OBSERVATIONS OF REDUCED OZONE CONCENTRATIONS IN THE TROPICAL STRATOSPHERE AFTER THE ERUPTION OF MT PINATUBO

被引:72
作者
GRANT, WB
FISHMAN, J
BROWELL, EV
BRACKETT, VG
NGANGA, D
MINGA, A
CROS, B
VEIGA, RE
BUTLER, CF
FENN, MA
NOWICKI, GD
机构
[1] UNIV MAIEN NGOUABI, Brazzaville, REP CONGO
[2] SCI APPLICAT INT CORP, HAMPTON, VA 23666 USA
关键词
D O I
10.1029/92GL01153
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The eruption of Mt. Pinatubo (15-degrees-N, 122-degrees-E) on June 15 and 16, 1991, placed a large amount of SO2 and crustal material in the stratosphere. Based on measurements of decreases of stratospheric ozone after previous volcanic eruptions, it was expected that the aerosols deposited into the stratosphere (both directly and as a result of SO2 conversion into particulate sulfate) by this eruption would give rise to significant ozone depletions. To check for such an effect, ozone profiles obtained from ECC sondes before and after the eruption at Brazzaville, Congo (4-degrees-S, 15-degrees-E), and Ascension Island (8-degrees-S, 14-degrees-W), are examined. Aerosol profiles determined from a lidar system in the western Pacific (4-degrees-6-degrees-N, 125-degrees-E) show that most of the material injected into the stratosphere is located between 18 and 28 km with highest amounts at 24-25 km. For the period 3-6 months after the eruption, decreases in ozone are found at 16 to 29 km, with peak decreases as large as 20% found at 24 km. Integrated between 16 and 28 km, a decrease of 13-20 Dobson units is observed when the ozonesonde data after the Pinatubo eruption are compared with those prior to the eruption. The altitude at which the most pronounced ozone decrease is found strongly correlates with peak aerosol loading determined by the lidar. In addition, a small increase in ozone density is found above about 28 km. Mechanisms that might explain the results such as heterogeneous chemistry, radiative effects, and dynamics are discussed.
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页码:1109 / 1112
页数:4
相关论文
共 29 条
[1]   CORRELATED BEHAVIOR OF THE AEROSOL AND OZONE CONTENTS OF THE STRATOSPHERE AFTER THE EL-CHICHON ERUPTION [J].
ADRIANI, A ;
FIOCCO, G ;
GOBBI, GP ;
CONGEDUTI, F .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1987, 92 (D7) :8365-8372
[2]  
ANGELL JK, 1988, J APPL METEOROL, V27, P91, DOI 10.1175/1520-0450(1988)027<0091:AUTOTV>2.0.CO
[3]  
2
[4]   EVIDENCE FOR STRATOSPHERIC OZONE-DEPLETING HETEROGENEOUS CHEMISTRY ON VOLCANIC AEROSOLS FROM EL-CHICHON [J].
ARNOLD, F ;
BUHRKE, T ;
QIU, S .
NATURE, 1990, 348 (6296) :49-50
[5]   ELECTROCHEMICAL CONCENTRATION CELL OZONESONDE ACCURACY AND PRECISION [J].
BARNES, RA ;
BANDY, AR ;
TORRES, AL .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1985, 90 (ND5) :7881-7887
[6]   FUTURE CHANGES IN STRATOSPHERIC OZONE AND THE ROLE OF HETEROGENEOUS CHEMISTRY [J].
BRASSEUR, GP ;
GRANIER, C ;
WALTERS, S .
NATURE, 1990, 348 (6302) :626-628
[7]   DIFFERENTIAL ABSORPTION LIDAR SENSING OF OZONE [J].
BROWELL, EV .
PROCEEDINGS OF THE IEEE, 1989, 77 (03) :419-432
[8]   RECENT TRENDS IN STRATOSPHERIC TOTAL OZONE - IMPLICATIONS OF DYNAMIC AND EL-CHICHON PERTURBATIONS [J].
CHANDRA, S ;
STOLARSKI, RS .
GEOPHYSICAL RESEARCH LETTERS, 1991, 18 (12) :2277-2280
[9]   DISTRIBUTION OF TROPOSPHERIC OZONE DETERMINED FROM SATELLITE DATA [J].
FISHMAN, J ;
WATSON, CE ;
LARSEN, JC ;
LOGAN, JA .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1990, 95 (D4) :3599-3617
[10]   STRATOSPHERIC AEROSOL LAYER DURING 1964 AND 1965 [J].
GRAMS, G ;
FIOCCO, G .
JOURNAL OF GEOPHYSICAL RESEARCH, 1967, 72 (14) :3523-&