CN211232934U - Energy-saving denitration device for hazardous waste incineration system - Google Patents
Energy-saving denitration device for hazardous waste incineration system Download PDFInfo
- Publication number
- CN211232934U CN211232934U CN201921996886.4U CN201921996886U CN211232934U CN 211232934 U CN211232934 U CN 211232934U CN 201921996886 U CN201921996886 U CN 201921996886U CN 211232934 U CN211232934 U CN 211232934U
- Authority
- CN
- China
- Prior art keywords
- heat exchanger
- temperature medium
- hazardous waste
- low
- denitration
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Images
Classifications
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E20/00—Combustion technologies with mitigation potential
- Y02E20/30—Technologies for a more efficient combustion or heat usage
Landscapes
- Treating Waste Gases (AREA)
- Chimneys And Flues (AREA)
Abstract
The utility model relates to a hazardous waste burns system component, the hazardous waste burns system and uses energy-conserving denitrification facility specifically says so. It includes steam heat exchanger, denitration tower, draught fan and chimney. The heat exchanger is characterized by also comprising a first heat exchanger and a second heat exchanger. The low-temperature medium outlet of the first heat exchanger is connected with the low-temperature medium inlet of the second heat exchanger, the low-temperature medium outlet of the second heat exchanger is connected with the low-temperature medium inlet of the steam heat exchanger, the low-temperature medium outlet of the steam heat exchanger is connected with the air inlet of the denitration tower, the air outlet of the denitration tower is connected with the high-temperature medium inlet of the second heat exchanger, the high-temperature medium outlet of the second heat exchanger is connected with the chimney through a pipeline, and the induced draft fan is connected in series on the section of pipeline between the second heat exchanger and the chimney. The denitration device consumes less energy, has lower operation cost and reaches the standard of smoke emission.
Description
Technical Field
The utility model relates to a hazardous waste burns system component, the hazardous waste burns system and uses energy-conserving denitrification facility specifically says so.
Background
At present, the denitration device of the conventional hazardous waste incineration system is shown in fig. 1. It includes steam heat exchanger 1, combustion chamber 2, denitration tower 3, draught fan 4 and chimney 5. The outlet of the cold medium of the steam heat exchanger 1 is connected with the inlet of the combustion chamber 2 in a gas phase mode, the gas outlet of the combustion chamber 2 is in butt joint with the denitration tower 3, the denitration tower 3 is connected with the chimney 5 through a pipeline, and the induced draft fan 4 is connected in series on the section of pipeline between the denitration tower 3 and the chimney 5. When the steam heat exchanger is used, the induced draft fan 4 and the combustion chamber 2 are started, and high-temperature steam is sent into a steam port of the steam heat exchanger 1. The flue gas (the temperature is about 70 ℃) to be denitrated is sent into the steam heat exchanger 1 from the low-temperature medium inlet of the steam heat exchanger 1, and under the action of the induced draft fan 4, the flue gas is exhausted into the atmosphere through the chimney 5 after sequentially passing through the steam heat exchanger 1, the combustion chamber 2, the denitration tower 3 and the induced draft fan 4. The flue gas forms the heat exchange with high-temperature steam when passing through steam heat exchanger 1, is heated to about 140 ℃, and the flue gas is when passing through combustion chamber 2, and the natural gas that is burnt is about 200 ℃, and denitration is accomplished to the flue gas of about 200 ℃ when passing through denitration tower 3. When the denitration device is used, the temperature of flue gas is increased by about 70 ℃ through steam firstly, and then is increased by about 60 ℃ through natural gas combustion heating, so that the consumption of the steam and the natural gas is high, the consumed energy is more, and the operation cost is high. Moreover, natural gas produces SO when combusted2And harmful gases such as CO and the like, so that the smoke emission does not reach the standard.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide an energy-conserving denitrification facility is used to hazardous waste burns system, and the energy that adopts this denitrification facility to consume is less, and the running cost is lower, and the fume emission is up to standard.
In order to solve the problems, the following technical scheme is provided:
the utility model discloses a dangerous waste incineration system includes steam heat exchanger, denitration tower, draught fan and chimney with energy-conserving denitrification facility. The heat exchanger is characterized by also comprising a first heat exchanger and a second heat exchanger. The high temperature medium import of first heat exchanger is used for linking to each other with the bag collector of hazardous waste incineration system, the high temperature medium export of first heat exchanger is used for linking to each other with the flue gas deacidification tower of hazardous waste incineration system, the low temperature medium export of first heat exchanger links to each other with the low temperature medium import of second heat exchanger, the low temperature medium export of second heat exchanger links to each other with steam heat exchanger's low temperature medium import, steam heat exchanger's low temperature medium export links to each other with the air inlet of denitrating tower, the gas outlet of denitrating tower links to each other with the high temperature medium import of second heat exchanger, the high temperature medium export of second heat exchanger passes through the pipeline and links to each other with the chimney, just the draught fan is established ties on that section pipeline between.
