CN103102993A - Non-chilling anti-slagging radiant waste heat boiler and its application - Google Patents

Non-chilling anti-slagging radiant waste heat boiler and its application Download PDF

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CN103102993A
CN103102993A CN2013100549512A CN201310054951A CN103102993A CN 103102993 A CN103102993 A CN 103102993A CN 2013100549512 A CN2013100549512 A CN 2013100549512A CN 201310054951 A CN201310054951 A CN 201310054951A CN 103102993 A CN103102993 A CN 103102993A
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gas
water
slagging
waste heat
heat boiler
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CN103102993B (en
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葛学利
乌晓江
张建文
张艳伟
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Shanghai Boiler Works Co Ltd
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Shanghai Boiler Works Co Ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E20/00Combustion technologies with mitigation potential
    • Y02E20/16Combined cycle power plant [CCPP], or combined cycle gas turbine [CCGT]
    • Y02E20/18Integrated gasification combined cycle [IGCC], e.g. combined with carbon capture and storage [CCS]
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P20/00Technologies relating to chemical industry
    • Y02P20/10Process efficiency
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P20/00Technologies relating to chemical industry
    • Y02P20/10Process efficiency
    • Y02P20/129Energy recovery, e.g. by cogeneration, H2recovery or pressure recovery turbines

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  • Waste-Gas Treatment And Other Accessory Devices For Furnaces (AREA)

Abstract

The invention discloses a non-chilling anti-slagging radiant waste heat boiler and its application. The non-chilling anti-slagging radiant waste heat boiler is a non-chilling radiant waste heat boiler that can effectively prevent a heating surface from slagging and efficiently trap ash particles. The pressure shell inner wall of the radiant waste heat boiler adopts a refractory and heat insulation material as a liner, thus effectively simplifying the device structure. A gas protection apparatus is arranged in an easy slagging area on a high temperature heating surface. The gas protection apparatus has a sleeve structure, a local gas/vapor film protection area can form on the heating surface to cool the molten ash particles carried in high temperature gas and prevent them from hitting against the heating surface to undergo slagging. Meanwhile, due to the employment of local gas/vapor film protection, compared with a chilling structure, the radiation heat transfer section is long, and the heat transfer efficiency is high. The lower end of a water cooled wall is a flaring structure, and by reducing the gas flow velocity and designing a steering structure, the trapping rate of ash particles in the gas can be enhanced. The radiant waste heat boiler disclosed in the invention is applicable to recovery of high temperature synthesis gas sensible heat in a coal gasification process.

Description

A kind of non-Quench Anti-slagging radiation waste heat boiler and application thereof
Technical field
The present invention relates to device and industrial application thereof that a kind of high-temperature gas sensible heat that is applied to produce after carbonaceous fuel gasifying or burning reclaims, relate in particular to a kind of retrieving arrangement of vapourizing furnace outlet synthetic gas sensible heat.
Background technology
Integrated gasification combined cycle plants (Integrated Coal Gasification Combined Cycle, be called for short IGCC) be one of cutting edge technology of current global clean energy utilization, compare with common coal fired power generation technology, it is advantageous that and to utilize more efficiently coal resources, and greatly reduce the discharging of burning pollutant.There is respectively the IGCC power station of 250MW and 300MW to put into operation in Holland and Spain.Therefore technique grasps efficient clean utilization important in inhibiting to the primary energy source of China fully, in the IGCC system, one of gordian technique is coal dust pressurized gasification technology, adopt waste heat boiler can make the IGCC efficiency of plant improve approximately 4~5 percentage points to the sensible heat recovery of high-temperature synthesis gas, be conducive to energy-saving and emission-reduction.Waste heat boiler comprises radiation waste heat boiler and convection current exhaust-heat boiler two portions.
In order to improve efficiency of carbon conversion, reduce the cost of producing apparatus, vapourizing furnace generally adopts the mode of high-temperature pressurizing to move.Temperature of reaction is the scope of 1000 ℃~1600 ℃, and pressure is between 1.0MPa~10MPa.At present, the type of cooling of industrial high-temperature gas generally adopts Quench and two kinds of forms of radiation waste heat boiler.But the mode of Quench will be used a large amount of cold air/liquid, and this just increases construction and the running cost of equipment.Particularly use liquid to carry out Quench, can reduce greatly quality and the system efficiency of synthetic gas.The radiation waste heat boiler is the cooling best mode of high-temperature gas in the IGCC power station.Can be in the situation that do not reduce the synthetic gas quality sensible heat of high-temperature gas reclaimed.
The problem that mainly exists of the industrial radiation waste heat boiler that uses is serious as Boiler Heating Surfaces, dust stratification now.Former because the molten state soot particle that carries in gas bonds on heating surface, the exchange capability of heat of reduction heating surface forms stifled slag when serious, cause operational trouble.Therefore, design and a kind ofly can effectively prevent slagging scorification on heating surface, radiation waste heat boiler simple in structure, great industrial application meaning will be arranged, can effectively promote the development of the Coal Chemical Industry industries such as IGCC.
Summary of the invention
Technical problem to be solved by this invention is the radiation waste heat boiler that prevents the slagging scorification on heating surface of radiation waste heat boiler; effectively reclaim sensible heat in the situation that do not reduce the synthetic gas quality; to satisfy modern industry to the demand of waste heat recovery, can be applied to the protection of other structure formation waste heat boiler heating surfaces simultaneously.
In order to address the above problem, the invention provides a kind of non-Quench Anti-slagging radiation waste heat boiler, it is characterized in that, comprise that inwall is provided with the pressure housing of lining, the top of pressure housing is provided with the High Temperature Gas gas feed, and the side is provided with the High Temperature Gas outlet, and the bottom is provided with slag bath, one side of slag bath is provided with the slag bath drain port, and the bottom of slag bath is provided with slag-drip opening; The pressure housing inner top is provided with the nitrogen protection chamber, the indoor protection gas header that is provided with of nitrogen protection; Be provided with water wall tube in pressure housing, be provided with gas baffle between pressure housing and water wall tube, gas baffle is positioned at protection gas header below, High Temperature Gas outlet top, and gas baffle is provided with the water coolant upper collecting chamber with protecting between the gas header; The lower end of water wall tube is provided with reversal chamber; Pressure housing is provided with the import of protection gas, entrance of cooling water, cooling water outlet and nitrogen inflation inlet, the import of protection gas connects the indoor protection gas header of nitrogen protection, entrance of cooling water connects the water coolant upper collecting chamber, cooling water outlet connects the water coolant lower header, and the nitrogen inflation inlet connects the nitrogen protection chamber; Water wall tube comprises equally distributed water cooling tube one and more than one water cooling tube two, and water cooling tube two is symmetrical in water wall tube, and the upper end of water cooling tube one, water cooling tube two is connected with the water coolant upper collecting chamber, and the lower end is connected with the water coolant lower header; Water wall tube is provided with one deck gas shield device layer at least, and the gas shield device layer comprises the gas shield device of being located on every water cooling tube two; The water wall tube top is provided with inlet plenum; The top of gas baffle, water wall and pressure housing inner top form the nitrogen protection chamber of sealing.
Preferably, described lining is fiery lining in refractory heat-insulating.
Preferably, the oval or lower large little pyramidal structure of the contour structures of described inlet plenum for upwards throwing.
Preferably, the lower end of described water wall tube is provided with flared section, and the angle of flared section and described water wall tube vertical axis is 15 °~60 °.
Preferably, described gas shield device comprises built-in gas/steam pipe, and expose from water cooling tube two upper end of built-in gas/steam pipe, is communicated with protection gas header, and the lower end of built-in gas/steam pipe is blind end; One side of built-in gas/steam pipe is provided with more than one gas shield device unit, and the gas shield device unit exposes from water cooling tube two, is positioned at the inboard of water wall tube.
Further, between described water cooling tube two and built-in gas/steam pipe, the area of the area of cross section and water cooling tube one interior cross section is identical.
Further, described gas shield device unit is bulge-structure, and this bulge-structure is provided with the outlet of at least 3 protection gas.
Further, described protection gas outlet is [0 °, 90 °] with the scope of the horizontal sextant angle of described built-in gas/steam pipe horizontal axis, protect the scope of the vertical angle of gas outlet and built-in gas/steam pipe vertical axis to be (0 °, 90 °].
Further, described gas shield device is 3~50 along the horizontal plane of the first layer gas shield unit on the pressure housing circumferential direction apart from synthetic gas inlet plenum upper end distance with the ratio of the diameter of High Temperature Gas gas feed.
Preferably, described water wall tube is provided with at least 4 gas shield devices.
Preferably, described water wall tube is two-sided light leak membrane wall.
Preferably, the thickness as outside of described pneumatic outlet baffle plate is larger than inboard thickness, and upside is horizontal plane, and downside is the inclined-plane, and the angle of this inclined-plane and boiler vertical axis is 45 °~90 °.
The present invention also provides the application of above-mentioned non-Quench Anti-slagging radiation waste heat boiler, it is characterized in that, temperature after gasification is that the raw gas of 1300~1600 ℃ is entered by the High Temperature Gas gas feed of inlet plenum, the lime-ash that contains molten state in gas, form with jet under the rolling action of gas enters by heat exchange in the space in water wall tube, the annular space that enters in pressure housing and water wall tube through reversal chamber continues to enter follow-up workshop section by the High Temperature Gas outlet after heat exchange, the lime-ash that captures in heat transfer process drops to slag bath, discharges through slag-drip opening; Nitrogen enters the nitrogen protection chamber by the nitrogen inflation inlet, keeps the pressure equilibrium of main air stream in the pressure of nitrogen protection chamber and stove, prevents that water wall tube from producing distortion because of pressure; Protection gas is entered by protection gas import, enters the main air stream zone by the gas shield unit, forms the local gas protective belt on water wall tube, by air impingement with coolingly prevent that the molten state lime-ash from touching on the heating surface of water wall tube; Water coolant enters the water coolant upper collecting chamber by entrance of cooling water, enters the water coolant lower header after the water wall tube heating, enters convection current exhaust-heat boiler after collecting.
Preferably, the pressure of described protection gas is higher than furnace pressure 0.1~3.0MPa, and temperature is higher than 20~200 ℃ of process gas dew point temperature value, and medium is through the process gas after the cooling dedusting, and the needed amount of protection gas is 1~30% of mainstream gas total amount.
Preferably, the pressure of described water coolant is 4.0~15.0MPa, and state is unsaturated water.
Beneficial effect of the present invention:
1. has the slagging prevention capacity that other radiation waste heat boilers are not had.The gas shield device that adopts at heating surface can effectively form local gas/steam film district, cooling molten state soot particle effectively, and hinder it and strike on heating surface, the protection heating surface;
2. gas consumption is few, and running cost is low.Adopt the method for local gas/steam film protection to lack than the method gas consumption that adopts Quench;
3. the lime-ash capturing efficiency is high.The present invention adopts double-deck gas passage nearly to increase the stroke of gas of a times and the residence time of gas on identical axial distance, improves the catch rate of lime-ash.The flaring structure of water wall can effectively reduce the speed of air-flow, reduces gas to the carrying capacity of soot particle, and the design of steering structure improves separating of gas and soot particle;
4. simple in structure, easy to maintenance.The present invention effectively simplifies the structure of radiation waste pot at the inboard refractory materials that adopts of housing, reduces device fabrication, operation and maintenance cost;
5. gas shield device is modular design, and repair and replacement are convenient;
6. heat exchange efficiency is high.As everyone knows, radiation heat transfer is in the situation that gaseous constituent is definite, and temperature is the determinative that affects exchange capability of heat.The present invention can effectively prevent the fouling and slagging on heating surface in the situation that reduce not significantly gas temperature, guarantees that gas is at the exchange capability of heat of high temperature section.And the two-sided light leak water wall of circular channel increased again heating surface area, improves a lot than single face water wall exchange capability of heat.Therefore, the exchange capability of heat of described waste heat boiler is greatly improved than other existing form exchange capability of heat.
Description of drawings
Fig. 1 is the structural representation of non-Quench Anti-slagging radiation waste heat boiler provided by the invention;
Fig. 2 is the sectional view of A-A face in Fig. 1;
Fig. 3 is the sectional view in main air stream district in Fig. 2;
Fig. 4 is the sectional view that is provided with water cooling tube two vertical directions of gas shield device;
Fig. 5 is the schematic diagram that is provided with water cooling tube two cross sections of gas shield device.
In figure:
The 1-pressure housing; The 2-lining; The 3-inlet plenum;
4-water cooling tube one; The 5-water wall tube; The 6-flared section;
The 7-gas baffle; The 8-slag bath; Built-in gas/the steam pipe of 9-;
10-gas shield unit; 11-nitrogen protection chamber; 12-protection gas header;
13-nitrogen inflation inlet; 14-water coolant lower header; The import of 15-protection gas;
The 16-entrance of cooling water; 17-water coolant upper collecting chamber; The 18-cooling water outlet;
19-slag bath water-in; 20-slag bath drain port; The 21-slag-drip opening;
The gas feed of 22-High Temperature Gas; The 23-reversal chamber; The outlet of 24-High Temperature Gas;
The outlet of 25-protection gas; 26-water cooling tube two; 27-lining back up pad.
Embodiment
For the present invention is become apparent, hereby with preferred embodiment, and coordinate accompanying drawing to be described in detail below.
Embodiment
As shown in Fig. 1-5, be a kind of non-Quench Anti-slagging radiation waste heat boiler provided by the invention, comprise that inwall posts the cylindrical pressure housing 1 of lining 2, lining 2 adopts fiery lining in refractory heat-insulating, and the bottom adopts the lining back up pad 27 that is fixed on pressure housing 1 inwall to support.The top of pressure housing 1 is provided with High Temperature Gas gas feed 22, and the side is provided with High Temperature Gas outlet 24, and the bottom is provided with slag bath 8, and a side of slag bath 8 is provided with slag bath drain port 20, and the bottom of slag bath 8 is provided with slag-drip opening 21.Pressure housing 1 inner top is provided with nitrogen protection chamber 11, is provided with protection gas header 12 in nitrogen protection chamber 11.Be provided with water wall tube 5 in pressure housing 1, be provided with annular gas baffle plate 7 between pressure housing 1 and water wall tube 5, gas baffle 7 and pressure housing 1 coaxial arrangement.Gas baffle 7 is positioned at protection gas header 12 belows, High Temperature Gas outlet top.The thickness as outside of gas baffle 7 is larger than inboard thickness, and upside is horizontal plane, and downside is the inclined-plane, and its cross section is up-small and down-big pyramidal structure, and the angle δ of this inclined-plane and boiler vertical axis is 60 °.Be provided with water coolant upper collecting chamber 17 between gas baffle 7 and protection gas header 12; The lower end of water wall tube 5 is provided with reversal chamber 23.The both sides of pressure housing 1 are respectively equipped with protection gas import 15, entrance of cooling water 16, cooling water outlet 18; protection gas import 15 connects the protection gas header 12 in nitrogen protection chamber 11; entrance of cooling water 16 connects water coolant upper collecting chamber 17; cooling water outlet 18 connects water coolant lower header 14; wherein be provided with nitrogen inflation inlet 13 between the protection gas import 15 of a side and entrance of cooling water 16, nitrogen inflation inlet 13 is communicated with nitrogen protection chamber 11.Water wall tube 5 adopts two-sided light leak membrane wall, be arranged in annular by 16 water cooling tubes 1 and 8 water cooling tubes 2 26, connect to form by the water-cooled sheet, water cooling tube 2 26 is symmetrical in water wall tube 5, namely between every two water cooling tubes 