Boiler system and power plant including the same

US9851101B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9851101-B2
Application numberUS-201515026452-A
CountryUS
Kind codeB2
Filing dateJun 5, 2015
Priority dateJun 6, 2014
Publication dateDec 26, 2017
Grant dateDec 26, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A boiler system is provided including: a boiler that burns fuel containing sulfur content, chlorine content, and water content to generate a combustion gas; a bagfilter that removes sulfur oxide; a denitration section that removes nitrogen oxide; a desulfurizing absorbent supply section that mixes a desulfurizing absorbent into the combustion gas on an upstream side of the bagfilter; and a reformer that mixes a denitrating reagent into the combustion gas on an upstream side of the denitration section, wherein the bagfilter performs dry desulfurization, and a temperature of the combustion gas passing through the bagfilter and flowing into the denitration section is higher than 200° C. and 350° C. or lower, and the combustion gas from which the sulfur oxide has been removed by the bagfilter flows into the denitration section without being heated on the upstream side of the denitration section.

First claim

Opening claim text (preview).

The invention claimed is: 1. A boiler system comprising: a boiler that burns fuel containing sulfur content at a weight percent concentration of lower than 8.0%, chlorine content at a weight percent concentration of lower than 0.1%, and water content at a weight percent concentration of lower than 20.0% to generate a combustion gas; a removal section that is arranged on a downstream side of the boiler and that removes sulfur oxide contained in the combustion gas and removes smoke dust contained in the combustion gas; a denitration section that is arranged on a downstream side of the removal section and that removes nitrogen oxide contained in the combustion gas from which the sulfur oxide has been removed by the removal section; a desulfurizing absorbent supply section that mixes a desulfurizing absorbent for removing sulfur oxide contained in the combustion gas into the combustion gas on an upstream side of the removal section; and a denitrating reagent supply section that mixes a denitrating reagent for removing nitrogen oxide contained in the combustion gas into the combustion gas on an upstream side of the denitration section, wherein the removal section performs dry desulfurization, and a temperature of the combustion gas flowing into the removal section is higher than 200° C. and 350° C. or lower, and the combustion gas from which the sulfur oxide has been removed by the removal section flows into the denitration section without being heated on the upstream side of the denitration section. 2. The boiler system according to claim 1 , further comprising an air preheater that is arranged between the boiler and the removal section and that exchanges heat between the combustion gas exhausted from the boiler and air, supplies the heated air to the boiler as secondary air, and supplies the combustion gas having been reduced in temperature by heat exchange with the air to the removal section. 3. The boiler system according to claim 2 , wherein the boiler adjusts the temperature of the combustion gas so that the temperature of the combustion gas exhausted outside is 360° C. or higher and 400° C. or lower, and the air preheater adjusts the temperature of the air so as to reduce the temperature of the combustion gas flowing from the boiler to higher than 200° C. and 350° C. or lower. 4. The boiler system according claim 1 , wherein the denitrating reagent is a gas mainly containing at least one of carbon monoxide, hydrogen, and hydrocarbon. 5. The boiler system according to claim 1 , further comprising a humidification section that humidifies air containing the desulfurizing absorbent supplied by the desulfurizing absorbent supply section and supplies the air to the upstream side of the removal section. 6. The boiler system according to claim 1 , wherein the temperature of the combustion gas flowing into the removal section is 210° C. or higher and 270° C. or lower. 7. A boiler system comprising: a boiler that burns fuel containing at least sulfur content, chlorine content, and water content, a weight percent concentration of the sulfur content being lower than 8.0%, a weight percent concentration of the chlorine content being lower than 0.1%, and a weight percent concentration of the water content being lower than 20.0%, to generate a combustion gas; a removal section that is arranged on a downstream side of the boiler and that removes sulfur oxide and nitrogen oxide contained in the combustion gas; a desulfurizing absorbent supply section that mixes a desulfurizing absorbent for removing sulfur oxide contained in the combustion gas into the combustion gas on an upstream side of the removal section; and a denitrating reagent supply section that mixes a denitrating reagent for removing nitrogen oxide contained in the combustion gas into the combustion gas on the upstream side of the removal section, wherein the removal section has a dry desulfurization function, and a temperature of the combustion gas flowing into the removal section is higher than 200° C. and 350° C. or lower. 