Claims
- 1. A side frame for an electrolytic cell having a flowable liquid metal cathode in a cathode compartment, an anode, a membrane with a major portion thereof positioned in an extended plane therebetween and a catholyte inlet and catholyte outlet for the flow of catholyte into and out of the catholyte compartment in the cell comprising in combination:
- (a) an obliquely angled lower internal side frame portion positioned below the catholyte inlet and the catholyte outlet; and
- (b) an upper side frame portion positioned above the catholyte inlet and the catholyte outlet.
- 2. The side frame according to claim 1 further comprising the obliquely angled lower internal portion being inwardly angled.
- 3. The side frame according to claim 2 further comprising the catholyte inlet and the catholyte outlet being generally horizontally positioned.
- 4. The side frame according to claim 3 further comprising the upper side frame portion having a recess into which an adjacent frame portion seats.
- 5. The side frame according to claim 4 further comprising the recess in the upper frame portion having a groove adaptable to receive the membrane for liquid-tight assembly.
- 6. The side frame according to claim 5 further comprising the groove being adaptable to receive a sealing means to seal the membrane, the upper frame portion and the adjacent frame portion.
- 7. The side frame according to claim 4 further comprising the recess in the upper frame portion having a groove adaptable to receive a ceiling means to seal the membrane against the upper frame portion and the adjacent frame portion.
- 8. The side frame according to claim 2 further comprising the obliquely angled side frame portion being contactable with the flowable liquid metal cathode.
- 9. An electrolytic cell having a flowable liquid metal cathode in a catholyte compartment, an anode, a separator, a catholyte inlet and catholyte outlet for the flow of catholyte into and out of the catholyte compartment in the cell comprising in combination:
- (a) a cathode side frame having an obliquely angled lower internal side frame portion and an upper portion, the upper portion being separated from the obliquely angled lower internal portion by the catholyte inlet and catholyte outlet, the obliquely angled lower internal portion contacting and retaining the flowable liquid metal cathode within the catholyte compartment;
- (b) an anode side frame sealably connectable to the upper portion of the cathode side frame;
- (c) an anode adjacent frame;
- (d) a separator contactable with and supportable by the anode and retained in position by the upper portion of the cathode side frame and the anode side frame, the separator further having a major portion thereof positioned in an extended plane between the liquid metal cathode and the anode; and
- (e) a gap defined by the flowable liquid metal cathode and the membrane in fluid flow communication with the catholyte inlet and the catholyte outlet through which the catholyte flows, the catholyte entering through the catholyte inlet and exiting through the catholyte outlet at a level above the major portion of the separator in the extended plane.
- 10. The cell according to claim 9 wherein the flowable liquid metal cathode is supported by a cell bottom which the catholyte is prevented from touching by the obliquely angled lower cathode side frame portion and the flowable liquid metal cathode.
- 11. The cell according to claim 10 wherein the catholyte inlet is lower than the catholyte outlet.
- 12. The cell according to claim 11 wherein the upper portion of the cathode side frame has a recess into which the anode side frame seats.
- 13. The cell according to claim 12 wherein the recess in the upper portion of the cathode frame has a groove adaptable to receive the separator for liquid-tight assembly.
- 14. The cell according to claim 13 wherein the groove has a sealing means to seal the separator, the upper portion of the cathode frame and the anode side frame.
- 15. The cell according to claim 14 wherein the separator further comprises a membrane.
- 16. The cell according to claim 14 wherein the membrane adjacent the catholyte inlet and the catholyte outlet is obliquely angled and above the gap.
- 17. The cell according to claim 12 wherein the recess in the upper portion of the cathode frame has a groove adaptable to receive a sealing means to seal the separator between the upper portion of the cathode in the anode side frame.
- 18. The cell according to claim 10 wherein the cell is angled from the horizontal at a grade of less than about 5 percent.
BACKGROUND OF THE INVENTION
The U.S. Government has rights in this invention Pursuant to Contract No. DAAA 15-89C-0011 awarded by the Department of Army. Under this contract, the U.S. Government has certain rights to practice or have practiced on its behalf the invention claimed herein without payment of royalties.
US Referenced Citations (8)
Non-Patent Literature Citations (1)
Entry |
Article entitled "Hydroxylamine Production by Electroreduction of Nitric Oxide in a Trickle Bed"-The Canadian Journal of Chemical Engineering, vol. 57, Oct., 1979. |