CN215086088U - Waste gas treatment reaction bin - Google Patents
Waste gas treatment reaction bin Download PDFInfo
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- CN215086088U CN215086088U CN202121363809.2U CN202121363809U CN215086088U CN 215086088 U CN215086088 U CN 215086088U CN 202121363809 U CN202121363809 U CN 202121363809U CN 215086088 U CN215086088 U CN 215086088U
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Abstract
The utility model discloses an exhaust-gas treatment reaction bin includes: the reaction tank is fixedly connected with the base frame; two groups of same stirring mechanisms which have the same structure and are arranged in parallel are arranged in the reaction tank; each group of stirring mechanisms comprises a stirring shaft inserted in the reaction tank, and a plurality of groups of sinking stirring paddles and peripheral stirring paddles sleeved on the stirring shaft; the sinking stirring paddle comprises a sinking stirring block sleeved on the stirring shaft and a plurality of groups of sinking guide plates which are arranged on the periphery of the sinking stirring block and have preset gradient. The utility model discloses a design is sunk the stirring rake and is driven jar body top waste gas and carry out the downflow, and then accomplishes the conversion to the top waste gas of the jar body and bottom waste gas, and then makes and fuses fast with atomizing chemical reagent, cooperates week portion stirring rake to accomplish simultaneously and carries out the annular conversion to the waste gas of week portion stirring rake flat bed, further with higher speed waste gas and atomizing chemical reagent's fusion reaction.
Description
Technical Field
The utility model belongs to a reaction bin, especially a waste gas treatment reaction bin.
Background
The reaction chamber has the characteristics of rapid heating, high temperature resistance, corrosion resistance, sanitation, no environmental pollution, no need of automatic heating of a boiler, convenient use and the like, is widely applied to technical processes of petroleum, chemical engineering, rubber, pesticides, dyes, medicines and foods for completing vulcanization, nitration, hydrogenation, alkylation, polymerization, condensation and the like, takes full mixing of reaction substances as a premise, can obtain good effect only by adopting a stirring device in physical change processes of heating, cooling, liquid extraction, gas absorption and the like, and can be designed for customers to process an external coil reaction tank.
The reaction chamber has the characteristics of rapid heating, high temperature resistance, corrosion resistance, sanitation, no environmental pollution, no need of automatic heating of a boiler, convenient use, low price and the like. The stainless steel is widely applied to the industries of chemical industry, medicine, food and the like, and the material is 304 stainless steel. Twenty or more reaction tanks with specifications of 50-5000L and various heating forms can be provided for users.
However, in order to accelerate the fusion reaction between the exhaust gas and the added atomized chemical reagent, the conventional exhaust gas reaction chamber usually integrates the stirring paddles to complete the rapid fusion of the exhaust gas and the added atomized chemical reagent, but the stirring of the conventional stirring paddles basically drives only the airflow around the stirring paddles to stir in a flat layer, and cannot drive the airflow to stir in a sinking manner, so that the fusion reaction efficiency is slow.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: an exhaust gas treatment reaction bin is provided to solve the problems involved in the background art.
The technical scheme is as follows: an exhaust treatment reaction bin comprising:
the reaction tank is fixedly connected with the base frame;
two groups of same stirring mechanisms which have the same structure and are arranged in parallel are arranged in the reaction tank;
each group of stirring mechanisms comprises a stirring shaft inserted in the reaction tank, and a plurality of groups of sinking stirring paddles and peripheral stirring paddles sleeved on the stirring shaft;
the device is characterized in that the sinking stirring paddle comprises a sinking stirring block sleeved on the stirring shaft and a plurality of groups of sinking guide plates which are arranged on the periphery of the sinking stirring block and arranged in a preset inclination;
subside through the design and stir the oar and drive jar body top waste gas and carry out the downflow, and then accomplish the conversion to the top waste gas of the jar body and bottom waste gas, and then make and the quick integration of atomizing chemical reagent, cooperation week portion stirring rake is accomplished simultaneously and is carried out the annular conversion to the waste gas on week portion stirring rake flat bed, further with higher speed waste gas and atomizing chemical reagent's fusion reaction.
In a further embodiment, the reaction tank comprises a tank body sleeved with the stirring shaft, a driving shell arranged above the tank body, and a driving motor arranged on the driving shell;
the bottom of the tank body is also provided with an air inlet and an air outlet and an atomized chemical reagent inlet.
In a further embodiment, a driving gear set sleeved on the stirring shaft is installed in the driving shell.
