Liquid enzyme packaging container

By using a combined structure of sleeve, trachea and hollow disc in the liquid biological enzyme packaging container, the problems of gas oozing and bacterial contamination in the storage process of biological enzyme preparations are solved, and a safe and stable storage effect is achieved.

CN114873090BActive Publication Date: 2025-05-13SHANGHAI DAIDI INDAL DEV
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Patent Information

Application Number
CN202210539102.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-18
Publication Date
2025-05-13
Estimated Expiration
2042-05-18

AI Technical Summary

Technical Problem

Existing liquid biological enzyme preparations are prone to gas during storage, causing liquid in the barrel to seep out, foam to overflow, and are easily contaminated by external bacteria, resulting in mold and rot.

Method used

A liquid biological enzyme packaging container was designed, using a combined structure of sleeve, air pipe and hollow disc to realize gas flow, and the air was filtered and dried through a breathable grille, gauze and desiccant. At the same time, use ceramic granules to eliminate foam spills and set up filter cotton in the screen barrel to block external bacteria.

Benefits of technology

It effectively avoids foam spillage and bacterial contamination, ensures the storage safety and quality of biological enzyme preparations, and simplifies the disassembly and assembly of containers and the replacement of filter cotton.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a liquid bio-enzyme packaging container, and specifically relates to the field of bio-enzyme storage technology, including a barrel and a cover plate, wherein the cover plate is arranged at the top of the barrel, and the top and bottom of the cover plate are both provided with a first threaded hole, and a groove is connected between the two first threaded holes, and a sleeve is fixedly provided inside the groove, and a sieve barrel and two filter screens distributed up and down are provided inside the sleeve. The present invention realizes the flow of gas through the coordinated use of a sleeve, an air pipe and a hollow disc, and the air-permeable grille and gauze inside the pore can filter the air, and the multiple desiccants inside the hollow disc can also absorb moisture in the outside air, and play a moisture-proof role. When there are more foams in the barrel, part of the foam flows to the inside of the sleeve and contacts with the ceramsite inside the sleeve, and the ceramsite soaked with a silicone oil defoamer is used to eliminate the overflowing foam, which can effectively avoid the overflow of foam, and at the same time, a filter cotton is placed inside the sieve barrel to block the external bacteria from entering the barrel.
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Description

Technical Field

[0001] The invention relates to the technical field of biological enzyme storage, and more specifically to a liquid biological enzyme packaging container. Background Art

[0002] Bio-enzyme preparations refer to biological products with catalytic functions after enzymes have been purified and processed. They are mainly used to catalyze various chemical reactions in the production process. They have the characteristics of high catalytic efficiency, high specificity, mild action conditions, reduced energy consumption, and reduced chemical pollution. Their application areas cover food, textiles, feed, detergents, papermaking, leather, medicine, energy development, environmental protection, etc. There are various types of bio-enzyme preparations. At present, after the existing bio-enzyme preparations are produced, they need to be packaged and stored in special containers.

[0003] Existing liquid bio-enzyme preparations will produce gas during storage and require the use of a barrel cover with a breathable function. However, the existing breathable barrel cover has a simple structure. During transportation, the liquid in the barrel is easy to seep out, especially if there is a lot of foam in the barrel, the foam will overflow, which will cause the bio-enzyme preparation in the barrel to be easily contaminated by external bacteria, resulting in mold and corruption. Summary of the invention

[0004] In order to overcome the above-mentioned defects of the prior art, the embodiments of the present invention provide a liquid bio-enzyme packaging container to solve the problems arising from the above-mentioned background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical scheme: a liquid bio-enzyme packaging container, comprising a barrel body and a cover plate, the cover plate is arranged at the top end of the barrel body, the top and bottom ends of the cover plate are both provided with first threaded holes, a groove is connected between the two first threaded holes, a sleeve is fixedly provided inside the groove, a sieve barrel and two filter screens distributed up and down are provided inside the sleeve, the top end of the sieve barrel passes through the sleeve and extends to the top surface of the sleeve, the filter screen is provided below the sieve barrel, filter cotton is provided inside the sieve barrel, ceramsite is stored between the sleeve and the sieve barrel, and the A hollow disc is provided at the top of the cover plate, and a plurality of air holes are opened on the outer wall surface of the hollow disc, and an air-permeable grille is fixedly provided inside each air hole. An air pipe is penetrated through the bottom end of the hollow disc, and the bottom end of the air pipe extends to the inside of the sieve barrel. Two long rods distributed on the left and right are fixedly provided at the bottom end of the hollow disc, and the bottom ends of the long rods extend to the inside of the sieve barrel. The long rods and the air pipe are both arranged inside the filter cotton. A pad is provided inside the sieve barrel, and the pad is arranged at the bottom end of the filter cotton. A spring is fixedly provided at the bottom end of the pad, and the bottom ends of the two long rods are in contact with the top of the pad.

[0006] In a preferred embodiment, gauze is fixed inside each air hole, and the gauze is arranged on the inner side of the air-permeable grille for filtering dust and impurities in the outside air. A plurality of desiccant bags are stored inside the hollow disc for filtering and drying the outside air.

[0007] In a preferred embodiment, the outer wall surface of the hollow disk and the outer wall surface of the barrel port are both processed with threads, the hollow disk is threadedly connected to the first threaded hole at the top of the cover plate, and the barrel port is threadedly connected to the first threaded hole at the bottom of the cover plate, so that the hollow disk, the cover plate and the barrel body can be easily disassembled.

[0008] In a preferred embodiment, a second threaded hole is formed at the top of the hollow disc, and a sealing cover is threadedly connected inside the second threaded hole to facilitate replacement of the desiccant bag inside the hollow disc.

[0009] In a preferred embodiment, annular sealing grooves are provided at the bottom ends of the hollow disc and the cover plate, and annular sealing strips are fixedly provided inside the top end of the barrel body and the first threaded hole above the cover plate. The annular sealing strip is arranged inside the annular sealing groove. The annular sealing strip and the annular sealing groove are used in combination to improve the sealing effect between the hollow disc and the cover plate, and between the cover plate and the barrel body.

[0010] In a preferred embodiment, both ends of the barrel body are provided with a first embedding groove and a second embedding groove distributed vertically, the top of the second embedding groove is connected to the bottom of the first embedding groove, a first movable shaft is provided inside the first embedding groove, and a second movable shaft is provided inside the second embedding groove, and a transmission assembly is provided between the first movable shaft and the second movable shaft to facilitate simultaneous driving of the second movable shaft and the first movable shaft.

[0011] In a preferred embodiment, the outer wall of the second movable shaft is provided with two support rods distributed front and back, and the bottom ends of the support rods are connected to moving wheels. The outer wall of the first movable shaft is provided with two handrails distributed front and back to facilitate the staff to push the barrel to move.

[0012] In a preferred embodiment, the transmission assembly includes a first pulley and a second pulley, and the first pulley and the second pulley are respectively mounted on the outer walls of the first movable shaft and the second movable shaft, and the first pulley and the second pulley are connected by a belt. The first pulley, the second pulley and the belt are used to link the first movable shaft and the second movable shaft together, so as to facilitate the simultaneous deployment of the armrest and the movable wheel for use.

[0013] In a preferred embodiment, a first frame plate is fixedly provided inside each of the two second embedded grooves, the first frame plate is arranged in an inverted U shape, a second frame plate is fixedly provided inside each of the two first embedded grooves, and the first pulley, the second pulley and the belt are arranged inside the second frame plate to prevent the staff from accidentally touching the belt.

[0014] In a preferred embodiment, two support legs distributed front and back are fixedly provided on both sides of the bottom end of the barrel body, so as to improve the stability of the barrel body when the barrel body is not moved.

