CN212655486U - A deacidification stove for producing fumed silica - Google Patents

A deacidification stove for producing fumed silica Download PDF

Info

Publication number
CN212655486U
CN212655486U CN202022431048.1U CN202022431048U CN212655486U CN 212655486 U CN212655486 U CN 212655486U CN 202022431048 U CN202022431048 U CN 202022431048U CN 212655486 U CN212655486 U CN 212655486U
Authority
CN
China
Prior art keywords
fumed silica
rotary kiln
tail gas
heating
combustor
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.)
Active
Application number
CN202022431048.1U
Other languages
Chinese (zh)
Inventor
刘倩
张丽烽
余利方
林勇
张辉
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.)
Ningxia Futai Silicon Industry Co ltd
Original Assignee
Ningxia Futai Silicon Industry Co ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Ningxia Futai Silicon Industry Co ltd filed Critical Ningxia Futai Silicon Industry Co ltd
Priority to CN202022431048.1U priority Critical patent/CN212655486U/en
Application granted granted Critical
Publication of CN212655486U publication Critical patent/CN212655486U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Muffle Furnaces And Rotary Kilns (AREA)
  • Silicon Compounds (AREA)

Abstract

The utility model discloses a deacidification stove for producing fumed silica, including fumed silica charge-in pipeline, heating section casing, the rotary kiln barrel, fumed silica aggregate ware, the heating combustor, the technology combustor, there is fumed silica aggregate ware at rotary kiln barrel tail design, the hypomere of fumed silica aggregate ware connects combustor high temperature air current, high temperature air current admits air at fumed silica aggregate ware tangential direction, stir and fluidize the interior material of fumed silica aggregate ware, then high temperature air current gets into from rotary kiln barrel tail and passes the rotary kiln barrel, fumed silica and the high temperature air current contact of stirring in the rotary kiln barrel, with material heating and desorption fumed silica surperficial hydrogen chloride and chlorine. The device of the utility model is simple in structure, the simplified operation has improved the deacidification ability simultaneously, in addition, the utility model discloses the heat utilization efficiency of device is high, can reduce the consumption when improving the productivity, improves the qualification rate of product, improves work efficiency, has the value of popularization and application.

