نتایج جستجو برای: ozone layer depletion

تعداد نتایج: 361253  

Journal: :Photochemistry and photobiology 2006
S Díaz C Camilión J Escobar G Deferrari S Roy K Lacoste S Demers C Belzile G Ferreyra S Gianesella M Gosselin C Nozais E Pelletier I Schloss M Vernet

In studies of the biological effects of UV radiation, ozone depletion can be mimicked by performing the study under ambient conditions and adding radiation with UV-B lamps. We evaluated this methodology at three different locations along a latitudinal gradient: Rimouski (Canada), Ubatuba (Brazil) and Ushuaia (Argentina). Experiments of the effect of potential ozone depletion on marine ecosystem...

2017
Jerome Brioude Robert W. Portmann John S. Daniel Owen R. Cooper Gregory J. Frost Karen H. Rosenlof Claire Granier A. R. Ravishankara Stephen A. Montzka Andreas Stohl J. Brioude R. W. Portmann J. S. Daniel O. R. Cooper G. J. Frost K. H. Rosenlof C. Granier S. A. Montzka A. Stohl

2015
John Marshall Cecilia M. Bitz Susan Solomon Alan Plumb DAVID FERREIRA JOHN MARSHALL CECILIA M. BITZ SUSAN SOLOMON ALAN PLUMB

The response of the SouthernOcean to a repeating seasonal cycle of ozone loss is studied in two coupled climate models and is found to comprise both fast and slow processes. The fast response is similar to the interannual signature of the southern annular mode (SAM) on sea surface temperature (SST), onto which the ozone hole forcing projects in the summer. It comprises enhanced northward Ekman ...

Journal: :Journal of nematology 1996
W B Thomas

Methyl bromide is used extensively on a global basis as a pesticide against nematodes, weeds, insects, fungi, bacteria, and rodents. As a soil fumigant, it is used in significant quantities in the production of strawberry and tomato, as well as other agriculture commodities. Grain, fresh fruit, forestry products, and other materials are fumigated with methyl bromide to control pest infestations...

2005
Vitali E. Fioletov Theodore G. Shepherd

[1] The statistical relationship between springtime and summertime ozone over middle and polar latitudes is analyzed using zonally averaged total ozone data. Shortterm variations in springtime midlatitude ozone demonstrate only a modest correlation with springtime polar ozone variations. However by early summer, ozone variations throughout the extratropics are highly correlated. Analysis of cor...

2008
R. von Glasow M. Piot

We present model studies with the one-dimensional model MISTRA to investigate the potential role of frost flowers, recycling on snow, and open leads in the depletion of tropospheric ozone in the Arctic spring. In our model, we assumed frost flower aerosols to be the major source of bromine. We show that a major ozone depletion event can be satisfactorily reproduced only if the recycling on snow...

Journal: :Science 2011
S M Kang L M Polvani J C Fyfe M Sigmond

Over the past half-century, the ozone hole has caused a poleward shift of the extratropical westerly jet in the Southern Hemisphere. Here, we argue that these extratropical circulation changes, resulting from ozone depletion, have substantially contributed to subtropical precipitation changes. Specifically, we show that precipitation in the southern subtropics in austral summer increases signif...

2015
DARRYN W. WAUGH CHAIM I. GARFINKEL LORENZO M. POLVANI

Observational evidence indicates that the southern edge of theHadley cell (HC) has shifted southward during austral summer in recent decades. However, there is no consensus on the cause of this shift, with several studies reaching opposite conclusions as to the relative role of changes in sea surface temperatures (SSTs) and stratospheric ozone depletion in causing this shift. Here, the authors ...

2000
SI-CHEE TSAY

An atmospheric radiation model is used to study the combined effects of ozone depletions/redistributions and particulate clouds on atmospheric heating/photolysis rates and ultraviolet radiation reaching the biosphere. Four types of particulate clouds prevalent in the summertime Arctic are considered: stratospheric aerosols, tropospheric aerosols (Arctic haze), cirrus clouds, and stratus clouds....

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