Brackish water desalination for greenhouses: Improving groundwater quality for irrigation using monovalent selective electrodialysis reversal

Reverse osmosis (RO) is the most widely used desalination technology for treating brackish water prior to irrigation. RO, however, removes both monovalent ions (Na+,Cl−) detrimental to crops and divalent ions (Ca2+,Mg2+,SO42−) that are beneficial. These beneficial ions must then be reintroduced to t...

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Veröffentlicht in:Journal of membrane science 2020-09, Vol.610, p.118072, Article 118072
Hauptverfasser: Ahdab, Yvana D., Rehman, Danyal, Lienhard, John H.
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Sprache:eng
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Zusammenfassung:Reverse osmosis (RO) is the most widely used desalination technology for treating brackish water prior to irrigation. RO, however, removes both monovalent ions (Na+,Cl−) detrimental to crops and divalent ions (Ca2+,Mg2+,SO42−) that are beneficial. These beneficial ions must then be reintroduced to the desalinated water by adding fertilizer or mixing with nutrient-rich brackish water that typically contains excess levels of monovalent ions. Unlike RO, monovalent selective electrodialysis reversal (MSED-R) removes monovalent ions, while retaining divalent ions. This paper evaluates whether Neosepta ion exchange membranes, originally manufactured to concentrate seawater for salt production, show sufficient monovalent selectivity in the brackish salinity range to be suitable for use in greenhouse agriculture. Using an MSED-R experimental set-up, 16 brackish groundwater compositions are tested to determine membrane parameters, including limiting current, membrane resistance, membrane permeability, and membrane selectivity. Across compositions, the Neosepta membranes show monovalent selectivity for sodium relative to calcium and magnesium and for chloride relative to sulfate. The membrane selectivities are used to calculate MSED-R fertilizer savings relative to RO for brackish groundwaters across the U.S. Regions in which brackish groundwaters contain greater than the target nutrient concentrations for crop growth, or show potential for MSED-R adoption, are also identified. [Display omitted] •Monovalent selective electrodialysis (MSED-R) characterization for brackish waters.•Determined membrane selectivity, resistance, permeability, and limiting current.•Investigated sensitivity of membrane selectivity to water salinity and solute ratio.•Fertilizer savings of MSED-R relative to RO for 6000 brackish waters across US.•Identified potential for MSED-R adoption to replace RO to treat irrigation waters.
ISSN:0376-7388
1873-3123
DOI:10.1016/j.memsci.2020.118072