Aging auxiliary device for biochar
By controlling the temperature and humidity of the biochar aging auxiliary device and using a stirring mechanism, the problem of low efficiency in natural biochar aging was solved, achieving a highly efficient and uniform aging effect.
Patent Information
- Application Number
- CN202520202288.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-02-10
AI Technical Summary
The natural aging of biochar is inefficient and difficult to control, and traditional methods are time-consuming.
Design a biochar aging auxiliary device, including a temperature control mechanism, a humidity control mechanism and a stirring mechanism, to precisely adjust the temperature and humidity of the aging environment, and to periodically agitate the biochar sample by a stirring motor.
It improves the efficiency and uniformity of biochar aging, simulates the aging environment under natural conditions or specific application scenarios, ensures quality, and accelerates the aging process.
Smart Images

Figure CN223774847U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of biochar technology, specifically to an aging auxiliary device for biochar. Background Technology
[0002] Biochar, as an environmentally friendly material, has wide applications in agriculture, soil remediation, water treatment and other fields.
[0003] However, freshly prepared biochar may exhibit instability and inefficiency in certain applications, requiring an aging process over a period of time to improve its stability and performance. Traditional natural aging methods are time-consuming and difficult to control, thus necessitating an auxiliary device that can accelerate and optimize biochar aging. Utility Model Content
[0004] The technical problem to be solved by this invention is that the natural aging efficiency of biochar is low and difficult to control, and a highly efficient biochar aging auxiliary device is provided.
[0005] To solve the above-mentioned technical problems, the technical solution provided by this utility model is: an aging auxiliary device for biochar, including a processing box, a material frame, a temperature control mechanism, a humidity control mechanism, and a stirring mechanism;
[0006] After the top of the processing chamber is opened, it is sealed with a lid; the material frame is detachably installed inside the processing chamber. After the biochar to be aged is placed in the material frame, it is stirred by the stirring mechanism inside the material frame.
[0007] The temperature control mechanism is located inside the processing chamber and controls the temperature around the material frame to provide the required temperature for aging.
[0008] The humidity control mechanism is located inside the processing chamber to control the humidity around the material frame, providing the necessary humidity for aging.
[0009] As an improvement, a partition plate is placed horizontally inside the processing box. Multiple positioning sleeves are set on the top surface of the partition plate, and positioning posts that are compatible with the positioning sleeves are set on the bottom surface of the material frame. After the material frame is placed inside the processing box, each positioning post is placed in its respective positioning sleeve for limiting support, which facilitates limiting support for the material frame.
[0010] As an improvement, a limiting mechanism is also included, which is located inside the processing box to limit and support the material frame, and there is a pair of mirror images;
[0011] The limiting mechanism includes a hydraulic telescopic rod, a telescopic plate, a limiting block, and a limiting hole. The hydraulic telescopic rod is fixed to the inner wall of the processing box and pushes the telescopic plate on the other side closer to the material frame, pushing the limiting block on the telescopic plate into the preset limiting hole on the outer wall of the material frame, thereby improving the stability of the material frame installation.
[0012] As an improvement, the stirring mechanism includes a stirring motor and a stirring rod; the stirring motor is fixed in the center of the bottom surface of the material frame, and the output end extends into the inside of the material frame and is connected to the stirring rod. The material is moved by multiple blades on the stirring rod, and the biochar sample is turned or stirred periodically to ensure uniform exposure to the aging environment and improve efficiency.
[0013] As an improvement, the temperature control mechanism includes a heating coil and a temperature sensor; the heating coil is evenly embedded in the partition plate, and the aging temperature is controlled by the temperature sensor fixed to the inner wall of the processing chamber, which precisely adjusts the temperature in the aging environment to simulate the aging environment under natural conditions or specific application scenarios, thereby improving aging efficiency while ensuring quality.
[0014] As an improvement, the humidity control mechanism includes atomizing nozzles, a dehumidifier, and a humidity sensor;
[0015] The inner wall of the processing chamber is fixed with inclined plates located on both sides of the material frame. After the atomizing nozzle is fixed on the inclined plate, it is connected to an external humidifier. The top surface of the chamber cover is fixed with a dehumidifier that communicates with the inside of the processing chamber. The aging humidity is controlled by a humidity sensor fixed on the inner wall of the processing chamber, which precisely adjusts the humidity in the aging environment to simulate the aging environment under natural conditions or specific application scenarios, thereby improving aging efficiency while ensuring quality.
