Triazinone hydrolysis device
By designing a triazine hydrolysis device and utilizing an inclined scraper and oil removal tank structure, the problem of reduced reaction rate caused by oil accumulation was solved, achieving efficient oil collection and stable operation within the reactor, thereby improving production efficiency and product quality.
Patent Information
- Application Number
- CN202423221875.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-26
AI Technical Summary
In the hydrolysis reaction of triazineone, oily byproducts and unreacted oil-soluble raw materials accumulate in the reaction system, covering the surface of the reactants, hindering contact between reactants, resulting in a decrease in the reaction rate and affecting production efficiency.
A triazine ketone hydrolysis device is designed, which uses an inclined scraper that rotates with the rotating column to scrape the oil on the inner surface of the reactor and the liquid surface toward the oil collection block. Combined with the oil removal tank and the baffle inside the tank, the oil is ensured to move in the same direction and be collected. The oil is then discharged quickly through the oil removal pipe and the oil storage pipe.
It improves the efficiency of oil collection, ensures that oil does not flow back into the reactor, enhances the oil removal effect and production stability, ensures uniform reaction, and improves production efficiency and product quality.
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Figure CN223717121U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to triazinone technical field, concretely is triazinone hydrolysis device. BACKGROUND
[0002] Triazinone compounds have important applications in agriculture, medicine, chemical industry and other fields, for example, in agriculture, part of triazinone substances are used as herbicides, which can effectively inhibit the growth of weeds and improve crop yield; in the medical field, some triazinone derivatives have potential pharmacological activity and can be used for developing drugs for treating specific diseases.
[0003] In the triazinone hydrolysis reaction, some oily by-products or unreacted oil-soluble raw materials may be generated. If these oil stains are not removed in time, they will accumulate in the reaction system, cover the surface of the reactants, hinder the contact and reaction between the reactants, thereby reducing the reaction rate, prolonging the time required to reach the same reaction conversion rate, and affecting the production efficiency. UTILITY MODEL CONTENT
[0004] The utility model aims at providing triazinone hydrolysis device, through the rotation of the inclined scraper with the rotation of the rotating column, the oil stains on the inner surface of the reaction kettle and the liquid surface can be effectively scraped to the direction of the oil collecting block, the oil stains are moved along the trajectory of the scraper to a specific direction by using the inclination angle and the rotating force, the efficiency of oil stain collection is improved, the inner baffle in the groove is located inside the oil removal groove, which can further block the backflow of oil stains in the oil removal groove, ensure the stable accumulation of oil stains in the oil removal groove, and improve the collection effect of the oil removal groove on oil stains.
[0005] To achieve the above-mentioned purpose, the triazinone hydrolysis device is provided, which comprises: a reaction kettle, the upper surface of the reaction kettle is fixedly connected with a motor, the output end of the motor is fixedly connected with a rotating column, the outer surface of the rotating column is fixedly connected with four inclined scrapers, the middle part of the outer surface of the reaction kettle is fixedly connected with an oil collecting block, the inside of the oil collecting block is provided with an oil removal groove, and the oil removal groove and the inside of the reaction kettle are communicated, the lower surfaces of the four inclined scrapers are all fixedly connected with groove inner baffles, and the groove inner baffles are located inside the oil removal groove, the lower surface of the oil collecting block is fixedly connected with four oil removal pipes, the lower surfaces of the four oil removal pipes are all fixedly connected with oil storage pipes, the lower surface of the oil storage pipe is fixedly connected with an oil outlet pipe, and the inside of the oil outlet pipe is fixedly connected with a mechanical valve. The rotating column and the inclined scraper are driven by the motor to remove oil, and each component cooperates to ensure effective collection and discharge of oil stains, thereby improving production stability.
[0006] According to the triazine ketone hydrolysis device, the inclined scraper extends to the inside of the oil removal groove, and the groove inner baffle and the rotating column are arranged in parallel.
[0007] According to the triazine ketone hydrolysis device, the inside of the oil removal groove is matched with the inclined scraper and the groove inner baffle, and the four inclined scrapers are circumferentially distributed on the outer surface of the rotating column.
[0008] According to the triazine ketone hydrolysis device, the inside of the oil removal groove is matched with the inclined scraper and the groove inner baffle, and the four inclined scrapers are circumferentially distributed on the outer surface of the rotating column.
[0009] According to the triazine ketone hydrolysis device, the lower surface of the reaction kettle is fixedly connected with four supporting legs, and the shaft center of the four supporting legs is provided with a discharge pipe.
[0010] According to the triazine ketone hydrolysis device, the upper surface of the reaction kettle is fixedly connected with a feeding pipe, a water inlet pipe and an air exchange pipe, and the feeding pipe, the water inlet pipe and the air exchange pipe are circumferentially distributed on the upper surface of the reaction kettle.
[0011] According to the triazine ketone hydrolysis device, the oil storage pipe is located below the oil collecting block, and the output end of the oil outlet pipe and the output end of the discharge pipe are in the same direction.
