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TZID:Europe/Berlin
TZUNTIL:20271031T010000Z
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TZNAME:CET
DTSTART:20251026T030000
TZOFFSETFROM:+0200
TZOFFSETTO:+0100
RDATE:20261025T030000
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DTSTART:20250330T020000
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RDATE:20260329T020000
RDATE:20270328T020000
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BEGIN:VEVENT
UID:www.bayceer.uni-bayreuth.de-bayceer-t174353id
DTSTAMP:20260904T212915Z
DESCRIPTION:Protecting blue carbon ecosystems\, i.e.\, mangroves\, saltmars
 hes\, seagrasses\, and macroalgae\, can be an effective approach to mitiga
 te climate change. Previous research examining the potential of blue carbo
 n ecosystems to sequester carbon has focused on organic carbon storage in 
 marine sediments. Little is known about inorganic carbon that is produced 
 and exported to the ocean. Blue carbon ecosystems produce inorganic carbon
  as carbonate alkalinity\, which remains permanently dissolved in in the o
 cean and buffers coastal waters against acidification. My research aims to
  quantify alkalinity fluxes and their underlying drivers in blue carbon ec
 osystems\, to re-evaluate their climate-mitigation potential and provide n
 ew arguments for preserving these threatened coastal ecosystems.
DTSTART;TZID=Europe/Berlin:20260108T000000
DTEND;TZID=Europe/Berlin:20260108T235959
LOCATION:H6\, Geo
SUMMARY:Dr. Gloria Reithmaier\, University of Gothenburg\, Department of Ma
 rine Sciences (Homepage): Alkalinity enhancement in blue carbon ecosystems
  – An overlooked solution for climate change mitigation?
TRANSP:TRANSPARENT
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