[0016] As an improvement, the device is equipped with a control unit and a processing unit that cooperate with the electrical components. This is a well-known issue to those skilled in the art, so it will not be described in detail.
[0017] The advantages of this utility model compared with the prior art are as follows:
[0018] 1. By setting up temperature and humidity control mechanisms, the temperature and humidity in the aging environment are precisely adjusted to simulate the aging environment under natural conditions or specific application scenarios, thereby improving aging efficiency while ensuring quality.
[0019] 2. Install a stirring mechanism to periodically turn or stir the biochar samples to ensure uniform exposure to the aging environment and improve efficiency;
[0020] 3. The material boxes are designed to be detachable for easy cleaning and maintenance. Attached Figure Description
[0021] Figure 1 This is a perspective view of an aging auxiliary device for biochar according to this utility model.
[0022] Figure 2 This is a cross-sectional view of an aging aid device for biochar according to this utility model.
[0023] Figure 3This is a diagram showing the internal working state of the processing chamber of an aging auxiliary device for biochar according to this utility model.
[0024] Figure 4 This is a schematic diagram of the internal structure of the processing box of an aging auxiliary device for biochar according to this utility model.
[0025] Figure 5 This is a three-dimensional view of the material frame of an aging auxiliary device for biochar according to this utility model.
[0026] As shown in the figure: 1. Processing box; 2. Material frame; 3. Box cover; 4. Divider plate; 5. Positioning sleeve; 6. Positioning column; 7. Hydraulic telescopic rod; 8. Telescopic plate; 9. Limiting block; 10. Limiting hole; 11. Stirring motor; 12. Stirring rod; 13. Heating coil; 14. Temperature sensor; 15. Atomizing nozzle; 16. Dehumidifier; 17. Humidity sensor; 18. Inclined plate. Detailed Implementation
[0027] In the description of this utility model, it should be understood that the terms "center," "lateral," "upper," "lower," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more. Additionally, the term "comprising" and any variations thereof are intended to cover non-exclusive inclusion.
[0028] The present invention will now be described in further detail with reference to the accompanying drawings.
[0029] An aging aid device for biochar, combined with an attached Figure 1-5As shown, the device includes a processing box 1 and a material frame 2. The top of the processing box 1 is open and then sealed by a box cover 3. The material frame 2 is detachably installed inside the processing box 1. A partition plate 4 is placed horizontally inside the processing box 1. Multiple positioning sleeves 5 are provided on the top surface of the partition plate 4. Positioning posts 6 that are adapted to the positioning sleeves 5 are provided on the bottom surface of the material frame 2. After the material frame 2 is placed inside the processing box 1, each positioning post 6 is placed inside each positioning sleeve 5 for limiting support. The device also includes a limiting mechanism located inside the processing box 1 to limit support the material frame 2. There is a pair of these limiting mechanisms. The limiting mechanism includes a hydraulic telescopic rod 7, a telescopic plate 8, a limiting block 9, and a limiting hole 10. The hydraulic telescopic rod 7 is fixed to the inner wall of the processing box 1 and pushes the telescopic plate 8 on the other side closer to the material frame 2, pushing the limiting block 9 on the telescopic plate 8 into the preset limiting hole 10 on the outer wall of the material frame 2, thereby improving the stability of the material frame 2 installation.
[0030] The temperature control mechanism is set inside the processing chamber 1 to control the temperature around the material frame 2 and provide the required temperature for aging. The temperature control mechanism includes a heating coil 13 and a temperature sensor 14. The heating coil 13 is evenly embedded in the partition plate 4 and the aging temperature is controlled by the temperature sensor 14 fixed to the inner wall of the processing chamber 1. The temperature in the aging environment is precisely adjusted to simulate the aging environment under natural conditions or specific application scenarios, thereby improving aging efficiency while ensuring quality.
[0031] A humidity control mechanism, located inside the processing chamber 1, controls the humidity around the material frame 2 to provide the necessary humidity for aging. The humidity control mechanism includes an atomizing nozzle 15, a dehumidifier 16, and a humidity sensor 17. Inclined plates 18 are fixed to the inner wall of the processing chamber 1 on both sides of the material frame 2. The atomizing nozzle 15 is fixed to the inclined plates 18 and connected to an external humidifier. A dehumidifier 16, communicating with the interior of the processing chamber 1, is fixed to the top surface of the chamber cover 3. The humidity sensor 17, fixed to the inner wall of the processing chamber 1, controls the aging humidity, precisely adjusting the humidity in the aging environment to simulate aging environments under natural conditions or specific application scenarios, thereby improving aging efficiency while ensuring quality.
