CN211837132U - Water glass dosing device of flue gas prewashing tower - Google Patents

Water glass dosing device of flue gas prewashing tower Download PDF

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Publication number
CN211837132U
CN211837132U CN202020030349.0U CN202020030349U CN211837132U CN 211837132 U CN211837132 U CN 211837132U CN 202020030349 U CN202020030349 U CN 202020030349U CN 211837132 U CN211837132 U CN 211837132U
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fixedly connected
water glass
dosing device
flue gas
motor
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CN202020030349.0U
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苏号林
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Shaoguan Zhenjiang Water Glass Factory Co ltd
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Shaoguan Zhenjiang Water Glass Factory Co ltd
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Abstract

The utility model belongs to the field of flue gas treatment, in particular to a water glass dosing device of a flue gas prewashing tower, which comprises a dosing device main body, a main tank body, support legs and a storage liquid tank, wherein the other side of the dosing device main body is fixedly connected with a first motor, one side of the first motor is fixedly connected with a differential mechanism, the top of one side of the differential mechanism is fixedly connected with an air pump, the bottom of the air pump is fixedly connected with a transmission pipe, the top of one side of the dosing device main body is fixedly connected with the main tank body, the bottom of the main tank body is fixedly connected with a bottom plate, the bottom plate can better support the main tank body through the support legs, thereby the main tank body can better stand on the ground, the dosing device main body can overturn reserved water glass solution through the air pump, thereby the reserved water glass solution can be stored in the main tank body without, further, the water glass solution can better treat the flue gas, and can have wide development prospect in the future.

