The FLuorescence EXplorer (FLEX) mission proposes to launch a satellite for the global monitoring of steady-state chlorophyll fluorescence in terrestrial vegetation. Fluorescence is a sensitive probe of photosynthetic function in both healthy and physiologically perturbed vegetation, and a powerful non-invasive tool to track the status, resilience, and recovery of photochemical processes and moreover provides important information on overall photosynthetic performance with implications for related carbon sequestration. The early responsiveness of fluorescence to atmospheric, soil and plant water balance, as well as to atmospheric chemistry and human intervention in land usage makes it an obvious biological indicator in improving our understanding of Earth system dynamics. The amenability of fluorescence to remote, even space-basedobservation qualifies it to join the emerging suite of space-based technologies for Earth observation. FLEX would encompass a three-instrument array for measurement of the interrelated features of fluorescence, hyperspectral reflectance, and canopy temperature. FLEX would involve a space and ground-truthing program of 3-years duration and would provide data formats for research and applied science.

Fluorescence explorer (FLEX): An optimised payload to map vegetation photosynthesis from space

Cecchi Giovanna;Mazzinghi Piero;
2006

Abstract

The FLuorescence EXplorer (FLEX) mission proposes to launch a satellite for the global monitoring of steady-state chlorophyll fluorescence in terrestrial vegetation. Fluorescence is a sensitive probe of photosynthetic function in both healthy and physiologically perturbed vegetation, and a powerful non-invasive tool to track the status, resilience, and recovery of photochemical processes and moreover provides important information on overall photosynthetic performance with implications for related carbon sequestration. The early responsiveness of fluorescence to atmospheric, soil and plant water balance, as well as to atmospheric chemistry and human intervention in land usage makes it an obvious biological indicator in improving our understanding of Earth system dynamics. The amenability of fluorescence to remote, even space-basedobservation qualifies it to join the emerging suite of space-based technologies for Earth observation. FLEX would encompass a three-instrument array for measurement of the interrelated features of fluorescence, hyperspectral reflectance, and canopy temperature. FLEX would involve a space and ground-truthing program of 3-years duration and would provide data formats for research and applied science.
2006
Inglese
AIAA 57th International Astronautical Congress, IAC 2006
AIAA 57th International Astronautical Congress, IAC 2006
3
2065
2074
9781605600390
http://www.scopus.com/record/display.url?eid=2-s2.0-41149173111&origin=inward
Sì, ma tipo non specificato
2 - 6 October 2006
Valencia; Spain;
Atmospheric chemistry
Earth (planet)
Fluorescence
Optimization
Photosynthesis
Soils
Vegetation
FLuorescence EXplorer (FLEX)
Resilience
Terrestrial vegetation
Three-instrument array
Water balance
Space research
2
none
Moreno, Jose F.; Asner, Gregory P.; Bach, Heike; Belenguer, Tomas; Bell, Andrew; Buschmann, Claus; Calera, Alfonso; Calpe, Javier; Campbell, Petya; Ce...espandi
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/294759
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