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VERSION:2.0
PRODID:icalendar-ruby
CALSCALE:GREGORIAN
METHOD:PUBLISH
BEGIN:VEVENT
DTSTAMP:20260924T105555Z
UID:https://www.mpgc-mainz.de/events/30805/2368
DTSTART;VALUE=DATE:20220720
DTEND;VALUE=DATE:20220721
CLASS:PUBLIC
CREATED:20220408T082921Z
DESCRIPTION:Earth system models integrate previously separate models of the
  ocean\, atmosphere and vegetation in one comprehensive modelling system e
 nabling the investigation of interactions between different components of 
 the Earth system. Global isoprene and monoterpene emissions from terrestri
 al vegetation\, which represents the most important source of volatile org
 anic compounds in the Earth system\, need to be included in global and reg
 ional chemical transport models given their major chemical impacts on the 
 atmosphere. Due to the feedback of vegetation activity involving interacti
 ons with the weather and climate\, a coupled modelling system between vege
 tation and atmospheric chemistry is a recommended tool to address the fate
  of biogenic volatile organic compounds. I will present details on how we 
 coupled the atmospheric chemistry-climate model EMAC with the global dynam
 ic vegetation model LPJ-GUESS for global isoprene and monoterpene emission
  estimates.\nSpeaker: Ryan Vella
LAST-MODIFIED:20220621T070602Z
LOCATION:
SUMMARY:Ryan Vella: Incorporating vegetation dynamics for terrestrial isopr
 ene and monoterpene emission estimates
URL;VALUE=URI:https://www.mpgc-mainz.de/events/30805/2368
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