Claims
- 1. A process for recovering a non-ferrous metal from a dross containing the same, which comprises:
- introducing the dross into a rotary furnace having a refractory lining;
- heating the dross to a temperature above the melting point of the metal by directing a plasma torch into the furnace;
- rotating the furnace in a manner selected from the group consisting of continuous rotation and intermittent rotation;
- removing the molten metal thereby separated from a solid dross residue; and
- wherein the dross contains aluminum and wherein the plasma torch introduces different gases into the furnace at different stages of the heating of the dross according to the following scheme:
- (a) start of heating (from about 20.degree. C. : air
- (b) when the aluminum becomes molten (about 660.degree. C) : N.sub.2
- (c) when the dross is heated to about 850.degree. C. : N.sub.2
- (d) when the temperature of dross rises from: Ar about 850.degree. C. to about 1000.degree. C. (without applied power).
- 2. A process according to claim 1, wherein the furnace is rotated at a rotational speed of about 1 r.p.m. or less until the dross reaches said temperature above the melting point of the metal.
- 3. A process according to claim 2, wherein the furnace is rotated at a rotational speed of up to about 10 r.p.m. after the dross has reached said temperature above the melting point of the metal.
- 4. A process according to claim 1, wherein said temperature above the melting point of the metal is a temperature above 800.degree. C.
- 5. A process according to claim 1, wherein said dross is selected from the group consisting of aluminum dross and aluminum alloy dross.
- 6. A process according to claim 1, wherein said solid dross residue is subjected to a further heat treatment in the rotary furnace following said removal of the molten metal.
- 7. A process according to claim 6, wherein said further heat treatment is accompanied by chemical treatment.
- 8. A process according to claim 7, wherein said chemical treatment comprises the addition of at least one basic compound.
- 9. A process according to claim 8, wherein said at least one basic compound is selected from the group consisting of oxides of calcium, magnesium, boron and silicon, and carbonates of calcium and magnesium.
- 10. A process for recovering a non-ferrous metal from a dross containing the same, which comprises:
- introducing the dross into a rotary furnace having a refractory lining;
- heating the dross to a temperature above the melting point of the metal by directing a plasma torch into the furnace;
- rotating the furnace in a manner selected from the group consisting of continuous rotation and intermittent rotation;
- removing the molten metal thereby separated from a solid dross residue; and
- removing said solid dross residue from the furnace;
- wherein the dross contains aluminum and wherein the plasma torch introduces different gases into the furnace at different stages of the heating of the dross according to the following scheme:
- (a) start of heating (from about 20.degree. C.) : air
- (b) when the aluminum becomes molten (about 660.degree. C.) : air
- (c) when the dross is heated to about 850.degree. C. : air
- (d) when the temperature of the dross rises from : Ar about 850.degree. C. to about 1000.degree. C. (without applied power).
- 11. A process according to claim 10, wherein the furnace is rotated at a rotational speed of about 1 r.p.m. or less until the dross reaches said temperature above the melting point of the metal.
- 12. A process according to claim 11, wherein the furnace is rotated at a rotational speed of up to about 10 r.p.m. after the dross has reached said temperature above the melting point of the metal.
- 13. A process according to claim 10, wherein said temperature above the melting point of the metal is a temperature above 800.degree. C.
- 14. A process according to claim 10, wherein said dross is selected from the group consisting of aluminum dross and aluminum alloy dross.
- 15. A process according to claim 10, wherein said solid dross residue is subjected to a further heat treatment in the rotary furnace following said removal of the molten metal.
- 16. A process according to claim 15, wherein said further heat treatment is accompanied by chemical treatment.
- 17. A process according to claim 16, wherein said chemical treatment comprises the addition of at least one basic compound.
- 18. A process according to claim 17, wherein said at least one basic compound is selected from the group consisting of oxides of calcium, magnesium, boron and silicon, and carbonates of calcium and magnesium.
