Saline-alkali soil treatment auxiliary device
By designing an auxiliary device for salinized soil treatment and using solenoid valves and flow control valves to configure and condition irrigation water online, the problem of cumbersome water distribution in traditional salinized soil treatment is solved, the efficient dissolution and uniform mixing of the conditioner are achieved, and the treatment efficiency is improved.
Patent Information
- Application Number
- CN202422142863.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-09-02
AI Technical Summary
In the existing salinized soil treatment, the traditional water distribution method is cumbersome, resulting in inconvenience in use and difficulty in efficiently and evenly mixing and irrigating soil conditioners.
An auxiliary device for salinized soil remediation was designed, which included a liquid preparation component and a stirring component. The mixing ratio of water source and conditioner was controlled by a solenoid valve and an electromagnetic flow control valve. The stirring component was used to prepare the conditioned irrigation water online to achieve full dissolution and uniform mixing of the conditioner.
It improves the dissolution efficiency of soil conditioners and the convenience of irrigation operations, achieves uniform mixing of conditioners and water, and simplifies the treatment process of large-scale salinized soil.
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Figure CN223335027U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of salinized soil treatment, and in particular to an auxiliary device for salinized soil treatment. Background Art
[0002] Salinized soil remediation refers to the process of implementing a series of measures to improve and restore saline-alkali land, where soil productivity has decreased due to salt accumulation. The formation of saline-alkali land is often linked to irrational human activities (such as inappropriate irrigation) and natural environmental factors (such as high groundwater levels, intense evaporation, and low rainfall). These factors lead to increased salt concentrations in the soil, impacting crop growth and even causing land abandonment. Remediating salinized soil is a long-term and systematic process, requiring appropriate technical and management measures tailored to the degree of soil salinization, local natural conditions, water resources, and economic development levels to achieve sustainable land use.
[0003] The existing treatment of salinized soil requires the use of specific soil conditioners. A certain amount of water is taken, a certain amount of soil conditioner is added according to the proportion and mixed evenly, and then the water mixed with the soil conditioner is used to irrigate the soil. The area of soil that needs to be treated is usually large, and the traditional method of water distribution is cumbersome and inconvenient to use. Utility Model Content
[0004] In order to solve the problems raised in the above background technology, the present application provides an auxiliary device for treating salinized soil.
[0005] The above technical objectives of this application are achieved through the following technical solutions:
[0006] A salinized soil treatment auxiliary device includes a liquid dispensing component, a stirring component is provided on the top of the liquid dispensing component, the liquid dispensing component includes a liquid dispensing tank, a connecting pipe is provided at the bottom of the liquid dispensing tank, the bottom of the connecting pipe is connected to a water supply pipe, a first connecting joint is provided at one end of the water supply pipe, and a second connecting joint is provided at the other end of the water supply pipe, a first solenoid valve is provided between the connecting pipe and the first connecting joint, and a second solenoid valve is provided between the connecting pipe and the second connecting joint, and an electromagnetic flow control valve is provided in the middle of the connecting pipe.
[0007] By adopting the above scheme, a stirring component is provided on the top of the liquid dispensing component, which facilitates the stirring component to stir the conditioner concentrate inside the liquid dispensing tank so that the conditioner is fully dissolved. The setting of the liquid dispensing tank facilitates providing a place for stirring and dissolving the conditioner. A connecting pipe is provided at the bottom of the liquid dispensing tank, and the bottom of the connecting pipe is connected to a water supply pipe, which facilitates connecting the liquid dispensing tank with an external irrigation water source and an irrigation water pipe. A first connecting joint is provided at one end of the water supply pipe, and a second connecting joint is provided at the other end of the water supply pipe, which facilitates the connection between the external water source water pipe and the first connecting joint to provide a water source for the dissolution of the conditioner. The irrigation water pipe is connected to the second connecting joint, which facilitates the water mixed with the conditioner to irrigate the land. By setting the first solenoid valve, the second solenoid valve and the electromagnetic flow control valve, when preparing for treatment and irrigation, the second solenoid valve is closed, the first solenoid valve and the electromagnetic flow control valve are opened, water is poured into the liquid mixing tank, and after the liquid mixing tank is filled with a sufficient amount of water, the electromagnetic flow control valve is closed, a sufficient amount of soil conditioner is added to the liquid mixing tank, and the stirring component is started to stir it to form a conditioner concentrate. During treatment and irrigation, the first solenoid valve and the second solenoid valve are opened to allow water from the water source to flow through the water supply pipe, and the electromagnetic flow control valve controls the flow of the connecting pipe so that the conditioner concentrate is mixed with the water flowing through the water supply pipe in a certain proportion, thereby configuring it online to form conditioning irrigation water for treating salinized soil.
[0008] Furthermore, a first flow meter is provided on one side of the first solenoid valve, a second flow meter is provided on the top of the electromagnetic flow control valve, and a support leg is fixedly installed on the outer side of the bottom end of the liquid distribution tank.
[0009] By adopting the above solution, a first flow meter is provided on one side of the first solenoid valve, and a second flow meter is provided on the top of the electromagnetic flow control valve, so that the first flow meter can measure the flow rate of water flowing through the water supply pipe, and the second flow meter can measure the amount of water entering the liquid distribution tank and the amount of conditioner concentrate released. The setting of the support legs can provide stable support for the device.
[0010] Furthermore, the stirring assembly includes a mounting plate, and the bottom of the mounting plate is fixedly connected to the top of the liquid mixing tank.
[0011] By adopting the above solution, the bottom of the mounting plate is fixedly connected to the top of the liquid mixing tank, so that the stirring assembly can be fixedly mounted on the top of the liquid mixing tank to stir the conditioned concentrated liquid.
[0012] Furthermore, a rotating shaft is rotatably connected to the bottom of the mounting plate, and two stirring paddles are fixedly installed in the middle of the rotating shaft.
[0013] By adopting the above solution, a rotating shaft is rotatably connected to the bottom of the mounting plate, and two stirring paddles are fixedly installed in the middle of the rotating shaft, so that the rotating shaft can rotate to enable the stirring paddles to fully stir and mix the water and soil conditioner in the liquid mixing tank to form a conditioner concentrate.
[0014] Furthermore, a scraper is fixedly mounted on the bottom of the rotating shaft, and the outer side of the scraper is in contact with the inner wall of the liquid mixing tank.
[0015] By adopting the above solution, a scraper is fixedly installed at the bottom of the rotating shaft, and the outer side of the scraper is in contact with the inner wall of the liquid mixing tank, so that the rotation of the rotating shaft drives the scraper to remove the soil adhering to the inner wall of the liquid mixing tank, thereby improving the efficiency of mixing and dissolving.
[0016] Furthermore, a motor box is fixedly mounted on the top of the mounting plate, and a motor is fixedly mounted inside the motor box.
[0017] By adopting the above solution, the motor is fixedly installed inside the motor box, so that the motor box can provide protection for the internal motor.
[0018] Furthermore, a worm is fixedly mounted on the output end of the motor, and the worm is meshedly connected to a worm wheel.
[0019] By adopting the above solution, a worm is fixedly mounted on the output end of the motor, and the worm is meshedly connected with the worm wheel, so that the worm drives the worm wheel to rotate when the motor works.
[0020] Furthermore, the worm wheel is fixedly connected to the rotating shaft, and the worm wheel and the worm are both arranged inside the motor box.
[0021] By adopting the above solution, the worm wheel is fixedly connected to the rotating shaft, and the worm wheel and worm are both arranged inside the motor box, so that the motor box can protect the engagement of the worm wheel and the worm, so that the rotation of the worm wheel drives the rotating shaft to rotate.
[0022] In summary, this application has the following technical effects:
[0023] A stirring assembly is provided on the top of the liquid dispensing assembly, which facilitates the stirring assembly to stir the conditioner concentrate inside the liquid dispensing tank so that the conditioner is fully dissolved. The setting of the liquid dispensing tank facilitates providing a place for stirring and dissolving the conditioner. A connecting pipe is provided at the bottom of the liquid dispensing tank, and the bottom of the connecting pipe is connected to a water supply pipe, which facilitates connecting the liquid dispensing tank with an external irrigation water source and an irrigation water pipe. A first connecting joint is provided at one end of the water supply pipe, and a second connecting joint is provided at the other end of the water supply pipe, which facilitates the connection of the external water source water pipe with the first connecting joint to provide a water source for the dissolution of the conditioner. The irrigation water pipe is connected to the second connecting joint, which facilitates the water mixed with the conditioner to irrigate the land. The arrangement of the electromagnetic flow control valve makes it convenient that when preparing for treatment and irrigation, the second electromagnetic valve is closed, the first electromagnetic valve and the electromagnetic flow control valve are opened, water is poured into the liquid dispensing tank, and after the liquid dispensing tank is filled with sufficient water, the electromagnetic flow control valve is closed, a sufficient amount of soil conditioner is added to the liquid dispensing tank, and the stirring component is started to stir it to form a conditioner concentrate. When treating and irrigation, the first electromagnetic valve and the second electromagnetic valve are opened to allow water from the source to flow through the water supply pipe, and the electromagnetic flow control valve controls the flow of the connecting pipe so that the conditioner concentrate is mixed into the water flowing through the water supply pipe in a certain proportion, thereby configuring it online to form conditioning irrigation water for treating salinized soil. The operation is convenient and the water distribution efficiency and convenience are effectively improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is the appearance structure diagram of this application;
[0025] Figure 2 is a side view of the present application;
[0026] Figure 3 It is an exploded view of the stirring assembly of the present application;
[0027] Figure 4 This application Figure 3 A magnified view of the structure in center A.
