Nova Patents
EP1537362A2

Low nox combustion

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 13 May 2023, 3.4 years ago.

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  3. Published
  4. Projected expiry
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25 claims: 2 independent, 23 dependent

  1. 1
    Claims of equivalent WO 03098024 A2 WHAT IS CLAIMED IS:1. A combustion method that reduces the amount of NOx emitted comprising: providing a combustion device (1) that has a primary combustion zone (10) and a burn out zone (9);feeding air, and nonaqueous fuel that contains bound nitrogen and is selected from the group consisting of atomized hydrocarbon liquid and pulverulent hydrocarbon solids, through a burner (3) into said primary combustion zone (10);and combusting the fuel in a flame (6) in the primary combustion zone (10) that has a fuel-rich zone (8), while feeding oxygen into said fuel by injecting it directly into said fuel in said primary combustion zone (10) as said fuel emerges from said burner (3) or by adding it to the air that is fed through said burner (3), so that the oxygen combusts with said fuel in said fuel-rich zone (8), in an amount of said oxygen which is less than 20% of the stoichiometric amount required for complete combustion of said fuel, and adjusting the amount of air fed through said burner (3) so that the stoichiometric ratio in said primary combustion zone (10) is between 0.6 and 0.99, and adding air into said burn out zone (9) from a source (7) other than said burner (3) in an amount containing sufficient oxygen that the total amount of oxygen fed into said device (1) is at least the stoichiometric amount needed for complete combustion of said fuel, and combusting residual combustibles from said primary combustion zone (10) in said burn out zone (9) .
  2. 14
    A combustion method that reduces the amount of NOx emitted, comprising:providing a combustion device (1);feeding air, and nonaqueous fuel that contains bound nitrogen and is selected from the group consisting of atomized hydrocarbon liquid and pulverulent hydrocarbon solids, through an aerodynamically staged burner (3) into said device;and combusting said fuel in a flame (6) that contains a fuel-rich zone (8), while feeding oxygen into said fuel by injecting it directly into said fuel in said fuel rich zone (8) as said fuel emerges from said burner (3) or by adding it to the air that is fed through said burner (3), so that the oxygen combusts with said fuel in said fuel-rich zone (8), in an amount of said oxygen which is less than 20% of the stoichiometric amount required for complete combustion of said fuel, and adjusting the amount of air fed through said burner (3) so that the stoichiometric ratio in said fuel rich zone (8) is between 0.1 and 0.85, while maintaining or enlarging the size of said fuel-rich zone (8) compared to its size when combustion is carried out in said combustion device (1) without said oxygen feeding step but under otherwise identical conditions.