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REFRACTORY BLOCK FOR LOW NOX BURNERS WITH INTERNAL FLUE GAS RECIRCULATION

2024
Online Patent

Titel:
REFRACTORY BLOCK FOR LOW NOX BURNERS WITH INTERNAL FLUE GAS RECIRCULATION
Link:
Veröffentlichung: 2024
Medientyp: Patent
Sonstiges:
  • Nachgewiesen in: USPTO Patent Applications
  • Sprachen: English
  • Document Number: 20240102646
  • Publication Date: March 28, 2024
  • Appl. No: 17/954525
  • Application Filed: September 28, 2022
  • Claim: 1. A refractory apparatus, comprising: a refractory bock comprising a heat shield, wherein the refractory block includes a plurality of flue gas ports that acts as a gateway for flue gas produced due to combustion downstream of a burner, wherein a suction created in the burner drives the flue gas into the burner through the plurality of flue gas ports; a plurality of staged risers housed within the refractory block, wherein the plurality of staged risers is protected in staged fuel riser housings in the refractory block; and a discharge cone located in the refractory block for flame stabilization in the burner.
  • Claim: 2. The refractory apparatus of claim 1 wherein the plurality of flue gas ports comprise angles that vary from 0 to 90 degrees.
  • Claim: 3. The refractory apparatus of claim 1 wherein the refractory block comprises a refractory material configured on aluminum and silicon oxides with a temperature rating greater than 2600 F.
  • Claim: 4. The refractory apparatus of claim 1 wherein each flue gas port among the plurality of flue gas ports includes a slot having a slot area selected to obtain flue gas up to 20% of combustion air.
  • Claim: 5. The refractory apparatus of claim 4 wherein the slot comprises a shape that is at least one of: circular or rectangular with curved edges.
  • Claim: 6. The refractory apparatus of claim 1 further comprising a flange connected to the refractory block.
  • Claim: 7. The refractory apparatus of claim 1 wherein each staged riser among the plurality of staged rises comprises stainless steel.
  • Claim: 8. The refractory apparatus of claim 1 wherein the plurality of flue gas ports include a number of flue gas ports ranging from four flue gas ports to twelve flue gas ports.
  • Claim: 9. A refractory apparatus, comprising: a refractory bock comprising a heat shield, wherein the refractory block includes a plurality of flue gas ports that acts as a gateway for flue gas produced due to combustion downstream of a burner, wherein a suction created in the burner drives the flue gas into the burner through the plurality of flue gas ports, wherein the plurality of flue gas ports comprise angles that vary from 0 to 90 degrees; a plurality of staged risers housed within the refractory block, wherein the plurality of staged risers is protected in staged fuel riser housings in the refractory block; and a discharge cone located in the refractory block for flame stabilization in the burner.
  • Claim: 10. The refractory apparatus of claim 9 wherein the refractory block comprises a refractory material configured on aluminum and silicon oxides with a temperature rating greater than 2600 F.
  • Claim: 11. The refractory apparatus of claim 9 wherein each flue gas port among the plurality of flue gas ports includes a slot having a slot area selected to obtain flue gas up to 20% of combustion air.
  • Claim: 12. The refractory apparatus of claim 11 wherein the slot comprises a shape that is at least one of: circular or rectangular with curved edges.
  • Claim: 13. The refractory apparatus of claim 9 further comprising a flange connected to the refractory block.
  • Claim: 14. The refractory apparatus of claim 9 wherein each staged riser among the plurality of staged rises comprises stainless steel.
  • Claim: 15. The refractory apparatus of claim 9 wherein the plurality of flue gas ports include a number of flue gas ports ranging from four flue gas ports to twelve flue gas ports.
  • Claim: 16. A method of operating a refractory apparatus, comprising: providing a refractory bock comprising a heat shield, wherein the refractory block includes a plurality of flue gas ports that act as a gateway for flue gas produced due to combustion downstream of a burner, wherein a suction created in the burner drives the flue gas into the burner through the plurality of flue gas ports; protecting a plurality of staged risers housed within the refractory block with staged fuel riser housings in the refractory block; and stabilizing a flame with respect to the flue gas in a discharge cone located in the refractory block, wherein the discharge cone facilitates flame stabilization in the burner.
  • Claim: 17. The method of claim 16 wherein the plurality of flue gas ports comprise angles that vary from 0 to 90 degrees.
  • Claim: 18. The method of claim 17 wherein the refractory block comprises a refractory material configured on aluminum and silicon oxides with a temperature rating greater than 2600 F.
  • Claim: 19. The method of claim 18 wherein each flue gas port among the plurality of flue gas ports includes a slot having a slot area selected to obtain flue gas up to 20% of combustion air.
  • Claim: 20. The method of claim 4 wherein the slot comprises a shape that is at least one of: circular or rectangular with curved edges.
  • Current International Class: 23

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