Description

Water glass dosing device of flue gas prewashing tower
Technical Field
The utility model relates to the technical field of flue gas treatment, in particular to a water glass dosing device of a flue gas prewashing tower.
Background
The flue gas need wash through the scrubber in advance before getting into the absorption tower, reaches the purpose of getting rid of the hydrogen fluoride in the flue gas, prevents that hydrogen fluoride from getting into the absorption tower along with the flue gas and contacting the back with the absorption liquid, influences the absorption effect of absorption liquid and increases the corrosivity of absorption liquid, just needs to use the flue gas that water glass solution and get into in the scrubber in advance to carry out neutralization this moment.
The water glass charge device of current flue gas prewashing tower can not be fine deposit the water glass branch in inside and carry out drying process, thereby make when needing to use water glass powder modulation water glass solution, the water glass powder condenses the place of depositing easily, and then make the unable and better mixing of water glass powder, the water glass charge device of current flue gas prewashing tower can only place water glass solution after having prepared water glass solution in inside simultaneously, when water glass solution placed for a long time, water glass powder among the water glass solution deposits, thereby make the hydrogen fluoride in the flue gas that water glass solution can not be fine carry out neutralization.
Therefore, how to design a water glass dosing device of a flue gas prewashing tower becomes the problem to be solved at present.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a water glass charge device of flue gas prewashing tower to the problem that the water glass powder that provides in solving above-mentioned background art can not carry out drying process and the water glass powder in the water glass solution that has modulated deposits easily.
In order to achieve the above object, the utility model provides a following technical scheme: a water glass dosing device of a flue gas prewashing tower comprises a dosing device main body, a main tank body, support legs and a storage liquid tank, wherein a first motor is fixedly connected to the other side of the dosing device main body, a differential mechanism is fixedly connected to one side of the first motor, an air pump is fixedly connected to the top of one side of the differential mechanism, a transmission pipe is fixedly connected to the bottom of the air pump, a stirring blade is movably connected to the other side of the transmission pipe, a powder inlet is fixedly connected to one side of the top of the dosing device main body, a water inlet is fixedly connected to one side of the middle of the dosing device main body, the main tank body is fixedly connected to the top of one side of the dosing device main body, a movable support leg is fixedly connected to the bottom of one side of the dosing device main body, a liquid outlet pipe is fixedly connected to the bottom, the bottom fixedly connected with main power pole of second motor, the both sides fixedly connected with puddler of main power pole, one side bottom fixedly connected with heating rod of puddler, the bottom fixedly connected with heater of heating rod, the inside of depositing the fluid reservoir has water glass liquid, the inside bottom fixedly connected with liquid pump of depositing the fluid reservoir.
Preferably, the bottom of the conveying pipe is fixedly connected with a check valve.
Preferably, the bottom of the main tank body is fixedly connected with a bottom plate.
Preferably, the other side of the dosing device main body is fixedly connected with a storage liquid tank.
Preferably, the second motor, the main force rod, the stirring rod, the heating rod and the heater jointly form a drying mechanism.
Preferably, the dosing device main body is formed by combining a first motor on the other side of the dosing device main body, a differential mechanism on one side of the first motor, an air pump on the top of one side of the differential mechanism, a stirring blade at the bottom of the differential mechanism, a transmission pipe on one side of the stirring blade and a check valve at the bottom of the stirring blade.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this kind of water glass charge device of flue gas prewashing tower, stoving mechanism make the water glass powder can not also be because of moist reason and agglomerate when depositing in the inside top of the main tank body for a long time through such setting to make the water glass powder can be better when the user needs to use transmit to the bottom from the inside top of the main tank body and mix, and then make that dry water glass powder can be better mix with water.
2. This kind of water glass charge device of flue gas prewashing tower, charge device main part make the user can turn the reservation water glass solution that mixes well through the inside air pump of charge device main part to make the water glass solution of reservation can not take place the condition of water glass powder sediment in the bottom of water because of the time is too for a long time when depositing in the internal portion of main tank, and then make water glass solution can better keep mixing good state.
Drawings
FIG. 1 is a schematic view of the main structure of the drug adding device of the present invention;
FIG. 2 is a schematic view of the front section structure of the main body of the drug adding device of the present invention;
FIG. 3 is an enlarged schematic view of the structure at the position A of the present invention;
fig. 4 is an enlarged schematic structural diagram of the position B of the present invention.
The labels in the figure are: 1. the chemical adding device comprises a chemical adding device body, 101, a first motor, 102, a differential mechanism, 103, an air pump, 104, stirring blades, 105, transmission pipes, 106, a check valve, 2, a powder inlet, 3, a water inlet, 4, a main tank body, 5, a bottom plate, 6, supporting legs, 7, a storage liquid tank, 8, a liquid outlet pipe, 9, a second motor, 10, a main force rod, 11, a stirring rod, 12, a heating rod, 13, a heater, 14, water glass liquid, 15 and a liquid pump.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, rather than all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the protection scope of the present invention based on the embodiments of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a water glass dosing device of a flue gas prewashing tower comprises a dosing device main body 1, a main tank body 4, support legs 6 and a storage tank 7, wherein the other side of the dosing device main body 1 is fixedly connected with a first motor 101, one side of the first motor 101 is fixedly connected with a differential mechanism 102, the top of one side of the differential mechanism 102 is fixedly connected with an air pump 103, the bottom of the air pump 103 is fixedly connected with a transmission pipe 105, the other side of the transmission pipe 105 is movably connected with a stirring blade 104, one side of the top of the dosing device main body 1 is fixedly connected with a powder inlet 2, one side of the middle of the dosing device main body 1 is fixedly connected with a water inlet 3, the top of one side of the dosing device main body 1 is fixedly connected with the main tank body 4, the bottom of one side of the dosing device main body 1 is fixedly connected with a movable support leg 6, the bottom of the, the bottom fixedly connected with main power pole 10 of second motor 9, the both sides fixedly connected with puddler 11 of main power pole 10, one side bottom fixedly connected with heating rod 12 of puddler 11, the bottom fixedly connected with heater 13 of heating rod 12, the inside of depositing fluid reservoir 7 has water glass liquid 14, deposits the inside bottom fixedly connected with liquid pump 15 of fluid reservoir 7.
Preferably, the bottom of the delivery pipe 105 is fixedly connected with a check valve 106, when the air pump 103 operates, the check valve 106 is in an open state due to the fact that the air pump 103 delivers air through the delivery pipe 105, so that the air inside the delivery pipe 105 can be transmitted into the mixed liquid through the check valve 106, when the air pump 103 stops operating, the check valve 106 is closed, so that the mixed liquid on the periphery of the check valve 106 cannot enter the delivery pipe 105, and the air pump 103 cannot be soaked by the mixed liquid when the operation stops.
Preferably, the bottom of the main tank 4 is fixedly connected with a bottom plate 5, the bottom plate 5 is fixed at the bottom of the main tank 4, and support legs 6 are fixed around the bottom of the bottom plate 5, when the main tank 4 stands on the ground, the self weight of the main tank 4 is pressed on the bottom plate 5, and then the bottom plate 5 transmits the gravity to the support legs 6, so that the support legs 6 can better support the main tank 4 through the bottom plate 5, and the main tank 4 can stand on the ground more stably.
Preferably, fluid reservoir 7 is deposited to the opposite side fixedly connected with of charge device main part 1, deposit fluid reservoir 7 and be used for depositing the inside water glass solution that has mixed of the main tank body 4, thereby make the main tank body 4 can mix water glass powder and water again, and deposit the inside opposite side bottom of fluid reservoir 7 and be fixed with liquid pump 15, when the user needs to use water glass solution to handle the flue gas, liquid pump 15 will deposit the inside water glass solution transmission of fluid reservoir 7 to the inside flue gas that handles of prewashing tower that needs to use, make the main tank body 4 can be again after mixing water glass solution through depositing setting up of fluid reservoir 7 carry out water glass solution and mix, thereby make charge device main part 1 can be incessant provide water glass solution to the prewashing tower.
Preferably, the second motor 9, the main force rod 10, the stirring rod 11, the heating rod 12 and the heater 13 together form a drying mechanism, when a user introduces the sodium silicate powder into the top of the main tank 4 through the powder inlet 2, the second motor 9 operates, the main force rod 10 at the bottom is driven to rotate clockwise when the second motor 9 operates, the stirring rod 11 is driven to rotate clockwise when the main force rod 10 rotates clockwise, the sodium silicate powder at the top of the inside of the main tank 4 is turned over when the stirring rod 11 rotates clockwise, the heater 13 also operates when the second motor 9 operates, the heater 13 heats the heating rod 12 when the heater 13 operates, the inner wall of the inside of the main tank 4 at the top of the heating rod 12 is heated after the heating rod 12 is heated, because the second motor 9 and the heater 13 operate simultaneously, so the inner wall that is heated when the second motor 9 overturns the sodium silicate powder through puddler 11 will heat the sodium silicate powder, again because the sodium silicate powder is in the state of overturning always, so the sodium silicate powder can be better heat through the outer wall that is heated, when the sodium silicate powder heats, the moisture of smuggleing secretly in the sodium silicate powder will be dried, thereby can not agglomerate because of the reason of inside entrainment water when making the sodium silicate powder deposit at the inside top of the main tank body 4, make the sodium silicate powder can not agglomerate because of moist reason when depositing the inside top of the main tank body 4 too long, thereby make the inside top of the main tank body 4 that the sodium silicate powder can be better when the user needs to use transmit to the bottom and mix, and then make dry sodium silicate powder can be better mix with water.
