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Reusing wastewater for agricultural irrigation

A water-energy-food Nexus assessment in the North Western Sahara Aquifer System

Bibliographic Data

ID15548504
AuthorsCamilo Ramírez (0000-0002-7217-3838, KTH Royal Institute of Technology, corresponding author), Youssef Almulla (0000-0003-3015-8610, KTH Royal Institute of Technology), Francesco Fuso Nerini (0000-0002-4770-4051, KTH Royal Institute of Technology)
Year2021
Volume16
Issue4
Pages044052-044052
Publication date2021-02-18
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/abe780
OpenAlexW3132603709
LanguageEN
Citations received1

The North Western Sahara Aquifer System stands out as one of the water scarcest regions in the world. Moreover, in recent decades agriculture activity has grown exacerbating the pressure on groundwater resources and pumping energy requirements. In this study, a water-energy-food Nexus approach was used to assess the effect of capturing, treating and reusing wastewater for irrigation. GIS-based tools were used to capture the systems spatial dimension, enabling to match wastewater supply and water demand points, identify demand hotspots and evaluate techno-economically viable wastewater treatment options. Moreover, the minimum energy requirements for brackish water desalination were estimated. Seven domestic wastewater treatment technologies and one irrigation tailwater treatment technology were evaluated, making use of a levelized cost of Water methodology to identify the least-cost system. Four scenarios were constructed based on water-consumption behaviour of farmers towards changes in irrigation water pricing. The identified least-cost wastewater treatment technologies showed clear trade-offs, as different technologies were more cost-effective depending on treatment capacity requirements of the spatially distributed agglomerations. The reuse of treated wastewater/tailwater in agricultural irrigation, showed improvement of groundwater stress, reducing on about 49% water abstractions and groundwater stress levels in the best case scenario. However, groundwater stress still fell on the extremely high category, highlighting the critical condition of the aquifer. Furthermore, reuse of wastewater/tailwater decreased dependency on groundwater pumping and the overall energy-for-water requirements, reducing by about 15% the total energy requirements in the best case scenario. However, to effectively preserve water resources and act holistically towards the sustainable development agenda, measures as better water pricing mechanisms, management strategies to improve water productivity and adoption of more efficient irrigation schemes may be needed

Aquifer · Groundwater · Irrigation · Reuse · Tailwater · Waste management · Wastewater · Water resource management · Water resources · Water scarcity · Engineering · Environmental Science · Membrane Separation Technologies · Wastewater Treatment and Reuse · Water-Energy-Food Nexus Studies · Environmental Engineering

  • Potential of wastewater reuse to alleviate water scarcity under future warming scenarios

    Open Access•Myla Kahn, Matteo Sangiorgio et al.•Environmental Research Letters•2025

Unique citing works1
Citations per year1
Citation span2025 - 2025 (1)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 1

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