Sanmartino, J.A. and Khayet, M. and García-Payo, M.C. and El Bakouri, H. and Riaza, A. (2016) Desalination and concentration of saline aqueous solutions up to supersaturation by air gap membrane distillation and crystallization fouling. Desalination, 393. pp. 39-51. ISSN 00119164
Full text not available from this repository.Abstract
The possibility to concentrate synthetic brines (65 g/L of NaCl) above the saturation concentration of NaCl at different feed inlet temperatures up to 355 K is studied, using the AGMD configuration and two different polytetrafluoroethylene (PTFE) membranes, TF200 and TF450. A good quality distillate (<0.5 g/L NaCl) and high salt rejection factors (>99.89%) were achieved when treating high saline aqueous solutions. When applying the highest feed inlet temperature, 355 K, better AGMD results were observed, permeate flux of 23.84 +/- 0.09 kg/m(2) h and 46.50 +/- 0.21 kg/m(2) h with a thermal efficiency of 80.97% and 96.06%, for the membranes TF200 and TF450, respectively. Once the saturation limit of NaCl was overpassed, crystallization fouling occurs by blocking or wetting the membrane pores due to the continued deposition and growth of salt crystals on the membrane surface and inside the membrane pores. Membrane properties changed with crystallization fouling and reduced the thermal efficiency of the AGMD process. When using NaCl aqueous solutions, a simple washing with water is enough to partially recover the initial properties of the membrane.
Item Type: | Article |
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Subjects: | T Technology > TD Environmental technology. Sanitary engineering |
Depositing User: | José Ángel Gómez Martín |
Date Deposited: | 01 Aug 2016 11:06 |
Last Modified: | 01 Aug 2016 11:06 |
URI: | http://eprints.imdea-agua.org:13000/id/eprint/635 |
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