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  Upper bounds of maximum land surface temperatures in a warming climate and limits to plant growth

Aminzadeh, M., Or, D., Stevens, B., AghaKouchak, A., & Shokri, N. (2023). Upper bounds of maximum land surface temperatures in a warming climate and limits to plant growth. Earth's Future, 11: e2023EF003755. doi:10.1029/2023EF003755.

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Earth s Future - 2023 - Aminzadeh.pdf (Publisher version), 2MB
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Earth s Future - 2023 - Aminzadeh.pdf
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2023
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 Creators:
Aminzadeh, Milad1, Author
Or, Dani1, Author
Stevens, Bjorn2, Author                 
AghaKouchak, Amir1, Author
Shokri, Nima1, Author
Affiliations:
1external, ou_persistent22              
2Director’s Research Group , Department Climate Physics, MPI for Meteorology, Max Planck Society, ou_913570              

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 Abstract: Abstract Extremely high land surface temperatures affect soil ecological processes, alter land-atmosphere interactions, and may limit some forms of life. Extreme surface temperature hotspots are presently identified using satellite observations or deduced from complex Earth system models. We introduce a simple, yet physically based analytical approach that incorporates salient land characteristics and atmospheric conditions to globally identify locations of extreme surface temperatures and their upper bounds. We then provide a predictive tool for delineating the spatial extent of land hotspots at the limits to biological adaptability. The model is in good agreement with satellite observations showing that temperature hotspots are associated with high radiation and low wind speed and occur primarily in Middle East and North Africa, with maximum temperatures exceeding 85°C during the study period from 2005 to 2020. We observed an increasing trend in maximum surface temperatures at a rate of 0.17°C/decade. The model allows quantifying how upper bounds of extreme temperatures can increase in a warming climate in the future for which we do not have satellite observations and offers new insights on potential impacts of future warming on limits to plant growth and biological adaptability.

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Language(s): eng - English
 Dates: 2023-09
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1029/2023EF003755
BibTex Citekey: AminzadehOrEtAl2023
 Degree: -

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Project name : -
Grant ID : 101086179
Funding program : Horizon Europe (HE)
Funding organization : European Commission (EC)

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Title: Earth's Future
Source Genre: Journal
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Publ. Info: Hoboken, NJ : Wiley-Blackwell; American Geophysical Union (AGU)
Pages: - Volume / Issue: 11 Sequence Number: e2023EF003755 Start / End Page: - Identifier: ISSN: 2328-4277
CoNE: https://pure.mpg.de/cone/journals/resource/2328-4277