In a further embodiment, the driving gear set comprises a driving shaft inserted in the driving motor, a driving gear sleeved on the driving shaft, and a first transmission gear and a second transmission gear which are arranged on two sides of the driving gear and are in meshing transmission with the driving gear;
design drive gear group, mainly stir in order to drive two sets of rabbling mechanisms, and then further the quick fusion reaction of the internal waste gas of jar and atomizing chemical reagent with higher speed.
In a further embodiment, the first transmission gear and the second transmission gear are respectively sleeved on the stirring shafts of the two groups of stirring mechanisms.
In a further embodiment, the peripheral stirring paddle comprises a peripheral stirring block sleeved on the stirring shaft and positioned below the sinking stirring paddle, and a plurality of groups of peripheral guide plates arranged on the periphery of the peripheral stirring block and vertically arranged with the peripheral stirring block;
the peripheral stirring paddle is designed to cooperate with the sinking stirring paddle to work, and further fusion reaction efficiency is further enhanced.
Has the advantages that: the utility model relates to an exhaust-gas treatment reaction storehouse sinks through the design and stirs the oar and drive jar body top waste gas and carry out the downflow, and then accomplishes the top waste gas to the jar body and the conversion of bottom waste gas, and then makes and fuses fast with atomizing chemical reagent, cooperates week portion stirring rake to accomplish simultaneously and carries out annular conversion to the waste gas of week portion stirring rake flat bed, further with higher speed waste gas and atomizing chemical reagent's fusion reaction.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of the driving gear set of the present invention.
Fig. 3 is a schematic view of the stirring mechanism of the present invention.
The reference signs are: the device comprises a base frame 1, a tank body 2, a driving shell 3, a driving motor 4, a driving shaft 41, a driving gear 42, a first transmission gear 43, a second transmission gear 44, a stirring shaft 46, a sinking stirring paddle 47 and a peripheral stirring paddle 48.
Detailed Description
Through research and analysis of the applicant, the reason for the problem (the fusion reaction efficiency of the existing waste gas treatment reaction bin is low) is that the existing waste gas reaction bin generally integrates the stirring paddle to complete the rapid fusion of the waste gas and the added atomized chemical reagent in order to accelerate the fusion reaction of the waste gas and the added atomized chemical reagent, but the stirring of the traditional stirring paddle basically only drives the airflow around the stirring paddle to stir in a flat layer, but cannot drive the airflow to stir in a sinking way, so that the fusion reaction efficiency is low;
and the utility model discloses a design is sunk the stirring rake and is driven jar body top waste gas and carry out the downflow, and then accomplishes the conversion to the top waste gas of the jar body and bottom waste gas, and then makes and the quick integration of atomizing chemical reagent, cooperates week portion's stirring rake to accomplish simultaneously and carries out the annular conversion to the waste gas of week portion's stirring rake flat bed, further with higher speed waste gas and atomizing chemical reagent's fusion reaction.
An exhaust treatment reaction bin comprising: the device comprises a base frame 1 and a reaction tank fixedly connected with the base frame 1; two groups of same stirring mechanisms which have the same structure and are arranged in parallel are arranged in the reaction tank; each group of stirring mechanisms comprises a stirring shaft 46 inserted in the reaction tank, and a plurality of groups of sinking stirring paddles 47 and peripheral stirring paddles 48 sleeved on the stirring shaft 46;
the sinking stirring paddle 47 comprises a sinking stirring block sleeved on the stirring shaft 46 and a plurality of groups of sinking guide plates which are arranged on the periphery of the sinking stirring block and arranged in a preset inclination;
subside through the design stirring rake 47 and drive jar body 2 top waste gas and carry out the downflow, and then accomplish the conversion to jar body 2's top waste gas and bottom waste gas, and then make and the quick integration of atomizing chemical reagent, cooperation week portion stirring rake 48 is accomplished simultaneously and is carried out annular conversion to the waste gas on week portion stirring rake 48 flat bed, further accelerating the fusion reaction of waste gas and atomizing chemical reagent.
The reaction tank comprises a tank body 2 sleeved with the stirring shaft 46, a driving shell 3 arranged above the tank body 2, and a driving motor 4 arranged on the driving shell 3;
the bottom of the tank body 2 is also provided with an air inlet and an air outlet and an atomized chemical reagent inlet.
A driving gear 42 group sleeved on the stirring shaft 46 is installed in the driving shell 3.
