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Enhanced soil moisture-temperature coupling could exacerbate drought under net-negative emissions

Environmental Studies and Forestry

Enhanced soil moisture-temperature coupling could exacerbate drought under net-negative emissions

S. K. Mondal, S. An, et al.

Discover groundbreaking research by Sanjit Kumar Mondal, Soon-II An, Seung-Ki Min, Tong Jiang, and Buda Su that reveals how net-zero emissions are surprisingly more effective for drought mitigation than net-negative targets. This study uncovers alarming trends indicating that net-negative emissions could exacerbate drought conditions, particularly in vulnerable regions like Central Africa and South Asia. Learn about the implications for water management strategies in the face of climate change.... show more
Abstract
Our understanding of drought evolution and land-atmosphere interactions under climate mitigation scenarios remains limited. Here, we analyzed future drought under net-zero and net-negative emission scenarios using the Community Earth System Model version 2, particularly focusing on three atmospheric CO₂ states: linearly increases, decreases, and a return to the initial state. Interestingly, results revealed that net-zero emissions are more effective for drought mitigation than net-negative targets. Drying trends and drought characteristics — such as the duration, frequency, intensity, and area expansion are prominently increased under net-negative emissions due to higher potential evapotranspiration (PET). This is because the soil moisture and temperature couplings are stronger over drought regions and years, especially under net-negative forcing, with notable impacts in Central Africa and South Asia. Nevertheless, both target scenarios offer regional benefits, such as weakened dryness. This suggests that mitigating CO₂ alone may not be sufficient to manage future droughts, highlighting the need for advanced water management strategies.
Publisher
npj Climate and Atmospheric Science
Published On
Oct 30, 2024
Authors
Sanjit Kumar Mondal, Soon-II An, Seung-Ki Min, Tong Jiang, Buda Su
Tags
net-zero emissions
drought mitigation
net-negative emissions
soil moisture-temperature coupling
climate change
water management
CESM2
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