Nanocomposite particle and process of preparing the same
View Patent ↗A nanocomposite particle, its use as a catalyst, and a method of making it are disclosed. The nanocomposite particle comprises titanium dioxide nanoparticles, metal oxide nanoparticles, and a surface stabilizer. The metal oxide nanoparticles are formed hydrothermally in the presence of the titanium dioxide nanoparticles. The nanocomposite particle is an effective catalyst support, particularly for DeNO x catalyst applications.
1. A process for reducing nitrogen oxides in a waste stream, the process comprising the step of:
contacting a waste stream containing nitrogen oxides with a catalyst, the catalyst comprising:
(A) a nanocomposite particle, the nanocomposite particle comprising:
(i) titanium dioxide nanoparticles wherein the titanium dioxide nanoparticles are predominantly anatase;
(ii) metal oxide nanoparticles selected from the group consisting of zirconium dioxide, cerium dioxide, hafnium oxide, tin oxide, niobium oxide and tantalum oxide; and
(iii) a surface stabilizer selected from the group consisting of silicon dioxide, aluminum oxide, phosphorus pentoxide, aluminum silicate and aluminum phosphate,
wherein the metal oxide nanoparticles are formed by hydrothermally treating an amorphous hydrated metal oxide in the presence of the titanium dioxide nanoparticles; and
(B) at least one metal component, the at least one metal component comprising: a metal selected from the group consisting of platinum, gold, silver, palladium, copper, tungsten, molybdenum, vanadium, iron, rhodium, nickel, manganese, chromium, cobalt, and ruthenium with the result that the amount of nitrogen oxides in the waste stream is reduced.
2. The process of claim 1 , wherein the at least one metal component is selected from the group consisting of tungsten and vanadium.
3. The process of claim 2 , wherein the catalyst comprises about 0.1 to about 10 weight percent vanadium and about 4 to about 20 weight percent tungsten.
4. The process of claim 1 , wherein the metal oxide nanoparticles are zirconium dioxide.
5. The process of claim 1 , wherein the nanocomposite particles comprise about 50 to about 95 weight percent of titanium dioxide nanoparticles, about 2 to about 48 weight percent metal oxide nanoparticles, and about 2 to about 20 weight percent surface stabilizer.
6. The process of claim 1 , wherein the nanocomposite particle has a surface area greater than about 60 m 2 /g after being calcined at 800° C. for six hours.