CN214635380U - Ammonia spraying device and flue gas denitration device - Google Patents

Ammonia spraying device and flue gas denitration device Download PDF

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Publication number
CN214635380U
CN214635380U CN202120574922.9U CN202120574922U CN214635380U CN 214635380 U CN214635380 U CN 214635380U CN 202120574922 U CN202120574922 U CN 202120574922U CN 214635380 U CN214635380 U CN 214635380U
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China
Prior art keywords
ammonia
flue
flue gas
pipeline
ammonia injection
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CN202120574922.9U
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Chinese (zh)
Inventor
夏怀鹏
白永锋
吴冲
王凯亮
汪洋
李伟
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China Huadian Engineering Group Co Ltd
Huadian Environmental Protection Engineering and Technology Co Ltd
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China Huadian Engineering Group Co Ltd
Huadian Environmental Protection Engineering and Technology Co Ltd
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Abstract

The utility model relates to an environmental protection technology field, concretely relates to spout ammonia device, flue gas denitration device, spout the ammonia device and include: the ammonia spraying pipeline is suitable for being horizontally arranged in the flue, the cross section of the ammonia spraying pipeline is rectangular, the side, perpendicular to the flow direction of flue gas in the flue, of the cross section of the ammonia spraying pipeline is a short side, and the side, parallel to the flow direction of the flue gas in the flue, of the cross section of the ammonia spraying pipeline is a long side; and the nozzle is arranged on the ammonia spraying pipeline. Also spout under the unchangeable condition of ammonia flow, because the minor face is mutually perpendicular with flue gas flow direction, spout under the unchangeable prerequisite of ammonia pipeline length, spout the projection area of ammonia pipeline and can reduce greatly, block the area reduction to the flue gas, both guaranteed the deamination efficiency of system, effectively reduce system resistance, increased the route and the area of mass transfer again, improved deamination efficiency. The reduction of the system resistance can realize energy conservation; the ammonia removal efficiency is improved, so that the using amount of ammonia water can be saved.

