Trans-glucosidase catalytic reaction device capable of avoiding infectious microbe infection
By designing transmission components and disinfection and cleaning components in the catalytic reaction device, scraping and isolation and cleaning of floc materials is achieved, and the problem of mixed bacteria infection caused by the residues of material attached to the inner wall of the catalytic reaction device is solved, extending the life of the equipment and ensuring stable operation.
Patent Information
- Application Number
- CN202510694160.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2025-06-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The remaining materials on the inner wall of the existing catalytic reaction device for a long time lead to infection of miscellaneous bacteria.
A catalytic reaction device is designed, including a transmission assembly and a disinfection and cleaning assembly. The transmission assembly drives the agitating shaft and the cleaning scraper seat through a motor, and the flip scraper on the cleaning scraper seat scraper scraper scraper and isolate the inner wall material. The disinfection and cleaning assembly uses an electric telescopic rod and flip plate to achieve preliminary isolation and cleaning of floc materials.
Effectively remove material residues on the inner wall of the catalytic reaction device, prevent miscellaneous bacteria infection and internal wall corrosion, extend the service life of the equipment, reduce maintenance costs, and limit the spread range of miscellaneous bacteria to ensure stable operation of the equipment.
Smart Images

Figure CN120209994A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of enzyme-catalyzed reaction equipment, and specifically to a catalytic reaction device for transglucosidase that avoids contamination by miscellaneous bacteria. Background Art
[0002] Transglucosidase is produced by Aspergillus niger. Its main function is to transfer the glucose that has been freed in the sugar solution to the α-1,6 position of another glucose or maltose molecule, generating oligosaccharides with branched structures such as isomaltose or panose. In the patent application with the application publication number CN219490021U, it includes an upper cover and a cover body; an immobilized enzyme feeding tank, including an upper end cover and a lower end cover; the lower end cover and the cover body are connected by a connecting pipe; a centrifuge; the immobilized enzyme feeding tank includes a material extraction pipe, a nitrogen gas pipe, a vacuum pipe, and a discharge port; the material extraction pipe is arranged on the side wall of the upper end cover, the nitrogen gas pipe and the vacuum pipe are respectively arranged on the upper end cover, the discharge port is arranged at the bottom of the lower end cover, and the discharge port is communicated with one end of the connecting pipe; the immobilized enzyme reaction kettle includes an immobilized enzyme inlet, a nitrogen gas bubbling pipe, and an immobilized enzyme outlet; the immobilized enzyme inlet is arranged on the cover body and is communicated with the other end of the connecting pipe, the nitrogen gas bubbling pipe is arranged at the bottom of the cover body, and the immobilized enzyme outlet is arranged on the bottom side wall of the cover body, and the immobilized enzyme outlet is connected to the centrifuge.
[0003] In the patents or prior arts including the above, most existing catalytic reaction devices (such as fermenters) have dead corners during the sterilization process or do not reach sufficient temperature, pressure, or time, resulting in the residue of miscellaneous bacteria. As a result, the catalytic reaction device is contaminated by miscellaneous bacteria, and the inner wall of the catalytic reaction device is extremely likely to adhere to material residues. The material residues adhering to the inner wall of the catalytic reaction device will include unreacted raw materials, intermediate products, and by-products. These substances provide rich nutrients for miscellaneous bacteria. For example, in chemical reactions, some organic residues will become the carbon source and energy for the growth of microorganisms. Miscellaneous bacteria are prone to grow and reproduce in a nutritious environment. The long-term existence of these material residues on the inner wall of the device creates conditions for the breeding of miscellaneous bacteria, leading to an increasing number of miscellaneous bacteria. Summary of the Invention
[0004] The problem to be solved by the present invention is that the inner wall of the existing catalytic reaction device is attached with material residues for a long time, resulting in the infection of miscellaneous bacteria inside.
[0005] To solve the above technical problems, the technical solution of the present invention is: a catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria, including a catalytic reaction device body, on which a motor body is installed. The output end of the motor body is connected to a stirring shaft through a coupling. A feed pipe is arranged on the catalytic reaction device body, and a discharge solenoid valve is installed at the bottom of the catalytic reaction device body. A transmission component and a disinfection and cleaning component are arranged inside the catalytic reaction device body; The transmission component includes a cleaning scraping seat, and a flipping scraper is rotatably arranged on the cleaning scraping seat; The disinfection and cleaning component includes a plurality of flipping plates rotatably connected to the flipping scraper, and two torsion spring bodies are fixedly arranged between each flipping plate and the flipping scraper. A disinfection and cleaning liquid pipe communicating with the inside of the catalytic reaction device body is arranged on the catalytic reaction device body. A disinfectant liquid spray head is arranged inside the cleaning scraping seat. A water inlet pipe is fixedly arranged between the bottom end of the disinfection and cleaning liquid pipe and the disinfectant liquid spray head. A rotating rod is fixedly arranged on the flipping scraper, and a driving component is arranged on the rotating rod. A liquid outlet solenoid valve is arranged at the bottom of the cleaning scraping seat, a liquid discharge solenoid valve is arranged at the bottom end of the catalytic reaction device body, and a clamping component is arranged on the cleaning scraping seat.
[0006] Preferably, the stirring shaft is rotatably connected to the catalytic reaction device body, the feed pipe communicates with the inside of the catalytic reaction device body, and the discharge solenoid valve communicates with the inside of the catalytic reaction device body.
[0007] Preferably, the transmission component further includes a clamping seat fixed on the arc-shaped outer wall of the stirring shaft. A clamping disc is connected to the arc-shaped outer wall of the stirring shaft through a bearing, and a clamping block that engages with the clamping seat is fixedly arranged at the top end of the clamping disc. A rotating arm is fixedly arranged on each side of the clamping disc, and a lifting component is fixedly arranged on the two rotating arms. The bottom end of the rotating arm is fixedly connected to the cleaning scraping seat.
[0008] Preferably, the driving component includes a gear body fixed at the top end of the rotating rod. A second electric telescopic rod is installed on the catalytic reaction device body. The output end of the second electric telescopic rod is fixedly provided with an arc-shaped rack body, and the arc-shaped rack body engages with the gear body. The liquid discharge solenoid valve is located below the liquid outlet solenoid valve.
[0009] Preferably, a clamping groove matching the clamping block is formed on the clamping seat. The lifting component includes a first limiting ring rotatably connected to the rotating arm. A first electric telescopic rod is installed on the catalytic reaction device body, and the output end of the first electric telescopic rod is fixedly connected to the top end of the first limiting ring.
[0010] Preferably, the engaging component includes a third electric telescopic rod installed on the outer wall of the catalytic reaction device body. A plurality of the turning plates are equidistantly distributed on the cleaning scraping seat, and a plurality of rotating grooves matching the plurality of turning plates are formed on the cleaning scraping seat.
[0011] Preferably, a baffle is fixedly arranged on the inner wall of each rotating groove. A baffle groove matching the baffle is formed on one side of each turning plate. Fixing shafts are respectively fixedly arranged on both sides of each turning plate, and two torsion spring bodies are respectively sleeved on the two fixing shafts.
[0012] Preferably, both ends of the water inlet pipe are communicated with the disinfection cleaning liquid pipe and the disinfectant spray head respectively. A sleeve is fixedly arranged on the inner wall of the catalytic reaction device body, and the sleeve is sleeved on the outer side of the stirring shaft, and the water inlet pipe is sleeved on the outer wall of the sleeve.
[0013] Preferably, the engaging component includes a third electric telescopic rod installed on the outer wall of the catalytic reaction device body. A second limiting ring is fixedly arranged at the output end of the third electric telescopic rod. A connecting rod is rotatably arranged at the bottom end of the second limiting ring, and a plurality of sealing plates are fixedly arranged on the connecting rod. Filter plates are fixedly arranged on the cleaning scraping seat on one side of each sealing plate.
[0014] Preferably, the plurality of sealing plates are respectively located on one side of each turning plate. The connecting rod is slidably connected with the inner wall of the cleaning scraping seat. A plurality of moving grooves matching the plurality of sealing plates are formed on the cleaning scraping seat. A plugging hole matching the connecting rod is formed on the cleaning scraping seat. A base is fixedly arranged at the bottom end of the catalytic reaction device body, and a maintenance port is arranged on the base.
[0015] Compared with the prior art, the technical solution of the present invention has the following advantages: (1) By starting the motor body to drive the stirring shaft, and at the same time with the cooperation of the transmission component, the turning scraping plates on the cleaning scraping seat can make a circular motion, so as to scrape the residual materials adhered to the inner wall of the catalytic reaction device body. When continuing to input materials into the catalytic reaction device body, the second electric telescopic rod can be started, and at the same time with the cooperation of the disinfection and cleaning component, the turning scraping plate with the side of impurity agglomeration can be turned to the inside of the cleaning scraping seat for isolation cleaning. If the residual materials on the inner wall adhere for a long time, they will chemically react with the inner wall of the reaction device, resulting in corrosion and wear of the inner wall, affecting the structural integrity and performance stability of the equipment. Timely removing the residual materials on the inner wall can effectively reduce this damage, extend the service life of the equipment, reduce the equipment replacement and maintenance costs, and at the same time avoid the cross-infection of miscellaneous bacteria; (2) By starting the third electric telescopic rod and the second electric telescopic rod, and with the mutual cooperation of the disinfection and cleaning component and the clamping component, the flocculent material can re-enter the interior of the catalytic reaction device body under the filtration of the filter plate. This can achieve the function of initially isolating the flocculent material, and at the same time, it can prevent the flocculent material from blocking the discharge solenoid valve. The initial isolation can limit the spread range of miscellaneous bacteria inside the catalytic reaction device. Concentrating and isolating the flocculent material containing miscellaneous bacteria can prevent the spread of miscellaneous bacteria to other areas of the device along with the material flow, reducing the possibility of the entire catalytic reaction system being contaminated. Moreover, the discharge solenoid valve is a key component for controlling the material discharge in the catalytic reaction device. When the flocculent material enters the discharge solenoid valve, it will accumulate at parts such as the valve core and valve seat, resulting in problems such as the solenoid valve getting stuck and not closing tightly, affecting the normal operation of the equipment. Avoiding the flocculent material from blocking the discharge solenoid valve can ensure the flexible opening and closing of the solenoid valve, guarantee the smooth discharge of the material, and improve the stability and reliability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic sectional structure diagram of the catalytic reaction device of the present invention; Figure 3 For the present invention Figure 2 partial enlarged view of A in; Figure 4 is a schematic connection structure diagram of the transmission component and the disinfection and cleaning component of the present invention; Figure 5 is a schematic connection structure diagram of the transmission component and the clamping component of the present invention; Figure 6 is a schematic structure diagram of the disinfection and cleaning component of the present invention; Figure 7 is an exploded view inside the cleaning scraping seat of the present invention; Figure 8 For the present invention Figure 7 partial enlarged view of B in; Figure 9 is a partial sectional structure diagram of the cleaning scraping seat of the present invention; Figure 10 For the present invention Figure 9 partial enlarged view of C in.
[0017] In the figure: 1, catalytic reaction device body; 11, motor body; 111, stirring shaft; 12, feed pipe; 13, disinfection and cleaning liquid pipe; 14, discharge solenoid valve; 2, transmission component; 21, clamping seat; 211, clamping groove; 22, clamping disk; 221, clamping block; 23, rotating arm; 231, first limiting ring; 232, first electric telescopic rod; 24, cleaning scraping seat; 241, flipping scraper; 3. Disinfection and cleaning component; 31. Flipping plate; 311. Torsion spring body; 32. Water inlet pipe; 33. Disinfectant spray head; 34. Rotating rod; 35. Gear body; 36. Second electric telescopic rod; 37. Arc rack body; 4. Engaging component; 41. Third electric telescopic rod; 42. Second limiting ring; 43. Connecting rod; 44. Sealing plate; 45. Filter plate. Specific implementation manners
[0018] To make the objectives, technical solutions and advantages of the embodiments of the present disclosure clearer, the technical solutions of the embodiments of the present disclosure will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present disclosure. Obviously, the described embodiments are some, but not all, of the embodiments of the present disclosure. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present disclosure without creative efforts shall fall within the scope of protection of the present disclosure.
