CN222490045U - A tannin high-efficiency germanium precipitation reaction barrel - Google Patents

A tannin high-efficiency germanium precipitation reaction barrel Download PDF

Info

Publication number
CN222490045U
CN222490045U CN202420804006.3U CN202420804006U CN222490045U CN 222490045 U CN222490045 U CN 222490045U CN 202420804006 U CN202420804006 U CN 202420804006U CN 222490045 U CN222490045 U CN 222490045U
Authority
CN
China
Prior art keywords
barrel body
barrel
fixedly arranged
staving
upper side
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
CN202420804006.3U
Other languages
Chinese (zh)
Inventor
周建泉
罗吉海
罗宗文
张应喜
周平
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.)
Nanhua Maosen Regeneration Technology Co ltd
Original Assignee
Nanhua Maosen Regeneration Technology 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 Nanhua Maosen Regeneration Technology Co ltd filed Critical Nanhua Maosen Regeneration Technology Co ltd
Priority to CN202420804006.3U priority Critical patent/CN222490045U/en
Application granted granted Critical
Publication of CN222490045U publication Critical patent/CN222490045U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

Landscapes

  • Physical Or Chemical Processes And Apparatus (AREA)

Abstract

The utility model discloses a tannin efficient germanium precipitation reaction barrel, and relates to the technical field of reaction barrels. Including the staving, the last lateral wall of staving is close to left side position fixed mounting and has the charging valve, the last lateral wall middle part position fixed mounting of staving has the mechanism of turning, fixed mounting has the discharging pipe on the staving downside inner wall of mechanism downside turns, and be provided with the gate valve on the discharging pipe, the discharging pipe surface is close to between upside position and the staving inner wall fixed mounting has the toper fight, and be provided with the cloth air cavity between toper fight and the staving downside inner wall, the cloth air cavity is linked together with heating mechanism, heating mechanism is linked together with the staving upside in, heating mechanism fixed mounting is in the staving right flank, the staving right flank is provided with control mechanism. According to the utility model, the materials are stirred and turned over, so that the materials are uniformly dispersed, the reaction is more sufficient, the processing efficiency is greatly improved, meanwhile, the internal materials are conveniently and rapidly heated, the heating is more uniform, the reaction is more sufficient and comprehensive, and the use is facilitated.

