Corncob liquid size mixing device

By combining a stirring mechanism, a replenishing component, and a constant temperature component, the problem of nutrient dilution during corn cob liquid slurry preparation is solved, improving slurry quality and reaction efficiency, and meeting the needs of microbial growth and metabolism.

CN224207808UActive Publication Date: 2026-05-08HENAN HEAGREEN BIO-TECH CO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN HEAGREEN BIO-TECH CO
Filing Date
2025-05-14
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

In the current corn cob liquid preparation process, the nutrients are severely diluted, which affects the efficiency of fermentation or biological reaction and the yield of products.

Method used

It employs a stirring mechanism, a replenishing component, and a temperature control component. The stirring mechanism achieves stirring, the replenishing component replenishes lost nutrients, and the temperature control component regulates the temperature to ensure that the nutrients do not decrease and promotes the reaction.

Benefits of technology

It effectively prevents nutrient dilution, improves slurry quality and reaction efficiency, ensures the growth and metabolic needs of microorganisms, and increases fermentation yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a corncob liquid size mixing device, which belongs to the technical field of corncob liquid processing, and comprises a base, a stirring mechanism for mixing corncob liquid size is arranged on the base, the stirring mechanism comprises a stirring box fixed through a fixing frame, a rotating shaft is rotatably arranged in the stirring box, and a plurality of stirring rollers for stirring size are sleeved on the rotating shaft. The driving motor is arranged on one side of the stirring box and is used for driving the rotating shaft to rotate; the stirring mechanism further comprises a supplementing assembly for preventing the nutritional ingredients of the slurry from being reduced and a constant-temperature assembly for promoting the slurry reaction; according to the utility model, the slurry mixing work can be realized by utilizing the stirring mechanism, and meanwhile, diluted nutritional ingredients can be timely supplemented to corncob liquid through the supplementing assembly and the constant-temperature assembly, so that the requirements of growth and metabolism of microorganisms in subsequent fermentation or other biological reactions can be met.
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Description

Technical Field

[0001] This utility model relates to the field of corn cob liquid processing technology, specifically to a corn cob liquid slurry preparation device. Background Technology

[0002] Corn cob slurry preparation refers to the process of optimizing fermentation efficiency and yield by adjusting the ratio of materials to water during corn cob fermentation. The material-to-water ratio refers to the mass ratio of fermentation materials to water, and its magnitude directly affects the growth and metabolism of microorganisms during fermentation, thereby further influencing the formation of fermentation products.

[0003] The existing method of preparing corn cob slurry involves crushing the corn cob and then directly adding an appropriate amount of water and stirring to obtain corn cob slurry. However, the nutrient content of corn cob itself is limited, and adding water will further dilute the nutrients, which may not meet the needs of microbial growth and metabolism in subsequent fermentation or other biological reactions, thus affecting reaction efficiency and product yield.

[0004] Therefore, how to ensure that the dilution of nutrients is further reduced is a problem that needs to be solved. Utility Model Content

[0005] In view of this, the present invention provides a corn cob liquid conditioning device, which uses a stirring mechanism to condition the liquid, and uses a replenishing component and a constant temperature component to replenish the diluted nutrients in the corn cob liquid in a timely manner, so that it can meet the needs of microbial growth and metabolism in subsequent fermentation or other biological reactions.

[0006] To solve the above-mentioned technical problems, this utility model provides a corn cob liquid slurry preparation device, including a base, on which a stirring mechanism for preparing corn cob liquid is provided. The stirring mechanism includes a stirring box fixed by a fixing frame, a rotating shaft rotatably provided inside the stirring box, a plurality of stirring rollers for stirring the slurry sleeved on the rotating shaft, and a drive motor provided on one side of the stirring box for driving the rotating shaft to rotate. The stirring mechanism also includes a supplementary component for preventing the reduction of nutrient content in the slurry and a constant temperature component for promoting the reaction of the slurry. That is, the stirring box provides a stirring space for slurry preparation, so that the rotating shaft can drive the stirring rollers to fully stir the corn cob and liquid, realizing the initial mixing of corn cob liquid. At the same time, the supplementary component replenishes the lost nutrients in the slurry after dilution with water, preventing the reduction of nutrient content in the slurry during the preparation process. Moreover, the constant temperature component promotes the reaction of the slurry, improves the quality of the slurry, and improves the slurry preparation effect.

[0007] The supplementary components include a first water pump mounted on a fixed frame on one side, a storage tank for mixing nutrient solution located below the first water pump, a drain pipe connected between the first water pump and the storage tank, and a high-pressure pipe connected to the outlet of the first water pump. That is, the first water pump draws the mixed nutrient solution from inside the storage tank and delivers the nutrient solution through the high-pressure pipe, thus ensuring a stable supply and delivery of the nutrient solution.

