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 Gas phase free liquid chlorine electrochemical systems

Details
Inventors: Hart, Thomas G.;
Assignee: Energy Development Associates (Madison Heights, MI)
Primary Examiner: LeFevour; Charles E.
Assistant Examiner:
Attorney, Agent or Firm: Ostrolenk, Faber, Gerb & Soffen

A gas phase free, liquid chlorine electrochemical system and apparatus therefore are described in which the housing containing the electrodes is filled with sufficient electrolyte so that the pressure therein is sufficient to liquify the chlorine as it is generated.

DETAILED DESCRIPTION I claim: 1.
In the method of operating an electrochemical cell comprising a housing containing at least two electrodes by imposing an electric current across the electrodes and wherein chlorine is generated at at least one electrode, the improvement which comprises filling the housing with sufficient electrolyte such that the autogenous pressure is at least equal to that sufficient to liquify the chlorine as it is generated, and such that there is no space available for gas accumulation, before imposing said current, and causing said electrolyte to move thereby preventing liquid chlorine accumulation at the electrodes.
2.
The method of claim 1 wherein the electrode at which chlorine is generated is surrounded by a cation permselective membrane so as to define a chlorine electrode compartment and said compartment is separately connected to two electrolyte reservoirs and wherein electrolyte is caused to move between said two reservoirs and through said chlorine electrode compartment.
3.
The method of claim 2 wherein said electrolyte is caused to move between the two reservoirs by adjusting the pressure imposed on one reservoir relative to the other reservoir.
4.
The method of claim 3 wherein pressure is adjusted by changing the pressure of a hydraulic fluid surrounding each of said reservoirs.
5.
The method of claim 2 wherein the gases generated other than chlorine are accumulated in one of said reservoirs and vented when the pressure exceeds a predetermined value.
6.
An electrochemical cell comprising a housing, at least two electrodes within said housing, a cation permselective membrane separating one of said electrodes so as to define a chlorine electrode compartment containing said separated electrode, a first electrolyte reservoir having flexible walls connected to said chlorine electrode compartment by a first conduit, a second electrolyte reservoir having flexible walls connected to said chlorine electrode compartment at a point spaced apart from said first conduit by a second conduit, and means to cause electrolyte to move between said first and second reservoirs and through said chlorine electrode compartment comprising means to vary the pressure on the outside of the flexible walls of said first reservoir relative to the pressure on the outside of the flexible walls of said second reservoir



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