Osmotic separation systems and methods
Separation processes using engineered osmosis are disclosed generally involving the extraction of solvent from a first solution to concentrate solute by using a second concentrated solution to draw the solvent from the first solution across a semi-permeable membrane. Enhanced efficiency may result from using low grade waste heat from industrial or commercial sources.
1. A forward osmosis separation process, comprising:
introducing a first solution on a first side of a semi-permeable membrane;
introducing a concentrated draw solution comprising ammonia and carbon dioxide at a molar ratio of at least one to one on a second side of the semi-permeable membrane to maintain a desired osmotic concentration gradient across the semi-permeable membrane;
promoting flow of at least a portion of the first solution across the semi-permeable membrane to form a second solution on the first side of the semi-permeable membrane and a dilute draw solution on the second side of the semi-permeable membrane;
introducing a first portion of the dilute draw solution to a separation operation to recover draw solutes and a solvent stream;
introducing the recovered draw solutes to a condenser to condense the draw solutes;
introducing the condensed draw solutes to an absorber, wherein the absorber uses a second portion of the dilute draw solution as an absorbent;
reintroducing the draw solutes to the second side of the semi-permeable membrane to maintain the desired molar ratio of ammonia to carbon dioxide in the concentrated draw solution;
collecting the solvent stream; and
controlling biological fouling of the semi-permeable membrane.
2. The process of claim 1 , wherein controlling biological fouling involves degassing the first solution.
3. The process of claim 1 , wherein controlling biological fouling involves adjusting an osmotic pressure in an environment of the semi-permeable membrane.
4. The process of claim 1 , wherein controlling biological fouling involves at least one of sulphite reduction, biological treatment, osmotic shock, aeration, product water flux and bisulfite addition.