Description

Tannin high-efficient germanium reaction barrel that sinks
Technical Field
The utility model relates to the technical field of reaction barrels, in particular to a tannin efficient germanium precipitation reaction barrel.
Background
The tannic acid is precipitated by electrical neutralization when contacted with positively charged hydrated germanium dioxide, the hydrated germanium dioxide and gallic acid in the tannic acid act as chelation, the germanium is clamped in the gallic acid to form insoluble germanium tannic acid precipitate, and the germanium precipitation is precipitated by generating a tannin complex based on the action of the germanium and hydroxyl groups in the tannic acid. In the germanium precipitation process, a reaction barrel is required to carry out the reaction.
In the prior art, the conventional tannin germanium precipitation reaction barrel is characterized in that in the use process, raw materials in the reaction barrel are stirred by a simple stirring mechanism, so that a large amount of time is required to be consumed for stirring, the reaction is insufficient due to the fact that the reaction barrel is layered up and down, the dispersing effect is poor, the use is unfavorable, in addition, in the use process, a water jacket is adopted for heating, the heating consumption time is long, and the barrel body is easy to exist stably, so that the use is unfavorable.
Disclosure of utility model
The utility model provides a tannin efficient germanium precipitation reaction barrel, which aims to solve the problems in the background technology.
The high-efficiency tannin germanium deposition reaction barrel comprises a barrel body, wherein a charging valve is fixedly arranged on the upper side wall of the barrel body close to the left side, a turning mechanism is fixedly arranged on the middle position of the upper side wall of the barrel body, a discharging pipe is fixedly arranged on the inner wall of the lower side of the barrel body on the lower side of the turning mechanism, a gate valve is arranged on the discharging pipe, a conical hopper is fixedly arranged between the position, close to the upper side, of the outer surface of the discharging pipe and the inner wall of the barrel body, an air distribution cavity is arranged between the conical hopper and the inner wall of the lower side of the barrel body, the air distribution cavity is communicated with a heating mechanism, the heating mechanism is communicated with the upper side of the barrel body, the heating mechanism is fixedly arranged on the right side surface of the barrel body, a control mechanism is arranged on the right side of the barrel body, mechanical sealing pieces are uniformly and fixedly arranged on the periphery of the conical hopper, driving pipes are fixedly arranged in the mechanical sealing pieces, the driving pipes are in driving connection with the turning mechanism through the driving mechanism, the lower surface of the driving pipes are of an opening structure, the driving pipes are arranged in the driving mechanism, the lower surface of the driving pipes are inserted into the driving mechanism, and the driving mechanism is arranged on the upper side close to the air cavity.
Further, the turning mechanism comprises a conveying cylinder, an electric spiral feeding rod, a rectangular opening and a driven spiral feeding rod, wherein the conveying cylinder is fixedly arranged on the upper side wall of the barrel body, the lower surface of the conveying cylinder is of an opening structure, the electric spiral feeding rod is fixedly arranged on the upper side wall of the conveying cylinder, the rectangular opening is formed in the position, close to the upper side, of the left side wall and the right side wall of the conveying cylinder, the driven spiral feeding rod is arranged on the lower surface of the electric spiral feeding rod, and the driven spiral feeding rod is inserted into the discharging pipe.
Further, the heating mechanism comprises an electric heating box, a guide pipe, an air extraction assembly and a waterproof ventilation valve, the electric heating box is fixedly arranged on the right side face of the barrel body, an air outlet of the electric heating box is communicated with the air distribution cavity through the guide pipe, the electric heating box is communicated with the waterproof ventilation valve through the air extraction assembly, and the waterproof ventilation valve is embedded on the upper side wall of the barrel body.
Further, the control mechanism comprises a controller and a temperature sensor, wherein the controller is fixedly arranged on the right side surface of the barrel body, and the temperature sensor is arranged on the inner wall of the right side of the barrel body.
Further, the transmission mechanism comprises a driven gear and a driving gear, the driven gear is fixedly arranged on the transmission pipe, the driving gear is fixedly arranged on the driven spiral feeding rod, and the driving gear and the driven gear are meshed with each other.
Further, the stirring mechanism comprises stirring blades and one-way air outlet heads, and the stirring blades and the one-way air outlet heads are sequentially and uniformly arranged on the transmission pipe from top to bottom.
Compared with the prior art, the utility model provides the tannin efficient germanium precipitation reaction barrel which has the following beneficial effects:
1. this high-efficient heavy germanium reaction bucket of tannin makes the bottom material turn to staving upside through setting up tilting mechanism, and rethread rabbling mechanism stirs the staving material in, makes the material turn in the stirring, makes the material disperse even, and the reaction is more abundant, improves machining efficiency greatly.
2. This high-efficient heavy germanium reaction bucket of tannin pours into the gas distribution chamber with steam through setting up heating mechanism, and rethread gas distribution chamber flows into the drive pipe, and rethread one-way head of giving vent to anger blows into in the staving, is convenient for heat inside material fast, makes the heating more even, and the reaction is more abundant comprehensive, does benefit to the use.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a cross-sectional view of the present utility model;
fig. 3 is a cross-sectional view of the flip mechanism of the present utility model.
