Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4481322 | Water Research | 2015 | 9 Pages |
•New co-polymer microgels for cost-effective forward osmosis desalination process.•An accurate and efficient on-line conductivity monitoring method to measure water flux of FO process.•The functional acrylic acid co-monomer is able to influence the water flux and dewatering ability.•Thermo-responsive microgels show promising recyclability of water flux and water recovery.
Stimuli-responsive hydrogels were recently proposed for energy-saving forward osmosis (FO) process. However, their low water flux and dewatering ability for reuse make them less attractive for industrial desalination process. In this work, the co-polymer microgels of N-isopropylacrylamide and acrylic acid with different mixing ratios were synthesized using surfactant-free emulsion polymerization to produce submicron-size hydrogels with high surface area and fast swelling-deswelling response. The microgels were employed as draw agents in a laboratory scale FO desalination system. The microgel-based FO process performed a high water flux up to 23.8 LMH and high water recovery ability of 72.4%. In addition, we explored a new conductivity measurement method to online analyze water flux of the FO system. This on-line conductivity analysis approach appeared to be an accurate and efficient method for evaluating microgel-based FO desalination performance. Our experimental data revealed that the stimuli-responsive microgel was an efficient draw agent for FO desalination.
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