To reduce soil salinity: the role of irrigation and water management in global arid regions across development phases
Haiyang Shi

TL;DR
This study assesses how different irrigation and water management strategies impact soil salinity in arid croplands globally, highlighting effective practices and the importance of economic development in sustainable land management.
Contribution
It provides a comprehensive analysis of soil salinity response to water management across multiple arid basins using remote sensing and Bayesian analysis, informing sustainable practices.
Findings
Drip and groundwater irrigation effectively control salinity in advanced development basins.
Conventional flood irrigation requires economic policies for salinity reduction.
Water management practices vary significantly across development phases.
Abstract
Reducing soil salinization of croplands with optimized irrigation and water management is essential to achieve land degradation neutralization. The effectiveness and sustainability of various irrigation and water management measures to reduce basin-scale salinization remain uncertain. Here we use remote sensing to estimate soil salinity of arid croplands from 1984 to 2018. We then use Bayesian network analysis to compare the spatial-temporal response of salinity to water management, including various irrigation and drainage methods, in ten large arid river basins: Nile, Tigris-Euphrates, Indus, Tarim, Amu, Ili, Syr, Junggar, Colorado, and San Joaquin. Managers in basins at more advanced phases of development implemented drip and groundwater irrigation, which effectively controlled salinity by lowering groundwater levels. For the remaining basins where conventional flood irrigation is…
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Taxonomy
TopicsSoil Geostatistics and Mapping · Hydrology and Watershed Management Studies · Soil and Unsaturated Flow
