Claims
- 1. A method of operating a molten metal reactor to treat a feed material, the method including the steps of:
(a) inducing a flow of molten reactant metal from a feed chamber through a feed chamber outlet to a treatment chamber; (b) introducing the feed material into the molten reactant metal at a location adjacent to the feed chamber outlet; and (c) wherein the flow of molten reactant metal from the feed chamber to the treatment chamber is at a rate sufficient to carry reaction products and feed material from the feed chamber into the treatment chamber without significant residence time in the feed chamber.
- 2. The method of claim 1 wherein the step of introducing the feed material into the molten reactant metal is performed at a location immediately above the feed chamber outlet.
- 3. The method of claim 2 further including the step of containing the feed material in an area immediately above the feed chamber outlet as the feed material falls into the molten reactant metal in the feed chamber.
- 4. The method of claim 1 further including the step of inducing a swirling flow of molten reactant metal in the feed chamber.
- 5. The method of claim 4 further including the step of introducing the molten reactant metal into the feed chamber at an offset position to induce the swirling flow in the feed chamber.
- 6. The method of claim 1 further including the step of directing the molten reactant metal through a gravity trap associated with the treatment chamber.
- 7. The method of claim 1 further including the step of adding heat to the materials in the treatment chamber.
- 8. The method of claim 7 wherein the step of adding heat to the materials in the treatment chamber is performed by a heating device associated with the treatment chamber.
- 9. The method of claim 7 wherein the step of adding heat to the materials in the treatment chamber is performed by heat transfer with molten reactant metal contained in an additional chamber.
- 10. The method of claim 1 further including the step of directing molten reactant metal and reaction products from the treatment chamber to an output chamber containing a supply of molten reactant metal, wherein the molten reactant metal and reaction products are directed into the outlet chamber at a level below the level of molten reactant metal contained in the output chamber.
- 11. The method of claim 10 further including the steps of:
(a) removing reaction products from the output chamber; (b) transferring the molten reactant metal from the output chamber to a heating chamber; and (c) adding heat to the molten reactant metal in the heating chamber.
- 12. A method of introducing a feed material into a molten reactant metal, the method including the steps of:
(a) carrying the feed material and reaction products into a treatment chamber within a flow of molten reactant metal; and (b) trapping the feed material and the reaction products in the treatment chamber together with the molten reactant metal.
- 13. The method of claim 12 further including the step of causing the feed material to come into contact with the molten reactant metal in an area adjacent to an inlet to the treatment chamber.
- 14. The method of claim 13 further including a feed chamber connected to the inlet to the treatment chamber and including the step of introducing the feed material to the molten reactant metal in the feed chamber.
- 15. The method of claim 14 wherein the inlet to the treatment chamber is at a bottom of the feed chamber and including the step of inducing a swirling flow in the feed chamber.
- 16. The method of claim 12 wherein the step of trapping the reaction products and feed material in the treatment chamber includes causing the molten reactant metal to flow through a gravity trap in the treatment chamber.
- 17. The method of claim 12 further including the step of adding heat to the molten reactant metal as it flows through the treatment chamber.
- 18. A molten metal reactor including:
(a) a treatment chamber having a treatment chamber inlet; (b) a molten reactant metal flow inducing arrangement for inducing a flow of molten reactant metal into the treatment chamber through the treatment chamber inlet; (c) a feed chamber having a feed chamber outlet located adjacent to the treatment chamber inlet; (d) an output chamber connected to an outlet of the treatment chamber to receive molten reactant metal and reaction products from the treatment chamber; and (e) a supply chamber connected to the output chamber and to the treatment chamber.
- 19. The molten metal reactor of claim 18 wherein the feed chamber outlet and the treatment chamber inlet comprise a common opening.
- 20. The molten metal reactor of claim 19 further including a vortex inducing arrangement for inducing a swirling flow in the feed chamber outlet.
- 21. The molten metal reactor of claim 19 wherein the feed chamber comprises a bowl shaped chamber and the feed chamber outlet is located in substantially the center of the bowl shape at a bottom of the feed chamber.
- 22. The molten metal reactor of claim 19 further including an impeller mounted in the feed chamber and adapted to be rotated about a substantially vertical axis.
- 23. The molten metal reactor of claim 19 including an off-center molten reactant metal inlet to the feed chamber through which molten reactant metal is introduced into the feed chamber to induce a swirling flow in the feed chamber.
- 24. The molten metal reactor of claim 18 wherein at least a portion of the treatment chamber is in a heat transfer relationship with the supply chamber.
- 25. The molten metal reactor of claim 18 further including a gravity trap within the treatment chamber.
- 26. A feed structure for introducing a feed material into a treatment chamber of a molten metal reactor, the feed arrangement including:
(a) a feed chamber having a feed chamber outlet located adjacent to an inlet to the treatment chamber; (b) a feed material inlet to the feed chamber, the feed material inlet being substantially aligned with the feed chamber outlet; and (c) a molten reactant metal flow inducing arrangement for inducing a flow of molten reactant metal into the treatment chamber through the treatment chamber inlet and through the length of the treatment chamber to a treatment chamber outlet, the flow of molten reactant metal being at a rate sufficient to carry feed material and reaction products into the treatment chamber.
- 27. The feed structure of claim 26 wherein the feed chamber outlet and the treatment chamber inlet comprise a common opening.
- 28. The feed structure of claim 27 wherein the feed material inlet is located in a central portion of the feed chamber.
- 29. The feed structure of claim 28 further including a containment conduit extending from the feed material inlet to a level below the level of molten reactant metal in the feed chamber in an area below the feed material inlet.
- 30. The feed structure of claim 27 further including vortex inducing arrangement for inducing a swirling flow in the feed chamber, the flow having an axis substantially aligned with an axis of the feed chamber outlet.
- 31. The feed structure of claim 27 wherein the feed chamber comprises a bowl shaped chamber and the feed chamber outlet is located in substantially the center of the bowl shape at a bottom of the feed chamber.
- 32. The feed structure of claim 27 further including an impeller mounted in the feed chamber and adapted to be rotated about a substantially vertical axis.
- 33. The feed structure of claim 27 including an off-center molten reactant metal inlet to the feed chamber through which molten reactant metal is introduced into the feed chamber to induce a swirling flow in the feed chamber.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is related to U.S. Provisional Patent Application Serial No. 60/271,825 filed Feb. 27, 2001 and entitled “MOLTEN METAL REACTOR UTILIZING MOLTEN METAL FLOW FOR FEED MATERIAL AND REACTION PRODUCT ENTRAPMENT.” The Applicant claims the benefit of this earlier provisional application pursuant to 35 U.S.C. §119(e). The entire content of this earlier provisional application is hereby incorporated herein by this reference.