8. The boiler system according to claim 7 , further comprising an air preheater that is arranged between the boiler and the removal section and that exchanges heat between the combustion gas exhausted from the boiler and air, supplies the heated air to the boiler as secondary air, and supplies the combustion gas having been reduced in temperature by heat exchange with the air to the removal section. 9. The boiler system according to claim 8 , wherein the boiler adjusts the temperature of the combustion gas so that the temperature of the combustion gas exhausted outside is 360° C. or higher and 400° C. or lower, and the air preheater adjusts the temperature of the air so as to reduce the temperature of the combustion gas flowing from the boiler to higher than 200° C. and 350° C. or lower. 10. The boiler system according to claim 7 , wherein the denitrating reagent is a gas mainly containing at least one of carbon monoxide, hydrogen, and hydrocarbon. 11. The boiler system according to claim 7 , further comprising a humidification section that humidifies air containing the desulfurizing absorbent supplied by the desulfurizing absorbent supply section and mixes the air in the upstream side of the removal section. 12. The boiler system according to claim 7 , wherein the temperature of the combustion gas flowing into the removal section is 210° C. or higher and 270° C. or lower. 13. The boiler system according to claim 2 , further comprising an oxidation treatment section that oxidizes sulfur dioxide contained in the combustion gas exhausted from the boiler and supplied to the air preheater into sulfur trioxide. 14. A power plant comprising: a boiler system according to claim 1 ; a steam turbine driven by steam generated by the boiler system; and a generator that uses power of the steam turbine to generate electricity. 15. The boiler system according to claim 8 , further comprising an oxidation treatment section that oxidizes sulfur dioxide contained in the combustion gas exhausted from the boiler and supplied to the air preheater into sulfur trioxide. 16. An operation method for operating a boiler system including a boiler that burns fuel containing sulfur content at a weight percent concentration of lower than 8.0%, chlorine content at a weight percent concentration of lower than 0.1%, and water content at a weight percent concentration of lower than 20.0% to generate a combustion gas, the method comprising: a desulfurizing absorbent supply step that mixes a desulfurizing absorbent for removing sulfur oxide contained in the combustion gas into the combustion gas; a removal step that removes the sulfur oxide contained in the combustion gas and removes smoke dust contained in the combustion gas by using a removal section that removes the sulfur oxide contained in the combustion gas and removes the smoke dust contained in the combustion gas; a denitrating reagent supply step that mixes a denitrating reagent for removing nitrogen oxide contained in the combustion gas into the combustion gas; and a denitration step that removes the nitrogen oxide contained in the combustion gas from which the sulfur oxide has been removed by the removal step, wherein the removal step performs dry desulfurization, and a temperature of the combustion gas in the removal step is higher than 200° C. and 350° C. or lower, and the combustion gas from which the sulfur oxide has been removed by the removal step flows into the denitration step without being heated. 17. An operation method for operating a boiler system inclu

Assignees

Inventors

Classifications

  • Installation of heat-exchange apparatus or of means in boilers for heating air supplied for combustion · CPC title

  • Arrangements of devices for treating smoke or fumes · CPC title

  • Heating of air supplied for combustion · CPC title

  • Arrangements of recuperators · CPC title

  • F01K13/00Primary

    General layout or general methods of operation of complete plants · CPC title

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What does patent US9851101B2 cover?
A boiler system is provided including: a boiler that burns fuel containing sulfur content, chlorine content, and water content to generate a combustion gas; a bagfilter that removes sulfur oxide; a denitration section that removes nitrogen oxide; a desulfurizing absorbent supply section that mixes a desulfurizing absorbent into the combustion gas on an upstream side of the bagfilter; and a refo…
Who is the assignee on this patent?
Mitsubishi Hitachi Power Sys
What technology area does this patent fall under?
Primary CPC classification F01K13/00. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Dec 26 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).