[0015] Technical effects and advantages of the present invention:

[0016] 1. The present invention realizes the flow of gas through the coordinated use of a sleeve, an air pipe and a hollow disc. The air-permeable grille and gauze inside the air hole can filter the air. The multiple desiccants inside the hollow disc can also absorb moisture in the outside air to play a moisture-proof role. When there is a lot of foam in the barrel, part of the foam flows into the sleeve and contacts with the ceramsite inside the sleeve. The ceramsite soaked in silicone oil defoaming agent is used to eliminate the overflowing foam, which can effectively prevent the overflow of foam. At the same time, filter cotton is placed inside the screen barrel to prevent external bacteria from entering the barrel body.

[0017] 2. By unscrewing the hollow disc on the cover plate from the first threaded hole, the two long rods on the hollow disc are separated from the pad, and the pad moves upward under the action of the spring to push the filter cotton out from the inside of the sieve barrel, making it convenient for the staff to take the filter cotton for replacement. When installing new filter cotton, the staff first aligns the new filter cotton with the sleeve and inserts it, and then reinstalls the hollow disc. The air pipe and the two long rods on the hollow disc are inserted into the filter cotton. The pad pushes the filter cotton upward under the push of the spring. When the pad contacts the long rod, the pad stops moving up to avoid excessive squeezing of the filter cotton by the pad, which affects the flow rate of the gas.

[0018] 3. By grasping the two handrails and flipping them, the handrails will drive the first movable shaft to rotate during the rotation process, and the first movable shaft will drive the second movable shaft to rotate at the same time through the transmission assembly. When the handrails are vertical to the barrel body, the support rods and the moving wheels are flipped to be vertical with the barrel body, and the moving wheels are in contact with the ground to prop up the entire barrel body. Then the staff pushes the handrails to move the position of the entire barrel body, and the moving wheels are used for transportation. There is no need for manual carrying by the staff. The structure is simple and it is more time-saving and labor-saving to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the structure of the handrail and the moving wheel of the present invention when in use;

[0020] Figure 2 It is a partial structural cross-sectional view of the present invention;

[0021] Figure 3 A bottom view of the sleeve and the hollow disc of the present invention;

[0022] Figure 4 is a cross-sectional view of a sleeve of the present invention;

[0023] Figure 5 It is a cross-sectional view of the screen barrel of the present invention;

[0024] Figure 6 This is a schematic diagram of the structure of the handrail and the moving wheels of the present invention when they are folded;

[0025] Figure 7 It is a cross-sectional view of the first frame plate of the present invention.

[0026] The accompanying drawings are marked as follows: 1. barrel; 2. cover plate; 3. first threaded hole; 4. groove; 5. sleeve; 6. sieve barrel; 7. filter screen; 8. filter cotton; 9. ceramsite; 10. hollow disc; 11. air hole; 12. air permeable grille; 13. air pipe; 14. long rod; 15. pad; 16. spring; 17. gauze; 18. desiccant bag; 19. second threaded hole; 20. sealing cover; 21. annular sealing groove; 22. annular sealing strip; 23. first embedded groove; 24. second embedded groove; 25. first movable shaft; 26. second movable shaft; 27. support rod; 28. moving wheel; 29. ​​handrail; 30. first pulley; 31. second pulley; 32. belt; 33. first frame plate; 34. second frame plate; 35. supporting leg. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0028] Refer to the instruction manual Figure 1 , 2 , 3, 4 and 6, the liquid bio-enzyme packaging container of this embodiment comprises a barrel body 1 and a cover plate 2, the cover plate 2 is arranged at the top of the barrel body 1, the top and bottom of the cover plate 2 are both provided with a first threaded hole 3, a groove 4 is connected between the two first threaded holes 3, a sleeve 5 is fixedly provided inside the groove 4, a sieve barrel 6 and two filter screens 7 distributed up and down are provided inside the sleeve 5, the top of the sieve barrel 6 passes through the sleeve 5 and extends to the top surface of the sleeve 5, the filter screen 7 is arranged below the sieve barrel 6, a filter cotton 8 is provided inside the sieve barrel 6, ceramsite 9 is stored between the sleeve 5 and the sieve barrel 6, a hollow disc 10 is provided at the top of the cover plate 2, the hollow A plurality of air holes 11 are provided on the outer wall surface of the hollow disk 10, and an air-permeable grille 12 is fixedly provided inside each air hole 11. An air pipe 13 is penetrated through the bottom end of the hollow disk 10, and the bottom end of the air pipe 13 extends to the inside of the sieve barrel 6. A gauze 17 is fixedly provided inside each air hole 11, and the gauze 17 is arranged on the inner side of the air-permeable grille 12. A plurality of desiccant bags 18 are stored inside the hollow disk 10 for filtering and drying the external air. A second threaded hole 19 is provided on the top end of the hollow disk 10, and a sealing cover 20 is threadedly connected inside the second threaded hole 19 to facilitate replacement of the desiccant bag 18 inside the hollow disk 10.

