Claims
- 1. A process for the continuous preparation of predetermined amount of lithium metal, comprising (i) in an electrolytic cell, continuously electrolyzing a mixture of molten salts which comprises lithium chloride, which mixture comprises the medium of electrolysis, such medium of electrolysis being in natural circulation within an interspace defined between the electrodes of the cell, said interspace being devoid of physical barrier between said electrodes, and said natural circulation maintaining product lithium metal so formed in admixture with the mixture of molten salts (ii) continuously withdrawing from said cell an admixture of product lithium metal with the mixture of molten salts, and (iii) continuously discharging undiluted chlorine gas therefrom.
- 2. The process as defined by claim 1, further comprising the step of (iv) separating the admixture of product lithium metal with the mixture of molten salts as withdrawn from the electrolyte cell in step (ii) into product lithium metal and mixture of molten salts.
- 3. The process as defined by claim 1, said mixture of molten salts comprising lithium chloride and at least one other alkali or alkaline earth metal chloride.
- 4. The process as defined by claim 3, said mixture of molten salts being essentially eutectic in composition.
- 5. The process as defined by claim 4, said mixture of molten salts comprising lithium chloride and potassium chloride.
- 6. The process as defined by claim 5, said lithium chloride being present in an excess of up to 10 mole % with respect to the eutectic composition of said mixture of molten salts.
- 7. The process as defined by claim 3, said electrolysis being carried out at a temperature ranging from 400.degree. to 500.degree. C.
- 8. The process as defined by claim 1, for the continuous preparation of lithium/calcium alloys containing at least 50 mole % of lithium, said mixture of molten salts comprising lithium chloride and calcium chloride.
- 9. An eIectrolytic cell for the electrolysis of molten salt to metal and a gaseous product of electrolysis comprising (i) an anode and (ii) a cathode, said cathode circumferentially surrounding said anode as to define an unrestricted interspace therebetween, said cathode being perforated at the lower end portion thereof and being adapted to establish a natural circulation of molten salt electrolytic medium within said interspace and molten metal formed by such electrolysis in admixture as a molten salt product of electrolysis, and said cathode being situated as to be below the level of the electrolytic medium when the cell is in use, said anode being situated as to be both above and below the level of the electrolytic medium when the cell is in use, said anode comprising an inert sheath member eveloping the surface area thereof entirely above and slightly below the level of the electrolytic medium when the cell is in use, (iii) molten salt inlet means, (iv) means for withdrawing molten salt product of electrolysis wherein said molten salt product of electrolysis is in contact with the gaseous product of electrolysis, and (v) means for discharging said gaseous product of electrolysis.
- 10. The electrolytic cell as defined by claim 9, said sheath comprising an inert refractory material.
- 11. The electrolytic cell as defined by claim 9, said cathode being outwardly flared at the upper end portion thereof.
- 12. The electrolytic cell as defined by claim 11, said means for withdrawing molten salt product of electrolysis comprising an overflow conduit.
- 13. The electrolytic cell as defined by claim 12, said overflow conduit being adapted to establish the level of the electrolytic medium therein when the cell is in use.
- 14. The electrolytic cell as defined by claim 9, comprising a plurality of anode/cathode electrode pairs.
- 15. A process for the continuous preparation of predetermined amount of lithium metal, comprising, (i) in an electrolytic cell, continuously electrolyzing the lithium chloride which comprises a mixture of molten salts, which mixture comprises the medium of electrolysis, (ii) continuously transferring therefrom lithium metal in admixture with the mixture of molten salts to a zone of separation, and there (iii) continuously separating product lithium metal from said mixture of molten salts.
- 16. The process as defined by claim 15, said medium of electrolysis naturally circulating within an interspace defined between the electrodes of the cell, said interspace being devoid of physical barrier between said electrodes.
- 17. The process as defined by claim 16, further comprising continuously discharging undiluted chlorine gas from said admixture of lithium metal and mixture of molten salts.
- 18. The process as defined by claim 15, wherein said step (iii) comprises decanting and recovering product lithium metal from said mixture of molten salts.
- 19. The process as defined by claim 18, further comprising recycling said separated mixture of molten salts to said electrolytic cell.
- 20. The process as defined by claim 19, further comprising filtering said mixture of molten salts prior to recycle thereof.
- 21. The process as defined by claim 18, comprising decanting in a decantation compartment of said zone of separation, said compartment having a surface area S such that 0.1<S/Q<0.3, wherein Q is the rate of feed therein in m.sup.3 /hour and S is in m.sup.2.
- 22. The process as defined by claim 15, said mixture of molten salts comprising lithium chloride and at least one other alkali or alkaline earth metal chloride.
- 23. The process as defined by claim 22, said mixture of molten salts being essentially eutectic in composition.
- 24. The process as defined by claim 22, said mixture of molten salts comprising lithium chloride and potassium chloride.
- 25. The process as defined by claim 24, said lithium chloride being present in an excess of up to 10 mole % with respect to the eutectic composition of said mixture of molten salts.
- 26. The process as defined by claim 22, said electrolysis being carried out at a temperature ranging from 400.degree. to 500.degree. C.
- 27. Electrolysis apparatus which comprises an electrolytic cell including (i) an anode and (ii) a cathode, said cathode circumferentially surrounding said anode as to define an unrestricted interspace therebetween, said cathode being perforated at the lower end portion thereof and being adapted to establish a natural circulation of electrolytic medium within said interspace, and said cathode being situated as to be below the level of the electrolytic medium when the cell is in use, said anode being situated as to be both above and below the level of the electrolytic medium when the cell is in use, (iii) molten salt inlet means, (iv) means for withdrawing molten salt product of electrolysis, and (v) means for separating said molten salt product of electrolysis into lithium metal and remaining medium of electrolysis.
- 28. The apparatus as defined by claim 27, said separating means comprising a zone for decanting lithium metal from said molten salt product of electrolysis.
- 29. The apparatus as defined by claim 28, further comprising means for recycling remaining medium of electrolysis to said electrolytic cell.
- 30. The apparatus as defined by claim 29, further comprising means for filtering said remaining medium of electrolysis, prior to the recycle thereof.
- 31. The apparatus as defined by claim 29, said decanting zone comprising a lithium metal overflow conduit.
- 32. The apparatus as defined by claim 31, said recycling means comprising a remaining medium of electrolysis overflow conduit.
- 33. The apparatus as defined by claim 32, further comprising a holding vessel downstream of said electrolysis overflow and upstream of the recycle to said electrolytic cell.
- 34. The apparatus as defined by claim 28, said decanting zone having a surface area S such that 0.1<S/Q<0.3, wherein Q is the rate of feed therein in m.sup.3 /hour and S is in m.sup.2.
- 35. The apparatus as defined by claim 28, said separating means further comprising a discharge well for remaining medium of electrolysis.
- 36. The apparatus as defined by claim 27, further comprising (vi) means for discharging gaseous product of electrolysis.
- 37. The apparatus as defined by claim 27, said anode comprising an inert sheath member enveloping the surface area thereof entirely above and slightly below the level of the electrolytic medium when the cell is in use.
- 38. The apparatus as defined by claim 37, said sheath comprising an inert refractory material.
- 39. The apparatus as defined by claim 37, said cathode being outwardly flared at the upper end portion thereof.
- 40. The apparatus as defined by claim 39, said means for withdrawing molten salt product of electrolysis comprising an overflow conduit.
- 41. The apparatus as defined by claim 40, said overflow conduit being adapted to establish the level of the electrolytic medium therein when the cell is in use.
Priority Claims (2)
Number |
Date |
Country |
Kind |
82 14865 |
Aug 1982 |
FRX |
|
84 02840 |
Feb 1984 |
FRX |
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CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 749,113, filed June 26, 1985, which is a continuation of application Ser. No. 527,849, filed Aug. 30, 1983, and a continuation-in-part of application Ser. No. 705,016, filed Feb. 25, 1985, all of which prior applications are now abandoned.
US Referenced Citations (3)
Continuations (1)
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Number |
Date |
Country |
Parent |
527849 |
Aug 1983 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
749113 |
Jun 1985 |
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