[0028] In the figure, 101, liquid dispensing assembly; 10101, liquid dispensing tank; 10102, connecting pipe; 10103, water supply pipe; 10104, first connecting joint; 10105, first solenoid valve; 10106, second solenoid valve; 10107, electromagnetic flow control valve; 10108, support leg; 10109, second connecting joint; 102, stirring assembly; 10201, mounting plate; 10202, motor box; 10203, rotating shaft; 10204, scraper; 10205, stirring paddle; 10206, worm gear; 10207, motor; 10208, worm. DETAILED DESCRIPTION
[0029] The present application is further described in detail below with reference to the accompanying drawings.
[0030] Example:
[0031] As attached Figure 1 To the attached Figure 4 As shown:
[0032] The utility model provides an auxiliary device for treating salinized soil, including a liquid dispensing component 101, a stirring component 102 is provided on the top of the liquid dispensing component 101, and the stirring component 102 is provided on the top of the liquid dispensing component 101, so that the stirring component 102 can stir the conditioner concentrate inside the liquid dispensing tank 10101 to fully dissolve the conditioner. The liquid dispensing component 101 includes a liquid dispensing tank 10101, and the setting of the liquid dispensing tank 10101 facilitates providing a place for stirring and dissolving the conditioner. A connecting pipe 10102 is provided at the bottom of the liquid dispensing tank 10101, and the bottom of the connecting pipe 10102 is connected to a water supply pipe 10103, and the conditioner concentrate can be fully dissolved by the liquid dispensing tank 10101. A connecting pipe 10102 is provided at the bottom, and a water supply pipe 10103 is connected to the bottom of the connecting pipe 10102, so that the liquid distribution tank 10101 is connected to the external irrigation water source and the irrigation water pipe. A first connecting joint 10104 is provided at one end of the water supply pipe 10103, and a second connecting joint 10109 is provided at the other end of the water supply pipe 10103. Through the first connecting joint 10104 at one end of the water supply pipe 10103 and the second connecting joint 10109 at the other end of the water supply pipe 10103, it is convenient for the external water source water pipe to be connected to the first connecting joint 10104, providing water for the dissolution of the conditioner, and the irrigation water pipe and the second connecting joint 10109 are connected. 109 is connected, so that the water mixed with the conditioner can be used to irrigate the land. A first electromagnetic valve 10105 is provided between the connecting pipe 10102 and the first connecting joint 10104, and a second electromagnetic valve 10106 is provided between the connecting pipe 10102 and the second connecting joint 10109. An electromagnetic flow control valve 10107 is provided in the middle of the connecting pipe 10102. Through the arrangement of the first electromagnetic valve 10105, the second electromagnetic valve 10106 and the electromagnetic flow control valve 10107, when preparing for irrigation, the second electromagnetic valve 10106 is closed, the first electromagnetic valve 10105 and the electromagnetic flow control valve 10107 are opened, and the water is Pour into the liquid dispensing tank 10101. After the liquid dispensing tank 10101 is filled with sufficient water, close the electromagnetic flow control valve 10107, add a sufficient amount of soil conditioner into the liquid dispensing tank 10101, start the stirring component 102 to stir it, and stir to form a conditioner concentrate. When governing and irrigating, the first electromagnetic valve 10105 and the second electromagnetic valve 10106 are opened to allow the water source to flow through the water supply pipe 10103. The electromagnetic flow control valve 10107 controls the flow of the connecting pipe 10102, so that the conditioner concentrate is mixed into the water flowing through the water supply pipe 10103 in a certain proportion, thereby configuring it online to form conditioning irrigation water for governing salinized soil.
[0033] Among them, a first flow meter is provided on one side of the first solenoid valve 10105, and a second flow meter is provided on the top of the electromagnetic flow control valve 10107. The first flow meter is provided on one side of the first solenoid valve 10105, and the second flow meter is provided on the top of the electromagnetic flow control valve 10107. The first flow meter measures the flow rate of water flowing through the water supply pipe 10103, and the second flow meter measures the amount of water entering the liquid dispensing tank 10101 and the amount of conditioning agent concentrate released. A support leg 10108 is fixedly installed on the outer side of the bottom end of the liquid dispensing tank 10101. The setting of the support leg 10108 is convenient for providing stable support for the device.