2 26, two water cooling tubes 1 is arranged.The upper end of water cooling tube 1, water cooling tube 2 26 is connected with water coolant upper collecting chamber 17, and the lower end is connected with water coolant lower header 14.Between water cooling tube 2 26 and built-in gas/steam pipe 9, the area of the area of cross section and water cooling tube one 4 interior cross sections is identical.Water wall tube 5 is provided with one deck gas shield device layer, and the gas shield device layer comprises the gas shield device of being located on every water cooling tube 2 26.Described gas shield device comprises built-in gas/steam pipe 9, and expose from water cooling tube 2 26 upper end of built-in gas/steam pipe 9, is communicated with protection gas header 12, and the lower end of built-in gas/steam pipe 9 is blind end; One side of built-in gas/steam pipe 9 is provided with 2 gas shield device unit 10 of longitudinal arrangement, and gas shield device unit 10 exposes from water cooling tube 2 26, is positioned at the inboard of water wall tube 5.Gas shield device unit 10 is bulge-structure, has 3 protection gas outlet 25 on this bulge-structure.The outlet 25 of protection gas is respectively 0 °, 45 °, 90 ° with the horizontal sextant angle α of built-in gas/steam pipe 9 horizontal axis, and the outlet 25 of protection gas is respectively 0 °, 45 °, 90 ° with the vertical angle β of built-in gas/steam pipe 9 vertical axis.Water wall tube 5 tops are provided with inlet plenum 3, the ellipsoidal structure of inlet plenum 3 for upwards throwing, the curvilinear structures of employing flaring, the dead in line of axis and radiation waste heat boiler.The top of gas baffle 7, water wall 5 and pressure housing 1 inner top forms the nitrogen protection chamber 11 of sealing.The lower end of water wall tube 5 is flared section 6 structures, and flared section 6 is 30 ° with the angle γ of water wall tube 5 vertical axis.Gas shield device is 7 along the horizontal plane of the first layer gas shield unit 10 on pressure housing 1 circumferential direction apart from synthetic gas inlet plenum 3 upper end distance H with the ratio of the diameter D of High Temperature Gas gas feed 22.During installation, first gas shield device is machined, be about to built-in gas/steam pipe 9 and pack in a section of water cooling tube 2 26, then be welded to the vacancy of the water cooling tube 2 26 of water wall tube 5.
When above-mentioned non-Quench Anti-slagging radiation waste heat kettleman does, the raw gas that with the temperature after gasification is 1300~1600 ℃ is entered by the High Temperature Gas gas feed 22 of inlet plenum 3, the lime-ash that contains molten state in gas, form with jet under the rolling action of gas enters by heat exchange in the space in water wall tube 5, the annular space that enters in pressure housing 1 and water wall tube 5 through reversal chamber 23 continues to enter follow-up workshop section by High Temperature Gas outlet 24 after heat exchange, the lime-ash that captures in heat transfer process drops to slag bath 8, discharges through slag-drip opening 21; Nitrogen enters nitrogen protection chamber 11 by nitrogen inflation inlet 13, keeps the pressure equilibrium of main air stream in the pressure of nitrogen protection chamber 11 and stove, prevents that water wall tube 5 from producing distortion because of pressure; Protection gas is entered by protection gas import 15, enters the main air stream zone by gas shield unit 25, forms the local gas protective belt on water wall tube 5, by air impingement with coolingly prevent that the molten state lime-ash from touching on the heating surface of water wall tube 5; Water coolant enters water coolant upper collecting chamber 17 by entrance of cooling water 18, enters water coolant lower header 14 after water wall tube 5 heating, enters convection current exhaust-heat boiler after collecting.The pressure of protection gas is higher than furnace pressure 1.0MPa, and temperature is higher than 100 ℃ of process gas dew point temperature value, and medium is through the process gas after the cooling dedusting, and the needed amount of protection gas is 15% of mainstream gas total amount.The pressure of water coolant is 8.0MPa, and state is unsaturated water.
The arrangement form of water wall tube 5 heating surfaces is regular polygon or circle, and the waste heat boiler coaxial arrangement, and gas shield device circumferentially is arranged symmetrically with along heating surface, according to the number of selecting protector of synthetic tolerance, generally greater than 4.Installation site on axis is for being 10%-50% of heating surface height from the distance of inlet plenum 3, forms local air film protective belt effectively at the heating surface of water wall tube 5.The number of gas shield device unit 10 perforate on heating surface is preferably opened 5 holes greater than 2.The flared section 6 of heating surface lower end is the flaring structure, expanded-angle γ=45 °.Lining 2 and water wall tube 5 form the gas passage of annular, as shown in Figure 2.During the boiler running, form main air stream in gas passage, gas shield device makes the local air film of generation protective belt in main air stream, as shown in Figure 3.

