Germination accelerating device capable of recycling water-absorbent resin
By designing a recyclable water-absorbing resin germination device and using components such as temperature control sensors and heating coils to provide a suitable growth environment, the problems of material waste and environmental pollution are solved, and the effect of efficiently saving water resources and improving the germination success rate is achieved.
Patent Information
- Application Number
- CN202422817874.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-19
AI Technical Summary
Existing germination devices have problems such as serious material waste, low reuse rate, and environmental pollution during processing and disposal.
A recyclable water-absorbing resin germination device is designed, which includes an outer box, a rectangular sealing cover, a main pipe and a unit box. It is equipped with a temperature control sensor, a humidity sensor and a carbon dioxide sensor. The temperature, humidity and carbon dioxide concentration required for germination are set and maintained through the control panel. The water-absorbing resin is used to efficiently absorb and retain moisture, and a suitable growth environment is provided through heating coils and fluorescent lamps. The resin can be recycled after germination.
It reduces water consumption, lowers environmental burden, improves the efficiency and success rate of germination, and is in line with the concept of sustainable development.
Smart Images

Figure CN223349063U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of biotechnology engineering, in particular to a germination accelerating device capable of recycling water-absorbing resin. Background Art
[0002] Water-absorbent resin is a new type of functional polymer material with high water absorption function, which can absorb water hundreds to thousands times heavier than its own weight, and has excellent water retention performance. The water-absorbent resin germination device is a device that uses the water absorption and water retention characteristics of water-absorbent resin to assist seed germination. Specifically, an appropriate amount of water-absorbent resin is placed in the device, and enough water is added to make it fully absorb water and swell, and then the seeds to be germinated are evenly placed on the water-absorbent resin layer. Since the water-absorbent resin can remain moist for a long time, it provides an ideal germination environment for the seeds. Users only need to check and replenish the necessary water regularly to easily realize the seed germination process. The water retention performance of the water-absorbent resin ensures that the seeds can obtain a continuous supply of water during the germination process, thereby improving the success rate of germination and the germination rate of seeds.
[0003] Existing germination devices have some problems, such as complex matrix composition, high microbial content, difficult to control variables, low reuse rate and high cost, which may lead to a large amount of material waste, which not only increases production costs but also violates the principle of sustainable development. At the same time, a large number of discarded devices and water-absorbing resins may cause certain pollution to the environment during the processing and disposal process. For example, they may occupy a large amount of landfill space or produce harmful gases during incineration.
[0004] Therefore, there are some problems with the above-mentioned existing germination devices, which may lead to a large amount of material waste. At the same time, a large number of discarded devices and water-absorbing resins may cause certain pollution to the environment during the processing and disposal process. A recyclable water-absorbing resin germination device can be designed to use the water-absorbing resin to retain moisture and provide nutrition to promote the germination of seeds or plant tissues in the device. Utility Model Content
[0005] In order to overcome some problems existing in existing germination devices, this may lead to a large amount of material waste, and a large amount of discarded devices and water-absorbing resins may cause certain pollution to the environment during the processing and disposal process.
[0006] The technical solution of the utility model is: a recyclable water-absorbing resin germination device, comprising an outer box body, a rectangular sealing cover, a main pipe and a unit box; a rectangular sealing cover for sealing the outer box body is provided above the outer box body, a main pipe for exporting liquid or gas is provided inside the rectangular sealing cover, three groups of unit boxes for placing resin and samples are horizontally provided on the inner side of the outer box body, an inner box body is installed in the middle of the inner side of the outer box body, a temperature control sensor is installed at the corner of the inner side of the inner box body, a humidity sensor is installed at the corner of the inner side of the inner box body away from the temperature control sensor, a carbon dioxide sensor fixedly connected to the inner box body is provided between the humidity sensor and the temperature control sensor, a rectangular bottom plate is provided below the rectangular sealing cover, a connecting pipe is installed at the lower end of the main pipe, and a plurality of groups of nozzles passing through the rectangular bottom plate are installed in an array at the lower end of the connecting pipe, a liquid inlet pipe is installed at the upper end of the main pipe, a first air inlet pipe is installed at the connection between the main pipe and the liquid inlet pipe, and a second air inlet pipe is installed opposite to the first air inlet pipe at the connection between the main pipe and the liquid inlet pipe.