Wherein, the denitration tower is an SCR denitration tower.
By adopting the scheme, the method has the following advantages:
because the utility model discloses a dangerous waste incineration system is with energy-conserving denitrification facility still includes first heat exchanger and second heat exchanger, the high temperature medium import of first heat exchanger is used for linking to each other with dangerous waste incineration system's bag collector, the high temperature medium export of first heat exchanger is used for linking to each other with dangerous waste incineration system's flue gas deacidification tower, the low temperature medium export of first heat exchanger links to each other with the low temperature medium import of second heat exchanger, the low temperature medium export of second heat exchanger links to each other with steam heat exchanger's low temperature medium import, steam heat exchanger's low temperature medium export links to each other with the air inlet of denitration tower, the gas outlet of denitration tower links to each other with the high temperature medium import of second heat exchanger, the high temperature medium export of second heat exchanger links to each other through pipeline and chimney, the draught fan is established ties on that section pipeline between second. The energy-saving denitration device utilizes the high-temperature flue gas of the hazardous waste incineration system to heat the flue gas to be denitrated to about 130 ℃, which is beneficial to the denitrationThe flue gas before denitration is heated to about 160 ℃ by the denitrated flue gas, the flue gas to be denitrated is heated to about 200 ℃ by steam, the high temperature of the extra steam stripping is only about 40 ℃, and compared with the prior art that the flue gas is heated to about 200 ℃ from 70 ℃ by extra energy, the method greatly reduces energy consumption and reduces operation cost. Moreover, natural gas does not need to be combusted for heating, thereby avoiding the smoke from containing a large amount of SO2And harmful gases such as CO and the like, and the smoke emission always reaches the emission standard.
Drawings
FIG. 1 is a schematic view of a denitration apparatus of a hazardous waste incineration system in the background art;
FIG. 2 is the utility model discloses a hazardous waste burns system with energy-conserving denitrification facility's schematic structure.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in figure 2, the utility model discloses a dangerous waste incineration system is with energy-conserving denitrification facility includes steam heat exchanger 1, denitration tower 3, draught fan 4, chimney 5, first heat exchanger 6 and second heat exchanger 7. The denitration tower 3 is an SCR denitration tower 3. The high temperature medium import of first heat exchanger 6 is used for linking to each other with the bag collector of hazardous waste incineration system, the high temperature medium export of first heat exchanger 6 is used for linking to each other with the flue gas deacidification tower of hazardous waste incineration system, the low temperature medium export of first heat exchanger 6 links to each other with the low temperature medium import of second heat exchanger 7, the low temperature medium export of second heat exchanger 7 links to each other with the low temperature medium import of steam heat exchanger 1, the low temperature medium export of steam heat exchanger 1 links to each other with the air inlet of denitration tower 3, the gas outlet of denitration tower 3 links to each other with the high temperature medium import of second heat exchanger 7, the high temperature medium export of second heat exchanger 7 passes through the pipeline and links to each other with chimney 5, just draught fan 4 establishes ties on that section pipeline between second heat exchanger 7 and chimney 5.
During the use, install this denitrification facility in the hazardous waste system of burning, link to each other the high temperature medium import of first heat exchanger 6 with the bag collector of hazardous waste system of burning, the high temperature medium export of first heat exchanger 6 links to each other with the flue gas deacidification tower of hazardous waste system of burning, and the steam inlet of steam heat exchanger 1 links to each other with external steam generator. During the operation, start draught fan 4, the flue gas temperature of treating the denitration is about 70 ℃ and enters into first heat exchanger 6 from the low temperature medium of first heat exchanger 6 earlier, carries out the heat exchange with the high temperature flue gas that comes from among the hazardous waste incineration system bag collector, and the temperature of treating the denitration flue gas rises to about 130 ℃. Then, the flue gas to be denitrated at about 130 ℃ enters the second heat exchanger 7, and exchanges heat with the denitrated high-temperature flue gas, and the temperature of the flue gas to be denitrated rises to about 160 ℃. Then, the flue gas to be denitrated with the temperature of about 160 ℃ enters the steam heat exchanger 1 to exchange heat with high-temperature steam, and the temperature of the flue gas to be denitrated rises to about 200 ℃. And then, the flue gas to be denitrated at about 200 ℃ enters a denitration tower 3 for denitration, and the temperature is reduced to about 190 ℃. And then, the denitrated flue gas at about 190 ℃ enters a second heat exchanger 7 to exchange heat with the flue gas to be denitrated, so that waste heat recovery is realized. And finally, the denitrated flue gas enters a chimney 5 under the action of an induced draft fan 4 and is discharged.
