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Catalytic Combustion Catalytic combustion can achieve stable and effective combustion over a wider concentration range and at lower temperatures than in conventional burners, based on gas phase radical chemistry. Because of this it is commonly used for the abatement of gaseous emissions in many manufacturing and energy-conversion processes. During the past few decades, catalytic combustion has also been explored as a primary control method in the production of heat and energy with ultra-low emissions of NOx , CO, and unburned hydrocarbons (UHC). Catalytic combustion in gas turbines (GT) has attracted particular interest, and today such turbines represent the preferred energy conversion technology in medium- and large scale power stations. Likewise, major opportunities are foreseen in the small-scale distributed power generation sector. Catalytic combustion has been demonstrated, on a commercial basis, to reduce NOx emissions below 3 ppm while maintaining CO and UHC emissions below 10 ppm, without the need for expensive exhaust cleanup systems. In addition, a catalytic combustor reduces typical DLN (Dry low-NOx) problems such as risk of blow-out and flame instability. |

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