Automatic fishy smell removing and cleaning device for fish gelatin
Through the automatic fish glue removal and cleaning device, the hydroxyl group and ozone generator combined with the heating device and the flip water outlet device are used to solve the problems of long cleaning time, low production capacity and food safety hazards of traditional fish glue, and achieve efficient and thorough cleaning effect.
Patent Information
- Application Number
- CN202510926038.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-07-07
AI Technical Summary
The existing fish glue removal and cleaning technology takes a long time, has low production capacity, and is prone to damage the collagen structure and nutritional value. Chemical treatment may lead to food safety problems, and traditional methods are difficult to completely remove fishy substances.
The automatic fish-removing and cleaning device of fish glue is adopted, combined with a hydroxyl generator, an ozone generator and a heating device, and efficient and thorough cleaning is achieved through strong oxidative cleaning and flipped water outlet device. The hydroxyl and ozone degrade pollutants are used to degrade pollutants. The flipped water outlet device ensures a large cleaning force, and the feeding device and cleaning nozzle are combined to achieve comprehensive cleaning.
Efficient and thorough fish glue cleaning is achieved, avoiding the loss of collagen structure and nutritional value, reducing the risk of chemical reagent residues, and improving cleaning efficiency and safety.
Smart Images

Figure CN120394440A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cleaning equipment, and particularly to an automatic fish maw deodorizing and cleaning device. Background Art
[0002] Existing fish maw deodorizing and cleaning technologies use physical cleaning methods, chemical treatment methods, biological enzymatic methods or auxiliary technologies for removal. Physical cleaning methods include running water soaking, brushing or scraping, steam or hot water treatment. Chemical treatment methods include soaking in alkaline solutions, organic solvent extraction or hydrogen peroxide bleaching. Biological enzymatic methods include protease treatment or microbial fermentation to degrade odor components. Auxiliary technologies include using activated carbon, zeolite, etc. to adsorb odor molecules to achieve adsorption deodorization.
[0003] The traditional soaking method takes up to several days, with low productivity and unable to meet industrial demands. The time control of enzymatic hydrolysis or fermentation processes is complex, which easily leads to over-hydrolysis and affects the texture. Over-cleaning or strong alkali treatment causes the loss of collagen, reducing the nutritional value of fish maw. High temperature or chemical bleaching destroys the natural color and texture, resulting in a decline in the product appearance. Residues of chemical reagents such as hydrogen peroxide and alkali solution may cause food safety problems. Some organic solvents do not meet food processing specifications. Odorous substances such as trimethylamine and aldehydes and ketones are easily retained in the lipid or protein network, and it is difficult to completely remove them by traditional methods.
[0004] The large consumption of water and chemical reagents increases the treatment cost, and the chemical waste liquid pollutes the environment and requires additional treatment. Therefore, it is necessary to design a cleaning method that does not damage the natural flavor and nutrition of fish maw and is energy-efficient. Summary of the Invention
[0005] To overcome the technical defects existing in the prior art, the present invention provides an automatic fish maw deodorizing and cleaning device, which has a greater flushing force during cleaning, making the cleaning thorough.
[0006] The technical solution adopted by the present invention is: an automatic fish glue deodorizing and cleaning device, including a cleaning tank, a hydroxyl generator, an ozone generator, a heating device, a feeding device, a turning and draining device, an outer side cleaning device for the discharged material, and an inner side cleaning device for the discharged material. The hydroxyl generator, the ozone generator, and the heating device are all connected to the cleaning tank. The feeding device is installed on the side of the cleaning tank. The turning and draining device includes a turning and draining motor, a hollow cylinder, a filtering and lifting plate, and a number of one-way inlet valve plates. Each of the one-way inlet valve plates is installed inside the hollow cylinder. The one-way inlet valve plate is an elastic plastic sheet. A fish glue inlet is provided on the hollow cylinder at a position close to the root of the filtering and lifting plate. The one-way inlet valve plate covers the fish glue inlet. The area of the one-way inlet valve plate is larger than the area of the fish glue inlet. The one-way inlet valve plate is installed inside the hollow cylinder. One side of the hollow cylinder is installed at the output end of the turning and draining motor. The other side of the hollow cylinder has an open opening. The open opening of the hollow cylinder is located above the cleaning tank. The filtering and lifting plate is installed on the side of the hollow cylinder. Each of the one-way inlet valve plates is located at the root of the filtering and lifting plate. The outer side cleaning device for the discharged material points to the outer periphery of the hollow cylinder. The inner side cleaning device for the discharged material extends into the inside of the hollow cylinder.
[0007] Preferably, a filter plate is provided at the bottom of the cleaning tank, and the position of the cleaning tank below the filter plate is funnel-shaped.
[0008] Preferably, the heating device includes a spiral steam pipe. The spiral steam pipe is located inside the cleaning tank, and the spiral steam pipe is connected to steam.
[0009] Preferably, the feeding device includes a feeding conveyor belt, a feeding motor, and a feeding cleaning pipe. The feeding conveyor belt is installed on the side of the cleaning tank. The feeding conveyor belt extends into the cleaning tank. The feeding motor is drivingly connected to the feeding conveyor belt. The feeding cleaning pipe is installed on the cleaning tank. The feeding cleaning pipe is installed above the feeding conveyor belt.
[0010] Preferably, the outer side cleaning device for the discharged material includes an outer side cleaning pipe and a number of outer side cleaning spray heads. Each of the outer side cleaning spray heads is installed on the outer side cleaning pipe, and each of the outer side cleaning spray heads points to the outer side wall of the hollow cylinder.
[0011] Preferably, the inner side cleaning device for the discharged material includes an inner side cleaning pipe and a number of inner side cleaning spray heads. The inner side cleaning pipe extends into the hollow cylinder. Each of the inner side cleaning spray heads is installed on the inner side cleaning pipe, and each of the inner side cleaning spray heads points to the inner side wall of the hollow cylinder.
[0012] Preferably, a number of filter columns are provided on the side of the filtering and lifting plate away from the hollow cylinder.
[0013] Preferably, a number of filter holes are provided on the side wall of the hollow cylinder.
[0014] The beneficial effects of the present invention are as follows: The hydroxyl generator, ozone generator and heating device are all connected to the cleaning tank. The hydroxyl generator can efficiently degrade pollutants, sterilize and disinfect without secondary pollution. The ozone generator is used to generate ozone by means of high-voltage discharge, etc., and utilize strong oxidizing properties to achieve functions such as inactivation of microorganisms and decomposition of organic substances. The heating device heats the water in the cleaning tank to achieve cleaning. The feeding device is installed on the side of the cleaning tank to carry out the fish glue after cleaning.
[0015] The flipping water outlet device includes a flipping water outlet motor, a hollow cylinder, a filtering and lifting plate and a number of one-way inlet valve plates. Each one-way inlet valve plate is installed inside the hollow cylinder. Thus, when the one-way inlet valve plate on the hollow cylinder rotates to the upper end, the fish glue outside the hollow cylinder falls into the hollow cylinder. When the one-way inlet valve plate on the hollow cylinder rotates to the lower end, the one-way inlet valve plate closes the hollow cylinder to prevent the fish glue from falling out of the hollow cylinder when the cleaning device inside the water outlet material is cleaning the fish glue. One side of the hollow cylinder is installed at the output end of the flipping water outlet motor, and the other side of the hollow cylinder has an open opening. The open opening of the hollow cylinder is located above the cleaning tank. The flipping water outlet motor drives the hollow cylinder to rotate. The fish glue entering the inside of the hollow cylinder is gradually cleaned by the cleaning device inside the water outlet material during the rotation of the hollow cylinder until it falls back into the cleaning tank from the position of the open opening of the hollow cylinder.
[0016] The filtering and lifting plate is installed on the side of the hollow cylinder. When the hollow cylinder rotates, it drives the filtering and lifting plate to rotate, periodically fishing up the fish glue in the cleaning tank and carrying it to the outside of the hollow cylinder. The flushing direction of the cleaning device outside the water outlet material points to the outside of the hollow cylinder. Since the fish glue has been fished up, the water around the fish glue is drained away. The cleaning device outside the water outlet material cleans the fish glue outside the hollow cylinder with greater cleaning strength. Each one-way inlet valve plate is located at the root of the filtering and lifting plate. As the fish glue continues to rotate with the hollow cylinder, the fish glue falls into the hollow cylinder from the position of the one-way inlet valve plate. The cleaning device outside the water outlet material points to the outer periphery of the hollow cylinder, and the cleaning device inside the water outlet material extends into the inside of the hollow cylinder. The cleaning device inside the water outlet material cleans the fish glue inside the hollow cylinder. After the fish glue inside the hollow cylinder is cleaned by the cleaning device inside the water outlet material, it falls back into the cleaning tank from the end face position of the hollow cylinder. Since the fish glue is lifted away from the cleaning tank both outside and inside the hollow cylinder, the flushing water flow directly acts on the fish glue, and the cleaning strength is greater during cleaning, making the cleaning thorough. Description of the Drawings
[0017] Figure 1 It is a schematic structural diagram of the present invention.
[0018] Figure 2 It is Figure 1 the enlarged schematic diagram at A in
[0019] Figure 3Schematic diagram of the state of the one-way inlet valve plate when the fish maw enters through the fish maw inlet.
[0020] Explanation of the reference numerals in the drawings: 1. Cleaning tank; 2. Feeding device; 21. Feeding conveyor belt; 22. Feeding cleaning pipe; 3. Inverting water outlet device; 31. Inverting water outlet motor; 32. Hollow cylinder; 321. Filter holes; 322. Fish maw inlet; 33. Filter lifting plate; 34. One-way inlet valve plate; 4. Outer side cleaning device for the discharged material; 41. Outer side cleaning pipe; 42. Outer side cleaning nozzle; 5. Inner side cleaning device for the discharged material. Detailed implementation manners
[0021] The present invention will be further described below with reference to the drawings: As Figure 1 — Figure 3 shown, this embodiment provides an automatic fish maw deodorizing and cleaning device, including a cleaning tank 1, a hydroxyl generator, an ozone generator, a heating device, a feeding device 2, an inverting water outlet device 3, an outer side cleaning device 4 for the discharged material, and an inner side cleaning device 5 for the discharged material. The hydroxyl generator, the ozone generator, and the heating device are all connected to the cleaning tank 1. The hydroxyl generator can efficiently degrade pollutants, sterilize and disinfect without secondary pollution. The ozone generator is used to generate ozone through methods such as high-voltage discharge, and utilizes strong oxidizing properties to achieve functions such as microbial inactivation and organic matter decomposition. The heating device heats the water in the cleaning tank 1 to achieve cleaning. The feeding device 2 is installed on the side of the cleaning tank 1 to carry out the cleaned fish maw.
[0022] The inverting water outlet device 3 includes an inverting water outlet motor 31, a hollow cylinder 32, a filter lifting plate 33, and a plurality of one-way inlet valve plates 34. Each one-way inlet valve plate 34 is installed inside the hollow cylinder 32. Thus, when the one-way inlet valve plate 34 on the hollow cylinder 32 rotates to the upper end, the fish maw outside the hollow cylinder 32 falls into the hollow cylinder 32. When the one-way inlet valve plate 34 on the hollow cylinder 32 rotates to the lower end, the one-way inlet valve plate 34 closes the hollow cylinder 32 to prevent the fish maw from falling out of the hollow cylinder 32 when the inner side cleaning device 5 for the discharged material is cleaning the fish maw. One side of the hollow cylinder 32 is installed at the output end of the inverting water outlet motor 31, and the other side of the hollow cylinder 32 has an open opening. The open opening of the hollow cylinder 32 is located above the cleaning tank 1. The inverting water outlet motor 31 drives the hollow cylinder 32 to rotate. The fish maw entering the inside of the hollow cylinder 32 is gradually cleaned by the inner side cleaning device 5 for the discharged material during the rotation of the hollow cylinder 32, and finally falls back into the cleaning tank 1 from the open opening position of the hollow cylinder 32.
[0023] The filtering and lifting plate 33 is installed on the side of the hollow cylinder 32. When the hollow cylinder 32 rotates, it drives the filtering and lifting plate 33 to rotate, periodically lifting the fish glue in the cleaning tank 1 and carrying it to the outside of the hollow cylinder 32. The flushing direction of the outer cleaning device 4 for the discharged material points to the outside of the hollow cylinder 32. Since the fish glue has been lifted, the water around the fish glue is drained away. The outer cleaning device 4 for the discharged material cleans the fish glue on the outside of the hollow cylinder 32 with greater cleaning strength. Each one-way inlet valve plate 34 is located at the root of the filtering and lifting plate 33. As the fish glue continues to rotate with the hollow cylinder 32, the fish glue falls into the hollow cylinder 32 from the position of the one-way inlet valve plate 34. The outer cleaning device 4 for the discharged material points to the outer circumference of the hollow cylinder 32, and the inner cleaning device 5 for the discharged material extends into the inside of the hollow cylinder 32. The inner cleaning device 5 for the discharged material cleans the fish glue inside the hollow cylinder 32. After the fish glue inside the hollow cylinder 32 is cleaned by the inner cleaning device 5 for the discharged material, it falls back into the cleaning tank 1 from the end face position of the hollow cylinder 32. Since the fish glue is lifted out of the cleaning tank 1 both outside and inside the hollow cylinder 32, the flushing water flow directly acts on the fish glue, resulting in greater cleaning strength during cleaning and thorough cleaning.
[0024] Preferably, a filter plate is provided at the bottom of the cleaning tank 1 to prevent the fish glue from leaking when the cleaning tank 1 drains water. The position below the filter plate in the cleaning tank 1 is funnel-shaped to facilitate the centralized discharge of sewage.
[0025] Preferably, the heating device includes a spiral steam pipe located inside the cleaning tank 1. The spiral steam pipe is connected to steam to heat the water in the cleaning tank 1.
[0026] Preferably, the feeding device 2 includes a feeding conveyor belt 21, a feeding motor, and a feeding cleaning pipe 22. The feeding conveyor belt 21 is installed on the side of the cleaning tank 1 and extends into the cleaning tank 1. The feeding motor is drivingly connected to the feeding conveyor belt 21. The feeding cleaning pipe 22 is installed on the cleaning tank 1 and above the feeding conveyor belt 21. When the feeding conveyor belt 21 carries and conveys the fish glue away, the feeding cleaning pipe 22 sprays clean water on the fish glue after cleaning to prevent the sewage in the cleaning tank 1 from adhering to the fish glue and contaminating it.
[0027] Preferably, the outer cleaning device 4 for the discharged material includes an outer cleaning pipe 41 and a number of outer cleaning spray nozzles 42. Each outer cleaning spray nozzle 42 is installed on the outer cleaning pipe 41, and each outer cleaning spray nozzle 42 points to the outer wall of the hollow cylinder 32 to achieve cleaning.
[0028] Preferably, the inner cleaning device 5 for the discharged material includes an inner cleaning pipe and a number of inner cleaning spray nozzles. The inner cleaning pipe extends into the hollow cylinder 32. Each inner cleaning spray nozzle is installed on the inner cleaning pipe, and each inner cleaning spray nozzle points to the lowest point of the inner wall of the hollow cylinder 32 to achieve cleaning.
[0029] Preferably, a plurality of filter columns are provided on the side of the filter lifting plate 33 away from the hollow cylinder 32 to intercept the fish glue on the filter lifting plate 33, facilitating the cleaning of the fish glue on the filter lifting plate 33 and the entry of the fish glue into the hollow cylinder 32. A bubble generator is installed in the cleaning tank 1, enabling the fish glue to float in the cleaning tank 1 in real time, facilitating the scooping up of the fish glue in the cleaning tank 1.
[0030] Preferably, a plurality of filter holes 321 are provided on the side wall of the hollow cylinder 32, facilitating the discharge of the water around the fish glue outside the hollow cylinder 32 when the outer cleaning device 4 of the discharged material flushes, and the discharge of the water around the fish glue inside the hollow cylinder 32 when the inner cleaning device 5 of the discharged material cleans. The flushing water flow directly acts on the fish glue, making the fish glue clean.