Preferably, the dosing device body 1 is formed by combining a first motor 101 on the other side of the dosing device body 1, a differential 102 on one side of the first motor 101, an air pump 103 on the top of one side of the differential 102, a stirring blade 104 at the bottom of the differential 102, a transmission pipe 105 on one side of the stirring blade 104 and a check valve 106 at the bottom of the stirring blade 104, when a user mixes water glass powder with water through the dosing device body 1, the first motor 101 operates, when the first motor 101 operates, the first motor 101 drives the differential 102 on one side to correspondingly rotate, when the differential 102 rotates, the differential 102 can change a vertical rotating force transmitted by the first motor 101 into a horizontal rotating force, when the differential 102 changes the vertical rotating force into the horizontal rotating force, the stirring blade 104 at the bottom is driven to correspondingly rotate, when the stirring blade 104 rotates, the stirring blade 104 can make the water glass powder and water mixed more uniformly, after the stirring blade 104 mixes the water glass powder and water more uniformly through rotation, the user can control the electromagnetic valve in the connecting pipe between the main tank body 4 and the storage tank 7 to be opened, so that the mixed water glass solution flows into the storage tank 7, after the water glass solution in the main tank body 4 completely enters the storage tank 7, the user can close the electromagnetic valve in the connecting pipe, and then the user mixes the water glass powder and water by using the same method, so as to achieve the purpose of mixing the reserved water glass solution, after the water glass solution is mixed, the user can stop the first motor 101 to operate, then open the air pump 103, the air pump 103 can convey the gas in the main tank body 4 to the inside of the transmission pipe 105 when the air pump operates, and the mixed water glass solution can be conveyed through the check valve 106 when the gas comes to the check valve 106 through the transmission pipe 105 Among the glass solution, when gaseous entering water glass solution, water glass solution will roll, when water glass solution is blown the roll by gas, the condition of sediment just can not take place for water glass powder among the water glass solution, make the user can turn the reservation water glass solution of mixing through the inside air pump 103 of charge device main part 1 through such setting, thereby make the water glass solution of reserving can not take place the condition of water glass powder sediment in the bottom of water because of time overlength when depositing in main tank body 4 inside, and then make water glass solution can better keep in the state of mixing.
The working principle is as follows: first, when the air pump 103 operates, the check valve 106 is in an open state due to the fact that the air pump 103 transmits air through the transmission pipe 105, so that the air inside the transmission pipe 105 can be transmitted into the mixed liquid through the check valve 106, when the air pump 103 stops operating, the check valve 106 is closed, so that the mixed liquid on the periphery of the check valve 106 cannot enter the transmission pipe 105, and the air pump 103 cannot be soaked by the mixed liquid when the operation stops.
Then, the bottom plate 5 is fixed at the bottom of the main tank 4, and the support legs 6 are fixed around the bottom of the bottom plate 5, when the main tank 4 stands on the ground, the self weight of the main tank 4 is pressed on the bottom plate 5, and then the bottom plate 5 transmits the gravity to the support legs 6, so that the support legs 6 can better support the main tank 4 through the bottom plate 5, and the main tank 4 can stand on the ground more stably.
Then, deposit fluid reservoir 7 and be used for depositing the inside water glass solution that has mixed of main jar of body 4, thereby make main jar of body 4 can mix water glass powder and water once more, and deposit the inside opposite side bottom of fluid reservoir 7 and be fixed with liquid pump 15, when the user needs to use water glass solution to handle the flue gas, liquid pump 15 will deposit the inside water glass solution transmission of fluid reservoir 7 to the inside flue gas that handles of prewashing tower that needs to use, make main jar of body 4 can be once more after mixing water glass solution through the setting of depositing fluid reservoir 7 carry out water glass solution and mix, thereby make charge device main part 1 can be incessant provide water glass solution to the prewashing tower.
Next, when a user introduces the water glass powder into the top of the main tank 4 through the powder inlet 2, the second motor 9 operates, the second motor 9 drives the main force rod 10 at the bottom to rotate clockwise when operating, the main force rod 10 drives the stirring rod 11 to rotate clockwise when rotating clockwise, the water glass powder at the top of the main tank 4 is turned over when the stirring rod 11 rotates clockwise, the heater 13 also performs corresponding operation when the second motor 9 operates, the heater 13 heats the heating rod 12 when the heater 13 operates, the inner wall of the main tank 4 at the top of the heating rod 12 is heated by the heating rod 12, and the water glass powder is heated by the heated inner wall when the second motor 9 turns over the water glass powder through the stirring rod 11 because the second motor 9 and the heater 13 operate simultaneously, because the sodium silicate powder is always in the state of turning, the sodium silicate powder can be better heated through the heated outer wall, when the sodium silicate powder is heated, the moisture entrained in the sodium silicate powder can be dried, so that the sodium silicate powder can not be caked due to the internal water entrainment when being stored at the top inside the main tank body 4, the sodium silicate powder can not be caked due to the damp reason when being stored at the top inside the main tank body 4 for too long time through the arrangement, the sodium silicate powder can be better transmitted to the bottom from the top inside the main tank body 4 to be mixed when a user needs to use, and the dried sodium silicate powder can be better mixed with water.
