RESEARCH PAPER
OPTIMIZING AGRICULTURAL WATER PRODUCTIVITY
FOR FOOD SECURITY UNDER CLIMATE CHANGE:
EVIDENCE FROM ALGERIA
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1
Abdelhamid Mehri Constantine 2 University, Algeria
2
Mohammed Seddik Benyahia University, Algeria
Submission date: 2025-11-17
Final review date: 2026-01-16
Acceptance date: 2026-04-23
Publication date: 2026-09-25
Zagadnienia Ekonomiki Rolnej / Problems of Agricultural Economics 2026;388(3):82-105
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ABSTRACT
Aim:
Agricultural water productivity is a critical determinant of food security in arid and semi-arid
countries such as Algeria, where climate change is intensifying water scarcity and pressure on irrigation-
dependent agriculture. This study assesses the current state of agricultural water productivity in
Algeria and examines its potential as a demand-management instrument to strengthen national food
security under climate stress.
Material and methods:
This study employs a quantitative and qualitative desk-research approach
using secondary data for the period 2016–2022 from Arab Organization for Agricultural Development
and Algerian national reports, complemented by demographic projections to 2050 (Population
Reference Bureau) and national water-resource indicators (FAOSTAT, AQUASTAT). The analysis
applies biophysical water productivity (BWP) metrics, and quantifies the water footprint (WF, m³/kg)
by distinguishing blue and green components based on Mekonnen and Hoekstra’s datasets. It also
estimates imported virtual water embodied in food imports to capture external water dependence, and
benchmarks Algeria’s performance against global reference levels, supported by a policy-oriented
interpretive assessment.
Results:
Water productivity for major food products, especially cereals, remains overall below international
benchmarks, indicating substantial scope for efficiency gains across commodities. Reliance on imported virtual water for strategic commodities increases exposure to external water resources through
trade. Limited modern irrigation uptake, continued traditional surface irrigation, and persistent agronomic
and farmer-training gaps constrain output and heighten vulnerability to climate-induced stress.
Conclusions:
Improving agricultural water productivity is essential for reinforcing Algeria’s longterm
food security. A coordinated strategy integrating technological modernization, capacity building,
and supportive policy reforms can reduce water-scarcity pressures and strengthen climate resilience
by prioritizing “more crop per drop” as a national objective.