The device comprises a barrel body, a feeding valve, a turning mechanism, a 301 conveying cylinder, a 302 electric spiral feeding rod, a 303 rectangular opening, a 304 driven spiral feeding rod, a 4 discharge pipe, a 5 gate valve, a 6 conical hopper, a 7 air distribution cavity, a 8 heating mechanism, a 801 electric heating box, a 802 electric heating box, a 803 air extraction assembly, a 804 waterproof ventilation valve, a 9 control mechanism, a 901 controller, a 902 temperature sensor, a 10 mechanical seal, a 11 driving pipe, a 12 driving mechanism, a 121 driven gear, a 122 driving gear, a 13 stirring mechanism, a 131 stirring blade, a 132 unidirectional air outlet head.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the utility model discloses a tannin efficient germanium deposition reaction barrel, which comprises a barrel body 1, wherein a charging valve 2 is fixedly arranged on the upper side wall of the barrel body 1 near the left side, a turning mechanism 3 is fixedly arranged on the middle position of the upper side wall of the barrel body 1, a discharging pipe 4 is fixedly arranged on the inner wall of the lower side of the barrel body 1 on the lower side of the turning mechanism 3, a gate valve 5 is arranged on the discharging pipe 4, a conical hopper 6 is fixedly arranged between the position, near the upper side, of the outer surface of the discharging pipe 4 and the inner wall of the barrel body 1, a gas distribution cavity 7 is arranged between the conical hopper 6 and the inner wall of the lower side of the barrel body 1, the gas distribution cavity 7 is communicated with a heating mechanism 8, the heating mechanism 8 is communicated with the upper side of the barrel body 1, the heating mechanism 8 is fixedly arranged on the right side of the barrel body 1, a control mechanism 9 is arranged on the right side of the barrel body 1, a mechanical sealing member 10 is uniformly and fixedly arranged on the periphery of the lower side of the barrel body 1, a transmission pipe 11 is fixedly arranged in the mechanical sealing member 10, the transmission pipe 11 is fixedly arranged in the transmission mechanism 11, the transmission pipe 11 is connected with the transmission pipe 11 through the upper side of the turning mechanism 3, and the transmission pipe 11 is arranged near the transmission pipe 11, and is arranged on the transmission pipe 11.
Specifically, the turning mechanism 3 includes a conveying cylinder 301, an electric screw feeding rod 302, a rectangular opening 303 and a driven screw feeding rod 304, the conveying cylinder 301 is fixedly mounted on the upper side wall of the barrel body 1, the lower surface of the conveying cylinder 301 is of an opening structure, the electric screw feeding rod 302 is fixedly mounted on the upper side wall of the conveying cylinder 301, the rectangular opening 303 is formed in the position, close to the upper side, of the left side wall and the right side wall of the conveying cylinder 301, the driven screw feeding rod 304 is mounted on the lower surface of the electric screw feeding rod 302, and the driven screw feeding rod 304 is inserted into the discharging pipe 4.
In this embodiment, the electric screw feeding rod 302 rotates in the conveying cylinder 301, so that the material at the lower side in the barrel body 1 is driven by the electric screw feeding rod 302 to move upwards, and flows out through the rectangular opening 303, so as to achieve the effect of turning the material, and meanwhile, the driven screw feeding rod 304 enables the discharging pipe 4 to be smoothly discharged.
Specifically, the heating mechanism 8 includes an electric heating box 801, a conduit 802, an air extraction assembly 803 and a waterproof ventilation valve 804, the electric heating box 801 is fixedly mounted on the right side surface of the barrel body 1, an air outlet of the electric heating box 801 is communicated with the air distribution cavity 7 through the conduit 802, the electric heating box 801 is communicated with the waterproof ventilation valve 804 through the air extraction assembly 803, and the waterproof ventilation valve 804 is embedded on the upper side wall of the barrel body 1.
In this embodiment, the air extraction component 803 extracts the air in the barrel body 1 through the waterproof ventilation valve 804, pumps the air into the electric heating box 801, heats the air through the electric heating box 801, and makes the heated air flow into the air distribution cavity 7 through the conduit 802.
Specifically, the control mechanism 9 includes a controller 901 and a temperature sensor 902, the controller 901 is fixedly mounted on the right side surface of the tub body 1, and the temperature sensor 902 is mounted on the right side inner wall of the tub body 1.
In this embodiment, the temperature sensor 902 detects the temperature in the tub 1, and the controller 901 controls the on/off of the heating mechanism 8.
Specifically, the driving mechanism 12 includes a driven gear 121 and a driving gear 122, the driven gear 121 is fixedly mounted on the driving pipe 11, the driving gear 122 is fixedly mounted on the driven screw feeding rod 304, and the driving gear 122 is meshed with the driven gear 121.
In this embodiment, the driving gear 122 rotates with the driven screw feeding rod 304, so that the driving gear 122 drives the driven gear 121 to rotate, and the driven gear 121 drives the driving tube 11 to rotate.
Specifically, the stirring mechanism 13 includes a stirring blade 131 and a unidirectional air outlet head 132, and the stirring blade 131 and the unidirectional air outlet head 132 are sequentially and uniformly installed on the transmission pipe 11 from top to bottom.
In this embodiment, the stirring blade 131 rotates along with the transmission tube 11 to stir the material in the barrel 1, the unidirectional air outlet head 132 makes the hot air flow into the barrel 1, and the unidirectional air outlet head 132 rotates along with the transmission tube 11 to make the hot air uniformly distributed in the barrel 1, so that the heating is more uniform.