[0019] Unless otherwise defined, the technical terms or scientific terms used in the present disclosure shall have the ordinary meanings understood by those of ordinary skill in the art to which the present disclosure pertains. The words such as "including" or "comprising" used in the present disclosure mean that the elements or objects appearing before this word cover the elements or objects listed after this word and their equivalents, without excluding other elements or objects. The words such as "connected" or "coupled" are not limited to physical or mechanical connections, and may also include electrical connections, whether direct or indirect. The terms such as "upper", "lower", "left" and "right" are only used to represent relative positional relationships, and when the absolute position of the object being described changes, the relative positional relationship may also change accordingly.
[0020] As Figures 1 to 10 shown, a catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria provided by the present invention includes a catalytic reaction device body 1, a motor body 11 is installed on the catalytic reaction device body 1, the output end of the motor body 11 is connected to a stirring shaft 111 through a coupling, a feed pipe 12 is arranged on the catalytic reaction device body 1, a discharge solenoid valve 14 is installed at the bottom of the catalytic reaction device body 1, a transmission component 2 is arranged inside the catalytic reaction device body 1, and a disinfection and cleaning component 3 is arranged inside the catalytic reaction device body 1; The transmission component 2 includes a cleaning scraping seat 24, and a flipping scraping plate 241 is rotatably arranged on the cleaning scraping seat 24; The disinfection and cleaning assembly 3 includes a plurality of turning plates 31 rotatably connected to the turning scraper 241, and two torsion spring bodies 311 are fixedly arranged between each turning plate 31 and the turning scraper 241. A disinfection and cleaning liquid pipe 13 communicating with the inside of the catalytic reaction device body 1 is arranged on the catalytic reaction device body 1. A disinfection liquid spray head 33 is arranged inside the cleaning scraper seat 24. A water inlet pipe 32 is fixedly arranged between the bottom end of the disinfection and cleaning liquid pipe 13 and the disinfection liquid spray head 33. A rotating rod 34 is fixedly arranged on the turning scraper 241, a driving assembly is arranged on the rotating rod 34, a liquid outlet solenoid valve is arranged at the bottom of the cleaning scraper seat 24, a liquid discharge solenoid valve is arranged at the bottom end of the catalytic reaction device body 1, and a clamping assembly 4 is arranged on the cleaning scraper seat 24; The stirring shaft 111 is rotatably connected to the catalytic reaction device body 1, the feed pipe 12 communicates with the inside of the catalytic reaction device body 1, and the discharge solenoid valve 14 communicates with the inside of the catalytic reaction device body 1; The transmission assembly 2 further includes a clamping seat 21 fixed on the arc-shaped outer wall of the stirring shaft 111. A clamping disc 22 is connected to the arc-shaped outer wall of the stirring shaft 111 through a bearing, and a clamping block 221 engaged with the clamping seat 21 is fixedly arranged at the top end of the clamping disc 22. A turning arm 23 is fixedly arranged on each side of the clamping disc 22. A lifting assembly is fixedly arranged on the two turning arms 23, and the bottom end of the turning arm 23 is fixedly connected to the cleaning scraper seat 24; The driving assembly includes a gear body 35 fixed at the top end of the rotating rod 34. A second electric telescopic rod 36 is installed on the catalytic reaction device body 1. An arc-shaped rack body 37 is fixedly arranged at the output end of the second electric telescopic rod 36, and the arc-shaped rack body 37 engages with the gear body 35, and the liquid discharge solenoid valve is located below the liquid outlet solenoid valve; A