- 19. A process for recovering a non-ferrous metal from a dross containing the same, which comprises:
- introducing the dross into a rotary furnace having a refractor lining;
- heating the dross to a temperature above the melting point of the metal by directing a plasma torch into the furnace;
- rotating the furnace in a manner selected from the group consisting of continuous rotation and intermittent rotation;
- removing the molten metal thereby separated from a solid dross residue; and
- removing said solid dross residue from the furnace;
- wherein the dross contains aluminum and wherein the plasma torch introduces different gases into the furnace at different stages of the heating of the dross according to the following scheme:
- (a) start of heating (from about 20.degree. C. : air
- (b) when the aluminum becomes molten (about 660.degree. C.) : N.sub.2
- (c) when the dross is heated to about 850.degree. C. : Ar
- (d) when the temperature of the dross rises from : Ar about 850.degree. C. to about 1000.degree. C. (without applied power).
- 20. A process according to claim 19, wherein the furnace is rotated at a rotational speed of about 1 r.p.m. or less until the dross reaches said temperature above the melting point of the metal.
- 21. A process according to claim 20, wherein the furnace is rotated at a rotational speed of up to about 10 r.p.m. after the dross has reached said temperature above the melting point of the metal.
- 22. A process according to claim 19, wherein said temperature above the melting point of the metal is a temperature above 800.degree. C.
- 23. A process according to claim 19, wherein said dross is selected from the group consisting of aluminum dross and aluminum alloy dross.
- 24. A process according to claim 19, wherein said solid dross residue is subjected to a further heat treatment in the rotary furnace following said removal of the molten metal.
- 25. A process according to claim 24, wherein said further heat treatment is accompanied by chemical treatment.
- 26. A process according to claim 25, wherein said chemical treatment comprises the addition of at least one basic compound.
- 27. A process according to claim 2, wherein said at least one basic compound is selected from the group consisting of oxides of calcium, magnesium, boron and silicon, and carbonates of calcium and magnesium.
- 28. A process for recovering a non-ferrous metal from a dross containing the same, which comprises:
- introducing the dross into a rotary furnace having refractory lining;
- heating the dross to a temperature above the melting point of the metal by directing a plasma torch into the furnace;
- rotating the furnace in a manner selected from the group consisting of continuous rotation and intermittent rotation;
- removing the molten metal thereby separated from a solid dross residue; and
- removing said solid dross residue from the furnace;
- wherein the dross contains aluminum and wherein the plasma torch introduces gases into the furnace at different stages of the heating of the dross according to the following scheme:
- (a) start of heating (from about 20.degree. C.) : air
- (b) when the aluminum becomes molten (about 660.degree. C.) : air
- (c) when the dross is heated to about 850.degree. C. : air.
- 29. A process according to claim 28, wherein the furnace is rotated at a rotational speed of about 1 r.p.m. or less until the dross reaches said temperature above the melting point of the metal.
- 30. A process according to claim 29, wherein the furnace is rotated at a rotational speed of up to about 10 r.p.m. after the dross has reached said temperature above the melting point of the metal.
- 31. A process according to claim 28, wherein said temperature above the melting point of the metal is a temperature above 800.degree. C.
- 32. A process according to claim 28, wherein said dross is selected from the group consisting of aluminum dross and aluminum alloy dross.
- 33. A process according to claim 28, wherein said solid dross residue is subjected to a further heat treatment in the rotary furnace following said removal of the molten metal.
- 34. A process according to claim 33, wherein said further heat treatment is accompanied by chemical treatment.
- 35. A process according to claim 34, wherein said chemical treatment comprises the addition of at least one basic compound.
- 36. A process according to claim 35, wherein said at least one basic compound is selected from the group consisting of oxides of calcium, magnesium, boron and silicon, and carbonates of calcium and magnesium.