When in use, tannin materials are poured into the barrel body 1 filled with germanium reaction raw materials through the charging valve 2, the electric spiral feeding rod 302 in the turning mechanism 3 rotates in the conveying barrel 301, so that the materials at the lower side in the barrel body 1 are driven by the electric spiral feeding rod 302 to move upwards and flow out through the rectangular opening 303, the effect of turning the materials is achieved, meanwhile, the electric spiral feeding rod 302 drives the driven spiral feeding rod 304 to rotate, the driven spiral feeding rod 304 drives the driving gear 122 in the transmission mechanism 12 to rotate, the driving gear 122 drives the driven gear 121 to rotate, the driven gear 121 drives the transmission pipe 11 to rotate, the transmission pipe 11 drives the stirring blade 131 in the stirring mechanism 13 to turn the materials at the bottom of the barrel body 1 to the upper side of the barrel body, and then stirring is carried out at the same time of turning the materials, the material dispersing is uniform, the reaction is more sufficient, the processing efficiency is greatly improved, the temperature in the barrel body 1 is detected by the temperature sensor 902 in the control mechanism 9, when the temperature is lower, the information is fed back to the controller 901, the controller 901 enables the heating mechanism 8 to be started, the air extracting component 803 extracts the gas in the barrel body 1 through the waterproof air-permeable valve 804, the gas is pumped into the electric heating box 801, the electric heating box 801 heats the gas, the heated gas flows into the air distribution cavity 7 through the guide pipe 802, then flows into the transmission pipe 11 through the air distribution cavity 7, and then flows into the barrel body 1 through the unidirectional air outlet head 132 on the transmission pipe 11, so that the material in the barrel body 1 is conveniently and rapidly heated, the heating is more uniform, the reaction is more complete, and the use is facilitated.
To sum up, this high-efficient germanium reaction barrel that sinks of tannin makes the material turn in the stirring, makes the material dispersion even, and the reaction is more abundant, improves machining efficiency greatly, is convenient for heat the inside material fast simultaneously, makes the heating more even, and the reaction is more abundant comprehensive, does benefit to the use.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A tannin efficient germanium deposition reaction barrel comprises a barrel body (1) and is characterized in that a charging valve (2) is fixedly arranged on the upper side wall of the barrel body (1) close to the left side, a turning mechanism (3) is fixedly arranged on the middle position of the upper side wall of the barrel body (1), a discharging pipe (4) is fixedly arranged on the inner wall of the lower side of the barrel body (1) at the lower side of the turning mechanism (3), a gate valve (5) is arranged on the discharging pipe (4), a conical hopper (6) is fixedly arranged between the position, close to the upper side, of the outer surface of the discharging pipe (4) and the inner wall of the barrel body (1), a gas distribution cavity (7) is arranged between the conical hopper (6) and the inner wall of the lower side of the barrel body (1), the gas distribution cavity (7) is communicated with a heating mechanism (8), the heating mechanism (8) is communicated with the inner upper side of the barrel body (1), a control mechanism (9) is fixedly arranged on the right side of the barrel body (1), a conical hopper (6) is fixedly provided with a sealing member (10), a transmission mechanism (11) is uniformly arranged on the periphery of the barrel body, a transmission mechanism (11) is fixedly connected with the inner side of the barrel body (1), a transmission mechanism (11) is fixedly provided with the transmission mechanism (11), and the transmission mechanism (11) through a transmission mechanism (11), and the lower surface of the transmission pipe (11) is inserted into the air distribution cavity (7), and a stirring mechanism (13) is arranged on the transmission pipe (11) close to the upper side.
2. The tannin efficient germanium deposition reaction barrel is characterized in that the turning mechanism (3) comprises a conveying barrel (301), an electric spiral feeding rod (302), a rectangular opening (303) and a driven spiral feeding rod (304), the conveying barrel (301) is fixedly arranged on the upper side wall of the barrel body (1), the lower surface of the conveying barrel (301) is of an opening structure, the electric spiral feeding rod (302) is fixedly arranged on the upper side wall of the conveying barrel (301), rectangular openings (303) are formed in the positions, close to the upper side, of the left side wall and the right side wall of the conveying barrel (301), of the driven spiral feeding rod (304), the driven spiral feeding rod (304) is arranged on the lower surface of the electric spiral feeding rod (302), and the driven spiral feeding rod (304) is inserted into the discharging pipe (4).
3. The tannin efficient germanium precipitation reaction barrel is characterized in that the heating mechanism (8) comprises an electric heating box (801), a guide pipe (802), an air extraction component (803) and a waterproof ventilation valve (804), the electric heating box (801) is fixedly arranged on the right side face of the barrel body (1), an air outlet of the electric heating box (801) is communicated with the air distribution cavity (7) through the guide pipe (802), the electric heating box (801) is communicated with the waterproof ventilation valve (804) through the air extraction component (803), and the waterproof ventilation valve (804) is embedded on the upper side wall of the barrel body (1).
4. The tannin efficient germanium precipitation reaction barrel is characterized in that the control mechanism (9) comprises a controller (901) and a temperature sensor (902), the controller (901) is fixedly arranged on the right side face of the barrel body (1), and the temperature sensor (902) is arranged on the inner wall of the right side face of the barrel body (1).
5. The tannin efficient germanium deposition reaction barrel is characterized in that the transmission mechanism (12) comprises a driven gear (121) and a driving gear (122), the driven gear (121) is fixedly arranged on the transmission pipe (11), the driving gear (122) is fixedly arranged on the driven spiral feeding rod (304), and the driving gear (122) is meshed with the driven gear (121).
6. The efficient tannin germanium deposition reaction barrel as defined in claim 1, wherein the stirring mechanism (13) comprises stirring blades (131) and one-way air outlet heads (132), and the stirring blades (131) and the one-way air outlet heads (132) are sequentially and uniformly arranged on the transmission pipe (11) from top to bottom.
CN202420804006.3U 2024-04-17 2024-04-17 A tannin high-efficiency germanium precipitation reaction barrel Active CN222490045U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420804006.3U CN222490045U (en) 2024-04-17 2024-04-17 A tannin high-efficiency germanium precipitation reaction barrel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202420804006.3U CN222490045U (en) 2024-04-17 2024-04-17 A tannin high-efficiency germanium precipitation reaction barrel

Publications (1)

Publication Number Publication Date
CN222490045U true CN222490045U (en) 2025-02-18

Family

ID=94557353

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202420804006.3U Active CN222490045U (en) 2024-04-17 2024-04-17 A tannin high-efficiency germanium precipitation reaction barrel

Country Status (1)

Country Link
CN (1) CN222490045U (en)

Similar Documents

Publication Publication Date Title
CN107442002A (en) A kind of mixing and blending machine automation control system
CN110075775A (en) A kind of reaction kettle
CN205884542U (en) Dedicated intelligent flour -mixing machine of food processing
CN205528747U (en) Fermenting installation is used in laboratory
CN222490045U (en) A tannin high-efficiency germanium precipitation reaction barrel
CN219722674U (en) Sodium aluminate retort is premixed and comdenstion water heat recycles device
CN216296337U (en) Reaction unit is used in silver nickelate production with heating function
CN213791069U (en) Automatic batching system
CN206463856U (en) A kind of pipeline production variable ratio frequency changer formula raw material heating device
CN106669570B (en) One kind tiltedly arranging pre-heated chemical reaction kettle
CN208960540U (en) A kind of central air conditioner cooling system apparatus for eliminating sludge
CN214238832U (en) Concrete alkali-free accelerator production facility
CN212919986U (en) High-efficient ratio mixing arrangement of PVC material
CN211157352U (en) Stirring cooking machine
CN220048160U (en) Reation kettle is used in printing ink production
CN211026029U (en) Glue production system
CN209597000U (en) Cerul heat accumulation graphene production equipment
CN208082474U (en) It is sustained collapse protection type cement water reducing agent preparation facilities
CN211098570U (en) Resin heating agitating unit
CN207756136U (en) A kind of reaction kettle for producing acrylic resin
CN216106965U (en) Microbial fermentation reaction tank
CN206810083U (en) A kind of solution agitating device
CN223128003U (en) Methyl methacrylate efficient esterification reactor for ester
CN212119713U (en) Cosmetic raw materials heating agitating unit
CN223456285U (en) A PA66 composite material processing device that facilitates uniform heating

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant