ACE-2 HILLCLOUD.: An overview of the ACE-2 ground-based cloud experiment

被引:50
作者
Bower, BKN
Choularton, TW
Gallagher, MW
Beswick, KM
Flynn, MJ
Allen, AG
Davison, BM
James, JD
Robertson, L
Harrison, RM
Hewitt, CN
Cape, JN
McFadyen, GG
Milford, C
Sutton, MA
Martinsson, BG
Frank, G
Swietlicki, E
Zhou, J
Berg, OH
Mentes, B
Papaspiropoulos, G
Hansson, HC
Leck, C
Kulmala, M
Aalto, P
Väkevä, M
Berner, A
Bizjak, M
Fuzzi, S
Laj, P
Facchini, MC
Orsi, G
Ricci, L
Nielsen, M
Allan, BJ
Coe, H
McFiggans, G
Plane, JMC
Collett, JL
Moore, KF
Sherman, DE
机构
[1] Univ Manchester, Inst Sci & Technol, Dept Phys, Manchester M60 1QD, Lancs, England
[2] Univ Birmingham, Inst Publ & Environm Hlth, Birmingham B15 2TT, W Midlands, England
[3] NERC, Inst Terr Ecol, Edinburgh Res Stn, Penicuik EH26 0QB, Midlothian, Scotland
[4] Univ Lund, Div Nucl Phys, S-22100 Lund, Sweden
[5] Stockholm Univ, Inst Appl Environm Res, Air Pollut Lab, Stockholm, Sweden
[6] Univ Helsinki, Dept Phys, FIN-00014 Helsinki, Finland
[7] Univ Vienna, Inst Expt Phys, A-1090 Vienna, Austria
[8] CNR, Ist Fisbat, I-40129 Bologna, Italy
[9] Riso Natl Lab, DK-4000 Roskilde, Denmark
[10] Univ Lancaster, Inst Environm & Nat Sci, Lancaster LA1 4YQ, England
[11] Univ E Anglia, Sch Environm Sci, Norwich NR4 7TJ, Norfolk, England
[12] Colorado State Univ, Dept Atmospher Sci, Ft Collins, CO 80523 USA
[13] Natl Inst Chem, Ljubljana 61115, Slovenia
关键词
D O I
10.1034/j.1600-0889.2000.00027.x
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The ACE-2 HILLCLOUD experiment was carried out on the island of Tenerife in June-July 1997 to investigate the interaction of the boundary layer aerosol with a hill cap cloud forming over a ridge to the north-east of the island. The cloud was used as a natural flow through reactor to investigate the dependence of the cloud microphysics and chemistry on the characteristics of the aerosols and trace gases entering cloud, and to simultaneously study the influence of the physical and chemical processes occurring within the cloud on the size distribution, chemical and hygroscopic properties of the aerosol exiting cloud. 5 major ground base sites were used, measuring trace gases and aerosols upwind and downwind of the cloud, and cloud microphysics and chemistry and interstitial aerosol and gases within the cloud on the hill. 8 intensive measurement periods or runs were undertaken during cloud events, (nocturnally for seven of the eight runs) and were carried out in a wide range of airmass conditions from clean maritime to polluted continental. Polluted air was characterised by higher than average concentrations of ozone (> 50 ppbv), fine and accumulation mode aerosols (> 3000 and > 1500 cm(-3), respectively) and higher aerosol mass loadings. Cloud droplet number concentrations N, increased from 50 cm(-3) in background maritime air to > 2500 cm(-3) in aged polluted continental air, a concentration much higher than had previously been detected. Surprisingly, N was seen to vary almost linearly with aerosol number across this rang. The droplet aerosol analyser (DAA) measured higher droplet numbers than the corrected forward scattering spectrometer probe (FSSP) in the most polluted air, but at other times there was good agreement (FSSP = 0.95 DAA with an r(2) = 0.89 for N < 1200 cm(-3)). Background ammonia gas concentrations were around 0.3 ppbv even in air originating over the ocean, another unexpected but important result for the region. NO2 was present in background concentrations of typically 15 pptv to 100 pptv and NO3. (the nitrate radical) was observed at night throughout. Calculations suggest NO3. losses were mainly by reaction with DMS to produce nitric acid. Low concentrations of SO2 (similar to 30 pptv), HNO3 and HCl were always present. HNO3 concentrations were higher in polluted episodes and calculations implied that these exceeded those which could be accounted for by NO2 oxidation. It is presumed that nitric and hydrochloric acids were present as a result of outgassing from aerosol, the HNO3 from nitrate rich aerosol transported into the region from upwind of Tenerife, and HCl from sea salt aerosol newly formed at the sea surface. The oxidants hydrogen peroxide and ozone were abundant (i.e., were well in excess over SO2 throughout the experiment). Occasions of significant aerosol growth following cloud processing were observed, particularly in cleaner cases. Observations and modelling suggested this was due mainly to the take up of nitric acid, hydrochloric acid and ammonia by the smallest activated aerosol particles. On a few occasions a small contribution was made by the in-cloud oxidation of S(IV). The implications of these results from HILLCLOUD for the climatologically more important stratocumulus Marine Boundary Layer (MBL) clouds are considered.
