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Assessing agricultural managed aquifer recharge (Ag-MAR) for groundwater depletion mitigation in irrigated agricultural zones

Author

Listed:
  • Song, Yalin
  • Li, Shurong
  • Du, Xinqiang
  • Ye, Xueyan

Abstract

Groundwater is essential for agricultural irrigation but faces severe depletion, leading to ecological degradation. In China’s Sanjiang Plain—an important grain-producing region—groundwater supplies over 90 % of total water use, creating serious sustainability challenges. Agricultural managed aquifer recharge (Ag-MAR) offers a potential solution, yet its success depends on site-specific geological and hydrological conditions, which are often overlooked by existing evaluation systems. This highlights a critical need to integrate surface water availability with subsurface hydrogeological features to better guide site selection. This study develops a region-specific framework combining geographic information systems (GIS), the analytic hierarchy process (AHP), and numerical groundwater modeling to assess Ag-MAR feasibility in the Sanjiang Plain. Six indicators, with geology as decisive factor, are used to construct a suitability evaluation system. Results show that 20.24 % of the region—mainly in the Jiansanjiang reclamation area—is highly suitable for recharge, using diverted river water for managed infiltration rather than relying on natural river–aquifer interactions. A groundwater model, calibrated for 2011–2020, is applied to predict recharge outcomes under three scenarios for 2020–2045: Scenario 1 (No recharge), Scenario 2 (Target-area recharge), and Scenario 3 (Optimized recharge distribution). Scenario 1 shows continued decline, while Scenario 2 reduces depletion by 94 %. Scenario 3 achieves a further 1.8 % reduction, aligning maximum water-level increases with optimal recharge zones. Under Scenario 3, depletion is virtually eliminated and water levels stabilize around 6 m. This framework provides technical support for sustainable groundwater management and offers transferable guidance for Ag-MAR implementation in similar agricultural regions.

Suggested Citation

  • Song, Yalin & Li, Shurong & Du, Xinqiang & Ye, Xueyan, 2025. "Assessing agricultural managed aquifer recharge (Ag-MAR) for groundwater depletion mitigation in irrigated agricultural zones," Agricultural Water Management, Elsevier, vol. 320(C).
  • Handle: RePEc:eee:agiwat:v:320:y:2025:i:c:s0378377425005967
    DOI: 10.1016/j.agwat.2025.109882
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    References listed on IDEAS

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    1. Nicostrato Perez & Vartika Singh & Claudia Ringler & Hua Xie & Tingju Zhu & Edwin H. Sutanudjaja & Karen G. Villholth, 2024. "Ending groundwater overdraft without affecting food security," Nature Sustainability, Nature, vol. 7(8), pages 1007-1017, August.
    2. F. Huang & G. Wang & Y. Yang & C. Wang, 2014. "Overexploitation status of groundwater and induced geological hazards in China," Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, Springer;International Society for the Prevention and Mitigation of Natural Hazards, vol. 73(2), pages 727-741, September.
    3. Grinshpan, Maayan & Furman, Alex & Dahlke, Helen E. & Raveh, Eran & Weisbrod, Noam, 2021. "From managed aquifer recharge to soil aquifer treatment on agricultural soils: Concepts and challenges," Agricultural Water Management, Elsevier, vol. 255(C).
    4. Marco Masetti & Daniele Pedretti & Alessandro Sorichetta & Stefania Stevenazzi & Federico Bacci, 2016. "Impact of a Storm-Water Infiltration Basin on the Recharge Dynamics in a Highly Permeable Aquifer," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 30(1), pages 149-165, January.
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