Claims
- 1. A continuous process for the separation of zirconium and hafnium tetrachloride from mixtures thereof by selective absorption in the vapor state for recovering a zirconium tetrachloride having less than 200 ppm hafnium comprising the steps of passing the mixture of zirconium and hafnium tetrachloride in the vapor state through a contact zone in countercurrent flow with a molten solvent selected from the group consisting of an alkali metal chloroaluminate, an alkali metal chloroferrate and mixtures thereof, in which the alkali metal chloroaluminate has the formula nAlCl.sub.3.pMeCl and the alkali metal chloroferrate has the formula nFeCl.sub.3.pMeCl in which Me is an alkali metal and n and p are the number of moles and in which the ratio of n/p is maintained above .95 but below 1.30, and maintaining the temperature within the range of 250.degree.-550.degree. C. and the pressure below 5 bars in the contact zone, whereby zirconium tetrachloride is adsorbed in the solvent flowing in one direction through the contact zone while hafnium chloride continues to flow as an enriched vapor phase in the other contact zone, removing and condensing the enriched phase of hafnium tetrachloride from one end portion of the contact zone, removing the zirconium tetrachloride enriched solvent phase from the other end of the contact zone, and separating from the solvent phase a purified zirconium tetrachloride having less than 200 ppm hafnium, and said process including the step of recycling the solvent to the contact zone and adding AlCl.sub.3 when the solvent is an alkali metal chloroaluminate and FeCl.sub.3 when the solvent is an alkali metal chloroferrate, and mixtures of AlCl.sub.3 and FeCl.sub.3 when the solvent is a mixture of alkali metal chloroaluminate and alkali metal chloroferrate to maintain the molar ratio of n/p.
- 2. A process as claimed in claim 1 in which the molar ratio of n/p is maintained within the range of 1.04 to 1.10.
- 3. A process as claimed in claim 1 in which the operating pressure is substantially equal to atmospheric pressure.
- 4. A process as claimed in claim 1 wherein Me is potassium.
- 5. A process as claimed in claim 1, which includes extracting hafnium-free zirconium tetrachloride by an inert carrier gas and subsequently recovered by means of a condenser.
- 6. A process as claimed in claim 5 in which the inert carrier gas is nitrogen.
- 7. A process as claimed in claim 1, wherein the hafnium-free zirconium tetrachloride is extracted at reduced pressure and recovered by means of a condenser.
- 8. A process as claimed in claim 1 wherein the contact zone includes an absorber/condenser designed to retain solvent passing through said zone to dissolve therein zirconium and hafnium tetrachloride and stabilize the temperature at the head of the contact zone.
- 9. A process as claimed in claim 1 wherein the zirconium tetrachloride is separated from the solvent by passing nitrogen gas through the solution to vaporize off the zirconium tetrachloride, separating the vapors of zirconium tetrachloride and nitrogen, cooling the removed vapors to condense hafnium free zirconium tetrachloride, and recycling the nitrogen gas to the vaporizer.
Priority Claims (1)
Number |
Date |
Country |
Kind |
73.40395 |
Nov 1973 |
FR |
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Parent Case Info
This is a continuation of application Ser. No. 447,902 filed Mar. 4, 1974 now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (3)
Number |
Date |
Country |
160,108 |
Dec 1954 |
AU |
207,659 |
Apr 1957 |
AU |
228,093 |
May 1960 |
AU |
Continuations (1)
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Number |
Date |
Country |
Parent |
447902 |
Mar 1974 |
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