AI Article Synopsis

  • This study examines acetaldehyde emissions from an Austrian mountain grassland over four growing seasons, finding it consistently acted as a net source of this gas.
  • Significant spikes in acetaldehyde emissions occurred after the meadow was cut, indicating a strong influence of human activities on gas release.
  • The research highlights a complex relationship between environmental factors like soil temperature and moisture, influencing both emissions and uptake of acetaldehyde, with daily compensation points ranging from 0.40 to 0.54 ppbv.

Article Abstract

An overview of acetaldehyde exchange above a managed temperate mountain grassland in Austria over four growing seasons is presented. The meadow acted as a net source of acetaldehyde in all four years, emitting between 7 and 28 mg C m over the whole growing period. The cutting of the meadow resulted in huge acetaldehyde emission bursts on the day of harvesting or one day later. During undisturbed conditions, both uptake and emission fluxes were recorded. The bidirectional nature of acetaldehyde fluxes was also reflected by clear diurnal cycles during certain time periods, indicating strong deposition processes before the 1st cut and emission towards the end of the growing season. The analysis of acetaldehyde compensation points revealed a complex relationship between ambient acetaldehyde mixing ratios and respective fluxes, significantly influenced by multiple environmental parameters and variable throughout the year. As a major finding of this study, we identified both a positive and negative correlation between concentration and flux on a daily scale, where soil temperature and soil water content were the most significant factors in determining the direction of the slope. In turn, this bidirectional relationship on a daily scale resulted in compensation points between 0.40 ppbv and 0.54 ppbv, which could be well explained by collected ancillary data. We conclude that in order to model acetaldehyde fluxes at the site in Neustift on a daily scale over longer time periods, it is crucial to know the type of relationship, i.e. the direction of the slope, between mixing ratios and fluxes on a given day.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3868935PMC
http://dx.doi.org/10.5194/acpd-13-26117-2013DOI Listing

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