Description

A deacidification stove for producing fumed silica
Technical Field
The utility model relates to a fumed silica apparatus for producing especially relates to a deacidification stove for producing fumed silica.
Background
The fumed silica is one of the most important nano-scale inorganic raw materials, and has the characteristics of large specific surface area, strong surface adsorption, large surface energy, high chemical purity, good dispersion performance, thermal resistance, electric resistance and the like due to small particle size, excellent stability, reinforcement, thickening property and thixotropy, unique characteristics in various subjects and fields and irreplaceable effect. In the prior art, processing equipment for fumed silica is generally of a multi-stage series vertical cylindrical fluidized bed structure, a single horizontal fluidized bed structure is provided individually, the outer wall of the fluidized bed is mostly in an electric heating heat supply mode, the multi-stage vertical fluidized bed has more equipment, the operation is complex, and the capacity of a device with poor deacidification capability is small; the multistage vertical fluidized bed needs additional conveying power for materials to enter and exit the fluidized bed for multiple times, so that the tail gas load of a production device is increased, and the energy consumption for production is higher due to repeated heating for the materials to enter and exit; the horizontal fluidized bed has high energy consumption and gas consumption when the device is used for producing small energy, and has small operation elasticity and is not economical; because the horizontal fluidized bed is of a cuboid structure, the wall surface of the box body is easy to deform when electric heating is used, and thicker materials are needed for preventing equipment from deforming, so that the equipment investment is increased; the horizontal fluidized bed needs larger deacidification air and steam to meet the basic requirement of maintaining the bed height of the fluidized bed, and if the gas velocity is low, the fluidized bed has the abnormal local bed collapse accumulation, so that the product quality is unqualified.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a deacidification stove for producing fumed silica.
In order to achieve the purpose, the utility model is implemented according to the following technical scheme:
the utility model comprises a fumed silica feeding pipeline, a heating section shell, a rotary kiln cylinder, a fumed silica collector, a heating burner and a process burner, wherein the fumed silica feeding pipeline is externally provided with an outer shell, the outer shell of the fumed silica feeding pipeline is in rotary sealing connection with one end of the rotary kiln cylinder through a process section sealing rotating shaft, the heating section shell is arranged at the periphery of the rotary kiln cylinder, the two ends of the heating section shell and the joint of the rotary kiln cylinder are in rotary sealing connection through the heating section sealing rotating shaft, the other end of the rotary kiln cylinder is in rotary sealing connection with the fumed silica collector through the process section sealing rotating shaft, the lower end of the heating section shell is connected with the heating burner, the upper end of the heating section shell is provided with a heating tail gas outlet, one side of the fumed silica collector is provided with the process burner, and a tail gas outlet is formed in the shell outside the fumed silica feeding pipeline, a gear ring is arranged on the excircle of one end of the rotary kiln cylinder, and the rotary kiln cylinder is connected with a driving device through the gear ring to rotate.
As an improvement, the tail gas discharge port is provided with a tail gas separation treatment device.
Specifically, the tail gas separation treatment device comprises a tail gas cyclone separator, a reclaimed material unloader and a process tail gas pipe, wherein one end of the process tail gas pipe is connected with the tail gas discharge port, the other end of the process tail gas pipe is connected with an air inlet of the tail gas cyclone separator, the upper end of the tail gas cyclone separator is a process tail gas outlet, the lower end of the tail gas cyclone separator is provided with the reclaimed material unloader, and an outlet of the reclaimed material unloader is connected into the rotary kiln cylinder through a pipeline.
Preferably, a heating section guide plate is arranged on the inner wall of the heating section shell. And the inner wall of the rotary kiln barrel is provided with a barrel internal spiral belt.
Preferably, rolling rings are arranged at two ends of the rotary kiln cylinder body and are positioned on the support.
Further, the lower end of the fumed silica collector is connected with one end of a product unloading machine, and the other end of the product unloading machine is a fumed silica outlet.
Specifically, be provided with heating combustor primary air and heating combustor secondary air on the heating combustor, the inlet end access of heating combustor fuel gas. The process burner is provided with secondary air of the process burner and primary air of the process burner, and the air inlet end of the process burner is connected with fuel gas of the process burner.
Preferably, the process section sealing rotating shaft and the heating section sealing rotating shaft are both provided with a sealing air inlet.
The utility model has the advantages that:
