Claims
- 1. The process steps for the production of aluminum metal from the group of materials consisting of alumina, bauxites and clays and said materials containing at least Al.sub.2 O.sub.3 minerals in the group consisting of Al.sub.2 O.sub.3 xH.sub.2 O and Al.sub.2 O.sub.3.2SiO.sub.2 2H.sub.2 O and free moisture and said Al.sub.2 O.sub.3 minerals containing chemically combined H.sub.2 O comprising: subjecting the said materials to calcination in the temperature range of about 625.degree. C. to 1500.degree. C. to produce a calcined product substantially free of said chemically combined H.sub.2 O and said free moisture; subsequently subjecting the said calcined product to at least a mass chlorination stage in the presence of chlorination agent selected from the group consisting of Cl.sub.2, COCl.sub.2, and AlCl.sub.3 and reducing agent selected from the group consisting of C and CO and in the temperature range of about 1200.degree. C. to 1600.degree. C. to produce a gas stream wherein the said Al.sub.2 O.sub.3 has been converted to gaseous AlCl and said gas stream contains said AlCl, and at least CO.sub.2 and Cl.sub.2 ; subsequently passing the said gas stream through at least one bed selected from the group consisting of charcoal and devolatilized coke and in the temperature range of about 1200.degree. C. to 1600.degree. C. to convert said CO.sub.2 to CO to produce a first modified gas stream containing at least said AlCl and Cl.sub.2, and said CO; subsequently passing the said first modified gas stream through molten aluminum metal in the temperature range of about 1200.degree. C. to 1600.degree. C. to convert the said Cl.sub.2 to AlCl to produce a second modified gas stream containing at least the said AlCl and CO; subsequently lowering the temperature of the said second modified gas stream to within the temperature rang of about 670.degree. C. to 1050.degree. C. to produce molten aluminum metal and a third modified gas stream containing AlCl.sub.3 and said CO.
- 2. The process of claim 1 wherein the said second modified gas stream containing AlCl and CO is lowered to below 660.degree. C. to produce the said aluminum metal as a solid.
- 3. The process of claim 1 wherein the said mass chlorination stage is carried out in the presence of catalyst and said catalyst is selected from the group consisting of NaAlCl.sub.4, KAlCl.sub.4, NaCl and KCl.
- 4. The process of claim 1 wherein preceding the said calcination the said materials are prepared to produce particles in the range of about 10 to 100 mesh.
- 5. The process of claim 2 wherein at least part of the said third modified gas stream containing AlCl.sub.3 and CO is cycled to said mass chlorination stage.
- 6. The process steps for the production of aluminum metal from the group of materials consisting of bauxites and clays and said materials containing at least iron minerals and at least Al.sub.2 O.sub.3 minerals in the group consisting of Al.sub.2 O.sub.3 xH.sub.2 O and Al.sub.2 O.sub.3.2SiO.sub.2.2H.sub.2 O and free moisture and said Al.sub.2 O.sub.3 minerals containing chemically combined H.sub.2 O comprising: subjecting the said materials to calcination in the temperature range of about 625.degree. C. to 1500.degree. C. to produce a calcined product substantially free of said chemically combined H.sub.2 O and said free moisture; subsequently subjecting the said calcined product to at least one chlorination stage in the presence of chlorination agent selected from the group consisting of Cl.sub.2, COCl.sub.2, AlCl.sub.3, AlCl, SiCl.sub.4 and SiCl.sub.2 and reducing agent selected from the group consisting of C and CO and in the temperature range of about 750.degree. C. to 1500.degree. C. to produce a solids Al.sub.2 O.sub.3 -SiO.sub.2 product substantially free of said iron; subsequently subjecting the said Al.sub.2 O.sub.3 -SiO.sub.2 product to at least a mass chlorination stage in the presence of chlorination agent selected from the group consisting of Cl.sub.2, COCl.sub.2, and AlCl.sub.3 and reducing agent selected from the group consisting of C and CO and in the temperature range of about 1200.degree. C. to 1600.degree. C. to produce a gas stream wherein the said Al.sub.2 O.sub.3 has been converted to gaseous AlCl and said gas stream contains the said AlCl, and at least CO.sub.2, CL.sub.2 and silicon chloride; subsequently passing the said gas stream through at least one bed selected from the group consisting of charcoal and devolatilized coke and in the temperature range of about 1200.degree. C. to 1600.degree. C. to convert said CO.sub.2 to CO and to produce a first modified gas stream containing at least said AlCl, Cl.sub.2 and silicon chloride and said CO; subsequently passing the said gas stream through molten aluminum metal in the temperature range of about 1200.degree. C. to 1600.degree. C. to convert the said Cl.sub.2 to AlCl and said silicon chloride to silicon and AlCl to produce a second modified gas stream containing at least AlCl and CO and said silicon remaining in the said molten aluminum metal; subsequently lowering the temperature of the said second modified gas stream to within the temperature range of about 670.degree. C. to 1050.degree. C. to produce molten aluminum metal and a third modified gas stream containing at least AlCl.sub.3 and said CO.
- 7. The process of claim 6 wherein the said second modified gas stream containing AlCl and CO is lowered to below 660.degree. C. to produce the said aluminum metal as a solid.
- 8. The process of claim 6 wherein the said mass chlorination stage is carried out in the presence of catalyst and said catalyst is selected from the group consisting of NaAlCl.sub.4, KAlCl.sub.4, NaCl and KCl.
- 9. The process of claim 6 wherein preceding the said calcination the said materials are prepared to produce particles in the range of about 10 mesh to 100 mesh.
- 10. The process of claim 6 hwerein at least part of the said third modified gas stream containing AlCl.sub.3 and CO is cycled to said mass chlorination stage.
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation-in-part of application Ser. No. 253,639 filed Apr. 13, 1981.
US Referenced Citations (3)
Continuation in Parts (1)
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Number |
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253639 |
Apr 1981 |
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