ECOSYSTEM DYNAMICS RESEARCH LAB

  • Eight Mile Lake, AK; C. Schädel
  • Eight Mile Lake, AK; C. Schädel
  • Alaska Range; credit: C. Schädel
  • Automated Flux Chambers
  • Eriophorum Vaginatum
  • foggy mountains in Healy
  • Winter setting in Healy, AK
  • Winter snow fences
  • Dall Sheep, Denali National Park
  • Fall at CiPEHR
  • Spring at CiPEHR
  • Fall at the Gradient site; credit: E. Webb
  • Snowfences at CiPEHR; credit: S. Natali
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Publications

CV

UFRF Professorship award

 

Projects:

Permafrost Carbon Network

CiPEHR

Permafrost Thaw Gradient

SERDP

ARCSSTK

Ted Schuur, Ph.D.

Ted Schuur

Contact Information:

Professor

Department of Biology

220 Bartram Hall

PO Box 118525

University of Florida

Gainesville, FL 32611, USA

email:

Phone: +1 352 392 7913

Fax: +1 352 392 3993

Research Interests

Understanding feedbacks from terrestrial ecosystems to climate change is my main research interest. I focus on the response of Arctic ecosystems in a warmer world, which is key for understanding how natural ecosystems interact with human emissions to control the overall pace of climate change.

I spend the summer in Alaska living in a log cabin and conducting research, surrounded by wild places under the midnight sun. What brings me here is the potential for this remote place to have an outsized influence on the shape of the future world.

In the Arctic, temperatures are rising fast as a result of burning fossil fuels and deforestation elsewhere on Earth. Warmer temperatures means that things that are normally frozen start defrosting. This includes frozen ground that contains vast quantities of organic carbon – the remains of plants and animals that have been accumulating over thousands of years.

In fact, the amount of carbon in northern soils is about four times larger than all the carbon ever emitted by human activity in modern times. Release of even a fraction of this carbon into the atmosphere amplifies the pace of climate change, making things warmer yet. As an ecosystem ecologist, I am trying to discover how much frozen carbon will be released, how fast it will come out, and what the form of that carbon will be -- as carbon dioxide and methane.

Answers to these questions will in part determine the future climate not only for Alaska, but for the entire world in which we live.

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