Abstract:
A system for generating a chlorine-containing mixture comprises an anodic chamber comprising an anodic electrode and having an inlet for a first solution and an outlet for an anolyte solution. A cathodic chamber is spaced from and adjacent the anodic chamber in the system. The cathodic chamber comprises a cathodic electrode and has an inlet for a second solution and an outlet for a catholyte solution. The second solution may be the same as or different from the first solution, and at least one of the first and second solutions comprises a chlorinated solution. A membrane is disposed between and separates the anodic chamber and the cathodic chamber. The system further comprises a dilution chamber having an inlet for an aqueous solution and an outlet. Finally, the system comprises a mixing chamber, which has an outlet for the chlorine-containing mixture. The outlet of the dilution chamber is in fluid communication with the mixing chamber. Chlorine gas is generated in the anodic chamber along with the anolyte solution and at least the chlorine gas is combined with the aqueous solution in the mixing chamber. The system allows for a free available chlorine (FAC) value of the chlorine-containing mixture to be selectively controlled.
Abstract:
A system (10) for generating a chlorine-containing compound includes an anodic chamber (12), a cathodic chamber (20), and a brine chamber (30). The anodic chamber (12) includes an anodic electrode (14) and the cathodic chamber (20) includes a cathodic electrode (22). A membrane (28) separates the anodic and cathodic chambers (12), (20). The brine chamber (30) includes an anodic electrode (32) and a cathodic electrode (34). Concentration and type of the chlorine-containing compound can be selectively and consistently controlled by the system (10) in real time.
Abstract:
A system (10) for generating a chlorine-containing compound includes an anodic chamber (12), a cathodic chamber (20), and a brine chamber (30). The anodic chamber (12) includes an anodic electrode (14) and the cathodic chamber (20) includes a cathodic electrode (22). A membrane (28) separates the anodic and cathodic chambers (12), (20). The brine chamber (30) includes an anodic electrode (32) and a cathodic electrode (34). Concentration and type of the chlorine-containing compound can be selectively and consistently controlled by the system (10) in real time.
Abstract:
A system (10) for generating a chlorine-containing compound includes an anodic chamber (12), a cathodic chamber (20), and a brine chamber (30). The anodic chamber (12) includes an anodic electrode (14) and the cathodic chamber (20) includes a cathodic electrode (22). A membrane (28) separates the anodic and cathodic chambers (12), (20). The brine chamber (30) includes an anodic electrode (32) and a cathodic electrode (34). Concentration and type of the chlorine-containing compound can be selectively and consistently controlled by the system (10) in real time.