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Performance Evaluation, Thermodynamic Analysis and Cost Assessment of a Stand-Alone Desalination Plant Driven with PV-Solar Without Battery Support

delete2026-07-27
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OA
AI
M
Manuela Celeste Salgado-Pineda
J
Jonathan Ibarra-Bahena
Y
Yuridiana Rocío Galindo-Luna
E
Eduardo Venegas-Reyes
J
José Agustín Breña-Naranjo
U
Ulises Dehesa-Carrasco *
DOI:10.3390/membranes16050176delete
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Abstract

Abstract

En 中文
Desalination by reverse osmosis (RO) of brackish water and seawater is a cost-competitive solution for supplying irrigation water in off-grid and water-stressed regions. This paper presents an experimental evaluation, thermodynamic analysis, and cost assessment of a solar photovoltaic brackish-water reverse osmosis (PV-BWRO) desalination system. Five feed salinity levels ranging from 993.6 to 3191.8 mg/L were tested. The results show that water production decreased with increasing feed salinity, from 3.29 m3/day at 24.6 mg/L to 1.48 m3/day at 152.9 mg/L. The calculated specific energy consumption values ranged from 1.80 to 3.61 kWh/m3 for solar irradiances of 1005.99 and 1018.47 W/m2, respectively. An exergy analysis revealed that the solar panels and pump operated at efficiencies of 11.7% and 38.9%, while exergy destruction was mainly concentrated in the pretreatment stage (28.72%), membrane modules (42.5%), and reject stream (28.5%). Although the overall system efficiency remained low (maximum of 1.39%), the results highlight substantial potential for improvement through enhanced maintenance, optimized pretreatment, and exergy recovery strategies. The unit water production cost ranged from USD 0.49 at 993.6 mg/L to USD 1.87 at 3191.8 mg/L, assuming a target permeate total dissolved solids concentration of 500 mg/L.
Keywords:
brackish water
desalination
exergy analysis
cost assessment

Journal

Membranes cover
Membranes
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3.6
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4.9K
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1.6W

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U
universidad autónoma metropolitana-iztapalapa
Scholars:
98
Papers: 48
Citations: 0
U
universidad nacional autónoma de mexico
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1.6K
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I
Instituto Mexicano de Tecnología del Agua
Scholars:
14
Papers: 10
Citations: 75
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