Nativ, P.; Ben-Asher, R.; Aviezer, Y.; Lahav, O.
Extending the Recovery Ratio of Brackish Water Desalination to Zero Liquid Discharge (>95%) Through Combination of Nanofiltration, 2-Stage Reverse-Osmosis, Silica Precipitation, and Mechanical Vapor Recompression. ChemEngineering 2025, 9, 70.
https://doi.org/10.3390/chemengineering9040070
AMA Style
Nativ P, Ben-Asher R, Aviezer Y, Lahav O.
Extending the Recovery Ratio of Brackish Water Desalination to Zero Liquid Discharge (>95%) Through Combination of Nanofiltration, 2-Stage Reverse-Osmosis, Silica Precipitation, and Mechanical Vapor Recompression. ChemEngineering. 2025; 9(4):70.
https://doi.org/10.3390/chemengineering9040070
Chicago/Turabian Style
Nativ, Paz, Raz Ben-Asher, Yaron Aviezer, and Ori Lahav.
2025. "Extending the Recovery Ratio of Brackish Water Desalination to Zero Liquid Discharge (>95%) Through Combination of Nanofiltration, 2-Stage Reverse-Osmosis, Silica Precipitation, and Mechanical Vapor Recompression" ChemEngineering 9, no. 4: 70.
https://doi.org/10.3390/chemengineering9040070
APA Style
Nativ, P., Ben-Asher, R., Aviezer, Y., & Lahav, O.
(2025). Extending the Recovery Ratio of Brackish Water Desalination to Zero Liquid Discharge (>95%) Through Combination of Nanofiltration, 2-Stage Reverse-Osmosis, Silica Precipitation, and Mechanical Vapor Recompression. ChemEngineering, 9(4), 70.
https://doi.org/10.3390/chemengineering9040070