clamping groove 211 matching the clamping block 221 is formed on the clamping seat 21. The lifting assembly includes a first limiting ring 231 rotatably connected to the turning arm 23. A first electric telescopic rod 232 is installed on the catalytic reaction device body 1, and the output end of the first electric telescopic rod 232 is fixedly connected to the top end of the first limiting ring 231; The plurality of turning plates 31 are equidistantly distributed on the cleaning scraper seat 24, and a plurality of rotating grooves matching the plurality of turning plates 31 are formed on the cleaning scraper seat 24; A baffle is fixedly arranged on the inner wall of each rotating groove. A baffle groove matching the baffle is formed on one side of each turning plate 31. Fixed shafts are fixedly arranged on both sides of each turning plate 31, and the two torsion spring bodies 311 are respectively sleeved on the two fixed shafts; Both ends of the water inlet pipe 32 are communicated with the disinfection and cleaning liquid pipe 13 and the disinfection liquid spray head 33 respectively. A sleeve is fixedly arranged on the inner wall of the catalytic reaction device body 1, and the sleeve is sleeved outside the stirring shaft 111, and the water inlet pipe 32 is sleeved on the outer wall of the sleeve; When it is necessary to remove the materials adhering to the inner arc side wall of the catalytic reaction device body 1, the cleaning liquid can be introduced into the feed pipe 12, and then the first electric telescopic rod 232 is started to drive the first limit ring 231 to rise, thereby driving the rotating arm 23 slidably connected to the first limit ring 231 to rise, and at the same time driving the clamping disc 22 on the rotating arm 23 to rise, so that the clamping block 221 fixed on the clamping disc 22 is engaged with the clamping seat 21 fixed on the stirring shaft 111. At this time, by starting the motor body 11, the cleaning scraping seat 24 can be driven to rotate. At this time, the turning scraper 241 can scrape the materials attached to the inner wall of the catalytic reaction device body 1. When it is necessary to introduce materials into the catalytic reaction device body 1, the second electric telescopic rod 36 can be started to push the arc-shaped rack body 37 fixed to its output end to move to the position where it meshes with the gear body 35. When the gear body 35 on the cleaning scraping seat 24 rotates to the position where it meshes with the arc-shaped rack body 37, it can be rotated 180 degrees under the cooperation of the arc-shaped rack body 37. At this time, the side of the turning scraper 241 with residual material lumps can be turned into the cleaning scraping seat 24. At this time, the disinfection cleaning liquid can be introduced into the disinfection cleaning liquid pipe 13. The disinfection cleaning liquid can enter the water inlet pipe 32 through the disinfection cleaning liquid pipe 13 and is finally sprayed out by the disinfection liquid nozzle 33, so as to clean the side of the cleaning scraping seat 24 with residual material lumps. At the same time, under the cooperation of the rotational centrifugal force of the cleaning scraping seat 24, the side of the turning scraper 241 can be fully cleaned. Since the inside of the cleaning scraping seat 24 is in a semi-closed state at the top at this time, the turning plate 31 cannot be turned under the impact of the water flow inside the cleaning scraping seat 24. When the cleaning is completed, the motor body 11 can be started to rotate the cleaning scraping seat 24 to the position where the drain solenoid valve and the liquid outlet solenoid valve are coaxial. At this time, the first electric telescopic rod 232 is started to drive the cleaning scraping seat 24 to descend, and the drain solenoid valve and the liquid outlet solenoid valve are aligned, and then the drain solenoid valve and the liquid outlet solenoid valve are started at the same time to open, so as to discharge the mixture of lumps and cleaning liquid inside the cleaning scraping seat 24.