[0007] Preferably, the nozzle on the main pipe is first positioned and connected with the rectangular sealing cover, and then the resin and sample are placed in the unit box, and then placed in the outer box body, and then the rectangular sealing cover is positioned and connected with the outer box body, and the liquid or gas can be discharged through the main pipe to perform the germination operation. The water-absorbing resin can efficiently absorb and retain moisture, reducing the water consumption in the traditional germination process, which helps to save water resources, and the recyclable characteristics of the device reduce the burden on the environment, reduce the generation of waste, and comply with the concept of sustainable development. At the same time, the water-absorbing resin can release moisture evenly, providing a stable growth environment for seeds, thereby improving the efficiency and success rate of germination.
[0008] Preferably, a temperature display panel is installed at a corner of one side of the outer box body, a carbon dioxide concentration display panel fixedly connected to the outer box body is provided on one side of the temperature display panel, a humidity display panel fixedly connected to the outer box body is provided on the side of the carbon dioxide concentration display panel away from the temperature display panel, and a control panel fixedly connected to the outer box body is provided on the side of the humidity display panel away from the carbon dioxide concentration display panel.
[0009] Preferably, a circular groove is formed between the inner box and the outer box, a heating coil is provided between the inner box and the outer box, a battery pack connected to the heating coil is installed at the corner on the outside of the outer box, multiple groups of fluorescent lamps are installed around the inner wall of the inner box, and an outlet pipe that passes through the outer box and extends into the inner box is provided on one side of the battery pack. A first telescopic valve is provided at the connection between the outlet pipe and the outer box, and an electromagnetic control valve is installed on the outside of the first telescopic valve.
[0010] Preferably, a handle is installed on each side edge of the upper end of the rectangular sealing cover, a circular clip groove is opened at the lower edge of the rectangular sealing cover, a circular clip plate is installed corresponding to the upper end of the rectangular bottom plate and the circular clip groove, and a circular sealing ring is installed corresponding to the lower end of the rectangular bottom plate and the circular groove.
[0011] Preferably, a second telescopic valve is provided in the middle of the liquid inlet pipe.
[0012] Preferably, a first air pump is installed at the end of the first air intake pipe away from the main pipe, a third telescopic valve is provided in the middle of the first air intake pipe, a fourth telescopic valve is provided in the middle of the second air intake pipe, and a second air pump is installed at the end of the second air intake pipe away from the main pipe.
[0013] Preferably, an air filter membrane is provided inside the end of the second air inlet pipe away from the main pipe, and electromagnetic control valves are installed on the outer side of the second telescopic valve, the third telescopic valve and the fourth telescopic valve.
[0014] Beneficial effects of the utility model:
[0015] 1. First, position and connect the nozzle on the main pipe with the rectangular sealing cover, then place the resin and sample in the unit box, and then put it into the outer box. Then, position and connect the rectangular sealing cover with the outer box. The liquid or gas can be discharged through the main pipe to perform the germination operation. The water-absorbing resin can efficiently absorb and retain moisture, reducing the water consumption in the traditional germination process, which helps to save water resources. The recyclable nature of the device reduces the burden on the environment and reduces the generation of waste, which is in line with the concept of sustainable development. At the same time, the water-absorbing resin can evenly release moisture, providing a stable growth environment for seeds, thereby improving the efficiency and success rate of germination. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the overall structure of the water-absorbing resin germination device of the utility model;
[0017] Figure 2 Shown is a schematic diagram of the control panel structure of the water-absorbing resin germination accelerating device of the present invention;
[0018] Figure 3 Shown is a schematic diagram of the inner box structure of the water-absorbing resin germination device of the present invention;
[0019] Figure 4 Shown is a schematic diagram of the rectangular sealing cover structure of the water-absorbing resin germination accelerating device of the present invention;
[0020] Figure 5 Shown is a schematic diagram of the main pipe structure of the water-absorbing resin germination device of the present invention.
