
[5]   EFFECTS OF BIOMASS BURNING ON SUMMERTIME NONMETHANE HYDROCARBON CONCENTRATIONS IN THE CANADIAN WETLANDS [J].
BLAKE, DR ;
SMITH, TW ;
CHEN, TY ;
WHIPPLE, WJ ;
ROWLAND, FS .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1994, 99 (D1) :1699-1719
[6]   OZONE AND AEROSOL DISTRIBUTIONS IN THE SUMMERTIME TROPOSPHERE OVER CANADA [J].
BROWELL, EV ;
FENN, MA ;
BUTLER, CF ;
GRANT, WB ;
HARRISS, RC ;
SHIPHAM, MC .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1994, 99 (D1) :1739-1755
[7]   OBSERVED AND MODEL-CALCULATED NO2/NO RATIOS IN TROPOSPHERIC AIR SAMPLED DURING THE NASA GTE/CITE-2 FIELD-STUDY [J].
CHAMEIDES, WL ;
DAVIS, DD ;
BRADSHAW, J ;
SANDHOLM, S ;
RODGERS, M ;
BAUM, B ;
RIDLEY, B ;
MADRONICH, S ;
CARROLL, MA ;
GREGORY, G ;
SCHIFF, HI ;
HASTIE, DR ;
TORRES, A ;
CONDON, E .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1990, 95 (D7) :10235-10247
[9]   THE CHANGING PHOTOCHEMISTRY OF THE TROPOSPHERE [J].
CRUTZEN, PJ ;
ZIMMERMANN, PH .
TELLUS SERIES A-DYNAMIC METEOROLOGY AND OCEANOGRAPHY, 1991, 43 (04) :136-151
[10]   A PHOTOSTATIONARY STATE ANALYSIS OF THE NO2-NO SYSTEM BASED ON AIRBORNE OBSERVATIONS FROM THE SUBTROPICAL TROPICAL NORTH AND SOUTH-ATLANTIC [J].
DAVIS, DD ;
CHEN, G ;
CHAMEIDES, W ;
BRADSHAW, J ;
SANDHOLM, S ;
RODGERS, M ;
SCHENDAL, J ;
MADRONICH, S ;
SACHSE, G ;
GREGORY, G ;
ANDERSON, B ;
BARRICK, J ;
SHIPHAM, M ;
COLLINS, J ;
WADE, L ;
BLAKE, D .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1993, 98 (D12) :23501-23523