[0021] The engaging assembly 4 includes a third electric telescopic rod 41 installed on the outer wall of the catalytic reaction device body 1. The output end of the third electric telescopic rod 41 is fixedly provided with a second limit ring 42. The bottom end of the second limit ring 42 is rotatably provided with a connecting rod 43, and a plurality of sealing plates 44 are fixedly provided on the connecting rod 43. On the cleaning scraping seat 24, a filter plate 45 is fixedly provided on one side of each sealing plate 44; The plurality of sealing plates 44 are respectively located on one side of each turning plate 31. The connecting rod 43 is slidably connected to the inner wall of the cleaning scraping seat 24. A plurality of moving grooves matching the plurality of sealing plates 44 are formed on the cleaning scraping seat 24. A plugging hole matching the connecting rod 43 is formed on the cleaning scraping seat 24. The bottom end of the catalytic reaction device body 1 is fixedly provided with a base, and an inspection port is provided on the base; When the materials inside the catalytic reaction device body 1 are infected by miscellaneous bacteria, the infected materials are in a flocculent state at this time. The third electric telescopic rod 41 can be started to drive the second limit ring 42 to rise, and drive the connecting rod 43 slidably connected to the second limit ring 42 to rise. At the same time, the connecting rod 43 can slide on the inner wall of the cleaning scraping seat 24, and drive a plurality of sealing plates 44 fixed on the connecting rod 43 to slide inside the moving groove. At this time, a plurality of filter plates 45 fixed on the cleaning scraping seat 24 can be communicated with the inside of the catalytic reaction device body 1. Then, the second electric telescopic rod 36 is started, and with the cooperation of the disinfection and cleaning assembly 3, a plurality of turning plates 31 on the cleaning scraping seat 24 can be turned towards the inside of the cleaning scraping seat 24. At this time, the motor body 11 is started to drive the stirring shaft 111 to rotate. At this time, the flocculent materials inside the catalytic reaction device body 1 collide with a plurality of turning plates 31 on the cleaning scraping seat 24 under the action of centrifugal force. Since the flocculent materials have a greater mass, they can push the turning plates 31 to rotate. At this time, a plurality of turning plates 31 rotate around the connection position with the cleaning scraping seat 24. Then, the flocculent materials can be discharged into the catalytic reaction device body 1 under the filtration of the filter plates 45, which can play a role in initially isolating the flocculent materials and avoid the flocculent materials from blocking the discharge solenoid valve 14.
[0022] Working principle and usage process of the present invention: When removing the materials adhered to the inner arc side wall of the catalytic reaction device body 1, cleaning liquid can be introduced into the feed pipe 12, and then the first electric telescopic rod 232 is started to drive the first limiting ring 231 to rise, thereby driving the rotating arm 23 slidably connected to the first limiting ring 231 to rise, and at the same time driving the clamping disc 22 on the rotating arm 23 to rise, so that the clamping block 221 fixed on the clamping disc 22 is engaged with the clamping seat 21 fixed on the stirring shaft 111. At this time, by starting the motor body 11, the cleaning scraping seat 24 can be driven to rotate. At this time, the flipping scraper 241 can scrape the materials attached to the inner wall of the catalytic reaction device body 1. When it is necessary to introduce materials into the catalytic reaction device body 1, the second electric telescopic rod 36 can be started to push the arc-shaped rack body 37 fixed to its output end to move to the position where it engages with the gear body 35. When the gear body 35 on the cleaning scraping seat 24 rotates to the position where it engages with the arc-shaped rack body 37, the gear body 35 can be rotated 180 degrees under the cooperation of the arc-shaped rack body 37. At this time, the side of the flipping scraper 241 with material residue lumps can be flipped into the cleaning scraping seat 24. At this time, disinfected cleaning liquid can be introduced into the disinfected cleaning liquid pipe 13. The disinfected cleaning liquid can enter the water inlet pipe 32 through the disinfected cleaning liquid pipe 13 and is finally sprayed out by the disinfected liquid nozzle 33, so as to clean the side of the cleaning scraping seat 24 with residual material residue lumps. At the same time, with the cooperation of the rotational centrifugal force of the cleaning scraping seat 24, the side of the flipping scraper 241 can be fully cleaned. Since the inside of the cleaning scraping seat 24 is in a semi-closed state at the top at this time, the flipping plate 31 cannot be flipped under the impact of the water flow inside the cleaning scraping seat 24. When the cleaning is