Influences of vertical transport and scavenging on aerosol particle surface area and radon decay product concentrations at the Jungfraujoch (3454 m above sea level)

被引:34
作者
Lugauer, M
Baltensperger, U [1 ]
Furger, M
Gäggeler, HW
Jost, DT
Nyeki, S
Schwikowski, M
机构
[1] Paul Scherrer Inst, Lab Atmospher Chem, CH-5232 Villigen, Switzerland
[2] Paul Scherrer Inst, Lab Radio & Environm Chem, Villigen, Switzerland
[3] Univ Essex, Inst Environm Res, Colchester CO4 3SQ, Essex, England
关键词
D O I
10.1029/2000JD900184
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Concentrations of the aerosol particle surface area (SA) and aerosol-attached radon decay products Pb-214 and Pb-212 have been measured by means of an aerosol and a radon epiphaniometer at the Jungfraujoch research station (JFJ; 3454 m above sea level, Switzerland). These parameters exhibit a pronounced seasonal cycle with minimum values in winter and maximum values in summer. In summer, pronounced diurnal variations with a maximum at 1800 LST ale often present. Highest concentrations and most pronounced diurnal variations occur during anticyclonic weather conditions in summer. Thermally driven vertical transport over alpine topography is responsible for this observation, During this synoptic condition, concentrations vary greatly with the 500 hPa wind direction, exhibiting low concentrations for NW-N winds and high concentrations for weak or S-SW winds. Lead-214 and SA are highly correlated during anticyclonic conditions, indicating transport equivalence of the gaseous Pb-214 precursor, Rn-222, and of aerosol particles. When cyclonic lifting is the dominant vertical transport, wet scavenging of aerosol particles can explain the weak correlation of (214)pb and SA This conclusion is corroborated by the Pb-214/S-A ratio, being twice as high during cyclonic than during anticyclonic conditions. Lead-212 is a tracer for the influence of surface contact on a local scale due to its short lifetime of 15.35 hours. The analysis of this parameter suggests that high-alpine surfaces Flay an important role in thermally driven transport to the JFJ.
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页码:19869 / 19879
页数:11
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