Description

Ammonia spraying device and flue gas denitration device
Technical Field
The utility model relates to an environmental protection technology field, concretely relates to spout ammonia device, flue gas denitrification facility.
Background
At present, a power plant carries out a new round of ultra-low emission modification project, and relates to modification and replacement of a large number of flue gas denitration devices. The improved or newly-built denitration reactor is provided with a plurality of ammonia spraying devices at the vertical section of the reactor for spraying ammonia gas, and the ammonia gas reacts with nitrogen oxides in flue gas in the reactor to remove the nitrogen oxides. The existing ammonia spraying device is made of a round steel pipe, holes are formed in the round pipe, and nozzles at different angles are welded in a cross mode to achieve ammonia spraying coverage.
The pipelines for spraying ammonia are arranged in parallel in the flue side by side, the projection area of the pipelines almost occupies half of the cross-sectional area of the whole flue, the effective cross section through which flue gas can pass is reduced, and the resistance and the energy consumption of the system are greatly increased.
SUMMERY OF THE UTILITY MODEL
Therefore, the to-be-solved technical problem of the utility model lies in overcoming the great defect of denitration ammonia injection device resistance among the prior art to provide a can reduce ammonia injection device, flue gas denitrification facility of resistance.
In order to solve the technical problem, the utility model provides a pair of spout ammonia device, include:
the ammonia spraying pipeline is suitable for being horizontally arranged in the flue, the cross section of the ammonia spraying pipeline is rectangular, the side, perpendicular to the flow direction of flue gas in the flue, of the cross section of the ammonia spraying pipeline is a short side, and the side, parallel to the flow direction of the flue gas in the flue, of the cross section of the ammonia spraying pipeline is a long side;
and the nozzle is arranged on the ammonia spraying pipeline.
Optionally, the length ratio of the long side to the short side is a, and a is greater than 1 and less than or equal to 30.
Optionally, the nozzle is arranged at the bottom of the ammonia injection pipe.
Optionally, the nozzles are uniformly and alternately arranged on two sides of the bottom of the ammonia spraying pipeline.
Optionally, the nozzle is arranged at the bottom of the ammonia spraying pipeline in an inclined mode.
Optionally, the included angle between the central line of the nozzle and the vertical plane is B, and B is more than or equal to 15 degrees and less than or equal to 50 degrees.
Optionally, one end of the ammonia injection pipeline, which is located in the flue, is connected with a connecting piece, and the connecting piece is suitable for being connected with a fixed beam in the flue.
Optionally, the connecting piece is an angle steel.
The utility model also provides a flue gas denitration device, include ammonia spraying device, flue, the ammonia spraying pipeline is established horizontally in the flue.
Optionally, the ammonia injection pipeline is provided with a plurality of pipelines, and the pipelines are arranged in the flue side by side.
The utility model discloses technical scheme has following advantage:
1. the utility model provides an ammonia spraying device, when spouting the ammonia pipe-line and installing in the flue, it sets up in the flue to spout the ammonia pipeline horizontally, the minor face of the cross section of ammonia pipeline is perpendicular with flue gas flow direction in the flue, the flue gas flow direction parallels in long limit and the flue, under the prerequisite that the rectangle cross sectional area of spouting the ammonia pipeline equals with prior art, also under the unchangeable condition of ammonia flow, because the minor face is perpendicular with flue gas flow direction, under the unchangeable prerequisite of ammonia pipeline length, the projection area of spouting the ammonia pipeline is the length of minor face and the product of the length of spouting the ammonia pipeline, can reduce greatly, the area that blocks of flue gas reduces, the deamination efficiency of system has both been guaranteed, effectively reduce the system resistance, the way and the area of mass transfer have been increased again, deamination efficiency is improved. The reduction of the system resistance can realize energy conservation; the ammonia removal efficiency is improved, so that the using amount of ammonia water can be saved. Meanwhile, the bending resistance of the rectangular ammonia spraying pipeline is superior to that of a round pipeline with the same section, and the deformation is smaller.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a plan view of an ammonia injection device provided in example 1 of the present invention;
fig. 2 is a cross-sectional view taken at a-a shown in fig. 1.
Description of reference numerals:
1. an ammonia spraying pipeline; 2. a short side; 3. a long side; 4. and (4) a nozzle.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the accompanying drawings, and obviously, the described embodiments are some, but not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Furthermore, the technical features mentioned in the different embodiments of the invention described below can be combined with each other as long as they do not conflict with each other.
Example 1
At present, a power plant carries out a new round of ultra-low emission modification project, and relates to modification and replacement of a large number of flue gas denitration devices. The improved or newly-built denitration reactor is provided with a plurality of ammonia spraying devices at the vertical section of the reactor for spraying ammonia gas, and the ammonia gas reacts with nitrogen oxides in flue gas in the reactor to remove the nitrogen oxides. The existing ammonia spraying device is made of a round steel pipe, holes are formed in the round pipe, and nozzles at different angles are welded in a cross mode to achieve ammonia spraying coverage. The pipelines for spraying ammonia are arranged in parallel in the flue side by side, the projection area of the pipelines almost occupies half of the cross-sectional area of the whole flue, the effective cross section through which flue gas can pass is reduced, and the resistance and the energy consumption of the system are greatly increased.
Therefore, the embodiment provides an ammonia injection device. In one embodiment, the ammonia injection device comprises an ammonia injection pipeline 1 and a nozzle 4.
The ammonia spraying pipeline 1 is suitable for being horizontally arranged in a flue, the cross section of the ammonia spraying pipeline 1 is rectangular, the side, perpendicular to the flow direction of flue gas in the flue, of the cross section of the ammonia spraying pipeline 1 is a short side 2, and the side, parallel to the flow direction of the flue gas in the flue, of the cross section of the ammonia spraying pipeline 1 is a long side 3; the nozzle 4 is arranged on the ammonia spraying pipeline 1.