completed, the motor body 11 can be started to rotate the cleaning scraping seat 24 to the position where the drain solenoid valve and the liquid outlet solenoid valve are coaxial. At this time, the first electric telescopic rod 232 is started to drive the cleaning scraping seat 24 to descend and align the drain solenoid valve with the liquid outlet solenoid valve. Then, the drain solenoid valve and the liquid outlet solenoid valve are started simultaneously to open, so as to discharge the mixture of lumps and cleaning liquid inside the cleaning scraping seat 24. When the materials inside the catalytic reaction device body 1 are infected with miscellaneous bacteria, at this time, the infected materials are in a flocculent state. The third electric telescopic rod 41 can be started to drive the second limiting ring 42 to rise, and drive the connecting rod 43 slidably connected to the second limiting ring 42 to rise. At the same time, the connecting rod 43 can slide on the inner wall of the cleaning scraping seat 24, and at the same time drive a plurality of sealing plates 44 fixed on the connecting rod 43 to slide inside the movable groove. At this time, a plurality of filter plates 45 fixed on the cleaning scraping seat 24 can be communicated with the inside of the catalytic reaction device body 1. Then, the second electric telescopic rod 36 is started, and with the cooperation of the disinfection and cleaning assembly 3, a plurality of flipping plates 31 on the cleaning scraping seat 24 can be flipped towards the inside of the cleaning scraping seat 24. At this time, the motor body 11 can be started to drive the stirring shaft 111 to rotate.At this time, the flocculent material inside the catalytic reaction device body 1 collides with the multiple turning plates 31 on the cleaning scraping seat 24 under the action of centrifugal force. Since the flocculent material has a greater mass, it can push the turning plates 31 to rotate. At this time, the multiple turning plates 31 rotate around the connection position with the cleaning scraping seat 24, and then the flocculent material can be discharged into the catalytic reaction device body 1 under the filtration of the filter plate 45.
[0023] The above embodiments are only exemplary embodiments of the present invention and are not used to limit the present invention. The protection scope of the present invention is defined by the claims. Those skilled in the art can make various modifications or equivalent replacements within the essence and protection scope of the present invention, and such modifications or equivalent replacements should also be regarded as falling within the protection scope of the present invention.
Claims
1. A catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria, comprising a catalytic reaction device body (1), characterized in that: A motor body (11) is installed on the catalytic reaction device body (1). The output end of the motor body (11) is connected to a stirring shaft (111) through a coupling. A feed pipe (12) is arranged on the catalytic reaction device body (1). A discharge electromagnetic valve (14) is installed at the bottom of the catalytic reaction device body (1). A transmission assembly (2) is arranged inside the catalytic reaction device body (1), and a disinfection and cleaning assembly (3) is arranged inside the catalytic reaction device body (1). The transmission assembly (2) includes a cleaning scraping seat (24), and a flipping scraping plate (241) is rotatably arranged on the cleaning scraping seat (24). The disinfection and cleaning assembly (3) includes a plurality of flipping plates (31) rotatably connected to the flipping scraping plate (241), and two torsion spring bodies (311) are fixedly arranged between each flipping plate (31) and the flipping scraping plate (241). A disinfection and cleaning liquid pipe (13) communicating with the inside of the catalytic reaction device body (1) is arranged on the catalytic reaction device body (1). A disinfection liquid spray head (33) is arranged inside the cleaning scraping seat (24). A water inlet pipe (32) is fixedly arranged between the bottom end of the disinfection and cleaning liquid pipe (13) and the disinfection liquid spray head (33). A rotating rod (34) is fixedly arranged on the flipping scraping plate (241), a driving assembly is arranged on the rotating rod (34), a liquid outlet electromagnetic valve is arranged at the bottom of the cleaning scraping seat (24), a liquid discharge electromagnetic valve is arranged at the bottom end of the catalytic reaction device body (1), and a clamping assembly (4) is arranged on the cleaning scraping seat (24).
2. The catalytic reaction device for transglucosidase to avoid contamination of miscellaneous bacteria according to claim 1, characterized in that: The stirring shaft (111) is rotatably connected to the catalytic reaction device body (1). The feed pipe (12) communicates with the inside of the catalytic reaction device body (1). The discharge electromagnetic valve (14) communicates with the inside of the catalytic reaction device body (1).