[0032] The stirring mechanism is used to stir the biochar to be aged after it is placed in the material frame 2. The stirring mechanism includes a stirring motor 11 and a stirring rod 12. The stirring motor 11 is fixed in the center of the bottom surface of the material frame 2, and the output end extends into the material frame 2 and is connected to the stirring rod 12. The stirring rod 12 is used to move the material through multiple blades, and the biochar sample is turned or stirred regularly to ensure uniform exposure to the aging environment and improve efficiency.
[0033] In practical implementation, when using this utility model, the box cover 3 is opened, the biochar to be aged is placed in the material frame 2, the temperature control mechanism and humidity control mechanism are turned on, the heating coil 13 controls the aging temperature with the cooperation of the temperature sensor 14, and the atomizing nozzle 15 and the dehumidifier 16 control the aging humidity with the cooperation of the humidity sensor 17, precisely adjusting the temperature and humidity in the aging environment to simulate the aging environment under natural conditions or specific application scenarios. During the aging process, the stirring motor 11 drives the stirring rod 12 to rotate, and the biochar sample is turned or stirred regularly to ensure uniform exposure to the aging environment and complete efficient aging.
[0034] After use, the material frame 2 can be disassembled and cleaned. Open the box cover 3, and use the hydraulic telescopic rod 7 to pull the telescopic plate 8 to move the limit block 9 out of the limit hole 10, so that the material frame 2 can be pulled out of the processing box 1.
[0035] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. An aging aid device for biochar, characterized in that: It includes a processing box (1), a material frame (2), a temperature control mechanism, a humidity control mechanism, and a stirring mechanism; After the top of the processing box (1) is opened, it is sealed by the box cover (3); the material frame (2) is detachably installed in the processing box (1). After the biochar to be aged is placed in the material frame (2), it is stirred by the stirring mechanism in the material frame (2). The temperature control mechanism is set inside the processing chamber (1) to control the temperature around the material box (2) and provide the required temperature for aging; The humidity control mechanism is located inside the processing chamber (1) to control the humidity around the material box (2) and provide the required humidity for aging.
2. The aging auxiliary device for biochar according to claim 1, characterized in that: A partition plate (4) is placed horizontally inside the processing box (1). Multiple positioning sleeves (5) are provided on the top surface of the partition plate (4). Positioning posts (6) that are compatible with the positioning sleeves (5) are provided on the bottom surface of the material frame (2). After the material frame (2) is placed inside the processing box (1), each positioning post (6) is placed inside each positioning sleeve (5) for limiting support.
3. The aging auxiliary device for biochar according to claim 2, characterized in that: It also includes a limiting mechanism, which is located inside the processing box (1) to limit and support the material frame (2), and there is a pair of mirror images; The limiting mechanism includes a hydraulic telescopic rod (7), a telescopic plate (8), a limiting block (9), and a limiting hole (10). The hydraulic telescopic rod (7) is fixed to the inner wall of the processing box (1), pushes the telescopic plate (8) on the other side closer to the material frame (2), and pushes the limiting block (9) on the telescopic plate (8) into the limiting hole (10) on the outer wall of the material frame (2).
4. The aging auxiliary device for biochar according to claim 1, characterized in that: The stirring mechanism includes a stirring motor (11) and a stirring rod (12); the stirring motor (11) is fixed in the center of the bottom surface of the material frame (2), and the output end extends into the inside of the material frame (2) and is connected to the stirring rod (12). The stirring rod (12) is used to move the material through multiple blades.
5. The aging auxiliary device for biochar according to claim 2, characterized in that: The temperature control mechanism includes a heating coil (13) and a temperature sensor (14); the heating coil (13) is evenly embedded in the partition plate (4), and the aging temperature is controlled by the temperature sensor (14) fixed on the inner wall of the processing chamber (1).
6. The aging auxiliary device for biochar according to claim 1, characterized in that: The humidity control mechanism includes an atomizing nozzle (15), a dehumidifier (16), and a humidity sensor (17); The inner wall of the processing chamber (1) is fixed with inclined plates (18) located on both sides of the material frame (2). After the atomizing nozzle (15) is fixed on the inclined plate (18), it is connected to the external humidifier. The top surface of the chamber cover (3) is fixed with a dehumidifier (16) that communicates with the inside of the processing chamber (1). The aging humidity is controlled by a humidity sensor (17) fixed on the inner wall of the processing chamber (1).