Claims (2)
1. An energy-saving denitration device for a hazardous waste incineration system comprises a steam heat exchanger (1), a denitration tower (3), an induced draft fan (4) and a chimney (5); the device is characterized by also comprising a first heat exchanger (6) and a second heat exchanger (7); the high-temperature medium inlet of the first heat exchanger (6) is connected with a bag type dust collector of a hazardous waste incineration system, the high-temperature medium outlet of the first heat exchanger (6) is connected with a flue gas deacidification tower of the hazardous waste incineration system, the low-temperature medium outlet of the first heat exchanger (6) is connected with the low-temperature medium inlet of the second heat exchanger (7), the low-temperature medium outlet of the second heat exchanger (7) is connected with the low-temperature medium inlet of the steam heat exchanger (1), the low-temperature medium outlet of the steam heat exchanger (1) is connected with the air inlet of the denitration tower (3), the air outlet of the denitration tower (3) is connected with the high-temperature medium inlet of the second heat exchanger (7), and the high-temperature medium outlet of the second heat exchanger (7) is connected with the chimney (5) through a pipeline, and the induced draft fan (4) is connected in series on the section of pipeline between the second heat exchanger (7) and the chimney (5).
2. The energy-saving denitration device for a hazardous waste incineration system according to claim 1, characterized in that the denitration tower (3) is an SCR denitration tower (3).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921996886.4U CN211232934U (en) | 2019-11-19 | 2019-11-19 | Energy-saving denitration device for hazardous waste incineration system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921996886.4U CN211232934U (en) | 2019-11-19 | 2019-11-19 | Energy-saving denitration device for hazardous waste incineration system |
Publications (1)
Publication Number | Publication Date |
---|---|
CN211232934U true CN211232934U (en) | 2020-08-11 |
Family
ID=71917469
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201921996886.4U Active CN211232934U (en) | 2019-11-19 | 2019-11-19 | Energy-saving denitration device for hazardous waste incineration system |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN211232934U (en) |
-
2019
- 2019-11-19 CN CN201921996886.4U patent/CN211232934U/en active Active
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN107014217B (en) | Coke oven gas utilization and flue gas treatment system of coking plant and treatment method thereof | |
CN208372813U (en) | Smoke processing system for waste incineration combined power generation plant | |
CN110848726A (en) | Energy-saving denitration device for hazardous waste incineration system | |
CN211232934U (en) | Energy-saving denitration device for hazardous waste incineration system | |
CN202692019U (en) | Flue gas waste heat recycling system of steam boiler | |
CN202125937U (en) | System for comprehensively recycling boiler energy in tobacco industry | |
CN204693457U (en) | A kind of boiler smoke cyclic utilization system | |
CN208687738U (en) | A kind of power generation by waste combustion system | |
CN202598547U (en) | Waste heat recovering regenerative furnace | |
CN203082895U (en) | Yellow phosphorus off gas recycling system | |
CN215112694U (en) | Full-load denitration system of circulating fluidized bed boiler based on biomass fuel | |
CN213687922U (en) | Cascade utilization system for flue gas waste heat of alkali furnace | |
CN214581016U (en) | Energy-saving and emission-reducing system for small and medium-sized natural gas boilers | |
CN106016242B (en) | Face the feedwater of stove progressive solution and flue gas realizes startup stage denitration bringing normally into operation device | |
CN211260860U (en) | Dust removal and denitration system for biomass boiler flue gas | |
CN201437987U (en) | Waste gas incinerator | |
CN212841617U (en) | Ultralow discharging equipment of sludge drying incineration tail gas | |
CN210861131U (en) | Purification treatment device for tar tail gas and asphalt smoke | |
CN211847828U (en) | System for treating tail gas containing acetylene carbide slag in process of producing acetylene by calcium carbide dry method | |
CN113915621A (en) | High-parameter garbage gasification incineration power generation system and operation process thereof | |
CN201973727U (en) | Regenerative furnace | |
CN206347564U (en) | A kind of reduction pollutant discharge of flame heating furnace | |
CN205897184U (en) | A dry -type exhaust gas heat exchanging system for power boiler | |
CN204901733U (en) | Novel composite boiler residual heat from flue gas system | |
CN210568460U (en) | Energy-saving second grade denitration incinerator |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant |