CN202315694U - Flue gas desulfurizing tower - Google Patents

Flue gas desulfurizing tower Download PDF

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Publication number
CN202315694U
CN202315694U CN2011204833213U CN201120483321U CN202315694U CN 202315694 U CN202315694 U CN 202315694U CN 2011204833213 U CN2011204833213 U CN 2011204833213U CN 201120483321 U CN201120483321 U CN 201120483321U CN 202315694 U CN202315694 U CN 202315694U
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CN
China
Prior art keywords
tower
flue gas
distribution device
outlet
tower body
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.)
Withdrawn - After Issue
Application number
CN2011204833213U
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Chinese (zh)
Inventor
黄震
邵亚锋
缪缓钰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NANJING LONGJIU ENVIRONMENTAL ENGINEERING Co Ltd
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NANJING LONGJIU ENVIRONMENTAL ENGINEERING Co Ltd
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Application filed by NANJING LONGJIU ENVIRONMENTAL ENGINEERING Co Ltd filed Critical NANJING LONGJIU ENVIRONMENTAL ENGINEERING Co Ltd
Priority to CN2011204833213U priority Critical patent/CN202315694U/en
Application granted granted Critical
Publication of CN202315694U publication Critical patent/CN202315694U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model discloses a flue gas desulfurizing tower, which comprises a tower body, wherein the lower part of the tower body is provided with a desulfurization slag outlet, an ash poking mouth and a flue gas inlet, the middle part of the tower body is provided with a return product ash inlet, a desulfurizing agent inlet and a nozzle connector, the upper end of the tower body is provided with a flue gas outlet, and a desulfurizing tower outlet necking-down section is arranged between the desulfurization slag outlet and the flue gas inlet. The utility model is characterized in that an internal slope of the necking-down section is provided with an annular wind distribution device, and the wind distribution device is provided with an air outlet of which the wind direction is tilted upwards. The necking-down section is provided with the wind distribution device so as to blow falling fly ash in the tower to be mixed with flue gas again; and the wind distribution device not only can blow the fly ash, but also can improve smooth distribution in the tower through the effect of air flow, so that the desulfurization efficiency can be improved.

Description

Fume desulfurizing tower
Technical field
The utility model belongs to technical field of chemical, specifically is a kind of desulfurizing tower that flue gas is handled that is used for.
Background technology
Pernicious gases such as the sulfur dioxide in flue gas that produces when fire coal, fuel oil, combustion gas, nitrogen oxide enter atmosphere, cause acid rain, destroy ecological environment, influence the healthy of people.To the more strict control control criterion of the relevant environmental regulation of China to the permission concentration of emission proposition of sulfur dioxide in flue gas, nitrogen oxide, various flue gas desulfurization technique method and apparatus arise at the historic moment.
Coal-burning sulfur dioxide control method can be divided three classes: desulfurization and burning back desulfurization (flue gas desulfurization) in desulfurization before the burning, the burning, wherein flue gas desulfurization is considered to control SO 2Pollute valid approach.With regard to flue gas desulfurization technique, the present flue gas desulfurization technique of being used widely and having developed mainly contains 4 kinds:
Wet type limestone/gypsum absorption process (Wet-FGD)
Dry spraying dry decontamination technology (SDA)
Humidification water activation method (LIFAC) behind the in-furnace calcium spraying
Recirculating fluidized bed flue gas purifying technique (CFB-FGD)
The recirculating fluidized bed flue gas purifying technique is to be the basis with the recirculating fluidized bed principle, through the repeatedly recirculation of absorbent, the time of contact of extension of absorbent and flue gas, has improved the utilization rate of absorbent greatly.The recirculating fluidized bed flue gas purifying technique will add the Ca (OH) of desulfurizing tower 2SO in powder and the flue gas 2And other compositions such as SO in the flue gas 3, sour gas such as HCl, HF fully contact mixing, the atomized water that the desulfurizing tower porch sprays into reduces flue-gas temperature on the one hand, guarantees optimum reaction condition, on the other hand at Ca (OH) 2The surface of particle forms liquid phase.Ca (OH) in the desulfurizing tower 2Powder, flue gas and the moisture that sprays into fully mix under suspended state, and through excessive Ca (OH) 2Powder is repeatedly circulation in desulfurizing tower, is under 1.3~1.6 conditions at appropriate C a/S ratio, makes SO in the flue gas 2, SO 3Absorbed more fully Deng the sour gas physical efficiency, realized the efficient utilization of high-efficiency desulfurization and desulfurizing agent.
Desulfurizing tower directly influences the desulfuration efficiency of a whole set of desulphurization system as the critical component of recirculating fluidized bed flue gas purifying technique.In order to guarantee the abundant fluidisation and the suspension of desulfurizing agent and flying dust in the desulfurizing tower; Generally one or several ash discharging hole is set in the desulfurizing tower bottom; To discharge the bigger lime-ash of particle; Thereby form flow field preferably, be beneficial to the desulfurizing tower flow field and be evenly distributed, thereby desulfurizing agent and fly ash granule can fully mix in desulfurizing tower with flue gas.Practice result shows that the bottom of desulfurizing tower is provided with push-pull valve, and regularly carries out scarfing cinder at the bottom of the tower, help reducing drag losses, and desulfurized effect makes moderate progress.The defective that existing this desulfurizing tower bottom adds the design existence of push-pull valve has: the boiler oxygen content increases; Defectives such as flowing field stability difference and flow process distribution are asymmetric.
Summary of the invention
The utility model technical problem to be solved is the deficiency to above-mentioned prior art, and provide a kind of flow field in tower of stably desulphurizing better, further reduce flue gas flow through in the desulfurizing tower drag losses and improve the desulfurizing tower load adaptability can fume desulfurizing tower.
For solving the problems of the technologies described above; The technical scheme that the utility model adopts is: a kind of fume desulfurizing tower, comprise tower body, and be provided with desulfurization slag outlet, ash poking mouth and gas approach in the bottom of tower body; Be provided with returning charge ash inlet at the middle part of tower body; Desulfurizing agent inlet and nozzle interface are provided with exhanst gas outlet in the upper end of tower body, are desulfurizing tower outlet reducing section between described desulfurization slag outlet and the gas approach; It is characterized in that: the inner chamfer of this reducing section is provided with the air-distribution device of an annular, and said air-distribution device has the air outlet that wind direction is tilted to.
Described air-distribution device comprises cloth wind chamber and perforated distributor, on cloth wind chamber, is connected with airduct, and described air outlet is arranged on the perforated distributor.
Described air-distribution device also comprises canvas layer, and canvas layer is arranged on the perforated distributor inboard.
The utility model is provided with the air-distribution device of annular in the reducing section, thereby the flying dust that falls in the tower is blown afloat and mixes once more with flue gas, and annular air-distribution device not only can simplified structure; Can also simplify admission line and control etc.; Can flying dust be blown afloat through annular air-distribution device, can also improve desulfuration efficiency through smooth distribution the in the improved effect tower of air-flow; Compared with prior art, have following advantage:
(1) adapts to desulfurizing agent than other and change the treating method that causes that the desulphurization system resistance increases, more low power consuming is arranged;
(2) improve smooth distribution the in the desulfurizing tower, imitate desulfurization thereby improve;
(3) increase the load variations scope that desulfurizing tower causes adapting to different desulfurizing agents, improve adaptability boiler.
Description of drawings
Fig. 1 is the structural representation of the utility model.
Fig. 2 is the side view of Fig. 1.
Fig. 3 is the structural representation of the utility model desulfurizing tower reducing section.
Fig. 4 is the vertical view of Fig. 3.
Fig. 5 is the utility model air-distribution device structural representation.
Wherein: 1, tower body, 2, the desulfurization slag outlet, 3, the ash poking mouth, 4, gas approach, 5, the desulfurizing agent inlet; 6, returning charge ash inlet, 7, manhole, 8, nozzle interface, 9, exhanst gas outlet, 10, air-distribution device; 11, cloth wind chamber, 12, airduct, 13, air distribution plate, 14; Canvas layer, 15, band steel, 16, bolt, 17, angle steel, 18, Ta Bi.
The specific embodiment
Below in conjunction with accompanying drawing, the utility model is elaborated, as shown in Figure 1, shown in Figure 2; A kind of fume desulfurizing tower of the utility model comprises the tower body 1 that is made up of smoke-box, spurt chamber and desulfurization chamber, is provided with desulfurization slag outlet 2, ash poking mouth 3 and gas approach 4 in the bottom of tower body 1; Be provided with returning charge ash inlet 6 at the middle part of tower body 1, desulfurizing agent inlet 5 and nozzle interface 8 are provided with exhanst gas outlet 9 in the upper end of tower body 1; Be desulfurizing tower outlet reducing section between desulfurization slag outlet 2 and the gas approach 4, the reducing section is square shape circularly all day long, and the air-distribution device 10 of an annular is set on the inner circular awl inclined-plane of reducing section; Referring to Fig. 3 and Fig. 4, air-distribution device 10 has the air outlet that wind direction is tilted to, and air-distribution device comprises cloth wind chamber 11, canvas layer 14 and perforated distributor 13; On cloth wind chamber 11, be connected with airduct 12; Canvas layer 14 is arranged on perforated distributor 13 inboards, and air outlet is arranged on the perforated distributor 13, and the cloth bag material of the common sack cleaner of canvas layer 14 usefulness gets final product; Canvas layer 14 adopts band steel 15 and bolt 16 to be fixed together with air distribution plate 13; Be fixed on the tower wall 18 through angle steel 17 at last, between angle steel 17, tower wall 18 and canvas layer, form cloth wind chamber 11, specifically see Fig. 5.

Claims (3)

1. fume desulfurizing tower; Comprise tower body; Be provided with desulfurization slag outlet, ash poking mouth and gas approach in the bottom of tower body, be provided with returning charge ash inlet at the middle part of tower body, desulfurizing agent inlet and nozzle interface; Upper end at tower body is provided with exhanst gas outlet; Be desulfurizing tower outlet reducing section between described desulfurization slag outlet and the gas approach, it is characterized in that: the inner chamfer of this reducing section is provided with the air-distribution device of an annular, and said air-distribution device has the air outlet that wind direction is tilted to.
2. fume desulfurizing tower according to claim 1 is characterized in that: described air-distribution device comprises cloth wind chamber and cloth wind porous plate, on cloth wind chamber, is connected with airduct, and described air outlet is arranged on the porous plate.
3. fume desulfurizing tower according to claim 1 and 2 is characterized in that: described air-distribution device also comprises canvas layer, and this canvas layer is arranged on the perforated distributor inboard.
CN2011204833213U 2011-11-29 2011-11-29 Flue gas desulfurizing tower Withdrawn - After Issue CN202315694U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011204833213U CN202315694U (en) 2011-11-29 2011-11-29 Flue gas desulfurizing tower

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011204833213U CN202315694U (en) 2011-11-29 2011-11-29 Flue gas desulfurizing tower

Publications (1)

Publication Number Publication Date
CN202315694U true CN202315694U (en) 2012-07-11

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CN2011204833213U Withdrawn - After Issue CN202315694U (en) 2011-11-29 2011-11-29 Flue gas desulfurizing tower

Country Status (1)

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CN (1) CN202315694U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102512944A (en) * 2011-11-29 2012-06-27 南京龙玖环境工程有限公司 Flue gas desulfurizing tower

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102512944A (en) * 2011-11-29 2012-06-27 南京龙玖环境工程有限公司 Flue gas desulfurizing tower
CN102512944B (en) * 2011-11-29 2014-08-06 南京龙玖环境工程有限公司 Flue gas desulfurizing tower

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20120711

Effective date of abandoning: 20140806

RGAV Abandon patent right to avoid regrant