Radiant boiler for pressurized oxy-combustion and method of radiant trapping to control heat flux in high temperature particle-laden flows at elevated pressure
US-2017363284-A1 · Dec 21, 2017 · US
US11029020B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11029020-B2 |
| Application number | US-201916431108-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 4, 2019 |
| Priority date | Jun 4, 2018 |
| Publication date | Jun 8, 2021 |
| Grant date | Jun 8, 2021 |
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A modular boiler system for implementing fuel combustion is provided. The system includes a first boiler and a second boiler of a plurality of boilers, an oxygen input unit, a fuel input unit, a recycled flue gas input unit, and a flue gas separator. The first boiler receives oxygen from the oxygen input unit, fuel from the fuel input unit, and recycled flue gas from the recycled flue gas input unit. The first boiler outputs intra-system flue gas. The flue gas separator separates the intra-system flue gas into a first and second flue gas stream, transfers the first flue gas stream to the second boiler, and transfers the second flue gas stream to a gas cleaning system. The second boiler receives oxygen from the oxygen input unit, fuel from the fuel input unit, and the first flue gas stream from the flue gas separator.
Opening claim text (preview).
What is claimed is: 1. A modular boiler system for implementing fuel combustion, the system comprising: an oxygen stream configured to provide oxygen to a plurality of boilers; a fuel stream configured to provide fuel to the plurality of boilers; a recycled flue gas stream configured to provide recycled flue gas to a first boiler of the plurality of boilers; the first boiler of the plurality of boilers configured to receive oxygen from the oxygen stream, fuel from the fuel stream, and recycled flue gas from the recycled flue gas stream; wherein the first boiler of the plurality of boilers is further configured to output a stream to a power generation cycle and an intra-system flue gas stream; a flue gas separator configured to separate the intra-system flue gas stream into a first flue gas stream and a second flue gas stream; wherein the flue gas separator is further configured to transfer the first flue gas stream to a second boiler of the plurality of boilers and to transfer the second flue gas stream to a gas cleaning systems, wherein the second boiler of the plurality of boilers is downstream from the first boiler of the plurality of boilers, and wherein each boiler of the plurality of boilers is separately connected to the gas cleaning system; and the second boiler of the plurality of boilers configured to receive oxygen from the oxygen stream, fuel from the fuel stream, and the first flue gas stream from the flue gas separator. 2. The modular boiler system of claim 1 , wherein the modular boiler system is pressurized. 3. The modular boiler system of claim 2 , wherein the modular boiler system pressure is about 16 bar or less. 4. The modular boiler system of claim 1 , wherein the oxygen provided to the plurality of boilers comprises an oxygen concentration of from about 25% to about 50%. 5. The modular boiler system of claim 1 , wherein the recycled flue gas is provided to at least the first boiler of the plurality of boilers at a recycle ratio of about 30% or less. 6. The modular boiler system of claim 1 , wherein the fuel provided to the plurality of boilers is coal. 7. The modular boiler system of claim 1 , wherein the plurality of boilers are connected in series. 8. The modular boiler system of claim 1 , further comprising at least one cylindrical geometry, axial flow burner-combustor. 9. A process for implementing fuel combustion within a modular boiler system, the process comprising: providing oxygen to a plurality of boilers; providing fuel to the plurality of boilers; providing recycled flue gas to at least a first boiler of the plurality of boilers; transferring, from the first boiler of the plurality of boilers, an intra-system flue gas stream to a flue gas separator configured to separate the intra-system flue gas stream into a first flue gas stream and a second flue gas stream; transferring, from the flue gas separator, the first flue gas stream to a second boiler of the plurality of boilers; and, transferring, from the flue gas separator, the second flue gas stream to a gas cleaning system, wherein the second boiler of the plurality of boilers is downstream from the first boiler of the plurality of boilers, and wherein each boiler of the plurality of boilers is separately connected to the gas cleaning system. 10. The process of claim 9 , further comprising pressurizing the modular boiler system. 11. The process of claim 10 , wherein pressurizing the modular boiler system comprises pressurizing the modular boiler system to a pressure of about 16 bar or less. 12. The process of claim 9 , wherein providing oxygen to the plurality of boilers comprises providing oxygen to the plurality of boilers at an oxygen concentration of about 25% to about 50%. 13. The process of claim 9 , wherein providing recycled flue gas to at least the first boiler of the plurality of boilers comprises providing recycled flue gas to at least the first boiler of the plurality of boilers at a recycle ratio of about 30% or less. 14. The process of claim 9 , wherein providing fuel to the plurality of boilers comprises providing coal to the plurality of boilers. 15. The process of claim 9 , further comprising connecting the plurality of boilers in series. 16. The process of claim 9 , further comprising operating the plurality of boilers under the same operating conditions.
with exhaust fluid of one cycle heating the fluid in another cycle (F01K17/025 takes precedence) · CPC title
Premixing fluegas with combustion air · CPC title
using specific ranges of oxygen percentage · CPC title
for pulverulent fuel (for fluidized bed F23C10/02) · CPC title
Supplying oxygen or oxygen-enriched air · CPC title
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