Claims
- 1. An apparatus for producing high purity metal, which comprises:
- a vessel including a reactor, a product separation chamber and a by-product separation chamber, said reactor positioned within said vessel comprising a reaction chamber and a reaction products outlet nozzle;
- reactant conduit means for introducing vaporized reactants into said reaction chamber of said reactor to effect reaction thereof to form reaction products including droplets of said high purity metal;
- conduit means including said reaction products outlet nozzle connecting said reactor to said product separation chamber and a conduit connecting said separation chamber to said by-product separation chamber of said vessel;
- vacuum means connected to said vessel to effect a pressure differential between said reaction chamber and said product separation chamber to form a product stream at supersonic velocity of said reaction products exiting outlet nozzle of said reactor and entering said product separation chamber;
- a product separator plate in said product separation chamber having a surface positioned within said product separation chamber of said vessel proximate to said reaction products outlet nozzle said surface of said separator plate disposed towards said reaction products outlet nozzle at a distance within which a shock wave zone forms from said supersonic product stream to cause said droplets of sail metal to impinge on said surface of said separator plate, said separation having side walls of a height (L) defined by: ##EQU4## wherein W is the width of said separation chamber, d is the distance from said reaction products outlet nozzle to said separator plate surface, E.sub.E is the expandable supersonic jet diameter immediately after the outlet orifice, and wherein: ##EQU5## wherein D.sub.N is the diameter of the outlet orifice, P.sub.T is the pressure in said reaction chamber, P.sub.O is the pressure in the separation chamber, P.sub.T /P.sub.O is the nozzle pressure ratio, .gamma. is the ratio of specific heats at constant pressure to specific beats at constant volume of gases exiting said reaction products nozzle and M is the Mach number, and wherein: ##EQU6## with F=0.22+5.22M.sup.0.9 ; and means for collecting said droplets of said metal.
- 2. The apparatus of claim 1 wherein said reaction products outlet nozzle is substantially horizontally positioned with respect to gravity.
- 3. The apparatus as defined in claim 1 wherein said reactor is provided with a plurality of reaction products outlet nozzles.
- 4. The apparatus as defined in claim 1 wherein said means for collecting said droplets of said metal comprises a collector and further includes a piston for maintaining a fixed liquid level as liquid cools to for a solid product.
- 5. The apparatus as defined in claim 1 and further including a movable platform for said means for collecting said droplets of said high purity metal, said movable platform receding away from said reaction products outlet nozzle in response to collection of said high purity metal.
- 6. The apparatus as defined in claim 1 wherein said means for collecting said droplets of said high purity metal includes a substrate for depositing as a film said high purity metal.
- 7. The apparatus as defined in claim 1 and further including means for maintaining said separator plate at about the melting temperature of said high purity metal.
- 8. The apparatus as defined in claim 1 wherein said reaction products outlet nozzle has an exit cross section longer in one direction than in an other thereby producing a ribbon jet of product and by-product.
- 9. The apparatus as defined in claim 7 wherein said one dimension of said nozzle is from 0.3 to 1.4 cm. and said other dimension is from 1 to 50 cm.
- 10. The apparatus as defined in claim 1 wherein said reaction products outlet nozzle has an effective diameter in the range of 0.3 to 1.4 centimeters.
- 11. The apparatus as defined in claim 10 wherein said reaction products nozzle is of a diameter of substantially 0.7 centimeters.
- 12. The apparatus as defined in claim 1 wherein said distance between said reaction products outlet nozzle and said surface of said separator plate is in the range of from 1.0 to 10.0 centimeters.
- 13. The apparatus as defined in claim 12 wherein said distance is substantially 3.5 centimeters.
- 14. The apparatus as defined in claim 1 wherein said surface of said separator plate is essentially flat.
- 15. The apparatus as defined in claim 14 wherein said surface is inclined with respect to said reaction products outlet nozzle.
Parent Case Info
This application is a division of application Ser. No. 06/680,923, filed 12/12/84, now abandoned which is a continuation of Ser. No. 06/368,460, filed on 4/14/82, now abandoned which is a continuation of Ser. No. 06/249,396, filed on 3/31/81, now abandoned which is a continuation of Ser. No. 06/199,100, filed on 10/20/80, now abandoned all entitled "Method and Apparatus for Producing High Purity Silicon from Flames of Sodium and Silicon Tetrachloride".
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
741630 |
Dec 1955 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Olson et al., Silicon Halaide-Alkali Metal Flames as a Source of Solar Grade Silicone, DOE/JPL 954777 79/7. |
Divisions (1)
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Number |
Date |
Country |
Parent |
680923 |
Dec 1984 |
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Continuations (3)
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Number |
Date |
Country |
Parent |
368460 |
Apr 1982 |
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Parent |
249396 |
Mar 1981 |
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Parent |
199100 |
Oct 1980 |
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