[0034] Among them, the stirring component 102 includes a mounting plate 10201, and the bottom of the mounting plate 10201 is fixedly connected to the top of the liquid preparation tank 10101. By fixing the bottom of the mounting plate 10201 to the top of the liquid preparation tank 10101, it is convenient to fix the stirring component 102 on the top of the liquid preparation tank 10101 to stir the conditioned concentrated liquid.
[0035] Among them, the bottom of the mounting plate 10201 is rotatably connected to the rotating shaft 10203, and two stirring paddles 10205 are fixedly installed in the middle of the rotating shaft 10203. The rotating shaft 10203 is rotatably connected to the bottom of the mounting plate 10201, and two stirring paddles 10205 are fixedly installed in the middle of the rotating shaft 10203, so that the rotating shaft 10203 can rotate to enable the stirring paddles 10205 to fully stir and mix the water and soil conditioner inside the liquid preparation tank 10101 to form a conditioner concentrate.
[0036] Among them, a scraper 10204 is fixedly installed at the bottom of the rotating shaft 10203, and the outer side of the scraper 10204 is in contact with the inner wall of the liquid mixing tank 10101. The rotation of the rotating shaft 10203 drives the scraper 10204 to remove the soil conditioning adhering to the inner wall of the liquid mixing tank 10101, thereby improving the efficiency of mixing and dissolving.
[0037] Among them, a motor box 10202 is fixedly installed on the top of the mounting plate 10201, and a motor 10207 is fixedly installed inside the motor box 10202. The motor 10207 is fixedly installed inside the motor box 10202, so that the motor box 10202 can provide protection for the internal motor 10207.
[0038] Among them, a worm 10208 is fixedly installed at the output end of the motor 10207, and the worm 10208 is meshedly connected with the worm wheel 10206. The worm 10208 is fixedly installed at the output end of the motor 10207, and the worm 10208 is meshedly connected with the worm wheel 10206, so that the motor 10207 works and the worm 10208 drives the worm wheel 10206 to rotate.
[0039] Among them, the worm wheel 10206 is fixedly connected to the rotating shaft 10203, and the worm wheel 10206 and the worm 10208 are both arranged inside the motor box 10202. The worm wheel 10206 is fixedly connected to the rotating shaft 10203, and the worm wheel 10206 and the worm 10208 are both arranged inside the motor box 10202, so that the motor box 10202 can protect the engagement of the worm wheel 10206 and the worm 10208, so that the rotation of the worm wheel 10206 drives the rotating shaft 10203 to rotate.
[0040] Specifically, a connecting pipe 10102 is provided at the bottom of the liquid dispensing tank 10101, and a water supply pipe 10103 is connected to the bottom of the connecting pipe 10102, so that the liquid dispensing tank 10101 is connected to the external irrigation water source and the irrigation water pipe. A first connecting joint 10104 is provided at one end of the water supply pipe 10103, and a second connecting joint 10109 is provided at the other end of the water supply pipe 10103, so that the external water source water pipe is connected to the first connecting joint 10104 to provide a water source for the dissolution of the conditioner. The irrigation water pipe is connected to the second connecting joint 10109, so that the water mixed with the conditioner can be used to irrigate the land. The first solenoid valve 10105, the second solenoid valve 10106 and the electromagnetic flow control valve 10107 are provided to facilitate the preparation of the soil. During irrigation, the second solenoid valve 10106 is closed, the first solenoid valve 10105 and the electromagnetic flow control valve 10107 are opened, and water is poured into the liquid dispensing tank 10101. After the liquid dispensing tank 10101 is filled with sufficient water, the electromagnetic flow control valve 10107 is closed, and a sufficient amount of soil conditioner is added to the liquid dispensing tank 10101. The stirring component 102 is started to stir it to form a conditioner concentrate. A first flow meter is provided on one side of the first solenoid valve 10105, and a second flow meter is provided on the top of the electromagnetic flow control valve 10107, so that the first flow meter measures the water flow rate flowing through the water supply pipe 10103, and the second flow meter measures the amount of water entering the liquid dispensing tank 10101 and the amount of conditioner concentrate released. The installation plate 10201 The bottom is fixedly connected to the top of the liquid dispensing tank 10101, which is convenient for fixing the stirring component 102 on the top of the liquid dispensing tank 10101 to stir the conditioning concentrate. A worm 10208 is fixedly installed on the output end of the motor 10207. The worm 10208 is meshed with a worm wheel 10206, which is convenient for the motor 10207 to work so that the worm 10208 drives the worm wheel 10206 to