In this embodiment, when the ammonia injection pipe 1 is installed in the flue, the ammonia injection pipe 1 is horizontally disposed in the flue, with reference to fig. 1 and 2, the direction indicated by the arrow in fig. 2 is the flue gas flowing direction in the flue, the short side 2 of the cross section of the ammonia injection pipe 1 is perpendicular to the flue gas flowing direction in the flue, and the long side 3 is parallel to the flue gas flowing direction in the flue, on the premise that the rectangular cross section area of the ammonia injection pipe 1 is equal to the circular cross section area in the prior art, that is, under the condition that the ammonia injection flow is not changed, because the short side 2 is perpendicular to the flue gas flowing direction, on the premise that the length of the ammonia injection pipe 1 is not changed, the projection area of the ammonia injection pipe 1 is the product of the length of the short side 2 and the length of the ammonia injection pipe 1, which can be greatly reduced, the blocking area of the flue gas is reduced, both the deamination efficiency of the system and the system resistance are effectively reduced, but also increases the path and area of mass transfer and improves the deamination efficiency. The reduction of the system resistance can realize energy conservation; the ammonia removal efficiency is improved, so that the using amount of ammonia water can be saved. Meanwhile, the bending resistance of the rectangular ammonia spraying pipeline 1 is superior to that of a round pipeline with the same section, and the deformation is smaller.
Specifically, the cross-sectional area of the ammonia spraying pipeline 1 is calculated according to the process requirements, the lengths of the long side 3 and the short side 2 are converted according to the area, the ratio of the long side 3 to the short side 2 is determined according to the requirements, the ammonia spraying pipeline 1 can be formed by welding steel plates, and an appropriate cold-rolled rectangular steel pipe can be selected according to the cross-sectional area.
In a preferred embodiment, the ratio of the length of the long side 3 to the short side 2 is a, 1 < a ≦ 30. On the premise of a certain cross-sectional area, the larger the value A, the longer the long side 3 and the shorter the short side 2 are, and on the premise of ensuring the bending resistance of the ammonia spraying pipeline 1, the long side 3 and the short side 2 with the larger value A are preferably adopted.
In a preferred embodiment, the value of a is 30. In an alternative embodiment, the value of a is 20 or 15.
On the basis of the above embodiments, in a preferred embodiment, the nozzle 4 is arranged at the bottom of the ammonia injection pipe 1. In this embodiment, the nozzle 4 is disposed at the bottom of the ammonia spraying pipe 1, so that the ammonia water in the ammonia spraying pipe 1 can be sprayed out, and the waste of the ammonia water caused by the residue in the ammonia spraying pipe 1 is avoided. In other alternative embodiments, the nozzles 4 may be provided on both sides of the ammonia injection pipe 1, or on both sides and the bottom of the ammonia injection pipe 1.
On the basis of the above embodiments, in a preferred embodiment, the nozzles 4 are arranged alternately and uniformly on both sides of the bottom of the ammonia injection pipe 1. In this embodiment, the nozzles 4 are arranged on both sides of the bottom of the ammonia spraying pipeline 1 in an evenly alternating manner, so that the ammonia water can be evenly sprayed into the flue, and the waste of the ammonia water is avoided. In other alternative embodiments, the nozzles 4 may be arranged symmetrically and uniformly on both sides of the bottom of the ammonia injection pipe 1.
In addition to the above embodiments, in a preferred embodiment, the nozzle 4 is disposed at an inclined position at the bottom of the ammonia injection pipe 1. In the present embodiment, the ammonia injection range is widened by obliquely disposing the nozzle 4 at the bottom of the ammonia injection pipe 1, and the ammonia removal efficiency can be improved. In other alternative embodiments, the nozzle 4 may be arranged horizontally or vertically at the bottom of the ammonia injection pipe 1, and the ammonia water is injected vertically through the nozzle 4 horizontally from the fire.
On the basis of the above embodiments, in a preferred embodiment, the included angle between the center line of the nozzle 4 and the vertical plane is B, and the included angle is more than or equal to 15 degrees and less than or equal to 50 degrees.
On the basis of the above embodiments, in a preferred embodiment, one end of the ammonia injection pipeline 1, which is located in the flue, is connected with a connecting piece, and the connecting piece is suitable for being connected with a fixed beam in the flue. In this embodiment, the connector is provided to facilitate connection with the fixed beam within the flue.
In one embodiment, the connecting member is an angle iron. Specifically, an angle steel is welded at the end of the ammonia spraying pipeline 1, and holes are formed in the angle steel, so that the angle steel is connected with the fixed beam through bolts. In other alternative embodiments, the connectors may take on other shaped configurations.
Example 2
The embodiment provides a flue gas denitration device, which comprises the ammonia injection device and a flue, wherein an ammonia injection pipeline 1 of the ammonia injection device is horizontally arranged in the flue. Because the minor face 2 of the cross section of spraying ammonia pipeline 1 is mutually perpendicular with flue gas flow direction in the flue, the flue gas flow direction parallels in long limit 3 and the flue, under the prerequisite that the rectangle cross sectional area of spraying ammonia pipeline 1 equals with circular cross sectional area among the prior art, also under the unchangeable condition of ammonia flow, because minor face 2 is mutually perpendicular with flue gas flow direction, under the unchangeable prerequisite of spraying ammonia pipeline 1 length, the projection area of spraying ammonia pipeline 1 can reduce greatly, the area that blocks to the flue gas reduces, flue gas denitrification facility's deamination efficiency has both been guaranteed, effectively reduce flue gas denitrification facility's resistance, the way and the area of mass transfer have been increased again, deamination efficiency is improved. The energy conservation can be realized by reducing the resistance of the flue gas denitration device; the ammonia removal efficiency is improved, so that the using amount of ammonia water can be saved.
In a preferred embodiment, a plurality of ammonia injection pipes 1 are arranged in the flue and are arranged side by side in the flue. In the embodiment, the ammonia water is sprayed simultaneously by the plurality of ammonia spraying pipelines 1, so that the deamination efficiency can be ensured, the nitrogen oxides in the flue gas in the flue are obviously reduced, and the pollution to the environment is less.
It should be understood that the above examples are only for clarity of illustration and are not intended to limit the embodiments. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And obvious variations or modifications can be made without departing from the scope of the invention.