3. A catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria according to claim 1, characterized in that: The transmission assembly (2) further includes a clamping seat (21) fixed on the arc-shaped outer wall of the stirring shaft (111). A clamping disc (22) is connected to the arc-shaped outer wall of the stirring shaft (111) through a bearing, and a clamping block (221) engaged with the clamping seat (21) is fixedly arranged at the top end of the clamping disc (22). A rotating arm (23) is fixedly arranged on each side of the clamping disc (22). A lifting assembly is fixedly arranged on the two rotating arms (23). The bottom end of the rotating arm (23) is fixedly connected to the cleaning scraping seat (24).
4. A catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria according to claim 1, characterized in that: The driving assembly includes a gear body (35) fixed at the top end of the rotating rod (34). A second electric telescopic rod (36) is installed on the catalytic reaction device body (1). The output end of the second electric telescopic rod (36) is fixedly provided with an arc-shaped rack body (37), and the arc-shaped rack body (37) is engaged with the gear body (35), and the liquid discharge electromagnetic valve is located below the liquid outlet electromagnetic valve.
5. A catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria according to claim 3, characterized in that: The clamping seat (21) is provided with a clamping groove (211) matching the clamping block (221). The lifting assembly includes a first limiting ring (231) rotatably connected to the rotating arm (23). A first electric telescopic rod (232) is installed on the catalytic reaction device body (1), and the output end of the first electric telescopic rod (232) is fixedly connected to the top end of the first limiting ring (231).
6. The catalytic reaction device for transglucosidase to avoid contamination of miscellaneous bacteria according to claim 1, wherein: A plurality of the turning plates (31) are equidistantly distributed on the cleaning scraping seat (24), and the cleaning scraping seat (24) is provided with a plurality of rotating grooves matching the plurality of turning plates (31).
7. A catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria according to claim 6, characterized in that: A baffle is fixedly arranged on the inner wall of each rotating groove. A baffle groove matching the baffle is arranged on one side of each turning plate (31). Fixed shafts are respectively fixedly arranged on both sides of each turning plate (31), and two torsion spring bodies (311) are respectively sleeved on the two fixed shafts.
8. A catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria according to claim 1, characterized in that: Both ends of the water inlet pipe (32) are communicated with the disinfection cleaning liquid pipe (13) and the disinfectant liquid spray head (33) respectively. A sleeve is fixedly arranged on the inner wall of the catalytic reaction device body (1), and the sleeve is sleeved on the outer side of the stirring shaft (111), and the water inlet pipe (32) is sleeved on the outer wall of the sleeve.
9. The catalytic reaction device for transglucosidase to avoid contamination of miscellaneous bacteria according to claim 1, wherein: The clamping assembly (4) includes a third electric telescopic rod (41) installed on the outer wall of the catalytic reaction device body (1). The output end of the third electric telescopic rod (41) is fixedly provided with a second limiting ring (42). A connecting rod (43) is rotatably arranged at the bottom end of the second limiting ring (42), and a plurality of sealing plates (44) are fixedly arranged on the connecting rod (43). A filter plate (45) is fixedly arranged on the cleaning scraping seat (24) on one side of each sealing plate (44).
10. A catalytic reaction device for transglucosidase to avoid contamination by miscellaneous bacteria according to claim 9, characterized in that: A plurality of the sealing plates (44) are respectively located on one side of each turning plate (31). The connecting rod (43) is slidably connected to the inner wall of the cleaning scraping seat (24). The cleaning scraping seat (24) is provided with a plurality of moving grooves matching the plurality of sealing plates (44). The cleaning scraping seat (24) is provided with a plugging hole matching the connecting rod (43). A base is fixedly arranged at the bottom end of the catalytic reaction device body (1), and a maintenance port is arranged on the base.
Citation Information
Patent Citations
Immobilized enzyme catalytic reaction device
CN219490021U