CATALYST FOR IMPROVING THE EFFICACY OF NOx REDUCTION IN MOTOR VEHICLES
The invention relates to a catalyst for purifying NOX in the flow of exhaust gas of motor vehicles, and is characterized in that the catalyst contains modified clay minerals selected from the group consisting of bentonites, smectites, hectorites and mixtures thereof, all of which being pillared with aluminium, silicon or titanium (oxides).
1 . A catalyst for purifying NO x in the flow of exhaust gas of motor vehicles, wherein the catalyst comprises:
a modified clay mineral selected from the group comprising bentonites, smectites, hectorites, or mixtures thereof, pillared with aluminium, silicon or titanium (oxides); and
a zeolite comprising zeolite A, zeolite X, zeolite Y, heulandite, clinoptilolite, chabasite, erionite, mordenite, ferrierite, MFI (ZSM-5), zeolite-beta faujasite, mordenite or mixtures thereof, wherein zeolite is naturally occurring, ion-exchanged, synthesized or a combination thereof.
2 . The catalyst according to claim 1 , wherein the catalyst comprises oxidative and reductive regions.
3 . The catalyst according to claim 1 , wherein the clay mineral of the catalyst comprises basic-acting cations selected from the group consisting of Ba, Na, Sr, Ca and Mg as well as mixtures thereof.
4 . The catalyst according to claim 1 , wherein the catalyst comprises oxidative-acting metal ions selected from the group consisting of Ag, Ce, Fe, Cu, La, Pr, Th, In, Nd, Cr, Mn, Co and Ni as well as mixtures thereof.
5 . The catalyst according to claim 1 , wherein the percentage content by weight of copper and/or iron in the catalyst, measured on the basis of the weight of the entire catalyst, is between ≧0% by wt. and ≦25% by wt.
6 . The catalyst according to claim 1 , wherein the catalyst additionally comprises a metal oxide, wherein the metal of the metal oxide is not a heavy metal with the exception of copper, iron or titanium.
7 . The catalyst according to claim 6 , wherein the catalyst additionally comprises aluminium oxide.
8 . The catalyst according to claim 6 , wherein the content of metal oxide in mmol per g of catalyst is ≦100 mmol of metal/g.
9 . The catalyst according to claim 1 , wherein the microporous average pore size is between ≧0 nm and ≦2 nm.
10 . The catalyst according to claim 1 , wherein the mesoporous average pore size is between ≧0 nm and ≦10 nm.
11 . The catalyst according to claim 1 , wherein the surface of the clay mineral, zeolite, or both is between ≧0 m 2 /g and ≦1000 m 2 /g.
12 . The catalyst according to claim 1 , wherein the micropore volume of the clay mineral, the zeolite, or both is between ≧0 cm 3 /g and ≦0.4 cm 3 /g.
13 . The catalyst according to claim 1 , wherein the mesopore volume of the clay mineral, the zeolite, or both is between ≧0 cm 3 /g and ≦1.0 cm 3 /g.
14 . The catalyst according to claim 1 , wherein the interlayer spacing between two layers of the clay mineral, the zeolite-type mineral, or both is between ≧0 nm and ≦5 nm.
15 . The catalyst according to claim 1 , wherein the catalyst has a thermal loading in steady state of ≧300° C.
16 . A motor vehicle including a catalyst according to claim 1.