Claims (10)

1. An ammonia sparger, comprising:
the ammonia spraying pipeline (1) is suitable for being horizontally arranged in the flue, the cross section of the ammonia spraying pipeline (1) is rectangular, the side, perpendicular to the flow direction of flue gas in the flue, of the cross section of the ammonia spraying pipeline (1) is a short side (2), and the side, parallel to the flow direction of the flue gas in the flue, of the cross section of the ammonia spraying pipeline is a long side (3);
and the nozzle (4) is arranged on the ammonia spraying pipeline (1).
2. An ammonia injection device according to claim 1, characterized in that the ratio of the length of the long side (3) to the short side (2) is A, 1 < A ≦ 30.
3. An ammonia injection device according to claim 1, characterized in that the nozzle (4) is arranged at the bottom of the ammonia injection pipe (1).
4. An ammonia injection device according to claim 3, characterized in that the nozzles (4) are arranged evenly and alternately on both sides of the bottom of the ammonia injection pipe (1).
5. An ammonia injection device according to claim 4, characterized in that the nozzle (4) is arranged obliquely at the bottom of the ammonia injection pipe (1).
6. An ammonia injection device according to claim 5, characterized in that the angle between the centre line of the nozzle (4) and the vertical plane is B, 15 ° ≦ B ≦ 50 °.
7. An ammonia injection device according to claim 5, characterized in that the end of the ammonia injection pipe (1) inside the flue is connected with a connector, which is adapted to be connected with a fixed beam inside the flue.
8. The ammonia injection unit of claim 7, wherein the connector is an angle iron.
9. A flue gas denitration device, which is characterized by comprising the ammonia injection device and a flue of any one of claims 1 to 8, wherein the ammonia injection pipeline (1) is horizontally arranged in the flue.
10. The flue gas denitration device according to claim 9, wherein the ammonia injection pipeline (1) is provided in plurality and arranged side by side in the flue.
CN202120574922.9U 2021-03-19 2021-03-19 Ammonia spraying device and flue gas denitration device Active CN214635380U (en)

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CN202120574922.9U CN214635380U (en) 2021-03-19 2021-03-19 Ammonia spraying device and flue gas denitration device

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Application Number Priority Date Filing Date Title
CN202120574922.9U CN214635380U (en) 2021-03-19 2021-03-19 Ammonia spraying device and flue gas denitration device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112870959A (en) * 2021-03-19 2021-06-01 中国华电科工集团有限公司 Ammonia spraying device and flue gas denitration device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112870959A (en) * 2021-03-19 2021-06-01 中国华电科工集团有限公司 Ammonia spraying device and flue gas denitration device

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