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The compounding effects of agricultural expansion and snow drought on lake urmia’s drying crisis

  • Afshin Shahbazi
  • , Yusuf Aydin*
  • , Guluzar Duygu Semiz
  • , Elifnaz Torun
  • , Babak Vaheddoost
  • , Neda Beirami
  • , Alper Unal
  • , Kaveh Madani
  • , Amir AghaKouchak
  • *Bu çalışma için yazışmadan sorumlu yazar
  • Ankara University
  • Bursa Teknik University
  • Amirkabir University of Technology
  • UW College of Engineering
  • United Nations University Institute for Water
  • City University of New York
  • University of California at Irvine

Araştırma sonucu: Dergiye katkıMakalebilirkişi

2 Atıf (Scopus)

Özet

Lake Urmia, one of the world’s largest hypersaline lakes, has experienced severe drought in recent decades. This study investigates the combined impacts of agricultural expansion and climate variability on river inflows from 1985 to 2020. A hybrid framework incorporating statistical models and Convolutional Neural Networks was employed to estimate river discharge and disentangle the effects of hydroclimatic and anthropogenic drivers. Results indicate a persistent snow drought beginning in the late 1990s, concurrent with exceeding fourfold increase in irrigated lands. Scenario-based analysis, restoring key parameters to pre-1999 levels revealed that reverting agricultural water use was the dominant factor driving changes in river inflows, accounting for approximately 66% (95% CI: 56%–76%) of the total impact. In contrast, restoring precipitation and evaporation contributed 25% (95% CI: 18%–33%) and 9% (95% CI: 7%–12%), respectively, while restoring both simultaneously explained 34% (95% CI: 26%–43%) of the change. These results underscore the primary role of agricultural water demand amplified by declining snowpack and climatic shifts in altering basin hydrology. The findings highlight the urgent need for integrated water resource management, with a focus on climate adaptation, snowpack monitoring, and sustainable agricultural practices to address ongoing environmental degradation and ensure long-term water security.

Orijinal dilİngilizce
Makale numarası38132
DergiScientific Reports
Hacim15
Basın numarası1
DOI'lar
Yayın durumuYayınlandı - Ara 2025

Bibliyografik not

Publisher Copyright:
© The Author(s) 2025.

BM SKH

Bu sonuç, aşağıdaki Sürdürülebilir Kalkınma Hedefine/Hedeflerine katkıda bulunur

  1. SKH 2 - Açlığa Son
    SKH 2 Açlığa Son
  2. SKH 6 - Temiz Su ve Sanitasyon
    SKH 6 Temiz Su ve Sanitasyon
  3. SKH 8 - İnsana Yakışır İş ve Ekonomik Büyüme
    SKH 8 İnsana Yakışır İş ve Ekonomik Büyüme
  4. SKH 12 - Sorumlu Üretim ve Tüketim
    SKH 12 Sorumlu Üretim ve Tüketim

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