rotate. The worm wheel 10206 is fixedly connected to the rotating shaft 10203, and the worm wheel 10206 and the worm 10208 are both arranged inside the motor box 10202, which is convenient for the motor box 10202 to protect the meshing of the worm wheel 10206 and the worm 10208, so that the rotation of the worm wheel 10206 drives the rotating shaft 10203 to rotate, and the worm wheel 10206 is fixedly connected to the rotating shaft 10203. The bottom of 10201 is rotatably connected to a rotating shaft 10203, and two stirring paddles 10205 are fixedly installed in the middle of the rotating shaft 10203, so that the rotating shaft 10203 can rotate to make the stirring paddles 10205 fully stir and mix the water and soil conditioner in the liquid dispensing tank 10101 to form a conditioner concentrate. A scraper 10204 is fixedly installed at the bottom of the rotating shaft 10203, and the outer side of the scraper 10204 fits the inner wall of the liquid dispensing tank 10101, so that the rotation of the rotating shaft 10203 drives the scraper 10204 to drop the soil conditioner adhering to the inner wall of the liquid dispensing tank 10101, thereby improving the efficiency of mixing and dissolving. When watering, the first solenoid valve 10105 and the second solenoid valve 10106 are opened to allow water to flow through the water supply pipe 10103.The electromagnetic flow control valve 10107 controls the flow of the connecting pipe 10102, so that the conditioning agent concentrate is mixed into the water flowing through the water supply pipe 10103 at a certain ratio, thereby configuring the conditioning irrigation water for treating salinized soil online.
[0041] This specific embodiment is merely an explanation of the present application and is not a limitation of the present application. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed, but as long as they are within the scope of the claims of the present application, they are protected by the patent law.
Claims
1. A salinized soil treatment auxiliary device, characterized in that: The invention comprises a liquid dispensing component (101), wherein a stirring component (102) is provided on the top of the liquid dispensing component (101), wherein the liquid dispensing component (101) comprises a liquid dispensing tank (10101), wherein a connecting pipe (10102) is provided at the bottom of the liquid dispensing tank (10101), wherein the bottom of the connecting pipe (10102) is connected to a water supply pipe (10103), wherein a first connecting joint (10104) is provided at one end of the water supply pipe (10103), and a second connecting joint (10109) is provided at the other end of the water supply pipe (10103), wherein a first electromagnetic valve (10105) is provided between the connecting pipe (10102) and the first connecting joint (10104), and wherein a second electromagnetic valve (10106) is provided between the connecting pipe (10102) and the second connecting joint (10109), and wherein an electromagnetic flow control valve (10107) is provided in the middle of the connecting pipe (10102).
2. The salinized soil treatment auxiliary device according to claim 1, characterized in that: A first flow meter is provided on one side of the first solenoid valve (10105), a second flow meter is provided on the top of the electromagnetic flow control valve (10107), and a support leg (10108) is fixedly installed on the outer side of the bottom end of the liquid distribution tank (10101).
3. The salinized soil treatment auxiliary device according to claim 1, characterized in that: The stirring assembly (102) comprises a mounting plate (10201), the bottom of the mounting plate (10201) being fixedly connected to the top of the liquid distribution tank (10101).
4. The auxiliary device for treating salinized soil according to claim 3, characterized in that: The bottom of the mounting plate (10201) is rotatably connected to a rotating shaft (10203), and two stirring paddles (10205) are fixedly mounted in the middle of the rotating shaft (10203).
5. The salinized soil treatment auxiliary device according to claim 4, characterized in that: A scraper (10204) is fixedly mounted on the bottom of the rotating shaft (10203), and the outer side of the scraper (10204) is in contact with the inner wall of the liquid dispensing tank (10101).
6. The auxiliary device for treating salinized soil according to claim 5, characterized in that: A motor box (10202) is fixedly mounted on the top of the mounting plate (10201), and a motor (10207) is fixedly mounted inside the motor box (10202).
7. The auxiliary device for treating salinized soil according to claim 6, characterized in that: A worm (10208) is fixedly mounted on the output end of the motor (10207), and the worm (10208) is meshingly connected with a worm wheel (10206).
8. The salinized soil treatment auxiliary device according to claim 7, characterized in that: The worm wheel (10206) is fixedly connected to the rotating shaft (10203), and the worm wheel (10206) and the worm (10208) are both arranged inside the motor box (10202).