Tobacco probiotic combined rooting water quantitative irrigation device

By designing a tobacco probiotic combined with quantitative irrigation device for root establishment water, the problem of complicated steps in adding root establishment water and probiotic agent was solved, achieving uniformity in concentration and quantity, and improving the survival rate and growth uniformity of tobacco transplants.

CN223168702UActive Publication Date: 2025-08-01HONGTA TOBACCO (GROUP) CO LTD +1
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Patent Information

Application Number
CN202422254398.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-08-01
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

In the existing tobacco transplanting process, the steps for adding root-setting water and probiotic agents are complicated, and the concentration and liquid volume are inconsistent, resulting in differences in tobacco growth.

Method used

A device for quantitative irrigation of tobacco probiotics and root-establishing water is designed, including a solvent addition component and a solute addition component. Through components such as a hose, a cup, a water supply switch, a probiotic supply pipe, and a flow rate switch, the device enables the quantitative addition of root-establishing water and probiotic liquid, ensuring uniformity in concentration and quantity.

Benefits of technology

This simplified the tobacco transplanting process, ensured that each tobacco seedling received consistent concentrations of root-setting water and probiotic agent, and improved the survival rate and uniform growth of the tobacco plants.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a tobacco probiotic combined rooting water quantitative irrigation device, which belongs to the technical field of tobacco probiotic combined rooting water quantitative irrigation and comprises a solvent adding component and a solute adding component. The solvent adding assembly comprises a hose, a cup body and a water supply switch assembly, the solute adding assembly comprises a probiotic supply pipe and a probiotic flow rate switch, and the hose is arranged on one side of the cup body, is in through connection with the cup body and is used for adding a solvent into the cup body; the water supply switch assembly is arranged on the hose, and the water supply switch assembly is used for temporarily stopping the hose from supplying liquid into the cup body; the utility model provides a tobacco probiotic combined root fixing water quantitative irrigation device which can solve the problems that in the tobacco transplanting process, the adding steps of water and probiotic agents are complex, and the concentration and the liquid amount are different, so that the tobacco growth vigor is different.
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Description

Technical Field

[0001] The utility model belongs to the technical field of tobacco probiotics combined with root-fixing water quantitative irrigation, and specifically relates to a tobacco probiotics combined with root-fixing water quantitative irrigation device. Background Art

[0002] Rooting water usually contains nutrients and growth regulators, which can help tobacco plants better adapt to the new environment and reduce the growth shock after transplanting. It can help plants establish a stable root system as quickly as possible, reduce the loss of water and nutrients, and improve the survival rate. Probiotics contain beneficial microorganisms that can improve soil structure, promote the absorption of nutrients and water by the roots, and enhance the plant's immune system to resist invasion by pathogens. Probiotics usually appear in powder or liquid form. When using, the probiotics need to be added to clean water and stirred evenly to fully dissolve it. The use of probiotics can improve the overall health and growth rate of plants. The combined use of these two dosage forms can improve the root growth environment while increasing the survival rate of plants, thereby promoting the healthy growth of tobacco.

[0003] In the existing tobacco transplanting process, rooting water and probiotics are applied successively, and the adding steps are complicated. Moreover, manual addition makes it difficult to ensure the consistency of the concentrations of rooting water and probiotics applied to each tobacco seedling, resulting in differences in tobacco growth. Utility Model Content

[0004] In view of this, the utility model provides a tobacco probiotic combined with rooting water quantitative irrigation device, which can solve the problem that the addition steps of rooting water and probiotics are complicated, the concentration and liquid volume are different during tobacco transplanting, resulting in different tobacco growth.

[0005] The utility model is achieved in this way:

[0006] The utility model provides a tobacco probiotic combined with root-fixing water quantitative irrigation device, which includes a solvent adding component and a solute adding component, the solvent adding component includes a hose, a cup body and a water supply switch component, the solute adding component includes a probiotic supply pipe and a probiotic flow rate switch, the hose is arranged on one side of the cup body, is connected with the cup body, and is used for adding solvent to the interior of the cup body; the hose is provided with the water supply switch component, and the water supply switch component is used for temporarily stopping the hose from supplying liquid to the interior of the cup body; the probiotic supply pipe is also arranged on one side of the cup body, adjacent to the hose, and is used for adding probiotics to the interior of the cup body, and the side of the probiotic supply pipe away from the cup body is connected to the back-type bacteria liquid barrel; the probiotic flow rate switch is arranged on one side of the probiotic supply pipe, and is used for adjusting the flow rate of probiotics to control the bacterial dosage of probiotics flowing into the probiotic flow rate switch at a single time.