[0008] The high-pressure pipe is laid on the top of the mixing tank, and several nozzles for spraying nutrient solution are installed on the high-pressure pipe. That is, the slurry is sprayed through several nozzles on the high-pressure pipe, so that the nutrient solution can be sprayed evenly on the surface of the slurry, increasing the contact area between the nutrient solution and the slurry, and allowing them to mix better. This prevents the nutrient content in the slurry from decreasing and improves the quality of the slurry preparation.

[0009] The constant temperature component includes a hollow tube installed inside the mixing tank and a heating water tank installed on the base plate. Connecting flanges are fixed at both ends of the hollow tube. A water outlet pipe is connected to one connecting flange, and a water supply pipe is connected to the other connecting flange. That is, the temperature of the slurry in the mixing tank can be regulated through the hollow tube, the heating water tank, and the water supply and outlet pipes connected by the connecting flanges. By utilizing the flow of circulating water between the hollow tube and the heating water tank, the slurry is heated according to the required temperature, creating a suitable temperature environment for the slurry reaction and further reducing the processing time of slurry preparation.

[0010] The water supply pipe is connected to the second water pump installed on the base. The second water pump is connected to the heating water tank through the water pumping pipe. That is, the second water pump draws water from the heating water tank through the water pumping pipe and delivers the water to the hollow tube through the water supply pipe. This provides power for the flow of circulating water in the constant temperature component, ensuring the continuity and stability of temperature regulation, so that the slurry in the mixing tank can be kept within a suitable temperature range, and promoting the full mixing of nutrient solution and slurry.

[0011] The heating water tank is lined with copper pipes for heating the water source. The copper pipes are connected to heating elements located on one side of the heating water tank. That is, the heating elements heat the copper pipes, which in turn heat the water in the heating water tank. This converts electrical energy into heat energy and transfers it to the circulating water, bringing the circulating water to a suitable temperature. This, in turn, provides a suitable reaction temperature for the slurry in the mixing tank, effectively promoting the slurry reaction. Furthermore, the copper pipes help improve heating efficiency and uniformity.

[0012] The end of the water outlet pipe is mounted on the top of the heating water tank on one side. This allows the circulating water to flow back to the heating water tank smoothly, forming a complete circulation loop. This ensures the normal operation of the circulating water system in the constant temperature component, enabling the temperature regulation function to be continuously and stably realized, and ensuring that the slurry in the mixing tank is always in a suitable reaction temperature environment.

[0013] In summary, compared with the prior art, this application includes at least one of the following beneficial technical effects:

[0014] 1. By rotating a shaft inside the mixing tank and mounting several mixing rollers on the shaft, and driving the shaft to rotate by a drive motor, the corn cob liquid can be effectively stirred to achieve slurry preparation.

[0015] 2. The supplementary component draws mixed nutrient solution from the storage tank through the first water pump and sprays it into the slurry in the mixing tank through a high-pressure pipe and nozzle, which can prevent the nutrient content of the slurry from being reduced.

[0016] 3. The constant temperature component uses a hollow tube inside the mixing tank to circulate heated water through a heating water tank and a second water pump to maintain the temperature of the slurry inside the mixing tank and promote the slurry reaction.

[0017] 4. A copper pipe connected to the heating element is laid inside the heating water tank, which can heat the water in the tank and provide circulating water at a suitable temperature for the constant temperature component. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the corn cob liquid slurry preparation device of this utility model;

[0019] Figure 2 This is a rear view schematic diagram of the overall structure of the corn cob liquid slurry preparation device of this utility model;

[0020] Figure 3 This is a schematic diagram of the internal structure of the mixing tank of this utility model;

[0021] Figure 4 This is a top view of the overall structure of this utility model.

[0022] Explanation of reference numerals in the attached figures:

[0023] 100. Base; 200. Stirring mechanism; 201. Fixing frame; 202. Stirring tank; 203. Rotating shaft; 204. Stirring roller; 205. Drive motor; 300. Supplementary components; 301. First water pump; 302. Liquid storage tank; 303. Drainage pipe; 304. High-pressure pipe; 305. Nozzle; 400. Thermostatic component; 402. Heating water tank; 403. Connecting flange; 404. Water outlet pipe; 405. Second water pump; 406. Water supply pipe; 407. Pumping pipe; 408. Copper pipe; 409. Heating element. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the accompanying drawings of the embodiments of this utility model. Figure 1-4 The technical solutions of the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model are within the protection scope of this utility model.