[0029] The specific implementation scenario is as follows: when storing the liquid biological enzyme, the staff first unscrews the cover plate 2 from the barrel body 1, and then stores the liquid biological enzyme inside the barrel body 1. After placing the liquid biological enzyme, the staff screws the cover plate 2 onto the barrel body 1. During the storage process, the gas generated by the liquid biological enzyme flows through the port on the barrel body 1 to the inside of the sleeve 5, and then flows through the sleeve 5 to the inside of the hollow disc 10, and finally is discharged through the multiple air holes 11 on the hollow disc 10, thereby realizing the flow of gas. The air-permeable grille 12 and the gauze 17 can filter the air to prevent dust and impurities in the air from entering the barrel body 1. The multiple desiccants inside the hollow disc 10 can also absorb moisture in the outside air to play a moisture-proof role. When there is a lot of foam in the barrel, part of the foam flows to the inside of the sleeve 5 and contacts the expanded clay 9 inside the sleeve 5. The expanded clay 9 soaked in silicone oil defoaming agent is used to eliminate the overflowing foam, which can effectively prevent the foam from overflowing. At the same time, filter cotton 8 is placed inside the screen barrel 6 to prevent external bacteria from entering the barrel body 1.

[0030] Refer to the instruction manual Figure 1-6 In the liquid bio-enzyme packaging container of this embodiment, the bottom end of the hollow disc 10 is fixed with two long rods 14 distributed on the left and right, and the bottom end of the long rod 14 extends to the inside of the sieve barrel 6. The long rod 14 and the air pipe 13 are both arranged inside the filter cotton 8. A pad 15 is provided inside the sieve barrel 6, and the pad 15 is arranged at the bottom end of the filter cotton 8. A spring 16 is fixed at the bottom end of the pad 15. The bottom ends of the two long rods 14 are in contact with the top of the pad 15. The outer wall surface of the hollow disc 10 and the outer wall surface of the barrel body 1 port are both processed with threads. The hollow disc 10 and the first top of the cover plate 2 are connected. The threaded hole 3 is threadedly connected, and the port of the barrel body 1 is threadedly connected to the first threaded hole 3 at the bottom end of the cover plate 2, which is convenient for disassembling the hollow disc 10, the cover plate 2 and the barrel body 1. An annular sealing groove 21 is provided at the bottom end of the hollow disc 10 and the bottom end of the cover plate 2. An annular sealing strip 22 is fixed inside the top end of the barrel body 1 and the first threaded hole 3 above the cover plate 2. The annular sealing strip 22 is arranged inside the annular sealing groove 21. The annular sealing strip 22 and the annular sealing groove 21 are used in combination to improve the sealing effect between the hollow disc 10 and the cover plate 2, and between the cover plate 2 and the barrel body 1.

