A catalyzer for burning part of a gaseous fuel/oxidant mixture, in particular for a burner of a power plant installation, has catalytically active channels and catalytically inactive channels and at least two sectors are arranged consecutively in the main flow direction. The sectors include a first sector defining an inlet sector and at least one following sector that includes one or more of a mixing sector arranged downstream from the inlet sector and an outlet sector. Further, the catalyzer has one or more of a smaller flow resistance in the inlet sector than any following sector, a higher catalytic activity in the inlet sector than any following sector, a plurality of holes in the mixing sector oriented transversely to the main flow direction and through which adjoining channels communicate, and a swirl generator in the outlet sector that provides a swirl to a gas mixture flowing through the outlet sector.
1. A catalyzer for burning part of a gaseous fuel/oxidant mixture flowing through the catalyzer, the catalyzer comprising:
a plurality of catalytically active channels;
a plurality of catalytically inactive channels; and
a plurality of sectors arranged consecutively in a main flow direction, each sector comprising a portion of the plurality of catalytically active and catalytically inactive channels,
wherein the plurality of sectors comprise at least two sectors arranged consecutively in a main flow direction, wherein the at least two sectors comprise a first sector defining an inlet sector comprising the inflow side of the catalyzer and at least a second sector defining a mixing sector arranged downstream from the inlet sector, the channels of said mixing sector comprising a plurality of holes oriented transversely to the main flow direction and through which adjoining channels of the mixing sector communicate;
wherein the plurality of sectors comprise an outlet sector comprising an outflow side of the catalyzer, the outflow sector constructed as a swirl generator that provides a swirl to a gas mixture flowing through the outlet sector; and
wherein the catalyzer includes at least one of a smaller flow resistance in the inlet sector than any following sector, and a higher catalytic activity in the inlet sector than any following sector.