CATALYST, GAS GENERATOR, AND THRUSTER WITH IMPROVED THERMAL CAPABILITY AND CORROSION RESISTANCE
A catalyst includes a carrier of essentially hafnia, up to an equal part zirconia, and optionally additional stabilizers, upon the surface of which is deposited an active metal suitable to promote the reaction of propellants to be used in gas generators and thrusters.
1 . A catalyst, comprising:
a carrier comprising hafnia and up to an equal part zirconia by weight, wherein the combined hafnia and zirconia, when present, comprise at least 50% of the carrier by weight; and
an active metal on a surface of the carrier.
2 . The catalyst of claim 1 , wherein the active metal comprises one of at least rhodium, ruthenium, palladium, osmium, iridium, or platinum.
3 . The catalyst of claim 1 , wherein the carrier is at least 99% by weight hafnia.
4 . The catalyst of claim 1 , wherein the carrier further comprises a stabilizer.
5 . The catalyst of claim 4 , wherein the stabilizer comprises a material selected from a group comprising ceria and yttria, or any combination thereof.
6 . The catalyst of claim 1 , wherein the carrier has a theoretical density greater than 50%.
7 . The catalyst of claim 1 , wherein the active metal is 0.1% by weight to 50% by weight, based on the total weight of the catalyst.
8 . The catalyst of claim 1 , wherein the surface area of the catalyst is 0.05 m 2 /g to 40 m 2 /g.
9 . A gas generator, comprising:
a housing defining a space within the housing;
a catalyst within the space within the housing, wherein the catalyst comprises a carrier comprising hafnia, and at least one active metal on a surface of the carrier;
a propellant inlet to the housing; and
an outlet from the housing for reaction products comprising gas.
10 . The gas generator of claim 9 , wherein the carrier further comprises zirconia in up to an equal weight to hafnia.
11 . The gas generator of claim 9 , wherein the carrier further comprises a stabilizer.
12 . The gas generator of claim 11 , wherein the stabilizer comprises a material selected from a group comprising ceria and yttria, or any combination thereof.
13 . The gas generator of claim 9 , further comprising a nozzle connected to the outlet.
14 . The gas generator of claim 10 , wherein the carrier further comprises a stabilizer.
15 . The gas generator of claim 14 , wherein the stabilizer comprises a material selected from a group comprising ceria and yttria, or any combination thereof.
16 . The gas generator of claim 10 , further comprising a nozzle connected to the outlet.
17 . The gas generator of claim 9 , where the catalyst comprises a bed of particles.
18 . The gas generator of claim 17 , wherein the carrier further comprises a stabilizer.
19 . The gas generator of claim 18 , wherein the stabilizer comprises a material selected from a group comprising ceria and yttria, or any combination thereof.
20 . The gas generator of claim 17 , where the catalyst particles have a maximum dimension between 0.5 mm and 2.0 mm.
21 . A method for promoting the reaction of a propellant into reaction products comprising gas, said method comprising:
contacting a propellant with a catalyst, wherein the catalyst comprises a carrier comprising hafnia, and at least one active metal on a surface of the carrier; and
converting the propellant into one or more reaction products on contact with the catalyst.
22 . The method of claim 21 , wherein the propellant comprises an oxidizer selected from a group consisting of oxygen, hydroxylammonium nitrate, ammonium nitrate, ammonium perchlorate, lithium perchlorate, ammonium dinitramide, and hydroxyethylhydrazinium nitrate, or any combination thereof.
23 . The method of claim 21 , wherein the propellant comprises a fuel selected from a group consisting of hydrogen, glycine, betaine, hydrocarbons, alcohols, triethanolamine nitrate, tris(2-aminoethyl)amine trinitrate, hydrazinium nitrate and hydroxyethylhydrazinium nitrate, or any combination thereof.
24 . The method of claim 21 , further comprising directing the reaction products through a nozzle to generate thrust.
25 . The method of claim 21 , wherein the propellant comprises an oxidizer, a fuel, and water.