[0007] The technical effects of a quantitative irrigation device for combined tobacco probiotic and root-fixing water provided by the present utility model are as follows: Solvent addition component: It includes a hose, a cup body, and a water supply switch component. The hose is connected to one side of the cup body and is used to inject solvent (root-fixing water) into the cup body. The water supply switch component controls the flow rate of the solvent and realizes quantitative water supply by briefly stopping the flow rate.

[0008] Solute addition component: It consists of a probiotic supply pipe and a probiotic flow rate switch. The probiotic supply pipe is adjacent to the cup body and is connected to a back-mounted bacterial liquid bucket, and is used to add probiotic liquid into the cup body. The probiotic flow rate switch is used to adjust the flow rate of the probiotics, thereby controlling the amount of probiotics flowing in each time.

[0009] Based on the above technical solutions, a quantitative irrigation device for combined tobacco probiotic and root-fixing water of the present utility model can also be improved as follows:

[0010] Among them, one end of the hose far away from the cup body is connected to a water supply pump.

[0011] Furthermore, a handle is provided on one side of the cup body. The handle is of a hollow structure and is used to insert the hose and the probiotic supply pipe so that the solvent and solute can directly enter the cup body.

[0012] Furthermore, the handle is arranged at the cup mouth position of the cup body and is used to make the solvent and solute dissolve and mix quickly under the action of gravity.

[0013] Furthermore, the solvent is root-fixing water and the solute is probiotic liquid.

[0014] Furthermore, scale lines are provided on the side wall of the cup body far away from the handle.

[0015] Furthermore, the water supply switch component is of a safety pin type structure. One end of it is movably connected to the cup body, and the other end is sleeved on the hose. Different-diameter through holes are provided at the middle position of the water supply switch component, and the through holes are connected through.

[0016] Furthermore, the positions where the hose, the probiotic supply pipe are connected to the cup body are tangentially arranged with the cup body to avoid liquid splashing.

[0017] Furthermore, the inner diameter of the probiotic supply pipe is smaller than the inner diameter of the hose.

[0018] Furthermore, the probiotic flow rate switch is a physical timing switch and is used to control the amount of bacterial liquid added.

[0019] The beneficial effects of adopting the above improvement scheme are as follows: One end of the hose far away from the cup body is connected to a water supply pump, which improves the water supply efficiency.

[0020] One side of the cup body is provided with a hollow handle, which is convenient for inserting a hose and a probiotic supply pipe, so that the solvent and solute can directly enter the cup body.

[0021] The handle is located at the cup mouth, which helps to accelerate the mixing of the solvent and solute by gravity.

[0022] There are scale lines on the side of the cup body away from the handle, which is convenient for observing the liquid volume.

[0023] The water supply switch assembly adopts a pin-type structure and adjusts the flow rate through through holes of different diameters.

[0024] The connection point of the hose and the probiotic supply pipe is tangent to the cup body to prevent liquid splashing.

[0025] The inner diameter of the probiotic supply pipe is smaller than that of the hose, which helps to accurately control the flow rate.

[0026] The probiotic flow rate switch is a physical timing switch, which is used to control the addition amount of probiotics.

[0027] Compared with the prior art, the beneficial effects of a tobacco probiotic combined root-fixed water quantitative irrigation device provided by the present utility model are as follows:

[0028] Solvent addition component: The combination of the hose, the cup body and the water supply switch assembly is used to inject the solvent (such as root-fixed water) into the cup body. The flow rate of the hose is controlled by the water supply switch assembly, and the water supply switch assembly can temporarily stop the inflow of the solvent to ensure accurate liquid addition.

[0029] Solute addition component: The probiotic supply pipe and the probiotic flow rate switch are responsible for adding the probiotic liquid into the cup body. The probiotic supply pipe is connected to the back-mounted bacterial liquid barrel to transport the probiotic liquid to the cup body; the flow rate switch adjusts the flow rate of the probiotics and controls the dosage of the probiotics added each time.

[0030] Water supply pump connection: One end of the hose away from the cup body is connected to the water supply pump to ensure a stable supply of solvent.

[0031] The hollow handle on the side of the cup body is convenient for inserting the hose and the probiotic supply pipe, and uses gravity to promote the mixing of the solvent and solute.