- 37. A process for recovering a non-ferrous metal from a dross containing the same, which comprises:
- introducing the dross into a rotary furnace having a refractory lining;
- heating the dross to a temperature above the melting point of the metal by directing a plasma torch into the furnace;
- rotating the furnace in a manner selected from the group consisting of continuous rotation and intermittent rotation;
- removing the molten metal thereby separated from a solid dross residue; and
- removing said solid dross residue from the furnace;
- wherein the dross contains aluminum and wherein the plasma torch introduces gases into the furnace at different stages of the heating of the dross according to the following scheme:
- (a) start of heating (from about 20.degree. C.) : air/N.sub.2
- (b) when the aluminum becomes molten : air/N.sub.2 (about 660.degree. C.)
- (c) when the dross is heated to about 850.degree. C. : air/N.sub.2.
- 38. A process according to claim 37, wherein the furnace is rotated at a rotational speed of about 1 r.p.m. or less until the dross reaches said temperature above the melting point of the metal.
- 39. A process according to claim 38, wherein the furnace is rotated at a rotational speed of up to about 10 r.p.m. after the dross has reached said temperature above the melting point of the metal.
- 40. A process according to claim 37, wherein said temperature above the melting point of the metal is a temperature above 800.degree. C.
- 41. A process according to claim 37, wherein said dross is selected from the group consisting of aluminum dross and aluminum alloy dross.
- 42. A process according to claim 37, wherein said solid dross residue is subjected to a further heat treatment in the rotary furnace following said removal of the molten metal.
- 43. A process according to claim 42, wherein said further heat treatment is accompanied by chemical treatment.
- 44. A process according to claim 43, wherein said chemical treatment comprises the addition of at least one basic compound.
- 45. A process according to claim 44, wherein said at least one basic compound is selected from the group consisting of oxides of calcium, magnesium, boron and silicon, and carbonates of calcium and magnesium.
- 46. A process for recovering a non-ferrous metal from a dross containing the same, which comprises:
- introducing the dross into a rotary furnace having refractory lining;
- heating the dross to a temperature above the melting point of the metal by directing a plasma torch into the furnace;
- rotating the furnace in a manner selected from the group consisting of continuous rotation and intermittent rotation;
- removing the molten metal thereby separated from a solid dross residue; and
- removing said solid dross residue from the furnace;
- wherein the dross contains aluminum and wherein the plasma torch introduces different gases into the furnace at different stages of the heating of the dross according to the following scheme:
- (a) start of heating (from about 20.degree. C.) : air/N.sub.2
- (b) when the aluminum becomes molten : air/N.sub.2 (about 660.degree. C.)
- (c) when the dross is heated to about 850.degree. C. : air/N.sub.2
- (d) when the temperature of the dross rises : Ar from about 850.degree. C. to about 100.degree. C. (without applied power).
- 47. A process according to claim 46, wherein the furnace is rotated at a rotational speed of about 1 r.p.m. or less until the dross reaches said temperature above the melting point of the metal.
- 48. A process according to claim 47, wherein the furnace is rotated at a rotational speed of up to about 10 r.p.m. after the dross has reached said temperature above the melting point of the metal.
- 49. A process according to claim 46, wherein said temperature above the melting point of the metal is a temperature above 800.degree. C.
- 50. A process according to claim 46, wherein said dross is selected from the group consisting of aluminum dross and aluminum alloy dross.
- 51. A process according to claim 46, wherein said solid dross residue is subjected to a further heat treatment in the rotary furnace following said removal of the molten metal.
- 52. A process according to claim 51, wherein said further heat treatment is accompanied by chemical treatment.
- 53. A process according to claim 52, wherein said chemical treatment comprises the addition of at least one basic compound.
- 54. A process according to claim 53, wherein said at least one basic compound is selected from the group consisting of oxides of calcium, magnesium, boron and silicon, and carbonates of calcium and magnesium.
Priority Claims (2)
Number |
Date |
Country |
Kind |
555114 |
Dec 1987 |
CAX |
|
579628 |
Oct 1988 |
CAX |
|
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of applicants' copending application Ser. No. 255,060, filed Oct. 7, 1988.
US Referenced Citations (9)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
255060 |
Oct 1988 |
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