[0031] The specific implementation scenario is as follows: after long-term use, the staff can unscrew the hollow disc 10 on the cover plate 2 from the first threaded hole 3. When the hollow disc 10 is separated from the cover plate 2, the two long rods 14 on the hollow disc 10 are separated from the pad 15, and the pad 15 moves upward under the action of the spring 16, pushing the filter cotton 8 inside the screen barrel 6 out of the screen barrel 6, making it convenient for the staff to take the filter cotton 8 for replacement. When installing the new filter cotton 8, the staff first aligns the new filter cotton 8 with the sleeve 5 and inserts it, and then screws the hollow disc 10 back into the first threaded hole 3, and the air pipe 13 and the two long rods 14 on the hollow disc 10 are inserted into the filter cotton 8. The pad 15 pushes the filter cotton 8 upward under the push of the spring 16. When the pad 15 contacts the long rod 14, the pad 15 stops moving up to avoid excessive squeezing of the filter cotton 8 by the pad 15, affecting the flow rate of the gas.

[0032] Refer to the instruction manual Figure 1 , 6 7, in the liquid bio-enzyme packaging container of this embodiment, both ends of the barrel body 1 are provided with a first embedded groove 23 and a second embedded groove 24 distributed up and down, the top of the second embedded groove 24 is connected to the bottom of the first embedded groove 23, a first movable shaft 25 is provided inside the first embedded groove 23, a second movable shaft 26 is provided inside the second embedded groove 24, a transmission assembly is provided between the first movable shaft 25 and the second movable shaft 26, so as to drive the second movable shaft 26 and the first movable shaft 25 at the same time, the transmission assembly includes a first pulley 30 and a second pulley 31, the first pulley 30 and the second pulley 31 are respectively sleeved on the outer walls of the first movable shaft 25 and the second movable shaft 26, the first pulley 30 and the second pulley 31 are connected by a belt 32, and the first pulley 30, the second pulley 31 and the belt 32 are used to move the first movable shaft 25 and the second movable shaft 26. The movable shaft 25 and the second movable shaft 26 are linked together to facilitate the simultaneous deployment of the handrail 29 and the moving wheel 28. The outer wall of the second movable shaft 26 is provided with two support rods 27 distributed front and back, and the bottom end of the support rod 27 is connected to the moving wheel 28. The outer wall of the first movable shaft 25 is provided with two handrails 29 distributed front and back, which is convenient for the staff to push the barrel body 1 to move. The first frame plate 33 is fixedly provided inside the two second embedded grooves 24. The first frame plate 33 is set to an inverted U shape. The second frame plate 34 is fixedly provided inside the two first embedded grooves 23. The first pulley 30, the second pulley 31 and the belt 32 are all arranged inside the second frame plate 34 to prevent the staff from accidentally touching the belt 32. Two front and back supporting legs 35 are fixedly provided on both sides of the bottom end of the barrel body 1. When the barrel body 1 is not moved, the stability of the barrel body 1 is improved.

[0033] The specific implementation scenario is as follows: when the barrel body 1 needs to be moved, the staff grabs the two handrails 29 by hand and flips them over. The handrails 29 drive the first movable shaft 25 to rotate during the rotation process. When the first movable shaft 25 rotates, it drives the first pulley 30 to rotate. The first pulley 30 drives the second pulley 31 to rotate through the belt 32, so that the second movable shaft 26 rotates simultaneously with the first movable shaft 25. Since the diameter of the second pulley 31 is half of the diameter of the first pulley 30, when the first movable shaft 25 rotates 90 degrees, the second movable shaft 26 rotates 180 degrees. When the handrails 29 are vertical to the barrel body 1, the support rod 27 and the moving wheel 28 flip over to be vertical to the barrel body 1, and the moving wheel 28 contacts the ground to prop up the entire barrel body 1. Then the staff pushes the handrails 29 to move the position of the entire barrel body 1. The moving wheels 28 are used for transportation, and there is no need for manual carrying by the staff. The structure is simple and it is more time-saving and labor-saving to use.