the utility model relates to a deacidification stove for producing fumed silica compares with prior art, the utility model discloses a device simple structure has simplified the operation, has improved the deacidification ability simultaneously, in addition, the utility model discloses the heat utilization efficiency of device is high, can reduce the consumption when improving the productivity, improves the qualification rate of product, improves work efficiency, has the value of popularization and application.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a partially enlarged view of a portion a in fig. 1.
Detailed Description
The invention will be further described with reference to the drawings and specific embodiments, illustrative embodiments and description of which are provided herein to explain the invention, but not as a limitation thereof.
As shown in fig. 1: the utility model comprises a fumed silica feeding pipeline 6, a heating section shell 7, a rotary kiln barrel 8, a fumed silica collector 11, a heating burner 13 and a process burner 14, wherein the outside of the fumed silica feeding pipeline 6 is provided with an outer shell, the outer shell of the fumed silica feeding pipeline 6 is connected with one end of the rotary kiln barrel 8 in a rotating and sealing way through a process section sealing rotating shaft 4, the heating section shell 7 is arranged at the periphery of the rotary kiln barrel 8, the two ends of the heating section shell 7 and the joint of the rotary kiln barrel 8 are connected in a rotating and sealing way through a heating section sealing rotating shaft 5, the other end of the rotary kiln barrel 8 is connected with the fumed silica collector 11 in a rotating and sealing way through the process section sealing rotating shaft 4, the lower end of the heating section shell 7 is connected with the heating burner 13, the upper end of the heating section shell 7 is provided with a heating tail gas outlet 26, the process burner 14 is arranged on one side of the fumed silica collector 11, a tail gas discharge port is formed in the shell outside the fumed silica feeding pipeline 6, a gear ring 16 is arranged on the excircle of one end of the rotary kiln cylinder 8, and the rotary kiln cylinder 8 is connected with a driving device through the gear ring 16 to rotate.
The utility model discloses a deacidification stove is rotary kiln formula structure, has the rotation that external force kept the bed body, can keep the abundant contact of gas and material under arbitrary output, can not influence product quality because of the productivity changes, and high temperature air current is counter current motion with fumed silica in the kiln, and fumed silica moves from the kiln head to the kiln tail, and high temperature air current moves from the kiln tail to the kiln head behind the fumed silica aggregate ware.
A fumed silica collector is arranged at the tail of a rotary kiln cylinder body 8, high-temperature airflow of a burner is connected to the middle lower section of the fumed silica collector, the high-temperature airflow enters the fumed silica collector in the tangential direction, materials in the fumed silica collector are stirred and fluidized, then the high-temperature airflow enters the rotary kiln cylinder body from the tail of the rotary kiln cylinder body and penetrates through the rotary kiln cylinder body, the fumed silica stirred in the rotary kiln cylinder body is contacted with the high-temperature airflow, and the materials are heated and hydrogen chloride and chlorine on the surface of the fumed silica are removed.
As an improvement, the tail gas discharge port is provided with a tail gas separation treatment device.
Specifically, the tail gas separation treatment device comprises a tail gas cyclone separator 1, a reclaimed material unloading machine 2 and a process tail gas pipe 3, wherein one end of the process tail gas pipe 3 is connected with the tail gas outlet, the other end of the process tail gas pipe 3 is connected with the gas inlet of the tail gas cyclone separator 1, the upper end of the tail gas cyclone separator 1 is a process tail gas outlet 18, the reclaimed material unloading machine 2 is arranged at the lower end of the tail gas cyclone separator 1, and the outlet of the reclaimed material unloading machine 2 is connected in the rotary kiln cylinder 8 through a pipeline.
A gas-phase white carbon black semi-finished product feeding hole and a tail gas outlet are designed at the 8 ends of the rotary kiln barrel, white carbon black is separated from the tail gas of the deacidification furnace through a tail gas cyclone separator and is returned to the rotary kiln barrel 8 by a reclaimed material unloading machine, and the tail gas of the tail gas cyclone separator enters a tail gas system or a separation system of the gas-phase white carbon black production device.
Preferably, a heating section flow guide plate 10 is arranged on the inner wall of the heating section shell 7. And the inner wall of the rotary kiln cylinder body 8 is provided with a cylinder body inner spiral belt 9.
The utility model discloses the rotary kiln main part of deacidification stove is inside and outside bidirectional heating, and the design has fixed heating section casing in the outside of rotary kiln barrel, and the design has the heating section guide plate in the heating section casing, and the steam that produces by the combustor is under the effect of heating section guide plate with the interior material direction of rotary kiln barrel against the current and encircle rotary kiln barrel rotary heating. The inner wall of the rotary kiln cylinder 8 is provided with a cylinder inner screw belt, the cylinder inner screw belt can turn over the gaseous phase white carbon black in the kiln along with the rotation of the kiln body and can move to the kiln tail along the spiral direction.