Claims (15)

1. non-Quench Anti-slagging radiation waste heat boiler, it is characterized in that, comprise that inwall is provided with the pressure housing of lining (2) (1), the top of pressure housing (1) is provided with High Temperature Gas gas feed (22), the side is provided with High Temperature Gas outlet (24), the bottom is provided with slag bath (8), and a side of slag bath (8) is provided with slag bath drain port (20), and the bottom of slag bath (8) is provided with slag-drip opening (21); Pressure housing (1) inner top is provided with nitrogen protection chamber (11), is provided with protection gas header (12) in nitrogen protection chamber (11); Be provided with water wall tube (5) in pressure housing (1), be provided with gas baffle (7) between pressure housing (1) and water wall tube (5), gas baffle (7) is positioned at protection gas header (12) below, High Temperature Gas outlet (24) top, and gas baffle (7) is provided with water coolant upper collecting chamber (17) with protecting between gas header (12); The lower end of water wall tube (5) is provided with reversal chamber (23); Pressure housing (1) is provided with protection gas import (15), entrance of cooling water (16), cooling water outlet (18) and nitrogen inflation inlet (13), protection gas import (15) connects the protection gas header (12) in nitrogen protection chamber (11), entrance of cooling water (16) connects water coolant upper collecting chamber (17), cooling water outlet (18) connects water coolant lower header (14), and nitrogen inflation inlet (13) connects nitrogen protection chamber (11); Water wall tube (5) comprises equally distributed water cooling tube one (4) and more than one water cooling tube two (26), water cooling tube two (26) is symmetrical in water wall tube (5), the upper end of water cooling tube one (4), water cooling tube two (26) is connected with water coolant upper collecting chamber (17), and the lower end is connected with water coolant lower header (14); Water wall tube (5) is provided with one deck gas shield device layer at least, and the gas shield device layer comprises the gas shield device of being located on every water cooling tube two (26); Water wall tube (5) top is provided with inlet plenum (3); The top of gas baffle (7), water wall (5) and pressure housing (1) inner top form the nitrogen protection chamber (11) of sealing.
2. non-Quench Anti-slagging radiation waste heat boiler according to claim 1, is characterized in that, described lining (2) is fiery lining in refractory heat-insulating.
3. non-Quench Anti-slagging radiation waste heat boiler according to claim 1, is characterized in that, the oval or lower large little pyramidal structure of the contour structures of described inlet plenum (3) for upwards throwing.
4. non-Quench Anti-slagging radiation waste heat boiler according to claim 1, it is characterized in that, the lower end of described water wall tube (5) is provided with flared section (6), and flared section (6) is 15 °~60 ° with the angle (γ) of described water wall tube (5) vertical axis.
5. non-Quench Anti-slagging radiation waste heat boiler according to claim 1, it is characterized in that, described gas shield device comprises built-in gas/steam pipe (9), expose from water cooling tube two (26) upper end of built-in gas/steam pipe (9), be communicated with protection gas header (12), the lower end of built-in gas/steam pipe (9) is blind end; One side of built-in gas/steam pipe (9) is provided with more than one gas shield device unit (10), and gas shield device unit (10) exposes from water cooling tube two (26), is positioned at the inboard of water wall tube (5).
6. non-Quench Anti-slagging radiation waste heat boiler according to claim 5, is characterized in that, between described water cooling tube two (26) and built-in gas/steam pipe (9), the area of the area of cross section and water cooling tube one (4) interior cross section is identical.
7. non-Quench Anti-slagging radiation waste heat boiler according to claim 5, is characterized in that, described gas shield device unit (10) is bulge-structure, and this bulge-structure is provided with at least 3 protection gas outlets (25).
8. non-Quench Anti-slagging radiation waste heat boiler according to claim 7; it is characterized in that; described protection gas outlet (25) is [0 ° with the scope of the horizontal sextant angle (α) of described built-in gas/steam pipe (9) horizontal axis; 90 °]; protect the scope of the vertical angle (β) of gas outlet (25) and built-in gas/steam pipe (9) vertical axis to be (0 °, 90 °].
9. non-Quench Anti-slagging radiation waste heat boiler according to claim 5; it is characterized in that, described gas shield device is 3~50 along the horizontal plane of the first layer gas shield unit (10) on pressure housing (1) circumferential direction apart from synthetic gas inlet plenum (3) upper end distance (H) with the ratio of the diameter (D) of High Temperature Gas gas feed (22).
10. non-Quench Anti-slagging radiation waste heat boiler according to claim 1, is characterized in that, described water wall tube (5) is provided with at least 4 gas shield devices (4).
11. non-Quench Anti-slagging radiation waste heat boiler according to claim 1 is characterized in that described water wall tube (5) is two-sided light leak membrane wall.
12. non-Quench Anti-slagging radiation waste heat boiler according to claim 1, it is characterized in that, the thickness as outside of described pneumatic outlet baffle plate (7) is larger than inboard thickness, upside is horizontal plane, downside is the inclined-plane, and the angle (δ) of this inclined-plane and boiler vertical axis is 45 °~90 °.
13. the application of the described non-Quench Anti-slagging radiation waste heat boiler of any one in claim 5-9, it is characterized in that, temperature after gasification is that the raw gas of 1300~1600 ℃ is entered by the High Temperature Gas gas feed (22) of inlet plenum (3), the lime-ash that contains molten state in gas, form with jet under the rolling action of gas enters by heat exchange in the space in water wall tube (5), the annular space that enters in pressure housing (1) and water wall tube (5) through reversal chamber (23) continues to enter follow-up workshop section by High Temperature Gas outlet (24) after heat exchange, the lime-ash that captures in heat transfer process drops to slag bath (8), discharge through slag-drip opening (21), nitrogen enters nitrogen protection chamber (11) by nitrogen inflation inlet (13), keeps the pressure equilibrium of pressure and the interior main air stream of stove of nitrogen protection chamber (11), prevents that water wall tube (5) from producing distortion because of pressure, protection gas is entered by protection gas import (15), enter the main air stream zone by gas shield unit (25), in the upper local gas protective belt of forming of water wall tube (5), by air impingement with coolingly prevent that the molten state lime-ash from touching on the heating surface of water wall tube (5), water coolant enters water coolant upper collecting chamber (17) by entrance of cooling water (18), enters water coolant lower header (14) after water wall tube (5) heating, enters convection current exhaust-heat boiler after collecting.
14. the application of non-Quench Anti-slagging radiation waste heat boiler according to claim 13; it is characterized in that; the pressure of described protection gas is higher than furnace pressure 0.1~3.0MPa; temperature is higher than 20~200 ℃ of process gas dew point temperature value; medium is through the process gas after the cooling dedusting, and the needed amount of protection gas is 1~30% of mainstream gas total amount.
15. the application of non-Quench Anti-slagging radiation waste heat boiler according to claim 13 is characterized in that the pressure of described water coolant is 4.0~15.0MPa, state is unsaturated water.
CN201310054951.2A 2013-02-20 2013-02-20 Non-chilling anti-slagging radiant waste heat boiler and its application Active CN103102993B (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105202535A (en) * 2015-10-15 2015-12-30 上海锅炉厂有限公司 Combustion device suitable for fuels with high alkali metal content
CN107686748A (en) * 2016-08-05 2018-02-13 清华大学山西清洁能源研究院 Gasification furnace
CN108473896A (en) * 2015-12-16 2018-08-31 气体产品与化学公司 Gasification system and technique
CN113834234A (en) * 2021-09-30 2021-12-24 东方电气集团科学技术研究院有限公司 Low temperature device based on preparation of nitrogen fixation cooling medium

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CN202092088U (en) * 2010-12-24 2011-12-28 上海锅炉厂有限公司 Novel radiation type waste heat boiler
CN203144357U (en) * 2013-02-20 2013-08-21 上海锅炉厂有限公司 Non-chilling slag-bonding prevention radiation waste heat boiler

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CN203144357U (en) * 2013-02-20 2013-08-21 上海锅炉厂有限公司 Non-chilling slag-bonding prevention radiation waste heat boiler

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105202535A (en) * 2015-10-15 2015-12-30 上海锅炉厂有限公司 Combustion device suitable for fuels with high alkali metal content
CN108473896A (en) * 2015-12-16 2018-08-31 气体产品与化学公司 Gasification system and technique
CN108473896B (en) * 2015-12-16 2021-10-15 气体产品与化学公司 Gasification system and process
CN107686748A (en) * 2016-08-05 2018-02-13 清华大学山西清洁能源研究院 Gasification furnace
CN113834234A (en) * 2021-09-30 2021-12-24 东方电气集团科学技术研究院有限公司 Low temperature device based on preparation of nitrogen fixation cooling medium

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