The driving gear 42 group comprises a driving shaft 41 inserted in the driving motor 4, a driving gear 42 sleeved on the driving shaft 41, a first transmission gear 43 and a second transmission gear 44 which are arranged on two sides of the driving gear 42 and are in meshing transmission with the driving gear 42;
The first transmission gear 43 and the second transmission gear 44 are respectively sleeved on the stirring shafts 46 of the two groups of stirring mechanisms.
The peripheral stirring paddle 48 comprises a peripheral stirring block sleeved on the stirring shaft 46 and positioned below the sinking stirring paddle 47, and a plurality of peripheral guide plates which are arranged on the periphery of the peripheral stirring block and are vertically arranged with the peripheral stirring block;
the peripheral stirring paddle 48 is designed to work in cooperation with the sinking stirring paddle 47, so that the fusion reaction efficiency is further enhanced.
Description of the working principle: at first with waste gas through the business turn over gas port discharge jar body 2 in discharging into jar body 2 with required atomizing chemical reagent through the atomizing chemical reagent entry, drive shaft 41 through driving motor 4 and rotate, and then drive gear 42 and rotate, and then drive first drive gear 43 and second drive gear 44 and rotate, and then drive two sets of (mixing) shafts 46 respectively and rotate, and then drive stirring rake 47 and week portion stirring rake 48 that sink and rotate, and the rotation of stirring rake 47 sinks, the oar drives the upper and lower flow of the internal airflow of jar body 2, and then the stirring of cooperation week portion stirring rake 48, make waste gas and atomizing chemical reagent in the jar body 2 can fuse the reaction fast.
It should be noted that the various features described in the above embodiments may be combined in any suitable manner without departing from the scope of the invention. In order to avoid unnecessary repetition, the present invention does not separately describe various possible combinations.
Claims (6)
1. An exhaust treatment reaction bin comprising:
the reaction tank is fixedly connected with the base frame;
two groups of same stirring mechanisms which have the same structure and are arranged in parallel are arranged in the reaction tank;
each group of stirring mechanisms comprises a stirring shaft inserted in the reaction tank, and a plurality of groups of sinking stirring paddles and peripheral stirring paddles sleeved on the stirring shaft;
the submerged stirring paddle is characterized by comprising a submerged stirring block sleeved on the stirring shaft and a plurality of groups of submerged guide plates which are arranged on the periphery of the submerged stirring block in a preset gradient.
2. The waste gas treatment reaction bin of claim 1, wherein the reaction tank comprises a tank body sleeved with the stirring shaft, a driving shell arranged above the tank body, and a driving motor arranged on the driving shell.
3. The waste gas treatment reaction bin as claimed in claim 2, wherein a driving gear set sleeved on the stirring shaft is installed in the driving shell.
4. The exhaust-gas treatment reaction bin of claim 3, wherein the driving gear set comprises a driving shaft inserted in the driving motor, a driving gear sleeved on the driving shaft, and a first transmission gear and a second transmission gear which are arranged on two sides of the driving gear and are in meshing transmission with the driving gear.
5. The exhaust-gas treatment reaction bin of claim 4, wherein the first transmission gear and the second transmission gear are respectively sleeved on the stirring shafts of the two groups of stirring mechanisms.
6. The waste gas treatment reaction bin according to claim 1, wherein the peripheral stirring paddle comprises a peripheral stirring block sleeved on the stirring shaft and located below the sinking stirring paddle, and a plurality of sets of peripheral guide plates arranged on the periphery of the peripheral stirring block and perpendicular to the peripheral stirring block.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121363809.2U CN215086088U (en) | 2021-06-19 | 2021-06-19 | Waste gas treatment reaction bin |
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CN202121363809.2U CN215086088U (en) | 2021-06-19 | 2021-06-19 | Waste gas treatment reaction bin |
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CN215086088U true CN215086088U (en) | 2021-12-10 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115301058A (en) * | 2022-08-03 | 2022-11-08 | 安徽省生态环境科学研究院 | Carbon-containing waste gas purification and concentration device |
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2021
- 2021-06-19 CN CN202121363809.2U patent/CN215086088U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115301058A (en) * | 2022-08-03 | 2022-11-08 | 安徽省生态环境科学研究院 | Carbon-containing waste gas purification and concentration device |
CN115301058B (en) * | 2022-08-03 | 2023-12-22 | 安徽省生态环境科学研究院 | Purification and concentration device for carbon-containing waste gas |
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