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页码:750 / 778
页数:29
相关论文
共 15 条
  • [1] Observations of the nitrate radical in the marine boundary layer
    Allan, BJ
    Carslaw, N
    Coe, H
    Burgess, RA
    Plane, JMC
    [J]. JOURNAL OF ATMOSPHERIC CHEMISTRY, 1999, 33 (02) : 129 - 154
  • [2] The Great Dun Fell Experiment 1995: an overview
    Bower, KN
    Choularton, TW
    Gallagher, MW
    Colvile, RN
    Beswick, KM
    Inglis, DWF
    Bradbury, C
    Martinsson, BG
    Swietlicki, E
    Berg, OH
    Cederfelt, SI
    Frank, G
    Zhou, J
    Cape, JN
    Sutton, MA
    McFadyen, GG
    Milford, C
    Birmili, W
    Yuskiewicz, BA
    Wiedensohler, A
    Stratmann, F
    Wendisch, M
    Berner, A
    Ctyroky, P
    Galambos, Z
    Mesfin, SH
    Dusek, U
    Dore, CJ
    Lee, DS
    Pepler, SA
    Bizjak, M
    Divjak, B
    [J]. ATMOSPHERIC RESEARCH, 1999, 50 (3-4) : 151 - 184
  • [3] The Great Dun Fell Cloud Experiment 1993: An overview
    Choularton, TW
    Colvile, RN
    Bower, KN
    Gallagher, MW
    Wells, M
    Beswick, KM
    Arends, BG
    Mols, JJ
    Kos, GPA
    Fuzzi, S
    Lind, JA
    Orsi, G
    Facchini, MC
    Laj, P
    Gieray, R
    Wieser, P
    Engelhardt, T
    Berner, A
    Kruisz, C
    Moller, D
    Acker, K
    Wieprecht, W
    Luttke, J
    Levsen, K
    Bizjak, M
    Hansson, HC
    Cederfelt, SI
    Frank, G
    Mentes, B
    Martinsson, B
    Orsini, D
    Svenningsson, B
    Swietlicki, E
    Wiedensohler, A
    Noone, KJ
    Pahl, S
    Winkler, P
    Seyffer, E
    Helas, G
    Jaeschke, W
    Georgii, HW
    Wobrock, W
    Preiss, M
    Maser, R
    Schell, D
    Dollard, G
    Jones, B
    Davies, T
    Sedlak, DL
    David, MM
    [J]. ATMOSPHERIC ENVIRONMENT, 1997, 31 (16) : 2393 - 2405
  • [4] Modelling cloud processing of aerosol during the ACE-2 HILLCLOUD experiment
    Flynn, MJ
    Bower, KN
    Choularton, TW
    Wobrock, W
    Mäkelä, JM
    Martinsson, B
    Frank, G
    Hansson, HC
    Karlsson, H
    Laj, P
    [J]. TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 2000, 52 (02): : 779 - 800
  • [5] An overview of the Lagrangian experiments undertaken during the North Atlantic regional Aerosol Characterisation Experiment (ACE-2)
    Johnson, DW
    Osborne, S
    Wood, R
    Suhre, K
    Johnson, R
    Businger, S
    Quinn, PK
    Wiedensohler, A
    Durkee, PA
    Russell, LM
    Andreae, MO
    O'Dowd, C
    Noone, KJ
    Bandy, B
    Rudolph, J
    Rapsomanikis, S
    [J]. TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 2000, 52 (02) : 290 - 320
  • [6] Jones A, 1996, Q J ROY METEOR SOC, V122, P1573
  • [7] Validation of very high cloud droplet number concentrations in air masses transported thousands of kilometres over the ocean
    Martinsson, BG
    Frank, G
    Cederfelt, SI
    Berg, OH
    Mentes, B
    Papaspiropoulos, G
    Swietlicki, E
    Zhou, JC
    Flynn, M
    Bower, KN
    Choularton, TW
    Mäkelä, J
    Virkkula, A
    Van Dingenen, R
    [J]. TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 2000, 52 (02): : 801 - 814
  • [8] Marine and land-based influences on atmospheric ammonia and ammonium over Tenerife
    Milford, C
    Sutton, MA
    Allen, AG
    Karlsson, A
    Davison, BM
    James, JD
    Rosman, K
    Harrison, RM
    Cape, JN
    [J]. TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY, 2000, 52 (02): : 273 - 289
  • [9] NIELSEN M, 1998, METEOROLOGICAL OBSER
  • [10] PALUCH IR, 1979, J ATMOS SCI, V36, P2467, DOI 10.1175/1520-0469(1979)036<2467:TEMICC>2.0.CO