[0021] Explanation of reference numerals: 1. outer box; 2. rectangular sealing cover; 3. main pipe; 4. unit box; 101. temperature display panel; 102. carbon dioxide concentration display panel; 103. humidity display panel; 104. control panel; 105. temperature control sensor; 106. carbon dioxide sensor; 107. humidity sensor; 108. inner box; 109. heating coil; 110. battery pack; 111. fluorescent lamp; 112. outlet pipe; 113. first Telescopic valve; 201, handle; 202, circular snap-fit groove; 203, rectangular bottom plate; 204, circular snap-fit plate; 205, circular sealing ring; 301, connecting pipe; 302, nozzle; 303, liquid inlet pipe; 304, second telescopic valve; 305, first air inlet pipe; 306, first air pump; 307, third telescopic valve; 308, second air inlet pipe; 309, fourth telescopic valve; 310, air filter membrane; 311, second air pump. DETAILED DESCRIPTION
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] See also Figure 1-Figure 5 The utility model provides an embodiment: a recyclable water-absorbing resin germination device, comprising an outer box body 1, a rectangular sealing cover 2, a main pipe 3 and a unit box 4; a rectangular sealing cover 2 for sealing the outer box body 1 is provided above the outer box body 1, a main pipe 3 for draining liquid or gas is provided inside the rectangular sealing cover 2, three groups of unit boxes 4 for placing resin and samples are provided laterally on the inner side of the outer box body 1, an inner box body 108 is installed in the middle of the inner side of the outer box body 1, a temperature control sensor 105 (the model of the temperature control sensor 105 is DS18B20) is installed at the corner of one side of the inner box body 108, and a humidity sensor 107 is installed at the corner of the inner side of the inner box body 108 away from the temperature control sensor 105 (The model of the humidity sensor 107 is AM2302), a carbon dioxide sensor 106 (the model of the carbon dioxide sensor 106 is MH-Z14) fixedly connected to the inner box 108 is provided between the humidity sensor 107 and the temperature control sensor 105, a rectangular bottom plate 203 is provided under the rectangular sealing cover 2, a connecting pipe 301 is installed at the lower end of the main pipe 3, and a plurality of groups of nozzles 302 passing through the rectangular bottom plate 203 are installed in an array at the lower end of the connecting pipe 301, a liquid inlet pipe 303 is installed at the upper end of the main pipe 3, a first air inlet pipe 305 is installed at the connection between the main pipe 3 and the liquid inlet pipe 303, and a second air inlet pipe 308 is installed at the connection between the main pipe 3 and the liquid inlet pipe 303 and opposite to the first air inlet pipe 305.
[0024] See also Figure 2-Figure 3In this embodiment, a temperature display panel 101 is installed at a corner of one side of the outer box body 1, and a carbon dioxide concentration display panel 102 fixedly connected to the outer box body 1 is provided on one side of the temperature display panel 101, and a humidity display panel 103 fixedly connected to the outer box body 1 is provided on the side of the carbon dioxide concentration display panel 102 away from the temperature display panel 101, and a control panel 104 fixedly connected to the outer box body 1 is provided on the side of the humidity display panel 103 away from the carbon dioxide concentration display panel 102. During the operation of the germination device, the required temperature, humidity and carbon dioxide concentration are set by controlling the control panel 104, and then the detected values are reflected in the temperature display panel 101, the humidity display panel 103 and the carbon dioxide concentration display panel 102 in turn through the detection of the temperature control sensor 105, the humidity sensor 107 and the carbon dioxide concentration sensor 106. In this way, the interlayer water temperature, air intake, carbon dioxide concentration and water spraying amount are controlled to keep these parameters within the set value range, which is convenient for germination. A circular groove is formed between the inner box 108 and the outer box 1, a heating coil 109 is provided between the inner box 108 and the outer box 1, a battery pack 110 connected to the heating coil 109 is installed at a corner on one side of the outer box 1, a plurality of fluorescent lamps 111 are installed around the inner wall of the inner box 108, a lead-out pipe 112 is provided on one side of the battery pack 110, which passes through the outer box 1 and extends into the inner box 108, a first telescopic valve 113 is provided at the connection between the lead-out pipe 112 and the outer box 1, and a first telescopic valve 113 is installed on one side of the outer side of the first telescopic valve 113. The electromagnetic control valve (the model of the electromagnetic control valve is AD-8A-N-G1) starts to emit heat after the germination liquid enters the main pipe 3 through the drive of the battery pack 110, and the heating coil 109 starts to emit heat to heat the germination liquid. The fluorescent lamp 111 provides light stimulation to the seeds (or plant tissues) to accelerate the germination speed of the seeds (or plant tissues). After the germination is completed, the first telescopic valve 113 is gradually opened through the control of the electromagnetic control valve, and the liquid and gas are discharged through the outlet pipe 112.
[0025] See also Figure 4 In this embodiment, a handle 201 is installed on the edges of both sides of the upper end of the rectangular sealing cover 2, and a circular snap-in groove 202 is opened at the lower edge of the rectangular sealing cover 2. A circular snap-in plate 204 is installed on the upper end of the rectangular bottom plate 203 corresponding to the circular snap-in groove 202, and a circular sealing ring 205 is installed on the lower end of the rectangular bottom plate 203 corresponding to the circular groove. First, open the rectangular sealing cover 2 and place the main pipe 3 for assembly. Then, the circular snap-in plate 204 drives the rectangular bottom plate 203 to be positioned and connected with the rectangular sealing cover 2 along the circular snap-in groove 202. Then, the unit box 4 containing seeds (or plant tissues) and resin is placed in the inner box body 108. Finally, lift the handle 201, and the circular sealing ring 205 drives the rectangular sealing cover 2 to be connected with the outer box body 1 and the inner box body 108 along the circular groove.
[0026] See also Figure 5 In this embodiment, a second telescopic valve 304 is provided in the middle of the liquid inlet pipe 303. When the second telescopic valve 304 is opened, the germination liquid enters the main pipe 3 through the liquid inlet pipe 303 and reaches the connecting pipe 301 to be sprayed by the nozzle 302. A first air pump 306 is installed at the end of the first air inlet pipe 305 away from the main pipe 3. A third telescopic valve 307 is provided in the middle of the first air inlet pipe 305. A fourth telescopic valve 309 is provided in the middle of the second air inlet pipe 308. A second air pump 311 is installed at the end of the second air inlet pipe 308 away from the main pipe 3. Through the control of the electromagnetic control valve, the first air pump 311 is installed. The third telescopic valve 307 and the fourth telescopic valve 309 are gradually opened, and carbon dioxide and air are introduced into the first air inlet pipe 305 and the second air inlet pipe 308 in sequence through the action of the first air pump 306 and the second air pump 311. An air filter membrane 310 is provided inside the end of the second air inlet pipe 308 away from the main pipe 3. Electromagnetic control valves are installed on the external side of the second telescopic valve 304, the third telescopic valve 307 and the fourth telescopic valve 309. At the same time, impurities in the air are filtered out through the action of the air filter membrane 310.
[0027] When working, first open the rectangular sealing cover 2, place and assemble the main pipe 3, then the circular clamping plate 204 drives the rectangular bottom plate 203 to be positioned and connected with the rectangular sealing cover 2 along the circular clamping groove 202, then put the unit box 4 containing seeds (or plant tissues) and resin into the inner box 108, and finally lift the handle 201, and the circular sealing ring 205 drives the rectangular sealing cover 2 to be connected with the outer box 1 and the inner box 108 along the circular groove, and the fluorescent lamp 111 is used to provide light stimulation for the seeds (or plant tissues) to accelerate the germination speed of the seeds (or plant tissues);
[0028] Under the control of the electromagnetic control valve, the second telescopic valve 304 is opened, and the germination liquid enters the main pipe 3 through the liquid inlet pipe 303 and reaches the connecting pipe 301 for spraying by the nozzle 302. After the germination liquid enters the inner box 108, the heating coil 109 starts to emit heat through the drive of the battery pack 110 to heat the germination liquid. During this process, under the control of the electromagnetic control valve, the third telescopic valve 307 and the fourth telescopic valve 309 are gradually opened. The first air pump 306 and the second air pump 311 are used to introduce carbon dioxide and air in turn through the first air inlet pipe 305 and the second air inlet pipe 308. At the same time, the air filter membrane 310 is used to filter out impurities in the air.
[0029] During the operation of the germination device, the required temperature, humidity and carbon dioxide concentration are set through the control of the control panel 104. Then, the temperature control sensor 105, the humidity sensor 107 and the carbon dioxide sensor 106 detect and reflect the detected values on the temperature display panel 101, the humidity display panel 103 and the carbon dioxide concentration display panel 102 in turn, thereby controlling the interlayer water temperature, air intake, carbon dioxide concentration and water spraying amount, so that these parameters are kept within the set value range, which is convenient for germination.
[0030] After the germination is completed, the first telescopic valve 113 is gradually opened by the control of the electromagnetic control valve, and the liquid and gas are discharged through the outlet pipe 112. Then the seeds or plant tissues are taken out, and the resin is placed in the device. Then, clean water is added from the liquid inlet pipe 303 to clean the resin to remove the residues from the previous germination. Finally, dry high-temperature gas is introduced through the second air inlet pipe 308 to dry the resin, thereby achieving the effect of recycling.
[0031] Through the above steps, the nozzle on the main pipe is first positioned and connected with the rectangular sealing cover, and then the resin and sample are placed in the unit box, and then placed in the outer box body, and then the rectangular sealing cover is positioned and connected with the outer box body, and the liquid or gas can be discharged through the main pipe to perform the germination operation. The water-absorbing resin can efficiently absorb and retain moisture, reducing the water consumption in the traditional germination process, which helps to save water resources. The recyclable characteristics of the device reduce the burden on the environment and reduce the generation of waste, which is in line with the concept of sustainable development. At the same time, the water-absorbing resin can release moisture evenly and provide a stable growth environment for seeds, thereby improving the efficiency and success rate of germination, so as to solve some problems of existing germination devices, which may lead to a large amount of material waste. At the same time, a large amount of discarded devices and water-absorbing resins may cause certain pollution to the environment during processing and disposal.
