JOURNAL ARTICLE

Vegetation responses to climate extremes recorded by remotely sensed atmospheric formaldehyde

Abstract

Abstract Accurate monitoring of vegetation stress is required for better modelling and forecasting of primary production, in a world where heatwaves and droughts are expected to become increasingly prevalent. Variability in formaldehyde (HCHO) concentrations in the troposphere is dominated by local emissions of short‐lived biogenic (BVOC) and pyrogenic volatile organic compounds. BVOCs are emitted by plants in a rapid protective response to abiotic stress, mediated by the energetic status of leaves (the excess of reducing power when photosynthetic light and dark reactions are decoupled, as occurs when stomata close in response to water stress). Emissions also increase exponentially with leaf temperature. New analytical methods for the detection of spatiotemporally contiguous extremes in remote‐sensing data are applied here to satellite‐derived atmospheric HCHO columns. BVOC emissions are shown to play a central role in the formation of the largest positive HCHO anomalies. Although vegetation stress can be captured by various remotely sensed quantities, spaceborne HCHO emerges as the most consistent recorder of vegetation responses to the largest climate extremes, especially in forested regions.

Keywords:
Environmental science Vegetation (pathology) Atmospheric sciences Abiotic component Troposphere Climate change Formaldehyde Atmosphere (unit) Climatology Meteorology Ecology Chemistry Geography Geology

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37
Cited By
2.36
FWCI (Field Weighted Citation Impact)
67
Refs
0.91
Citation Normalized Percentile
Is in top 1%
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Citation History

Topics

Atmospheric chemistry and aerosols
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
Atmospheric and Environmental Gas Dynamics
Physical Sciences →  Environmental Science →  Global and Planetary Change
Plant responses to elevated CO2
Life Sciences →  Agricultural and Biological Sciences →  Plant Science
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