Claims
- 1. A robust, high-activity catalyst for use in high-temperature decomposition of propellants, including 70-99% hydrogen peroxide, the catalyst comprising:
about 30 to 50 weight percent of silver; about 20 to 40 weight percent of manganese dioxide; and about 10 to 20 weight percent of alumina.
- 2. The catalyst of claim 1 further comprising about 0 to 20 weight percent of borosilicate glass.
- 3. The catalyst of claim 1 further comprising about 0 to 10 weight percent of gold.
- 4. The catalyst of claim 1 further comprising about 0 to 20 weight percent of borosilicate glass and about 0 to 10 weight percent of gold.
- 5. A robust, high-activity catalyst for use in high-temperature decomposition of propellants, including 70-99% hydrogen peroxide, the catalyst comprising:
about 30 to 50 weight percent of silver-palladium alloy; about 0 to 40 weight percent of manganese dioxide; about 0 to 40 weight percent of dysprosium oxide; and about 10 to 20 weight percent of alumina.
- 6. The catalyst of claim 5 further comprising about 0 to 20 weight percent of borosilicate glass.
- 7. The catalyst of claim 5 further comprising about 0 to 10 weight percent of gold.
- 8. The catalyst of claim 5 further comprising about 0 to 20 weight percent of borosilicate glass and about 0 to 10 weight percent of gold.
- 9. A method for forming a robust, high-temperature catalyst material for use in decomposing propellants or catalytic combustion in the power and propulsion industry, the method comprising:
(a) forming a mixture of a plurality of constituents within a container, said mixture comprising: a first amount of an active catalyst material to a container, said first amount comprising between approximately 30 and 50 weight percent of the total weight of said mixture; a second amount of a co-catalyst promoter material to said container, said second amount comprising between approximately 20 and 40 weight percent of the total weight of said mixture; a third amount of a surface enhancer material to said container, said third amount comprising between approximately 10 and 20 weight percent of the total weight of said mixture; and (b) dry blending said mixture within said container to a uniform consistency.
- 10. The method of claim 9 further comprising introducing a structural binder material to said mixture, said structural binder material comprising less than about 20 weight percent of said mixture.
- 11. The method of claim 9 further comprising introducing a promoter material to said mixture, said promoter material comprising less than about 10 weight percent of said mixture.
- 12. The method of claim 9, wherein said active catalyst material comprises silver.
- 13. The method of claim 12, wherein said co-catalyst promoter material comprises manganese dioxide.
- 14. The method of claim 9, wherein said active catalyst material comprises a silver palladium alloy.
- 15. The method of claim 14, wherein said co-catalyst promoter material comprises manganese dioxide.
- 16. The method of claim 14, wherein said co-catalyst promoter material comprises dysprosium dioxide.
- 17. The method of claim 14, wherein said co-catalyst promoter material is selected from the group consisting of manganese dioxide, dysprosium dioxide, and combinations thereof.
- 18. The method of claim 9, wherein each constituent of said mixture has an average particle size of less than 10 microns in diameter.
- 19. The method of claim 10, wherein said structural binder material comprises borosilicate glass.
- 20. The method of claim 11, wherein said promoter material comprises gold.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH
[0001] This invention described herein was made in the performance of work under NASA contract No. NCC8-193 and is subject to the provisions of Section 305 of the National Aeronautics and Space Act of 1958 (72 Stat. 435: 42 U.S.C. 2457).