Agronomy · 2020 · 289 citations · 130 references
Precision AgricultureEngineeringAgricultural EconomicsWater Resources EngineeringIrrigation ManagementWater AvailabilityAgricultural Water ManagementIrrigation EngineeringSustainable AgricultureWater DevelopmentWater-scarce RegionsPublic HealthClimate ChangeWater ScarcityMediterranean RegionIrrigationAgricultureHydrologyAgricultural TechnologyWater ResourcesDroughtEnvironmental EngineeringIrrigated AgricultureWater ManagementFarming SystemsSustainable IrrigationDeficit Irrigation
Climate change threatens irrigated agriculture, with projections of widespread water scarcity, yet pressurized irrigation and optimized schedules can boost water productivity, though management remains complex in water‑scarce regions. The study aims to evaluate protected cultivation systems equipped with AI as a sustainable means to enhance water productivity and mitigate scarcity. The review examines deficit irrigation and non‑conventional water sources, and analyzes literature on sustainable irrigation practices for both open‑field and protected systems in climate‑vulnerable regions.
The sustainability of irrigated agriculture is threatening due to adverse climate change, given future projections that every one in four people on Earth might be suffering from extreme water scarcity by the year 2025. Pressurized irrigation systems and appropriate irrigation schedules can increase water productivity (i.e., product yield per unit volume of water consumed by the crop) and reduce the evaporative or system loss of water as opposed to traditional surface irrigation methods. However, in water-scarce countries, irrigation management frequently becomes a complex task. Deficit irrigation and the use of non-conventional water resources (e.g., wastewater, brackish groundwater) has been adopted in many cases as part of a climate change mitigation measures to tackle the water poverty issue. Protected cultivation systems such as greenhouses or screenhouses equipped with artificial intelligence systems present another sustainable option for improving water productivity and may help to alleviate water scarcity in these countries. This article presents a comprehensive review of the literature, which deals with sustainable irrigation for open-field and protected cultivation systems under the impact of climatic change in vulnerable areas, including the Mediterranean region.
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Crop Salt Tolerance—Current Assessment
E. V. Maas, Glenn J. Hoffman · Journal of the Irrigation and Drainage Division · 1977 · 3.5K citations