CN201632188U - Double-level jet bubbling pipe desulfuration and dust collection unit - Google Patents
Double-level jet bubbling pipe desulfuration and dust collection unit Download PDFInfo
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- CN201632188U CN201632188U CN2010201018940U CN201020101894U CN201632188U CN 201632188 U CN201632188 U CN 201632188U CN 2010201018940 U CN2010201018940 U CN 2010201018940U CN 201020101894 U CN201020101894 U CN 201020101894U CN 201632188 U CN201632188 U CN 201632188U
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Abstract
The utility model relates to a double-level jet bubbling pipe desulfuration and dust collection unit which comprises a high-level overflow pipe, a low-level overflow pipe, a jet bubbling pipe, a surge tank, a tower body, a demister, a slurry pump, an alkaline liquor circulating tank, a stirrer, an alkaline liquor circulating pump, a liquid outlet, a riser, a water baffle, a sediment scraping machine and the like. The double-level jet bubbling pipe desulfuration and dust collection unit has the benefits that: the double-level jet bubbling pipe structure is adopted for flue gas desulfuration and dust collection, so that the double-level jet bubbling pipe desulfuration and dust collection unit can be applicable to occasions with relatively large change of load of a boiler, and can ensure stable desulfurization and dedusting process and efficiency when the amount of flue gas is 30%-100%. The double-level jet bubbling pipe desulfuration and dust collection unit is especially applicable to boilers of heating plants and industrial stoves, and the low-level overflow pipe can ensure that a flue gas passage is reserved between the low level and the outlet of a down pipe when the double-level jet bubbling pipe is in the banking condition so as to ensure the flue gas in a hearth not to overflow. The desulfuration and dust collection system does not need a sedimentation tank and the sediment scraping machine is used for removing byproducts of flue gas and desulfuration.
Description
[technical field]
The utility model relates to the boiler fume desulfurizing and dedusting technology, particularly a kind of desulfurization and dust removal device with double liquid level injection bubbling pipe.
[background technology]
The JBR tower is usually used in electric boiler flue gas desulfurization.Often use a kind of dust-removing and desulfurizing integrated device in this field prior art, promptly dust-removal and desulfurizing carries out simultaneously.This deduster has certain effect to the removing flue gas desulfurization of soot dust granule thing, but its some shortcoming of also existing simultaneously, normal use and dust-removal and desulfurizing effect have also been influenced at Industrial Boiler and Industrial Stoves flue gas desulfurization and dedusting, the existing injection bubbling pipe of the first gos deep into below the liquid level, when Industrial Boiler and Industrial Stoves discontinuous operation, the bubbling pipe mouth of pipe can ash be stifled because generation appears in alternation of wetting and drying, influences boiler and normally moves.It two is incompatibility load variations, and when Industrial Boiler and Industrial Stoves load diminished, because its liquid level is constant, the equipment flue gas resistance because of the reducing of load, did not cause equipment normally not move.It three is because its injection bubbling pipe gos deep into below the liquid level, and Industrial Boiler and Industrial Stoves are born when banking up a fire state air-introduced machine and stopped transport, and exhaust gases passes is closed, and causes the burner hearth flue gas not discharge.
[utility model content]
The purpose of this utility model is in order to overcome the deficiencies in the prior art, and provide a kind of desulfurization and dust removal device with double liquid level injection bubbling pipe, this device is taked biliquid bit architecture form, guarantee that boiler load has stable efficiency of dust collection and desulfuration efficiency when 30%-100%, and low liquid level overflow pipe can guarantee to hang down liquid level and exhaust gases passes is left in the impact tube exit when banking up a fire state, and assurance burner hearth flue gas does not overflow.
The utility model be address the above problem the scheme that is adopted be the design a kind of desulfurization and dust removal device with double liquid level injection bubbling pipe.It comprises tower body, the demister, the water fender that are provided with in the tower body, be located at that the tower body level is cut apart at tower body middle part and by running through the flue gas surge tank that wherein tedge makes the upper and lower perforation of tower body, injection bubbling pipe, leakage fluid dram and alkali liquor circulating system and Slag Scraping Device, it is characterized in that described surge tank the bottom, tedge around be provided with a plurality of through holes, the below correspondence of each through hole is fixed an injection bubbling pipe; Described injection bubbling pipe comprises overflow pipe, sleeve pipe, impingement baffles and impact tube, and described impact tube external stability sleeve pipe forms exhaust gases passes between sleeve pipe and the impact tube, has many rounds on the sleeve pipe sidewall; One low liquid level overflow pipe is housed in the described sleeve pipe, leaves certain distance between the upper orifice position of low liquid level overflow pipe and the lower nozzle of impact tube; Described outside of sleeve is equipped with a high liquid level overflow pipe, and the upper orifice position of high liquid level overflow pipe is higher than the lower nozzle of impact tube.
The beneficial effects of the utility model are: (1) double liquid level injection bubbling pipe structure adopts the biliquid bit architecture, and no matter boiler is in full load, underload and the state of banking up a fire, and impact tube is in dried state all the time, so impact tube dust and scale formation can not take place.Equipment operation ratio height, reliable operation.(2) because this device is taked biliquid bit architecture form, and sleeve pipe side-wall hole, applicable to boiler load variation occasion greatly, guarantee that boiler load (exhaust gas volumn) has stable efficiency of dust collection and desulfuration efficiency when 30%-100%, and flue gas resistance and boiler load maintenance certain linear.When (3) Industrial Boiler and Industrial Stoves air-introduced machine when banking up a fire state was stopped transport, low liquid level overflow pipe can guarantee to hang down liquid level and exhaust gases passes is left in the impact tube exit, and assurance burner hearth flue gas does not overflow.(4) do not need settling tank, flue dust and desulfurization product have Slag Scraping Device to remove, and floor space is little.
[description of drawings]
Fig. 1 desulfurization and dust removal device with double liquid level injection bubbling pipe schematic diagram:
Fig. 2 double liquid level injection bubbling pipe structure is hanged down the liquid level schematic diagram:
The high liquid level schematic diagram of Fig. 3 double liquid level injection bubbling pipe structure.
Among the figure: the high liquid level overflow pipe of 1-; 2-hangs down the liquid level overflow pipe; The 3-injection bubbling pipe; The 4-surge tank; The 5-tower body; The 6-demister; The 7-Slag Scraping Device; The 8-alkali liquor circulating box; The 9-agitator; The 10-NaOH solution circulating pump; The 11-leakage fluid dram; The 12-tedge; The 13--water fender; The 14-sleeve pipe; The 15-impingement baffles; The 16-impact tube.
Be described in detail with reference to accompanying drawing below in conjunction with embodiment of the present utility model.
[specific embodiment]
Desulfurization and dust removal device with double liquid level injection bubbling pipe is by tower body 5, the demister 6, the water fender 13 that are provided with in the tower body, be located at that the tower body level is cut apart at tower body middle part and by running through the flue gas surge tank 4 that wherein tedge 12 makes the upper and lower perforation of tower body, injection bubbling pipe 3, leakage fluid dram 11 and form by enough alkali liquor circulating system such as alkali liquor circulating box 8, agitator 9, NaOH solution circulating pump 10 and Slag Scraping Device 7 etc.Wherein said tedge 12 is one or more, and caliber is 100mm to 5000mm.The over top of tedge is provided with water fender 13; Be provided with one deck demister 6 at least in the tower main body above water fender.The bottom of described surge tank, tedge around be provided with a plurality of through holes, the below correspondence of each through hole is fixed an injection bubbling pipe 3.
Injection bubbling pipe of the present utility model is made up of high liquid level overflow pipe 1, low liquid level overflow pipe 2, sleeve pipe 14, impingement baffles 15 and impact tube 16 etc.Wherein: the caliber of described impact tube is 100mm to 600mm.Impact tube external stability sleeve pipe 14 forms exhaust gases passes between sleeve pipe and the impact tube, has many rounds on the sleeve pipe sidewall, the hole be shaped as circular apertures or strip hole, its percent opening is 10% to 60% of a perforate scope.Described perforate scope be the cover tube wall at the corresponding tube wall between the paramount liquid level overflow pipe mouth of pipe below the low liquid level overflow pipe mouth of pipe.One low liquid level overflow pipe 2 is housed in the described sleeve pipe, leaves certain distance between the upper orifice position of low liquid level overflow pipe and the lower nozzle of impact tube; Described outside of sleeve is equipped with a high liquid level overflow pipe 1, and the upper orifice position of high liquid level overflow pipe is higher than the lower nozzle of impact tube.The top of this high liquid level overflow pipe or low liquid level overflow pipe is a funnel-form, and its underpart pipeline is connected with alkali liquor circulating box, and connecting portion is below liquid level.Also fix a horizontal ring-type impingement baffles outside impact tube, impingement baffles is above the exhaust gases passes outlet that forms between sleeve pipe and the impact tube.The outside diameter of impingement baffles is slightly larger than casing diameter, and impingement baffles is 50mm to 250mm above the exhaust gases passes outlet that forms between sleeve pipe and the impact tube.
In the alkali liquor circulating system of this desulfation dust-extraction device, alkali lye pumps into tower body 5 by alkali liquor circulating box 8 through NaOH solution circulating pump 10, flue gas mixes by injection bubbling pipe 3 and alkali lye, liquid flows back to the alkali case via high liquid level overflow pipe 1, the sediment of flue dust and desulfurization resultant is removed by Slag Scraping Device 7 at the bottom of sinking to the pond, also be respectively equipped with agitator 9 on the alkali case, mend alkali mouth and water supplement port etc.
Operation principle of the present utility model is:
Ash-laden gas enters the flue gas surge tank and enters impact tube 16 again; impact liquid level; the flue dust contact liquid level that quality is big is captured; flue gas turns to the passage by being formed by impact tube 16 and sleeve pipe 14 upwards to flow; flow velocity improves in passage; static pressure reduces; sleeve pipe 14 outside liquids are accelerated after mixing with ascending air is fierce in the round flow channel of sleeve pipe 14 by injection; by humidification, granulation, be neutralized absorption in sulfur in smoke and the akaline liquid mixed process in flue dust in the flue gas and the liquid mixed process.Liquid vapour mixture flows out rising passway, and to meet impingement baffles 15 back drops separated from the gas, and the air-flow flow fluid drip that makes progress returns liquid level.The amount of the liquid of admission passage is directly proportional with air velocity, and promptly the high more static pressure of speed is big more with regard to the water yield of low more injection.
When air-introduced machine was stopped transport, liquid level was by low liquid level overflow pipe 2 controls (as shown in Figure 2) in the equipment, and low liquid level overflow pipe 2 guarantees between impact tube 16 lower ends and the liquid level certain space is arranged, and flue gas passes through when providing industrial furnace to bank up a fire state.Exhaust gas volumn increases gradually after air-introduced machine is opened, and liquid level is lower than liquid level overflow pipe 2 in the sleeve pipe 14, and this moment, low liquid level overflow pipe lost efficacy (as shown in Figure 3), and sleeve pipe 14 outer liquid levels are by high-order overflow pipe 1 control, and the alkali lye circulation of equipment is to be undertaken by high-order overflow pipe 1.
During operate as normal, flue gas turns in the exit when flowing by impact tube 16, be converted into static pressure in the ullage space dynamic pressure, produce pressure reduction in liquid level upper sleeve 14 sidewall round both sides, flue gas enters liquid phase by sleeve pipe 14 sidewall rounds and forms bubbling, away from liquid level round pressure reduction bigger, bubbling is violent.What of exhaust gas volumn that form bubbling are relevant with the pressure differential of percent opening, sleeve pipe 14 both sides.Enter the rising passway exhaust gas volumn what are relevant with what, flow velocity of the amount of liquid of admission passage.The flue gas resistance that forms bubbling by sleeve pipe 14 sidewall rounds is suitable with entering the rising passway flue gas resistance.The ratio of tolerance is by the flue gas resistance balance, i.e. the installation site of percent opening, liquid-gas ratio air velocity, high liquid level overflow pipe.
Double liquid level injection bubbling pipe version can guarantee exhaust gas volumn operate as normal when 30%-100%, and efficiency of dust collection and desulfuration efficiency do not subtract.Exhaust gas volumn is less when seeing Fig. 2 underload; the flow of flue gas resistance is little; alkali lye is by low liquid level overflow pipe 2 periodic duties; liquid level and space, impact tube 16 exit are less; therefore horizontal the plunderring when the liquid level flow velocity reaches 8m/s of flue gas just can be entrainmented liquid level; carry drop and enter rising passway and quicken to flow, flue dust is by the humidification granulation in the flue gas in this process, and sulfur dioxide in flue gas is absorbed by alkali lye.
Along with load increases; flue gas flow rate improves; the flow of flue gas resistance strengthens; liquid level is lower than low level overflow pipe 2, and liquid level and space, impact tube 16 exit increase (as shown in Figure 3), and the interior flue gas flow rate of rising passway improves dynamic pressure increasing static pressure rapidly and reduces; the sleeve pipe both sides form pressure differential; outside of sleeve liquid flows into rising passway by sleeve pipe 14 sidewall rounds to be mixed with ascending air, and flue dust is by the humidification granulation in the flue gas, and sulfur dioxide in flue gas is absorbed by alkali lye.When load continues to improve; exhaust gas volumn increases flow resistance and increases; liquid level descends in the sleeve pipe; the outer liquid level of sleeve pipe rises; high liquid level overflow pipe 1 has limited the outer liquid level of sleeve pipe; further raising along with load; liquid level descends in the sleeve pipe; sleeve pipe both sides liquid level is fixed when steady load; space between interior liquid level of sleeve pipe this moment and impact tube 16 exits is bigger, these spatial dimension inner sleeve 14 sidewall solid matter holes, and down current turns to mobile in this space; speed viscous flow dynamic pressure is converted into static pressure; form pressure differential in the round both sides, the round inside pressure is higher than outside pressure, and flue gas enters liquid phase by round and forms bubbling; flue dust is by the humidification granulation in the flue gas in this process, and sulfur dioxide in flue gas is absorbed by alkali lye.Total tolerance is divided into two parts part and is flowed out by rising passway, another part flows out by sleeve pipe 3 sidewall rounds, flow proportional and rising passway physical dimension, flue gas flow rate, to carry liquid measure, sleeve pipe round percent opening and hole arrangement mode relevant, and two parts flow resistance equates.
Through the liquid vapour mixture behind the double liquid level injection bubbling pipe, drops were separated from the gas after the outflow rising passway was met impingement baffles 15, and air-flow upwards flows, and drop flows back to liquid level.Turn to the flue gas behind the dust-removal and desulfurizing that upwards flows to enter tedge 12, under the effect of water fender 13, oarse-grained droplet is removed down.Flue gas after being purified is discharged after demister 6 is removed tiny water smoke, and the alkali lye after the desulfurization flows back to alkali liquor circulating box 8 by leakage fluid dram 11 and high liquid level overflow pipe 1, and NaOH solution circulating pump 10 pumps into alkali lye in the tower by the alkali circulation pipe and recycles.The sediment of flue dust and desulfurization resultant is removed by Slag Scraping Device 7 at the bottom of sinking to the pond.
Claims (7)
1. desulfurization and dust removal device with double liquid level injection bubbling pipe, comprise tower body, the demister, the water fender that are provided with in the tower body, be located at that the tower body level is cut apart at tower body middle part and by running through the flue gas surge tank that wherein tedge makes the upper and lower perforation of tower body, injection bubbling pipe, leakage fluid dram and alkali liquor circulating system and Slag Scraping Device, it is characterized in that described surge tank the bottom, tedge around be provided with a plurality of through holes, the below correspondence of each through hole is fixed an injection bubbling pipe; Described injection bubbling pipe comprises overflow pipe, sleeve pipe, impingement baffles and impact tube, and described impact tube external stability sleeve pipe forms exhaust gases passes between sleeve pipe and the impact tube, has many rounds on the sleeve pipe sidewall; One low liquid level overflow pipe is housed in the described sleeve pipe, leaves certain distance between the upper orifice position of low liquid level overflow pipe and the lower nozzle of impact tube; Described outside of sleeve is equipped with a high liquid level overflow pipe, and the upper orifice position of high liquid level overflow pipe is higher than the lower nozzle of impact tube.
2. according to the described desulfurization and dust removal device with double liquid level injection bubbling pipe of claim 1, it is characterized in that described tedge is one or more, caliber is 100mm to 5000mm.
3. according to the described desulfurization and dust removal device with double liquid level injection bubbling pipe of claim 1, the caliber that it is characterized in that described impact tube is 100mm to 600mm.
4. according to claim 1,2 or 3 described desulfurization and dust removal device with double liquid level injection bubbling pipe, the impact tube that it is characterized in that described injection bubbling pipe is also fixed a horizontal ring-type impingement baffles outward, and impingement baffles is above the exhaust gases passes outlet that forms between sleeve pipe and the impact tube.
5. according to the described desulfurization and dust removal device with double liquid level injection bubbling pipe of claim 4, the outside diameter that it is characterized in that described impingement baffles is slightly larger than casing diameter, and impingement baffles is 50mm to 250mm above the exhaust gases passes outlet that forms between sleeve pipe and the impact tube.
6. according to claim 1,2 or 3 described desulfurization and dust removal device with double liquid level injection bubbling pipe, it is characterized in that described cover tube wall has many rounds, the hole be shaped as circular apertures or strip hole, its percent opening is 10% to 60% of a perforate scope.
7. according to claim 1,2 or 3 described desulfurization and dust removal device with double liquid level injection bubbling pipe, the top that it is characterized in that described high liquid level overflow pipe or low liquid level overflow pipe is a funnel-form, and its underpart pipeline is connected with alkali liquor circulating box, and connecting portion is below liquid level.
Priority Applications (1)
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CN2010201018940U CN201632188U (en) | 2010-01-27 | 2010-01-27 | Double-level jet bubbling pipe desulfuration and dust collection unit |
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CN2010201018940U CN201632188U (en) | 2010-01-27 | 2010-01-27 | Double-level jet bubbling pipe desulfuration and dust collection unit |
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CN2010201018940U Expired - Lifetime CN201632188U (en) | 2010-01-27 | 2010-01-27 | Double-level jet bubbling pipe desulfuration and dust collection unit |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101732973B (en) * | 2010-01-27 | 2012-02-15 | 天津理工大学 | Desulfurization and dust removal device with double liquid level injection bubbling pipe |
CN110102152A (en) * | 2019-06-20 | 2019-08-09 | 傅金凤 | Water-soluble organic exhaust gas absorption tower |
CN113069902A (en) * | 2021-03-31 | 2021-07-06 | 沈少华 | High-pressure fine water mist desulfurization treatment equipment |
CN116251428A (en) * | 2023-03-22 | 2023-06-13 | 华中科技大学 | Wet flue gas desulfurization dust collector based on tympanic bulla unit |
-
2010
- 2010-01-27 CN CN2010201018940U patent/CN201632188U/en not_active Expired - Lifetime
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101732973B (en) * | 2010-01-27 | 2012-02-15 | 天津理工大学 | Desulfurization and dust removal device with double liquid level injection bubbling pipe |
CN110102152A (en) * | 2019-06-20 | 2019-08-09 | 傅金凤 | Water-soluble organic exhaust gas absorption tower |
CN110102152B (en) * | 2019-06-20 | 2024-04-26 | 傅金凤 | Water-soluble organic waste gas absorption tower |
CN113069902A (en) * | 2021-03-31 | 2021-07-06 | 沈少华 | High-pressure fine water mist desulfurization treatment equipment |
CN116251428A (en) * | 2023-03-22 | 2023-06-13 | 华中科技大学 | Wet flue gas desulfurization dust collector based on tympanic bulla unit |
CN116251428B (en) * | 2023-03-22 | 2024-04-02 | 华中科技大学 | Wet flue gas desulfurization dust collector based on tympanic bulla unit |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20101117 Effective date of abandoning: 20100127 |