[0025] like Figure 1-4 As shown: This embodiment provides a corn cob liquid slurry preparation device, including a base 100, on which a stirring mechanism 200 for preparing corn cob liquid is provided. The stirring mechanism 200 includes a stirring box 202 fixed by a fixing frame 201, a rotating shaft 203 rotatably provided inside the stirring box 202, a plurality of stirring rollers 204 for stirring the slurry sleeved on the rotating shaft 203, and a drive motor 205 provided on one side of the stirring box 202 for driving the rotating shaft 203 to rotate. The stirring mechanism 200 also includes a supplementary component 300 for preventing the reduction of nutrient content in the slurry and a constant temperature component 400 for promoting the reaction of the slurry. The stirring mechanism 200 can realize basic stirring and slurry preparation operations for corn cob liquid. The stirring roller 204 rotates under the drive of the rotating shaft 203, stirring the slurry in the mixing tank 202 to make it evenly mixed. In addition, the supplementary component 300 and the constant temperature component 400 provide additional functional support for the slurry preparation process. The supplementary component 300 can prevent the reduction of slurry nutrients, and the constant temperature component 400 can promote slurry reaction, thereby improving the overall quality and effect of slurry preparation.

[0026] Supplementary component 300, etc. Figure 1 and Figure 2As shown, the supplementary component 300 includes a first water pump 301 mounted on a fixed frame 201 on one side. Below the first water pump 301 is a storage tank 302 for mixing nutrient solution. A drain pipe 303 connects the first water pump 301 and the storage tank 302. A high-pressure pipe 304 is connected to the outlet of the first water pump 301. The mixed nutrient solution is stored in the storage tank 302. Then, the first water pump 301 draws out the nutrient solution from the storage tank 302 through the drain pipe 303 and delivers it out through the high-pressure pipe 304. This allows the nutrient solution to be introduced into the slurry preparation process in a planned manner, avoiding the loss of nutrients in the slurry during the preparation process, ensuring the nutritional balance of the slurry, and helping to improve the quality of the product after slurry preparation.

[0027] A high-pressure pipe 304 is laid on the top of the mixing tank 202, and several nozzles 305 for spraying nutrient solution are provided on the high-pressure pipe 304. The high-pressure pipe 304 is laid on the top of the mixing tank 202 and the nozzles 305 are provided, so that the nutrient solution can be evenly sprayed into the slurry in the mixing tank 202. This allows the nutrient solution to mix quickly and thoroughly with the slurry while the mixing roller 204 is stirring the slurry, improving the fusion efficiency of the nutrient solution and the slurry, thereby better preventing the reduction of nutrient content in the slurry and further improving the quality of slurry preparation.

[0028] 400°C constant temperature component Figure 1-3 As shown, the constant temperature component 400 includes a hollow tube disposed inside the mixing tank 202 and a heating water tank 402 disposed on the base plate 100. Connecting flanges 403 are fixed at both ends of the hollow tube. A water outlet pipe 404 is connected to one side of the connecting flange 403, and a water supply pipe 406 is connected to the other side of the connecting flange 403. The hollow tube inside the mixing tank 202 can fully contact the slurry. A circulation loop is formed with the heating water tank 402 through the water outlet pipe 404 and the water supply pipe 406. The heating water tank 402 provides a water source at a suitable temperature. The temperature of the slurry in the mixing tank 202 is regulated through the hollow tube, creating a suitable temperature environment for the slurry reaction, promoting the slurry reaction, and improving the efficiency and effect of various chemical reactions during the slurry preparation process, thereby improving the quality stability of the slurry product.

[0029] The water supply pipe 406 is connected to the second water pump 405 installed on the base 100. The second water pump 405 is connected to the heating water tank 402 through the water pumping pipe 407. The second water pump 405 draws hot water from the heating water tank 402 through the water pumping pipe 407, and then delivers the hot water to the hollow pipe through the water supply pipe 406. This ensures that the hot water can flow continuously and stably in the circulation loop, thereby maintaining the constant temperature environment of the slurry in the mixing tank 202. This allows the constant temperature component 400 to play an effective role, better promote the slurry reaction, and ensure the stability of the slurry preparation process and the consistency of product quality.

[0030] The heating water tank 402 is lined with a copper pipe 408 for heating the water source. The copper pipe 408 is connected to a heating element 409 located on one side of the heating water tank 402. The heating element 409 heats the water in the heating water tank 402 through the copper pipe 408. Moreover, the copper pipe 408 has good thermal conductivity and can quickly and evenly transfer the heat generated by the heating element 409 to the water in the tank, so that the water temperature in the tank can quickly reach and maintain a suitable temperature, providing a stable hot water supply for the constant temperature component 400, thereby effectively promoting the slurry reaction and improving the slurry preparation efficiency and quality.