[0034] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A liquid bio-enzyme packaging container, comprising a barrel (1) and a cover plate (2), wherein the cover plate (2) is arranged on the top of the barrel (1), and is characterized in that: The top and bottom ends of the cover plate (2) are both provided with first threaded holes (3), a groove (4) is connected between the two first threaded holes (3), a sleeve (5) is fixedly provided inside the groove (4), a screen barrel (6) and two filter screens (7) arranged up and down are provided inside the sleeve (5), the top end of the screen barrel (6) passes through the sleeve (5) and extends to the top surface of the sleeve (5), the filter screen (7) is arranged below the screen barrel (6), filter cotton (8) is provided inside the screen barrel (6), ceramsite (9) is stored between the sleeve (5) and the screen barrel (6), a hollow disc (10) is provided at the top end of the cover plate (2), and a plurality of air holes (11) are provided on the outer wall surface of the hollow disc (10). ), a ventilation grille (12) is fixedly provided inside each air hole (11), an air pipe (13) is penetrated through the bottom end of the hollow disc (10), the bottom end of the air pipe (13) extends into the inside of the sieve barrel (6), two long rods (14) distributed on the left and right are fixedly provided at the bottom end of the hollow disc (10), the bottom end of the long rods (14) extends into the inside of the sieve barrel (6), the long rods (14) and the air pipe (13) are both arranged inside the filter cotton (8), a pad (15) is provided inside the sieve barrel (6), the pad (15) is arranged at the bottom end of the filter cotton (8), a spring (16) is fixedly provided at the bottom end of the pad (15), and the bottom ends of the two long rods (14) are in contact with the top end of the pad (15); The outer wall surface of the hollow disc (10) and the outer wall surface of the port of the barrel body (1) are both processed with threads, the hollow disc (10) is threadedly connected to the first threaded hole (3) at the top end of the cover plate (2), and the port of the barrel body (1) is threadedly connected to the first threaded hole (3) at the bottom end of the cover plate (2); Both ends of the barrel body (1) are provided with a first embedding groove (23) and a second embedding groove (24) which are distributed vertically; the top end of the second embedding groove (24) is connected to the bottom end of the first embedding groove (23); a first movable shaft (25) is provided inside the first embedding groove (23); a second movable shaft (26) is provided inside the second embedding groove (24); a transmission assembly is provided between the first movable shaft (25) and the second movable shaft (26); the outer wall of the second movable shaft (26) is provided with two support rods (27) which are distributed front and back; the bottom ends of the support rods (27) are connected to moving wheels (28); and the outer wall of the first movable shaft (25) is provided with two handrails (29) which are distributed front and back; The transmission assembly comprises a first pulley (30) and a second pulley (31); the first pulley (30) and the second pulley (31) are respectively sleeved on the outer walls of the first movable shaft (25) and the second movable shaft (26); the first pulley (30) and the second pulley (31) are connected via a belt (32).

2. The liquid bio-enzyme packaging container according to claim 1, characterized in that: A gauze (17) is fixedly arranged inside each air hole (11), and the gauze (17) is arranged inside the air-permeable grille (12). A plurality of desiccant bags (18) are stored inside the hollow disc (10).

3. The liquid bio-enzyme packaging container according to claim 1, characterized in that: A second threaded hole (19) is formed at the top of the hollow disc (10), and a sealing cover (20) is threadedly connected inside the second threaded hole (19).

4. The liquid bio-enzyme packaging container according to claim 1, characterized in that: The bottom ends of the hollow disc (10) and the cover plate (2) are both provided with an annular sealing groove (21), and the top end of the barrel body (1) and the first threaded hole (3) above the cover plate (2) are both fixedly provided with an annular sealing strip (22), and the annular sealing strip (22) is arranged inside the annular sealing groove (21).

5. The liquid bio-enzyme packaging container according to claim 1, characterized in that: A first frame plate (33) is fixedly disposed inside each of the two second embedded grooves (24); the first frame plate (33) is arranged in an inverted U shape; a second frame plate (34) is fixedly disposed inside each of the two first embedded grooves (23); and the first belt pulley (30), the second belt pulley (31) and the belt (32) are all disposed inside the second frame plate (34).

6. The liquid bio-enzyme packaging container according to claim 1, characterized in that: Two supporting legs (35) distributed front and back are fixedly provided on both sides of the bottom end of the barrel body (1).

Citation Information

Patent Citations

  • Liquid bio-enzyme packaging container

    CN217397398U