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The Ideology of Sovereign Money: How Bitcoin Harms Politics

open access: yes
Constellations, EarlyView.
Nanna Lilletvedt Sæten
wiley   +1 more source

Drought and overwintering fires drive consecutive large fire seasons in boreal North America

open access: yes
Scholten R   +11 more
europepmc   +1 more source

Climate change, fire return intervals and the growing risk of permanent forest loss in boreal Eurasia

open access: yesScience of the Total Environment, 2022
Climate change has driven an increase in the frequency and severity of fires in Eurasian boreal forests. A growing number of field studies have linked the change in fire regime to post-fire recruitment failure and permanent forest loss. In this study we used four burned area and two forest loss datasets to calculate the landscape-scale fire return ...
Brendan M Rogers   +2 more
exaly   +4 more sources
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Peeking under the canopy: anomalously short fire-return intervals alter subalpine forest understory plant communities

open access: yesNew Phytologist, 2023
Summary Climate change is driving changes in disturbance regimes world‐wide. In forests adapted to infrequent, high‐severity fires, recent anomalously short fire‐return intervals (FRIs) have resulted in greatly reduced postfire tree regeneration. However, effects on understory plant communities remain unexplored.
Kristin H. Braziunas   +2 more
exaly   +3 more sources

Estimating natural forest fire return interval in northeastern Ontario, Canada

Forest Ecology and Management, 2009
Abstract Long-term forest fire regime was simulated for the Moose River Forest Management Unit (FMU) in northeastern Ontario. The simulated area has not been managed for timber production and fire suppression activity has been minimal. The available data included fire records for 1970–2006 and forest age structure from forest resource inventory ...
Jiaxin Chen   +2 more
exaly   +2 more sources

Satellite-Derived Mean Fire Return Intervals As Indicators Of Change In Siberia (1995–2002)

Mitigation and Adaptation Strategies for Global Change, 2006
Under current climate change scenarios, temperatures in Siberia are expected to increase, and consequently, fire is also expected to increase. Potential climate-induced change is difficult to assess in Siberia because ground-based fire data are not complete.
Amber Soja   +2 more
exaly   +2 more sources

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