[0031] The end of the water outlet pipe 404 is mounted on the top of one side of the heating water tank 402, so that the water flowing out from the hollow pipe can flow back into the heating water tank 402 smoothly, forming a complete and smooth water circulation loop.

[0032] The method of using this utility model is as follows: First, pour corn cob liquid into the mixing tank 202, controlling the amount poured in according to actual production needs to ensure that it does not exceed the reasonable capacity of the mixing tank 202. Then, prepare the mixed nutrient solution for supplementing the slurry nutrients in the storage tank 302 according to the formula ratio. Next, add an appropriate amount of water to the heating water tank 402, keeping the water level within a suitable range to ensure the normal operation of the subsequent circulating heating function. Then, turn on the heating element 409 to heat the copper tube 408, so that the copper tube 408 heats the water in the heating water tank 402. Heating is performed, followed by slurry preparation. The drive motor 205 is turned on, which drives the rotating shaft 203 to rotate. Several stirring rollers 204 mounted on the rotating shaft 203 rotate accordingly, stirring the corn cob liquid in the mixing tank 202. During stirring, the first water pump 301 is started. The first water pump 301 draws the mixed nutrient solution from the storage tank 302 through the diversion pipe 303. The nutrient solution is sprayed into the slurry in the mixing tank 202 through several nozzles 305 on the high-pressure pipe 304. During this process, the stirring rollers 204 continuously stir, so that the nutrient solution can better blend with the slurry.

[0033] When the slurry temperature is low, the hot water in the heating water tank 402 continuously circulates into the hollow tube under the action of the second water pump 405 to heat the slurry and maintain it at a suitable reaction temperature. The tail end of the water outlet pipe 404 is mounted on the top of the heating water tank 402, and the water flowing out of the hollow tube flows back to the heating water tank 402 through the water outlet pipe 404 to realize the recycling of water. When the slurry temperature is too high, the operation of the heating element 409 can be stopped, or the flow rate of the second water pump 405 can be adjusted to control the influence of water temperature on slurry temperature.

[0034] Once the slurry reaches the required mixing uniformity, nutrient replenishment requirements, and suitable reaction temperature, the drive motor 205, the first water pump 301, and the second water pump 405 are turned off, and the slurry preparation operation is stopped. Furthermore, it should be noted that in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0035] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A corn cob liquid slurry preparation device, comprising a base (100), characterized in that: The base (100) is provided with a stirring mechanism (200) for preparing corn cob liquid. The stirring mechanism (200) includes a stirring box (202) fixed by a fixing frame (201). A rotating shaft (203) is rotatably provided inside the stirring box (202). Several stirring rollers (204) for stirring the liquid are sleeved on the rotating shaft (203). A drive motor (205) is provided on one side of the stirring box (202) for driving the rotating shaft (203) to rotate. The stirring mechanism (200) also includes a supplementary component (300) for preventing the reduction of the nutrient content of the liquid and a constant temperature component (400) for promoting the reaction of the liquid.

2. The corn cob liquid slurry preparation device as described in claim 1, characterized in that: The supplementary component (300) includes a first water pump (301) mounted on a fixed frame (201) on one side. Below the first water pump (301) is a storage tank (302) for mixing nutrient solution. A drain pipe (303) is connected between the first water pump (301) and the storage tank (302). A high-pressure pipe (304) is connected to the outlet of the first water pump (301).

3. The corn cob liquid slurry preparation device as described in claim 2, characterized in that: The high-pressure pipe (304) is laid on the top of the mixing tank (202), and the high-pressure pipe (304) is provided with a number of nozzles (305) for spraying nutrient solution.

4. The corn cob liquid slurry preparation device as described in claim 1, characterized in that: The constant temperature component (400) includes a hollow tube disposed inside the mixing tank (202) and a heating water tank (402) disposed on the plate of the base (100). Connecting flanges (403) are fixed at both ends of the hollow tube. A water outlet pipe (404) is connected to one side of the connecting flange (403), and a water supply pipe (406) is connected to the other side of the connecting flange (403).

5. The corn cob liquid slurry preparation device as described in claim 4, characterized in that: The water supply pipe (406) is connected to the second water pump (405) installed on the base (100), and the second water pump (405) is connected to the heating water tank (402) through the water pump (407).

6. The corn cob liquid slurry preparation device as described in claim 5, characterized in that: The heating water tank (402) is lined with a copper pipe (408) for heating water source, and the copper pipe (408) is connected to a heating element (409) located on one side of the heating water tank (402).

7. The corn cob liquid slurry preparation device as described in claim 4, characterized in that: The end of the water outlet pipe (404) is mounted on the top of the side of the heating water tank (402).