Claims
- 1. A method of synthesizing a sodium substitutional cation high surface area ThO.sub.2 catalyst having a BET surface area of about 80-125 m.sup.2 /g, comprising:
- (a) simultaneously mixing an aqueous solution of Th(NO.sub.3).sub.4.4H.sub.2 O having a concentration of about 0.50 to 1.75 molal and a solution temperature between about its boiling temperature and a temperature of about 15.degree. C. less than its boiling temperature, with an aqueous solution of Na.sub.2 CO.sub.3.H.sub.2 O having a concentration of about 1.50 to 2.50 molal and a solution temperature between about its boiling temperature and a temperature of about 15.degree. C. less than its boiling temperature, to produce a solution and solid ThOCO.sub.3 ;
- (b) separating said solid ThOCO.sub.3 formed in step (a) from solution; and
- (c) calcining said ThOCO.sub.3 from step (b) at a temperature of about 225.degree.-300.degree. C. for about 40-55 hours to produce ThO.sub.2.
- 2. The method according to claim 1, wherein the separation of ThOCO.sub.3 from solution comprises:
- (a.sub.1) adding to said ThOCO.sub.3 a predetermined amount of water;
- (b.sub.1) stirring said resulting solution of (a.sub.1); and
- (c.sub.1) filtering said solution to separate water and contaminants from ThOCO.sub.3.
- 3. The method according to claim 2, wherein steps (a.sub.1), (b.sub.1) and (c.sub.1) are sequentially repeated a predetermined number of times.
- 4. The method according to claim 1, wherein the temperature of said Th(NO.sub.3).sub.4.4H.sub.2 O solution of step (a), prior to mixing, is about its boiling temperature, and the temperature of said Na.sub.2 CO.sub.3.H.sub.2 O solution of step (a) is about its boiling temperature.
- 5. The method according to claim 1, wherein said ThOCO.sub.3 of step (c) is calcined at a temperature of about 250.degree. C. to 280.degree. C.
- 6. The method according to claim 1, wherein said ThOCO.sub.3 of step (c) is calcined at a temperature of about 250.degree. C.
- 7. The method according to claim 6, wherein said ThOCO.sub.3 of step (c) is calcined at a temperature of about 250.degree. C. for about 45 to 50 hours.
- 8. The method according to claim 6, wherein said ThOCO.sub.3 of step (c) is calcined at a temperature of about 250.degree. C. for about 48 hours.
- 9. A ThO.sub.2 catalyst prepared according to the method of claim 1.
- 10. The ThO.sub.2 catalyst prepared according to the method of claim 1 wherein said BET surface area is about 100-120 m.sup.2 /g.
- 11. The ThO.sub.2 catalyst prepared according to the method of claim 1 wherein said BET surface area is about 115-120 m.sup.2 /g.
- 12. The ThO.sub.2 catalyst prepared according to the method of claim 1 wherein said catalyst has a lattice parameter of about 5.00-6.00 .ANG..
- 13. The ThO.sub.2 catalyst prepared according to the method of claim 1 wherein said catalyst has a lattice parameter of about 5.25-5.75 .ANG..
- 14. The ThO.sub.2 catalyst prepared according to the method of claim 1 wherein said catalyst has a lattice parameter of about 5.50-5.60 .ANG..
- 15. The ThO.sub.2 catalyst prepared according to the method of claim 1 wherein said catalyst includes Na present as a substitutional cation in an amount equal to about 5-10 atom percent.
Government Interests
The U.S. Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the U.S. Department of Energy and the University of California, for the operation of Lawrence Livermore National Laboratory.
US Referenced Citations (3)
Non-Patent Literature Citations (1)
Entry |
Pichler et al., Brennstoff-Chemie, 30, (1949), pp. 13-23. |