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Optimizing rice management to reduce methane emissions and maintain yield with the CSM-CERES-rice model

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  • Darikandeh, Dorsa
  • Shahnazari, Ali
  • Khoshravesh, Mojtaba
  • Yousefian, Mostafa
  • Porter, Cheryl H.
  • Hoogenboom, Gerrit

Abstract

Irrigated paddy fields are major contributors to methane (CH4) emissions, significantly impacting global warming. Flood irrigation, the traditional method for rice cultivation, significantly increases water consumption and CH4 emissions.

Suggested Citation

  • Darikandeh, Dorsa & Shahnazari, Ali & Khoshravesh, Mojtaba & Yousefian, Mostafa & Porter, Cheryl H. & Hoogenboom, Gerrit, 2025. "Optimizing rice management to reduce methane emissions and maintain yield with the CSM-CERES-rice model," Agricultural Systems, Elsevier, vol. 224(C).
  • Handle: RePEc:eee:agisys:v:224:y:2025:i:c:s0308521x24003986
    DOI: 10.1016/j.agsy.2024.104248
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