[0031] The one-way inlet valve plate 34 is an elastic plastic sheet. A fish glue inlet 322 is provided on the hollow cylinder 32 near the root of the filter lifting plate 33. The elastic plastic sheet covers the fish glue inlet 322. The area of the elastic plastic sheet is larger than the area of the fish glue inlet 322. The elastic plastic sheet is installed on the inner side of the hollow cylinder 32. In this way, the fish glue outside the hollow cylinder 32 can push the one-way inlet valve plate 34 into the inner side of the hollow cylinder 32, and the fish glue inside the hollow cylinder 32 cannot leak out from the fish glue inlet 322 when the inner cleaning device 5 of the discharged material cleans.
[0032] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. An automatic fish maw deodorizing and cleaning device, characterized in that, It includes a cleaning tank, a hydroxyl generator, an ozone generator, a heating device, a feeding device, a tipping water outlet device, an outer side cleaning device for the discharged material, and an inner side cleaning device for the discharged material. The hydroxyl generator, the ozone generator, and the heating device are all connected to the cleaning tank. The feeding device is installed on the side of the cleaning tank. The tipping water outlet device includes a tipping water outlet motor, a hollow cylinder, a filtering and lifting plate, and a number of one-way inlet valve plates. Each of the one-way inlet valve plates is installed inside the hollow cylinder. The one-way inlet valve plate is an elastic plastic sheet. A fish glue inlet is provided on the hollow cylinder at a position close to the root of the filtering and lifting plate. The one-way inlet valve plate covers the fish glue inlet. The area of the one-way inlet valve plate is larger than the area of the fish glue inlet. The one-way inlet valve plate is installed inside the hollow cylinder. One side of the hollow cylinder is installed at the output end of the tipping water outlet motor. The other side of the hollow cylinder has an open opening. The open opening of the hollow cylinder is located above the cleaning tank. The filtering and lifting plate is installed on the side of the hollow cylinder. Each of the one-way inlet valve plates is located at the root of the filtering and lifting plate. The outer side cleaning device for the discharged material points to the outer periphery of the hollow cylinder. The inner side cleaning device for the discharged material extends into the inside of the hollow cylinder.
2. The automatic fish maw deodorizing and cleaning device according to claim 1, characterized in that, A filter plate is provided at the bottom of the cleaning tank. The position of the cleaning tank below the filter plate is funnel-shaped.
3. The fish maw automatic deodorization and cleaning device according to claim 1, characterized in that, The heating device includes a spiral steam pipe. The spiral steam pipe is located inside the cleaning tank. The spiral steam pipe is connected to steam.
4. The automatic fish maw deodorizing and cleaning device according to claim 1, wherein The feeding device includes a feeding conveyor belt, a feeding motor, and a feeding cleaning pipe. The feeding conveyor belt is installed on the side of the cleaning tank. The feeding conveyor belt extends into the cleaning tank. The feeding motor is in transmission connection with the feeding conveyor belt. The feeding cleaning pipe is installed on the cleaning tank. The feeding cleaning pipe is installed above the feeding conveyor belt.
5. The automatic fish maw deodorizing and cleaning device according to claim 1, wherein The outer side cleaning device for the discharged material includes an outer side cleaning pipe and a number of outer side cleaning spray heads. Each of the outer side cleaning spray heads is installed on the outer side cleaning pipe. Each of the outer side cleaning spray heads points to the outer side wall of the hollow cylinder.
6. The automatic fish maw deodorizing and cleaning device according to claim 1, characterized in that, The inner side cleaning device for the discharged material includes an inner side cleaning pipe and a number of inner side cleaning spray heads. The inner side cleaning pipe extends into the hollow cylinder. Each of the inner side cleaning spray heads is installed on the inner side cleaning pipe. Each of the inner side cleaning spray heads points to the lowest position of the inner side wall of the hollow cylinder.
7. The automatic fish maw deodorizing and cleaning device according to claim 1, characterized in that, A number of filter columns are provided on the side of the filtering and lifting plate away from the hollow cylinder.
8. The fish maw automatic deodorization and cleaning device according to claim 1, wherein, A number of filter holes are provided on the side wall of the hollow cylinder.
Citation Information
Patent Citations
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