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Hydrology and earth system sciences· 2025Q1

Soil salinity patterns reveal changes in the water cycle of inland river basins in arid zones

Gaojia Meng, Guofeng Zhu, Yinying Jiao, Dongdong Qiu et al.

Short summary

Soil salinization is intensifying in China's Shiyang River basin despite a stable overall salinized area from 2002-2022, driven by groundwater evaporation near reservoirs and agricultural irrigation.

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Key points

  • The salinization area in the Shiyang River basin remained stable between 2002-2022, but salinization intensity increased.
  • Severe salinization is concentrated in the northern hills and oasis-desert transition zones.
  • Key drivers of salinization include groundwater evaporation near reservoirs and agricultural irrigation.
  • Human activities are the decisive factor in altering salinization patterns in inland river basins.

AI-generated from the title and abstract; the full text is not read.

Abstract

Soil salinization caused by unreasonable water resource utilization severely impacts agricultural development and ecological construction in arid inland river basins. Therefore, clarifying the water cycle mechanism of salinization in arid inland river basins is crucial for watershed ecological environment management and rational water resource utilization. Based on remote sensing and observational data, this study quantitatively analyzed soil salinization changes in the Shiyang River basin of Northwest China's arid region from 2002 to 2022 and explored the impacts of water conservancy projects and agricultural irrigation on soil salinization. The results indicated that (1) the salinization area of the Shiyang River basin remains stable overall, but the degree of salinization is further intensifying; (2) the northern hills and oasis–desert transition zone of the Shiyang River are regions with severe salinization problems, while the central corridor plain and southern Qilian Mountain regions have lower risks of salinization; (3) regional salinization problems are particularly prominent, caused by groundwater evaporation near reservoirs, agricultural irrigation evaporation, and downstream ecological water input evaporation. Human activities have become the decisive factor in changing the salinization pattern of inland river basins, and rational utilization and management of water resources hold tremendous potential in mitigating soil salinization.

The authors' abstract, as published at the source. Hydrology and earth system sciences, 2025 · DOI ↗

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Field: Aquatic Science

Aquatic ScienceAgricultural and Biological Sciences