[0032] The scale line on the cup body is used to measure the volume of the solution.

[0033] The pin-type water supply switch can adjust the liquid flow rate.

[0034] The connection points of the hose and the probiotic supply pipe with the cup body are designed to be tangent to avoid liquid splashing; the diameter of the probiotic supply pipe is smaller than that of the hose to facilitate accurate control of the flow rate.

[0035] The physical timing switch is used to accurately control the addition amount of the probiotic liquid. Description of the Drawings

[0036] To more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the description of the embodiments of the present utility model. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0037] Figure 1 It is a structural schematic diagram of a quantitative irrigation device for tobacco probiotic combined with root-fixing water;

[0038] In the drawings, the list of components represented by each reference numeral is as follows:

[0039] 10. Solvent addition component; 11. Hose; 12. Cup body; 13. Water supply switch component; 20. Solute addition component; 21. Probiotic supply pipe; 22. Probiotic flow rate switch. Specific embodiments

[0040] To make the purpose, technical solutions, and advantages of the embodiments of the present utility model clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the drawings in the embodiments of the present utility model.

[0041] As Figure 1 shown, it is an embodiment of a quantitative irrigation device for tobacco probiotic combined with root-fixing water provided by the present utility model. In this embodiment, it includes a solvent addition component 10 and a solute addition component 20. The solvent addition component 10 includes a hose 11, a cup body 12, and a water supply switch component 13. The solute addition component 20 includes a probiotic supply pipe 21 and a probiotic flow rate switch 22. The hose 11 is arranged on one side of the cup body 12 and is connected to the cup body 12 in a through manner for adding solvent into the cup body 12. A water supply switch component 13 is arranged on the hose 11, and the water supply switch component 13 is used to temporarily stop the supply of liquid from the hose 11 into the cup body 12. The probiotic supply pipe 21 is also arranged on one side of the cup body 12 and is adjacent to the hose 11 for adding probiotics into the cup body 12. The side of the probiotic supply pipe 21 away from the cup body 12 is connected to a backpack-type bacterial liquid barrel. The probiotic flow rate switch 22 is arranged on one side of the probiotic supply pipe 21 for adjusting the flow rate of the probiotics to control the dose of bacteria of the probiotics flowing into the probiotic flow rate switch 22 each time.

[0042] Among them, in the above technical solution, one end of the hose 11 away from the cup body 12 is connected to a water supply pump.

[0043] Furthermore, in the above technical solution, a handle is provided on one side of the cup body 12. The handle is of a hollow structure and is used to insert the hose 11 and the probiotic supply pipe 21 so that the solvent and the solute directly enter the cup body 12.

[0044] Furthermore, in the above technical solution, the handle is provided at the cup mouth position of the cup body 12 and is used to quickly dissolve and mix the solvent and the solute by the action of gravity.

[0045] Furthermore, in the above technical solution, the solvent is root-fixed water and the solute is probiotic liquid.

[0046] Furthermore, in the above technical solution, scale lines are provided on the side wall of the cup body 12 away from the handle.

[0047] Furthermore, in the above technical solution, the water supply switch assembly 13 is of a safety pin type structure. One end of it is movably connected to the cup body 12, and the other end is sleeved on the hose 11. Different-diameter through holes are provided at the middle position of the water supply switch assembly 13, and the through holes are connected through.

[0048] Furthermore, in the above technical solution, the positions where the hose 11 and the probiotic supply pipe 21 are connected to the cup body 12 are arranged tangentially to the cup body 12 to avoid liquid splashing.

[0049] Furthermore, in the above technical solution, the inner diameter of the probiotic supply pipe 21 is smaller than the inner diameter of the hose 11.

[0050] Furthermore, in the above technical solution, the probiotic flow rate switch 22 is a physical timing switch and is used to control the dosage of the bacterial liquid added.

[0051] By precisely controlling the inflow amounts of the solvent and the probiotic liquid, the root fixing and nutrient supplementation of the tobacco plants are ensured. The specific principle is as follows:

[0052] Solvent injection: The root-fixed water (solvent) is controllably injected into the cup body through the hose and the water supply switch assembly. The water supply switch can adjust or stop the water flow to ensure the accurate addition amount of the solvent.

[0053] Probiotic injection: The probiotic supply pipe transports the probiotic liquid from the bacterial liquid barrel to the cup body, and the flow rate is adjusted through the probiotic flow rate switch to control the dosage of the bacterial liquid injected each time.

