Claims
- 1. A drained cathode cell, for the electrolytic reduction of alumina to aluminum in a cryolite-based bath containing alumina, comprising:
- a shell having inner surfaces lined with refractory and carbon materials to define a cathode cavity;
- a cathode having at least an upper surface containing an aluminum wettable refractory hard material;
- at least two anodes depending into said cathode cavity and each having a lower surface spaced from said upper surface of said cathode by an anode-to-cathode distance of about 1 cm to about 5 cm defining an anode-cathode-displacement (ACD) and a flow path between said anodes and said cathode, said upper cathode surface and said lower anode surfaces being sloped from the horizontal by from about 2.degree. to about 15.degree. thereby providing a lower end and an upper end of said flow path between said anodes and said cathode;
- means in said cavity for providing a minimum bath flow Q about at least one substantially horizontal bath circulation loop to ensure a supply of alumina for the electrolysis reaction wherein ##EQU12## by providing at least one return flow channel to complete said loop, said loop comprising:
- (i) said flow path between said anodes and said cathode;
- (ii) at least one lower channel in fluid communication with lower end of said flow path between said anodes and said cathode;
- (III) at least one upper channel in fluid communication with said upper end of flow path between said anodes and said cathode;
- (iv) at least one return flow channel in fluid communication with said upper channel and said lower channel;
- said at least one return flow channel, located between adjacent anodes, having dimensions h, w and L wherein h is the bath depth in cm at any given point, w is the width of the return channel in cm, and L is the length of the return channel in cm, and wherein h, w and L are determined by the relationship ##EQU13## and wherein the maximum value of R.sub.f (cell channel) is determined by the relationships ##EQU14## and wherein (X) is in a range of from about 0.2.times.10.sup.-3 /cm.sup.4 to 230.times.10.sup.-3 /cm.sup.4.
- 2. The drained cathode cell according to claim 1, wherein the depletion of alumina concentration in a supply of bath from the lower channel entering said flow path between said anodes and said cathode and emerging into said upper channel is in a range of from about 0.2% to about 5.0%.
- 3. The drained cathode cell according to claim 1, wherein a net total bath flow rate per unit anode area in said flow path between said anodes and said cathode is in a range of from about 1.2.times.10.sup.-1 to about 8.times.10.sup.-4 cm.sup.3 /sec./cm.sup.2 /.
- 4. The drained cathode cell according to claim 1, wherein said cell has an anode current density (A/cm.sup.2) in a range of from about 0.5 to about 3.0.
- 5. The drained cathode cell according to claim 1, wherein said cell has an anode current density (A/cm.sup.2) in a range of from about 0.6 to about 2.0.
- 6. The drained cathode cell according to claim 1, wherein said cell has an anode current density (A/cm.sup.2) in a range of from about 0.7 to about 1.5.
- 7. The drained cathode cell according to claim 1, wherein said cell has an anode current density (A/cm.sup.2) in a range of from about 0.8 to about 1.2.
- 8. The drained cathode cell according to claim 1, wherein said ACD is in a range of from about 1.5 cm to about 4.0 cm.
- 9. The drained cathode cell according to claim 1, wherein said ACD is in a range of from about 2.0 cm to about 3.0 cm.
- 10. The drained cathode cell accoding to claim 1, wherein said ACD is about 2.5 cm.
- 11. The drained cathode cell according to claim 1, wherein said upper cathode surface and said lower anode surface are sloped from the horizontal by from about 5.degree. to about 10.degree..
- 12. The drained cathode cell according to claim 1, wherein said upper cathode surface and said lower anode surface are sloped from the horizontal by from about 6.degree. to about 8.degree..
- 13. The drained cathode cell according to claim 1, wherein said upper cathode surface and said lower anode surface are sloped from the horizontal by about 8.degree..
- 14. The drained cathode cell according to claim 1, wherein L(cm) is within a range of from about 15 to about 300.
- 15. The drained cathode cell according to claim 1, wherein L(cm) is within a range of from about 30 to about 250.
- 16. The drained cathode cell according to claim 1, wherein L(cm) is within a range of from about 60 to about 200.
- 17. The drained cathode cell according to claim 1, wherein L(cm) is about 122.
- 18. The drained cathode cell according to claim 1, wherein X(10.sup.-3 /cm.sup.4) is in a range of from about 1.0 to about 20.
- 19. The drained cathode cell according to claim 1, wherein X(10.sup.-3 /cm.sup.4) is in a range of from about 5.0 to 10.
- 20. The drained cathode cell according to claim 1, wherein X(10.sup.-3 /cm.sup.4) is about 6.2.
- 21. The drained cathode cell according to claim 1, wherein Q(cm.sup.3 /sec/cm.sup.2) is in a range of from about 1.1.times.1O.sup.-3 to about 6.0.times.10.sup.-2.
- 22. The drained cathode cell according to claim 1, wherein said cell comprises a plurality of return flow channels=n, and wherein
- R.sub.f (cell channel)=n.sup.2 R.sub.f (cell).
- 23. The drained cathode cell according to claim 1, wherein said slope and said ACD are so related as to limit the thickness of bubbles generated in said electrolytic reaction to less than 50% of said ACD.
- 24. The drained cathode cell according to any of claims 1-22, wherein a return flow channel is located between an anode and an adjacent inner wall of said cathode cavity.
- 25. The drained cathode cell according to any claims 1-24, wherein said aluminum wettable refractory hard material is selected from a group comprising titanium diboride, titanium carbide, zirconium diboride, ziroconium carbide, and mixtures thereof.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation of application Ser. No. 467,570 filed Feb. 17, 1983 which is a Continuation-In-Part of Ser. No. 75,380, filed 13 Sept., 1979, now abandoned.
US Referenced Citations (4)
Continuations (1)
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Number |
Date |
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Parent |
467570 |
Feb 1983 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
75380 |
Sep 1979 |
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