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Acetaldehyde and acetone in the Arctic snowpack during the ALERT2000 campaign. Snowpack composition, incorporation processes and atmospheric impact

  • Stéphan Houdier
  • , Sébastien Perrier
  • , Florent Dominé
  • , Axel Cabanes
  • , Loïc Legagneux
  • , Amanda M. Grannas
  • , Christophe Guimbaud
  • , Paul B. Shepson
  • , Hacene Boudries
  • , Jan W. Bottenheim
  • CNRS
  • Purdue University
  • Environment and Climate Change Canada

Research output: Contribution to journalArticlepeer-review

54 Scopus citations

Abstract

Acetaldehyde and acetone were measured in the seasonal snowpack near Alert (Nunavut, Canadian Arctic) in February and April 2000. Acetaldehyde concentrations in fresh surface snow in February were about 2.5ppbw, decreasing to 1ppbw after several days, while gas-phase acetaldehyde was about 75pptv. Values for aged layers were 1.3-2.6ppbw. In April, values for fresh snow were 5-10ppbw, decreasing to 1-4ppbw after several days (gas-phase values were around 230pptv). Values for aged layers were in the range 0.7-3ppbw. Snow-phase acetaldehyde represented 67% of the (snow+atmospheric mixing layer) system in winter and 94% in spring. Preliminary acetone measurements yielded values 1.5-3ppbw in surface snow several days after deposition. To understand the kinetics of exchange of acetaldehyde between the air and the snow, its mechanism of incorporation in snow was investigated. Surface incorporation by adsorption, and volume incorporation by dissolution were considered. Winter and spring measurements showed very different trends, and spring concentrations were higher than winter ones, which is contrary to thermodynamic expectations. The photolytical production of acetaldehyde in the snowpack is proposed as an explanation.

Original languageEnglish
Pages (from-to)2609-2618
Number of pages10
JournalAtmospheric Environment
Volume36
Issue number15-16
DOIs
StatePublished - 2002

Keywords

  • Acetaldehyde
  • Acetone
  • ALERT2000
  • Incorporation processes
  • Snow

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