[0054] Mixing and irrigation: The cup body design and the handle structure help the solvent and the probiotic to be evenly mixed in the cup body. The scale lines help to monitor the liquid volume to ensure that the final mixed liquid amount meets the requirements.

[0055] Avoiding splashing: The connection point is designed to be tangent, reducing liquid splashing and improving the operation safety and efficiency.

[0056] Specifically, the principle of the present utility model is as follows: During use, the hose 11 and the probiotic supply pipe 21 are both connected through the handle position of the cup body 12 in a penetrating manner. The water supply pump adds a fixed amount of root-fixing water into the cup body 12 through the hose 11. The back-mounted electric bacterial agent barrel controls the flow rate of the bacterial liquid through the flow valve. Press the probiotic flow rate switch 22 to connect the power supply and pump the bacterial agent into the interior of the cup body 12. After a fixed time, the probiotic flow rate switch 22 rebounds to disconnect the power supply and stop the pumping of the bacterial agent; so that during the process of tobacco transplanting, root-fixing water and probiotic agents are simultaneously added to the transplanting holes, saving the process flow, while ensuring that the dilution concentration of the bacterial agent is the same and the water supply for each seedling is the same, ensuring the neat growth of tobacco.

Claims

1. A quantitative irrigation device for tobacco probiotic combined with root-fixing water, characterized in that, It includes a solvent adding component (10) and a solute adding component (20). The solvent adding component (10) includes a hose (11), a cup body (12), and a water supply switch component (13). The solute adding component (20) includes a probiotic supply pipe (21) and a probiotic flow rate switch (22). The hose (11) is arranged on one side of the cup body (12) and is connected to the cup body (12) in a through manner, for adding solvent into the interior of the cup body (12). The water supply switch component (13) is arranged on the hose (11), and the water supply switch component (13) is used to temporarily stop the hose (11) from supplying liquid into the interior of the cup body (12). The probiotic supply pipe (21) is also arranged on one side of the cup body (12), adjacent to the hose (11), for adding probiotics into the interior of the cup body (12). The side of the probiotic supply pipe (21) away from the cup body (12) is connected to a back-mounted bacterial liquid barrel. The probiotic flow rate switch (22) is arranged on one side of the probiotic supply pipe (21), for adjusting the flow rate of probiotics to control the dose of probiotics flowing into the probiotic flow rate switch (22) each time.

2. The quantitative irrigation device for combined tobacco probiotic and root-fixed water according to claim 1, characterized in that, One end of the hose (11) away from the cup body (12) is connected to a water supply pump.

3. The quantitative irrigation device for the combined tobacco probiotic and root-fixed water according to claim 2, wherein, A handle is arranged on one side of the cup body (12). The handle is of a hollow structure, for inserting the hose (11) and the probiotic supply pipe (21) so that the solvent and solute directly enter the cup body (12).

4. The quantitative irrigation device for tobacco probiotic combined with root fixing water according to claim 3, characterized in that, The handle is arranged at the cup mouth position of the cup body (12), for enabling the solvent and solute to be quickly dissolved and mixed by the action of gravity.

5. A quantitative irrigation device for tobacco probiotic combined with root-fixed water according to claim 4, characterized in that, The solvent is root-fixed water, and the solute is probiotic liquid.

6. The quantitative irrigation device for tobacco probiotic combined with root-fixed water according to claim 5, characterized in that, Scale lines are arranged on the side wall of the cup body (12) away from the handle.

7. The quantitative irrigation device for the combined tobacco probiotic and root-fixed water according to claim 6, wherein, The water supply switch component (13) is of a safety pin type structure. One end of it is movably connected to the cup body (12), and the other end is sleeved on the hose (11). Different-diameter through holes are arranged at the middle position of the water supply switch component (13), and the through holes are connected in a through manner.

8. A quantitative irrigation device for tobacco probiotic combined with root-fixing water according to claim 7, characterized in that, The positions where the hose (11) and the probiotic supply pipe (21) are connected to the cup body (12) are arranged tangent to the cup body (12), for avoiding liquid splashing.

9. The quantitative irrigation device for combined tobacco probiotic and root-fixed water according to claim 8, characterized in that The inner diameter of the probiotic supply pipe (21) is smaller than the inner diameter of the hose (11).

10. A quantitative irrigation device for tobacco probiotic combined with root-fixed water according to claim 9, characterized in that, The probiotic flow rate switch (22) is a physical timing switch, for controlling the dosage of the bacterial liquid added.