Preferably, rolling rings 15 are arranged at two ends of the rotary kiln cylinder 8, and the rolling rings 15 are positioned on the support.
The rotary kiln comprises a rotary kiln barrel body, wherein rolling rings are arranged at two ends of the rotary kiln barrel body and fixed with the rotary kiln barrel body, the rolling rings are placed on two groups of rolling wheels, the rolling wheels are arranged on a support and can roll freely, a gear ring is arranged in front of the rolling rings and connected with a gear of a speed reducer, and the speed reducer can rotate the rotary kiln barrel body at a certain speed through the gear ring.
Further, the lower end of the fumed silica collector 11 is connected with one end of the product unloader 12, the other end of the product unloader 12 is a fumed silica outlet 19, and the material layer height in the fumed silica collector is controlled by the rotating speed of the product unloader.
Specifically, the heating burner 13 is provided with heating burner primary air 23 and heating burner secondary air 25, and the air inlet end of the heating burner 13 is connected to heating burner fuel gas 21. The process combustor 14 is provided with process combustor secondary air 24 and process combustor primary air 22, and the air inlet end of the process combustor 14 is connected with process combustor fuel gas 20.
The heating burner and the process burner are both provided with a fuel inlet, a primary air inlet and a secondary air inlet, natural gas or hydrogen is used as fuel, primary air is combustion air, the temperature of high-temperature airflow is adjusted by adjusting the consumption of the fuel and the primary air, and the flow rate of the high-temperature airflow in the kiln is adjusted by adjusting the secondary air.
Preferably, the process section seal rotating shaft 4 and the heating section seal rotating shaft 5 are both provided with a seal air inlet 27.
A process section sealing rotating shaft is designed at the kiln head and the kiln tail of the rotary kiln cylinder body 8, the process section sealing rotating shaft adopts two mixed sealing structures of a labyrinth and a packing, the packing is sealed at the side close to the atmosphere, a hot air interface is also designed between the labyrinth seal and the packing seal, and hot air is introduced to block the leakage of hydrogen chloride and chlorine, as shown in figure 2.
A heating section sealing rotating shaft is arranged between the outer wall of the rotary kiln barrel and the heating section shell, the heating section sealing adopts a labyrinth and packing mixed sealing structure, the packing is sealed on the side close to the atmosphere, a normal-temperature air interface is designed between the labyrinth and the packing, and normal-temperature air is introduced to prevent hot air in the heating section from spraying out to hurt people.
Example (b):
the utility model discloses the yield per year of gaseous phase white carbon black that deacidification stove was handled is 500 tons to 10000 tons, can handle 30 ~ 450 square meters per gram of gaseous phase white carbon black of specific surface area.
The utility model discloses the rotary kiln barrel diameter of deacidification stove does: 800mm to 2000mm, the length-diameter ratio of 6:1 to 30:1, the height of an internal spiral belt of 30 to 300mm, the diameter of a fumed silica collector of 1200 to 3000mm, the height of 2400 to 5000mm, and the diameter of a heating section shell of the deacidification furnace: 810-2600 mm.
The utility model discloses deacidification stove feed inlet diameter 100 ~ 400mm, discharge gate diameter 200 ~ 500mm, tail gas pipe diameter 200 ~ 400mm, tail gas cyclone casing diameter 400 ~ 1000mm, cyclone barrel height 600 ~ 2500mm, cyclone recovery unloader diameter 150 ~ 350 mm.
The utility model discloses the sealed and heating section of technology section of deacidification stove all adopts 5 labyrinth seals to add 1 graphite packing and seals.
The utility model discloses deacidification stove rotary kiln barrel rotational speed is 0.5 ~ 5 r/min.
The utility model discloses the rotary kiln slope of deacidification stove is 0 ~ 3.5%.
The utility model discloses heating combustor natural gas flow of rotary kiln: 10 to 50Nm3H, primary air flow rate: 100 to 750Nm30-750 Nm secondary air3/h。
The natural gas flow of the process burner of the rotary kiln is 25-150 Nm3H, primary air flow rate: 250 to 2000Nm30-2000 Nm of secondary air3/h。
The PH value of the fumed silica water dispersion with the specific surface area of 150 square meters per gram is more than or equal to 4.30 when the deacidification furnace is fully loaded;
the PH value of the fumed silica water dispersion with the specific surface area of 200 square meters per gram is more than or equal to 4.20 when the deacidification furnace is fully loaded;
the PH value of the fumed silica water dispersion with the specific surface area of 300 square meters per gram is more than or equal to 4.15 when the deacidification furnace is fully loaded;
the PH value of the fumed silica aqueous dispersion with the specific surface area of 380 square meters per gram is not less than 4.10 when the deacidification furnace is in full load.
The technical scheme of the utility model is not limited to the restriction of above-mentioned specific embodiment, all according to the utility model discloses a technical scheme makes technical deformation, all falls into within the protection scope of the utility model.

Claims (10)

1. The utility model provides a deacidification stove for producing fumed silica which characterized in that: comprises a fumed silica feeding pipeline (6), a heating section shell (7), a rotary kiln cylinder body (8), a fumed silica collector (11), a heating burner (13) and a process burner (14), wherein the outer shell is arranged outside the fumed silica feeding pipeline (6), the outer shell of the fumed silica feeding pipeline (6) is in rotary seal connection with one end of the rotary kiln cylinder body (8) through a process section sealing rotating shaft (4), the heating section shell (7) is arranged at the periphery of the rotary kiln cylinder body (8), the two ends of the heating section shell (7) and the joint of the rotary kiln cylinder body (8) are in rotary seal connection through a heating section sealing rotating shaft (5), the other end of the rotary kiln cylinder body (8) is in rotary seal connection with the fumed silica collector (11) through the process section sealing rotating shaft (4), the lower extreme of heating section casing (7) is connected heating combustor (13), the upper end of heating section casing (7) is provided with heating tail gas export (26), one side of fumed silica aggregate ware (11) sets up technology combustor (14), the installation be provided with the tail gas discharge port on the outer casing of fumed silica charge-in pipeline (6), be provided with ring gear (16) on the one end excircle of rotary kiln barrel (8), rotary kiln barrel (8) are passed through drive arrangement is connected in ring gear (16) and is rotated.
2. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: and the tail gas discharge port is provided with a tail gas separation treatment device.
3. The deacidification furnace for producing fumed silica according to claim 2, characterized in that: the tail gas separation treatment device is composed of a tail gas cyclone separator (1), a reclaimed material unloading machine (2) and a process tail gas pipe (3), one end of the process tail gas pipe (3) is connected with a tail gas discharge port, the other end of the process tail gas pipe (3) is connected with a gas inlet of the tail gas cyclone separator (1), the upper end of the tail gas cyclone separator (1) is a process tail gas outlet (18), the lower end of the tail gas cyclone separator (1) is provided with the reclaimed material unloading machine (2), and an outlet of the reclaimed material unloading machine (2) is connected into the rotary kiln cylinder body (8) through a pipeline.
4. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: and a heating section guide plate (10) is arranged on the inner wall of the heating section shell (7).
5. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: and an inner barrel spiral belt (9) is arranged on the inner wall of the rotary kiln barrel (8).
6. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: and rolling rings (15) are arranged at two ends of the rotary kiln cylinder (8), and the rolling rings (15) are positioned on the support.
7. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: the lower end of the fumed silica collector (11) is connected with one end of a product unloader (12), and the other end of the product unloader (12) is a fumed silica outlet (19).
8. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: the heating burner (13) is provided with primary air (23) and secondary air (25) of the heating burner, and the air inlet end of the heating burner (13) is connected with fuel gas (21) of the heating burner.
9. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: the process combustor (14) is provided with process combustor secondary air (24) and process combustor primary air (22), and the air inlet end of the process combustor (14) is connected with process combustor fuel gas (20).
10. The deacidification furnace for producing fumed silica according to claim 1, characterized in that: and the process section sealing rotating shaft (4) and the heating section sealing rotating shaft (5) are both provided with a sealing air inlet (27).
CN202022431048.1U 2020-10-28 2020-10-28 A deacidification stove for producing fumed silica Active CN212655486U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022431048.1U CN212655486U (en) 2020-10-28 2020-10-28 A deacidification stove for producing fumed silica

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022431048.1U CN212655486U (en) 2020-10-28 2020-10-28 A deacidification stove for producing fumed silica

Publications (1)

Publication Number Publication Date
CN212655486U true CN212655486U (en) 2021-03-05

Family

ID=74762016

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022431048.1U Active CN212655486U (en) 2020-10-28 2020-10-28 A deacidification stove for producing fumed silica

Country Status (1)

Country Link
CN (1) CN212655486U (en)

Similar Documents

Publication Publication Date Title
CN110204226B (en) Powder material high-temperature suspension fluidization rapid calcination process and system
CN210473928U (en) High-yield aluminum fluoride synthesis device with multi-stage reaction reflux
CN104896893B (en) A kind of continous way horizontal spiral tapered sleeve rotary dryer
CN112209392A (en) A deacidification stove for producing fumed silica
CN212655486U (en) A deacidification stove for producing fumed silica
CN207002588U (en) A kind of active powder lime two level suspension calcining device
CN113428853A (en) High-temperature graphite purification device
CN210419769U (en) High-temperature suspension fluidization rapid calcination system for powder materials
CN113249539A (en) Suspended rotary kiln reactor and reaction method thereof
CN210340356U (en) Low-energy-consumption multistage reaction reflux aluminum fluoride synthesis device
CN106610229A (en) Rotary kiln vertical preheater
CN204718331U (en) A kind of continous way horizontal spiral tapered sleeve rotary dryer
CN215799685U (en) Air-suspension type rotary kiln reactor
CN108862269B (en) Dry purification equipment and process method for carbon nanotube graphite
CN206146187U (en) High -efficient low energy consumption environmental protection high temperature gas -solid reaction blast furnace
CN210163348U (en) Gypsum flue gas calcining equipment
CN208898165U (en) A kind of drying acetylene productive power rock ballast dedusting entrucking all-in-one machine
CN207108498U (en) A kind of conserving graphite expanding furnace for improving reaction efficiency
CN2606321Y (en) Flash rotary kiln
CN108823400B (en) Integrated process and device for dry grinding and suspension roasting of refractory iron ore
CN109399701B (en) Crystal form conversion device for synthesizing tetragonal phase barium titanate nano powder by hydrothermal method
CN206146190U (en) High -efficient environmental protection microwave gas -solid reaction blast furnace
CN110980806A (en) Equipment and method for producing vanadium pentoxide powder through cyclic calcination
CN111909538A (en) Continuous calcining system and method for pearlescent material
CN216409527U (en) Drum-type petroleum coke drying equipment

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant