CN201917235U - Sulfidation exhaust steam heat-recovering device - Google Patents
Sulfidation exhaust steam heat-recovering device Download PDFInfo
- Publication number
- CN201917235U CN201917235U CN2011200354972U CN201120035497U CN201917235U CN 201917235 U CN201917235 U CN 201917235U CN 2011200354972 U CN2011200354972 U CN 2011200354972U CN 201120035497 U CN201120035497 U CN 201120035497U CN 201917235 U CN201917235 U CN 201917235U
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- shower nozzle
- exhaust steam
- nozzle
- casing
- shell
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Abstract
The utility model discloses a sulfidation exhaust steam heat-recovering device, which comprises an exhaust steam heat exchanger and a water storage tank, wherein the exhaust steam heat exchanger comprises a casing; a gas emission outlet is arranged at the top end of the casing; an exhaust steam inlet is arranged at the bottom end of the casing; a reserve tank integrally communicated with the casing is arranged at the tail end at the bottom of the casing and connected with the water storage tank through a pipeline; a water distribution device, a film type absorption device and a spraying mixing device are sequentially arranged at the inner chamber of the casing from the top down; the water distribution device is provided with a first nozzle and a second nozzle; the film type absorption device comprises an upper support plate and a lower support plate; filler is arranged between the upper support plate and the lower support plate; through holes are formed on the upper support plate and the lower support plate; the spraying mixing device is an enclosed round pipe nozzle; the first nozzle, the second nozzle and the enclosed round pipe nozzle are all provided with cooling water pipes extending out of the casing; and spouts are distributed on the first nozzle, the second nozzle and the enclosed round pipe nozzle. The sulfidation exhaust steam heat-recovering device has the characteristics of small volume and high heat exchange efficiency, and can fully recover heat in the sulfidation exhaust steam.
Description
Technical field
The utility model relates to a kind of waste-heat recovery device, relates in particular to a kind of sulfuration exhaust steam residual heat recycle device.
Background technology
The tyre production enterprise curing system can produce a large amount of exhaust steam, and exhaust steam contains a large amount of waste heats, and in the existing technology, exhaust steam generally directly is discharged in the atmosphere, and these heats are wasted, and the energy is not fully utilized.
Summary of the invention
Technical problem to be solved in the utility model is: a kind of sulfuration exhaust steam residual heat recycle device is provided, and this device can fully absorb the exhaust steam heat that produces in the curing system.
The technical solution of the utility model is:
A kind of sulfuration exhaust steam residual heat retracting device, comprise exhaust steam heat exchanger and water storage box, described exhaust steam heat exchanger comprises shell, be provided with gas discharge outlet on the shell top, the shell bottom is provided with the exhaust steam inlet, the outer casing bottom end is provided with the storage tank that one communicates, and storage tank is connected with water storage box by pipeline, and the inner chamber of shell is provided with water-distributing device, membrane type absorption plant and jet mixing device from top to bottom successively.
Described water-distributing device is two shower nozzles, is respectively the 1st shower nozzle and the 2nd shower nozzle, and the 1st shower nozzle is positioned at the upper end of the 2nd shower nozzle, and described the 1st shower nozzle is the hemisphere shower nozzle, and described the 2nd shower nozzle is the circular cone shower nozzle; Described jet mixing device is sealing pipe shower nozzle; Described membrane type absorption plant comprises upper supporting plate and lower carrier plate, is filler between upper supporting plate and the lower carrier plate, and upper supporting plate and lower carrier plate are provided with through hole, and the 1st shower nozzle, the 2nd shower nozzle and sealing pipe shower nozzle all are provided with spray orifice and all are provided with the outside that cooling water pipe leads to shell.
Described filler is a stainless steel Pall ring filler.
The nozzle diameter of described the 1st shower nozzle and the 2nd shower nozzle is 10 millimeters, and the through-hole diameter of upper supporting plate and lower carrier plate is 10 millimeters, and the nozzle diameter of sealing pipe shower nozzle is 8 millimeters.
Useful technique effect of the present utility model is: when exhaust steam (comprising on-condensible gas) that vulcanizer produced by the exhaust steam heat exchanger time, the cold water of flowing through with its inner chamber carries out countercurrent flow, form 95~99 ℃ hot water, hot water flow back in the water storage box by pipeline by gravity, unabsorbable incoagulable gas is discharged in the atmosphere, can guarantee the normal pressure emission request of curing system, not have " building the pressure " phenomenon, also can not increase the load of capsule pumped vacuum systems.Cooling water in the utility model is by behind the water-distributing device, comparatively be evenly distributed on the upper bracket plate, flow to the Pall ring filler by the through hole on the upper bracket plate again, by having loose bowels of Pall ring filler, form bigger heat exchange area and carry out abundant heat exchange, finally form hot water with the exhaust steam of flowing through; Injector device is as spraying mixer, the sealing pipe shower nozzle that injector device uses the DN100 pipeline to make, and uniform diameter is 8 millimeters a spray orifice, cooling water and a large amount of abundant mixed heat transfers of exhaust steam can be become hot water rapidly.Therefore, sulfuration exhaust steam residual heat recycle device of the present utility model is by adopting the heat and mass principle, and it is few to have a volume, and the characteristics that heat exchange efficiency is high can fully reclaim the heat in the sulfuration exhaust steam.
Description of drawings
1, Fig. 1 be the utility model exhaust steam heat exchanger and storage tank partly cut open schematic diagram.
2, Fig. 2 be among Fig. 1 C to D to view.
3, Fig. 3 be among Fig. 1 E to view.
4, Fig. 4 is the utility model sulfuration exhaust steam residual heat recycle device schematic diagram.
Among the figure, 1, shell, 2, the 1st shower nozzle, 3, the 2nd shower nozzle, 4, upper supporting plate, 5, filler, 6, lower carrier plate, 7, sealing pipe shower nozzle, 8, storage tank, 9, hot water outlet, 10, the exhaust steam inlet, 11, gas discharge outlet, 12, the 1st cooling water pipe, 13, the 2nd cooling water pipe, 14, the 3rd cooling water pipe, 15, through hole, 16, pipeline, 17, water storage box, 18, the exhaust steam heat exchanger, 19, the curing system hot-water line, 20, cooling tower, 21, refrigeration unit, 22, the thermostatted water system, 23, air-conditioning and send VMC, 24, the curing system condensate pipe, 25, the normal temperature cooling water pipe, 26, cooling water pipe.
The specific embodiment
Describe in detail below in conjunction with accompanying drawing and instantiation.
As shown in Figure 1, a kind of sulfuration heat recovery device comprises exhaust steam heat exchanger 18 and storage tank 8, described exhaust steam heat exchanger 18 comprises shell 1, be provided with gas discharge outlet 11 on shell 1 top, shell 1 bottom is provided with exhaust steam inlet 10, exhaust steam inlet 10 inlets as the curing system exhaust steam.Shell 1 bottom end is provided with the storage tank 8 that one communicates, storage tank 8 is provided with hot water outlet 9, storage tank 8 is connected by pipeline 16 with water storage box 17, the inner chamber of shell 1 is provided with water-distributing device, membrane type absorption plant and jet mixing device from top to bottom successively, described water-distributing device is hemispheric the 1st shower nozzle 2 and cone shape the 2nd shower nozzle 3, the nozzle diameter of the 1st shower nozzle 2 and the 2nd shower nozzle 3 is 10 millimeters, and the 1st shower nozzle 2 is positioned at the upper end of the 2nd shower nozzle 3.Described membrane type absorption plant comprises upper supporting plate 4 and lower carrier plate 6, upper supporting plate 4 and lower carrier plate 6 are the steel plate of 10 millimeters of thickness, it is 10 millimeters through hole that upper supporting plate 4 and lower carrier plate 6 are provided with diameter, be filler 5 between upper supporting plate 4 and the lower carrier plate 6, present embodiment filler 5 adopts DN50 stainless steel Pall ring, the Pall ring filler is to leave the square fenestra of two platoon leaders on the sidewall of external diameter and the pipe that highly equates, one side of the tube wall that is cut open still links to each other with tube wall, opposite side is to the inner chamber bending of pipe, the ligule of stretching in the formation, the side of all ligules is taken mutually at the center of pipe.Pall ring is because the ring wall perforate has improved the utilization rate of managing interior space and pipe internal surface greatly, and gas-flow resistance is little, and liquid distribution is even, has increased gas flux and mass-transfer efficiency.Jet mixing device is DN100 stainless steel sealing pipe shower nozzle 7, and sealing pipe shower nozzle 7 uniform diameters are 8 millimeters hole.The 1st shower nozzle 2 is connected with the 1st cooling water pipe the 12, the 2nd shower nozzle 3 and is connected with the 2nd cooling water pipe 13, and closed circular endless tube 7 is connected with the 3rd cooling water pipe 14, the 1 cooling water pipes the 12, the 2nd cooling water pipe 13 and the 3rd cooling water pipe 14 all leads to the outside of shell 1.Cooling water is evenly distributed on the upper supporting plate 4 by the 1st shower nozzle 2 and the 2nd shower nozzle 3 of water-distributing device, flow to the Pall ring filler by 10 millimeters through hole on the upper supporting plate 4 again, by having loose bowels of Pall ring filler, form bigger heat exchange area and carry out heat exchange, finally form 95~99 ℃ of hot water with the exhaust steam of flowing through; A large amount of cooling waters and exhaust steam mixed heat transfer that sealing pipe shower nozzle 7 will spray can become hot water rapidly.
As shown in Figure 2, present embodiment is installed in exhaust steam heat exchanger 18 on the water storage box 17, water storage box 17 is a 0bar hot water recycling can, the gas discharge outlet 11 of exhaust steam heat exchanger 18 its upper ends communicates with atmosphere, when exhaust steam (comprising on-condensible gas) that vulcanizer produced by exhaust steam heat exchanger 18 time, the cooling water of flowing through with it carries out countercurrent flow, form 95~99 ℃ hot water, hot water flows back to water storage box 17 by gravity, unabsorbable incoagulable gas is discharged in the atmosphere by gas discharge outlet 11, this structure can be guaranteed the normal pressure discharging of curing system fully, does not have " building the pressure " phenomenon, also can not increase the load of capsule pumped vacuum systems.After heat in the exhaust steam was absorbed by cooling water, cooling water converted hot water to, and this hot water can directly participate in heating heating circulation in the winter time, and new wind, idle call heat etc. are sent in the winter heating, the environmental protection that are used for the calendering of plant area of enterprise, moulding, three production areas of sulfuration.This hot water can be used as the thermal source of lithium bromide refrigerator power heat source, air-conditioning secondary backheat in summer.Can pass through heat exchanger in addition, the heating domestic water satisfies that the worker has a bath or other living needses.Hot water can enter recirculating cooling water system after using cooling, and the cooling water of exhaust steam heat exchanger is used as a supplement.
Claims (4)
1. one kind is vulcanized the exhaust steam residual heat retracting device, comprise exhaust steam heat exchanger (18) and water storage box (17), it is characterized in that: described exhaust steam heat exchanger (18) comprises shell (1), be provided with gas discharge outlet (11) on shell (1) top, shell (1) bottom is provided with exhaust steam inlet (10), shell (1) bottom end is provided with the storage tank (8) that one communicates, storage tank (8) is connected with water storage box (17) by pipeline (16), and the inner chamber of shell (1) is provided with water-distributing device, membrane type absorption plant and jet mixing device from top to bottom successively.
2. according to the described a kind of sulfuration exhaust steam residual heat retracting device of claim 1, it is characterized in that: described water-distributing device is two shower nozzles, be respectively the 1st shower nozzle (2) and the 2nd shower nozzle (3), the 1st shower nozzle (2) is positioned at the upper end of the 2nd shower nozzle (3), described the 1st shower nozzle (2) is the hemisphere shower nozzle, and described the 2nd shower nozzle (3) is the circular cone shower nozzle; Described jet mixing device is sealing pipe shower nozzle (7); Described membrane type absorption plant comprises upper supporting plate (4) and lower carrier plate (6), be filler (5) between upper supporting plate (4) and the lower carrier plate (6), upper supporting plate (4) and lower carrier plate (6) are provided with through hole, and the 1st shower nozzle (2), the 2nd shower nozzle (3) and sealing pipe shower nozzle (7) all are provided with spray orifice and all are provided with the outside that cooling water pipe leads to shell (1).
3. according to the described a kind of sulfuration exhaust steam residual heat retracting device of claim 2, it is characterized in that: described filler (5) is a stainless steel Pall ring filler.
4. according to the described a kind of sulfuration exhaust steam residual heat retracting device of claim 3, it is characterized in that: the nozzle diameter of described the 1st shower nozzle (2) and the 2nd shower nozzle (3) is 10 millimeters, the through-hole diameter of described upper supporting plate (4) and lower carrier plate (6) is 10 millimeters, and the nozzle diameter of described sealing pipe shower nozzle (7) is 8 millimeters.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011200354972U CN201917235U (en) | 2011-01-26 | 2011-01-26 | Sulfidation exhaust steam heat-recovering device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2011200354972U CN201917235U (en) | 2011-01-26 | 2011-01-26 | Sulfidation exhaust steam heat-recovering device |
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CN201917235U true CN201917235U (en) | 2011-08-03 |
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CN2011200354972U Expired - Fee Related CN201917235U (en) | 2011-01-26 | 2011-01-26 | Sulfidation exhaust steam heat-recovering device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102116583A (en) * | 2011-01-26 | 2011-07-06 | 吴增伟 | Vulcanizing dead steam waste heat recovery device |
CN111595176A (en) * | 2020-04-08 | 2020-08-28 | 潍坊中创新材料科技有限公司 | Cooling water tower and basalt fiber industrial production line cooling system |
-
2011
- 2011-01-26 CN CN2011200354972U patent/CN201917235U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102116583A (en) * | 2011-01-26 | 2011-07-06 | 吴增伟 | Vulcanizing dead steam waste heat recovery device |
CN111595176A (en) * | 2020-04-08 | 2020-08-28 | 潍坊中创新材料科技有限公司 | Cooling water tower and basalt fiber industrial production line cooling system |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20110803 Termination date: 20150126 |
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EXPY | Termination of patent right or utility model |