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An Overview Of Arctic Haze And Surface Ozone Depletion At Polar Sunrise Leonard A. Barrie Pacific Northwest National Laboratory

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Presentation on theme: "An Overview Of Arctic Haze And Surface Ozone Depletion At Polar Sunrise Leonard A. Barrie Pacific Northwest National Laboratory"— Presentation transcript:

1 An Overview Of Arctic Haze And Surface Ozone Depletion At Polar Sunrise Leonard A. Barrie Pacific Northwest National Laboratory Leonard.barrie@pnl.gov

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3 CLIMATE CHANGE TOXICS ARCTIC HAZE ACID RAIN OZONE DEPLETION 1970 75 80 85 90 95 2000 HISTORY OF PRIORITY ISSUES RESEARCHED IN THE ARCTIC

4 Arctic Sulphur Pollution is Widespread: Eurasia is Connected to North America

5 sulphatesodium methylsulphonate aluminum Seasonality of Major Aerosol Components At Alert:1980-1995 From Sirois, A. and L.A. Barrie, 1999, J. G. R., 104D, 11599-11618.

6 Apportionment Of Aerosol Mass At Ny Alesund in Spring of 1996. (Staebler et al, J. G. R.,1999, 103D, 5515-5529)  The average estimated mass concentration in µg m -3 is given at the top of each bar.  An average apportionment is shown for each quartile of daily mean accumulation mode aerosol volume.  The top quartile is most polluted from Europe and Russia while the lowest quartile is off the North Atlantic and Greenland.  “Other” are remaining measured anions and cations  “Unknown” is most probably the organic fraction.

7 The Primary Nitrogen Oxide In Arctic Haze Pollution is PAN Courtesy of Dr. J. Bottenheim Alert Canada 1988

8 Aerosol bromine Aerosol iodine

9 Anlauf Figure

10 Barrie, L.A., J.W. Bottenheim, R.C. Schnell, P.J. Crutzen and R.A. Rasmussen, Ozone destruction and photochemical reactions at polar in the lower Arctic atmosphere, Nature, 334, 138-141. (1988).

11 OZONE AND MERCURY DEPLETION OVER THE ARCTIC OCEAN 0 1 ALTITUDE (km) C DEPOSITED & SEA SALT X - O3O3 p-X + HX; p-Hg ++ X 2, X`X`` HOX OCEAN SNOW & ICE INVERSION TOP H 2 SO 4, Br -, Cl- I -, I 2 O 3 -, NO x -, Organics, Hg ++ O 3, HCs, NO y, Hg 0 O 3 DESTROYED: XO +XO---> X 2 + O 2 2X + 2O 3 --->2XO + 2O 2 HX AEROSOLS & ICE: GASES: X XO X=Br, Cl, I O3O3 HO 2,HCHO HO 2

12 Spatial Distribution of Tropospheric BrO In The Arctic from GOME Satellite Observations Lu, J.Y., W. H. Schroeder, L. A. Barrie et al, 2001, Magnification of atmospheric mercury deposition to polar regions in springtime: the link to tropospheric ozone depletion chemistry, Geophys. Res. Letters, in press

13 Schroeder, W.H., K.G. Anlauf, L.A. Barrie, J.Y. Lu, A. Steffen, D.R. Schneeberger and T. Berg, 1998, Mercury vapour depletion in Arctic air during springtime, Nature, 394, 331. Mercury Correlation With Ozone

14 Mercury In Snow At Sheba Site North Of Alaska For One Year: Lu, J.Y., W. H. Schroeder, L. A. Barrie et al, 2001, Magnification of atmospheric mercury deposition to polar regions in springtime: the link to tropospheric ozone depletion chemistry, Geophys. Res. Letters, in press Polar Sunrise

15 Mercury In April Surface Snow Lu, J.Y., W. H. Schroeder, L. A. Barrie et al, 2001, Magnification of atmospheric mercury deposition to polar regions in springtime: the link to tropospheric ozone depletion chemistry, Geophys. Res. Letters, in press

16 SUMMARY From November to May, the Arctic air mass is a highway for Eurasian pollution to North America The high latitude lower troposphere is decoupled from the middle to upper troposphere. North American and SE Asian sources play a relatively more important role with increasing height. Re tropospheric ozone: polar region snowpack chemistry is an important sink in the frozen marine boundary layer and an important source of ozone precursors for mid latitudes in spring Surface ozone depletion at polar sunrise leads to greatly enhanced mercury deposition near frozen marine surfaces of the Arctic and Hudson Bay.


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