Finally, when the user mixes the water glass powder and the water through the dosing device main body 1, the first motor 101 operates, when the first motor 101 operates, the first motor 101 drives the differential mechanism 102 on one side to correspondingly rotate, when the differential mechanism 102 rotates, the differential mechanism 102 can change the vertical rotating force transmitted by the first motor 101 into a horizontal rotating force, when the differential mechanism 102 changes the vertical rotating force into the horizontal rotating force, the stirring blade 104 at the bottom can be driven to correspondingly rotate, when the stirring blade 104 rotates, the stirring blade 104 can enable the water glass powder and the water to be mixed more uniformly, after the stirring blade 104 rotates to enable the water glass powder and the water to be mixed more uniformly, the user can control the electromagnetic valve in the connecting pipe between the main tank body 4 and the storage tank 7 to be opened, so that the mixed water glass solution flows into the storage tank 7, after the water glass solution in the main tank body 4 completely enters the storage tank 7, the user can close the electromagnetic valve in the connecting pipe, and then the user mixes the water glass powder and the water by using the same method, so as to achieve the purpose of mixing the reserved water glass solution, after the water glass solution is mixed, the user can stop the first motor 101 to operate, then start the air pump 103, the air pump 103 can convey the gas in the main tank body 4 to the inside of the conveying pipe 105 when operating, the gas can be conveyed into the mixed water glass solution through the check valve 106 when coming to the check valve 106 through the conveying pipe 105, when the gas enters the water glass solution, the water glass solution can be rolled, when the water glass solution is blown by the gas to roll, the water glass powder in the water glass solution can not be precipitated, make the user can turn the reservation water glass solution of mixing through the inside air pump 103 of charge device main part 1 through such setting to make the water glass solution of reservation can not take place the condition that the water glass powder deposits in the bottom of water because of the time is too long when depositing inside the main tank body 4, and then make water glass solution can better keep mixing good state, this is exactly this kind of flue gas prewashing tower's water glass charge device's theory of operation.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a water glass charge device of flue gas prewashing tower, includes charge device main part (1), the main tank body (4), stabilizer blade (6) and deposits fluid reservoir (7), its characterized in that: the powder feeding device is characterized in that a first motor (101) is fixedly connected to the other side of the dosing device main body (1), a differential mechanism (102) is fixedly connected to one side of the first motor (101), an air pump (103) is fixedly connected to the top of one side of the differential mechanism (102), a transmission pipe (105) is fixedly connected to the bottom of the air pump (103), a stirring blade (104) is movably connected to the other side of the transmission pipe (105), a powder inlet (2) is fixedly connected to one side of the top of the dosing device main body (1), a water inlet (3) is fixedly connected to one side of the middle of the dosing device main body (1), a main tank body (4) is fixedly connected to the top of one side of the dosing device main body (1), a movable support leg (6) is fixedly connected to the bottom of one side of the dosing device main body (1), and a liquid, the inside top fixedly connected with second motor (9) of the main tank body (4), the bottom fixedly connected with principal pole (10) of second motor (9), both sides fixedly connected with puddler (11) of principal pole (10), one side bottom fixedly connected with heating rod (12) of puddler (11), bottom fixedly connected with heater (13) of heating rod (12).
2. The water glass dosing device of the flue gas prewashing tower as claimed in claim 1, wherein: the inside of the liquid storage tank (7) is provided with water glass liquid (14), and the bottom inside the liquid storage tank (7) is fixedly connected with a liquid pump (15).
3. The water glass dosing device of the flue gas prewashing tower as claimed in claim 1, wherein: the bottom of the conveying pipe (105) is fixedly connected with a check valve (106).
4. The water glass dosing device of the flue gas prewashing tower as claimed in claim 1, wherein: the bottom of the main tank body (4) is fixedly connected with a bottom plate (5).
5. The water glass dosing device of the flue gas prewashing tower as claimed in claim 1, wherein: the other side of the medicine adding device main body (1) is fixedly connected with a storage liquid tank (7).
6. The water glass dosing device of the flue gas prewashing tower as claimed in claim 1, wherein: and the second motor (9), the main force rod (10), the stirring rod (11), the heating rod (12) and the heater (13) jointly form a drying mechanism.
7. The water glass dosing device of the flue gas prewashing tower as claimed in claim 1, wherein: the medicine adding device main body (1) is formed by combining a first motor (101) on the other side of the medicine adding device main body (1), a differential mechanism (102) on one side of the first motor (101), an air pump (103) on the top of one side of the differential mechanism (102), a stirring blade (104) at the bottom of the differential mechanism (102), a transmission pipe (105) on one side of the stirring blade (104) and a check valve (106) at the bottom of the stirring blade (104) together.
CN202020030349.0U 2020-01-08 2020-01-08 Water glass dosing device of flue gas prewashing tower Active CN211837132U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020030349.0U CN211837132U (en) 2020-01-08 2020-01-08 Water glass dosing device of flue gas prewashing tower

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020030349.0U CN211837132U (en) 2020-01-08 2020-01-08 Water glass dosing device of flue gas prewashing tower

Publications (1)

Publication Number Publication Date
CN211837132U true CN211837132U (en) 2020-11-03

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Application Number Title Priority Date Filing Date
CN202020030349.0U Active CN211837132U (en) 2020-01-08 2020-01-08 Water glass dosing device of flue gas prewashing tower

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CN (1) CN211837132U (en)

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