Claims
1. A recyclable water-absorbing resin germination device, comprising an outer box (1); characterized in that: The invention also includes a rectangular sealing cover (2), a main pipe (3) and a unit box (4); a rectangular sealing cover (2) for sealing the outer box (1) is provided above the outer box (1); a main pipe (3) for leading out liquid or gas is provided inside the rectangular sealing cover (2); three groups of unit boxes (4) for placing resin and samples are provided laterally on the inner side of the outer box (1); an inner box (108) is installed in the middle of the inner side of the outer box (1); a temperature control sensor (105) is installed at a corner of one side of the inner box (108); a humidity sensor (107) is installed at a corner of one side of the inner box (108) away from the temperature control sensor (105); and the humidity sensor (108) is installed at a corner of one side of the inner box (108) away from the temperature control sensor (105). 7) and the temperature control sensor (105), a carbon dioxide sensor (106) fixedly connected to the inner box (108) is provided, a rectangular bottom plate (203) is provided below the rectangular sealing cover (2), a connecting pipe (301) is provided at the lower end of the main pipe (3), a plurality of nozzles (302) passing through the rectangular bottom plate (203) are provided in an array at the lower end of the connecting pipe (301), a liquid inlet pipe (303) is provided at the upper end of the main pipe (3), a first air inlet pipe (305) is provided at the connection between the main pipe (3) and the liquid inlet pipe (303), and a second air inlet pipe (308) is provided at the connection between the main pipe (3) and the liquid inlet pipe (303) and opposite to the first air inlet pipe (305).
2. The recyclable water-absorbing resin germination accelerating device according to claim 1, characterized in that: A temperature display panel (101) is installed at a corner of one side of the outer box (1); a carbon dioxide concentration display panel (102) fixedly connected to the outer box (1) is provided on one side of the temperature display panel (101); a humidity display panel (103) fixedly connected to the outer box (1) is provided on a side of the carbon dioxide concentration display panel (102) away from the temperature display panel (101); and a control panel (104) fixedly connected to the outer box (1) is provided on a side of the humidity display panel (103) away from the carbon dioxide concentration display panel (102).
3. The recyclable water-absorbing resin germination accelerating device according to claim 1, characterized in that: A circular groove is formed between the inner box (108) and the outer box (1). A heating coil (109) is provided between the inner box (108) and the outer box (1). A battery pack (110) connected to the heating coil (109) is installed at a corner on one side of the outer box (1). Multiple groups of fluorescent lamps (111) are installed around the inner wall of the inner box (108). A lead-out pipe (112) passing through the outer box (1) and extending deep into the inner box (108) is provided on one side of the battery pack (110). A first telescopic valve (113) is provided at the connection between the lead-out pipe (112) and the outer box (1). An electromagnetic control valve is installed on one side of the first telescopic valve (113).
4. The recyclable water-absorbing resin germination accelerating device according to claim 3, characterized in that: A handle (201) is installed at both side edges of the upper end of the rectangular sealing cover (2), a return-shaped clamping groove (202) is provided at the lower edge of the rectangular sealing cover (2), a return-shaped clamping plate (204) is installed at the upper end of the rectangular bottom plate (203) corresponding to the return-shaped clamping groove (202), and a return-shaped sealing ring (205) is installed at the lower end of the rectangular bottom plate (203) corresponding to the return-shaped groove.
5. The recyclable water-absorbing resin germination accelerating device according to claim 1, characterized in that: A second telescopic valve (304) is provided in the middle of the liquid inlet pipe (303).
6. The recyclable water-absorbing resin germination accelerating device according to claim 1, characterized in that: A first air pump (306) is installed at one end of the first air inlet pipe (305) away from the main pipe (3), a third telescopic valve (307) is provided in the middle of the first air inlet pipe (305), a fourth telescopic valve (309) is provided in the middle of the second air inlet pipe (308), and a second air pump (311) is installed at one end of the second air inlet pipe (308) away from the main pipe (3).
7. The recyclable water-absorbing resin germination accelerating device according to claim 6, characterized in that: An air filter membrane (310) is provided inside the second air inlet pipe (308) at one end away from the main pipe (3), and electromagnetic control valves are installed on the outer side of the second telescopic valve (304), the third telescopic valve (307) and the fourth telescopic valve (309).