[0012] Compared with the prior art, the triazine ketone hydrolysis device has the following beneficial effects:
[0013] The motor, the rotating column, the inclined scraper, the oil collecting block, the oil removal groove, the groove inner baffle, the oil removal pipe, the oil storage pipe, the oil outlet pipe and the mechanical valve are arranged, and the inclined scraper rotates with the rotating column, so that the oil stains on the inner surface and the liquid surface of the reaction kettle can be effectively scraped to the direction of the oil collecting block.
[0014] The additional aspects and advantages of the present application will be in part apparent and in part pointed out hereinafter in the description of the application. BRIEF DESCRIPTION OF DRAWINGS
[0015] The present application will be further described below in conjunction with the drawings and embodiments;
[0016] Figure 1 is a perspective view of the triazine ketone hydrolysis device of the present application;
[0017] Figure 2 is a front view of the triazine ketone hydrolysis device of the present application;
[0018] Figure 3 is a cross-sectional perspective view of the triazine ketone hydrolysis device of the present application;
[0019] Figure 4 is the present application Figure 3 is an enlarged view of structure at A in the present application.
[0020] In the figure: 1, reaction kettle; 2, discharge pipe; 3, supporting leg; 4, motor; 5, rotating column; 6, feed pipe; 7, water inlet pipe; 8, air exchange pipe; 9, oil removal groove; 10, oil removal pipe; 11, oil storage pipe; 12, oil outlet pipe; 13, mechanical valve; 14, inclined scraper; 15, oil collecting block; 16, groove inner baffle. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0022] Please refer to Figures 1-4The utility model provides a technical scheme: triazine ketone hydrolysis device, include: reaction kettle 1, the upper surface fixed connection of reaction kettle 1 has motor 4, and motor 4 is the whole stirring and oil removal system and provides power, drives subsequent component operation, the output fixed connection of motor 4 has rotary column 5, and rotary column 5 is connected component, passes on the rotary power of motor 4 to the oblique scraper 14, makes it can play the role in reaction kettle 1, the outer fixed surface of rotary column 5 is connected with four oblique scrapers 14, and oblique scraper 14 can rotate along with rotary column 5, and the material in reaction kettle 1 is stirred, promotes the reaction uniformity to carry out, prevents material accumulation, and the outer surface middle part fixed connection of reaction kettle 1 has oil collecting block 15, and oil collecting block 15 is used to collect the oil generated in the reaction process, plays the role of preliminary gathering oil dirt, and the inside of oil collecting block 15 is provided with oil removal groove 9, and oil removal groove 9 and the inside communication of reaction kettle 1, and oil removal groove 9 provides the converging space for oil dirt, makes oil dirt can flow into from reaction kettle 1 and concentrate here, and the lower surface fixed connection of four oblique scrapers 14 has groove baffle 16, and groove baffle 16 is located in the inside of oil removal groove 9, and groove baffle 16 assists the blocking oil dirt when scraper rotates, avoids oil dirt backflow to reaction kettle 1, improves oil removal efficiency, and the lower surface fixed connection of oil collecting block 15 has four oil removal pipes 10, and oil removal pipe 10 is responsible for the oil dirt collected in oil removal groove 9 and exports, realizes oil dirt separation, and the lower surface fixed connection of four oil removal pipes 10 has oil storage pipe 11, and oil storage pipe 11 plays the role of temporarily storing the oil dirt from oil removal pipe 10 and flows, is convenient for subsequent centralized discharge, and the lower surface fixed connection of oil storage pipe 11 has oil outlet pipe 12, and oil outlet pipe 12 guides the oil dirt in oil storage pipe 11 and exports device, transports oil dirt to the designated position, and the inside fixed connection of oil outlet pipe 12 has mechanical valve 13, and mechanical valve 13 controls the opening and closure of oil outlet pipe 12, is convenient for on-demand oil dirt discharge, and accurately controls the oiling process.
[0023] The inclined scraper 14 extends to the inside of the oil removal groove 9, ensuring that the scraper can effectively scrape the oil stains into the oil removal groove 9, enhancing the oil removal effect. The groove baffle 16 and the rotating column 5 are arranged in parallel, and this parallel structure makes the groove baffle 16 stable during rotation. The inside of the oil removal groove 9 is matched with the inclined scraper 14 and the groove baffle 16, which ensures that the scraper and the baffle work cooperatively in the oil removal groove 9, fully exerting the oil removal function. The four inclined scrapers 14 are circumferentially distributed on the outer surface of the rotating column 5, which can fully mix the materials in the reaction kettle 1 in all directions, making the reaction more uniform and thorough. The interiors of the four oil removal pipes 10 are connected with the interior of the oil removal groove 9, ensuring that the oil stains in the oil removal groove 9 can flow smoothly into the oil removal pipe 10, realizing a continuous oil removal process. The inside of the oil storage pipe 11 is matched with the oil removal pipe 10, so that the oil stains discharged from the oil removal pipe 10 can flow smoothly into the oil storage pipe 11, avoiding leakage. The lower surface of the reaction kettle 1 is fixedly connected with four supporting legs 3, which provide stable support for the reaction kettle 1, ensuring the stable operation of the device. The axes of the four supporting legs 3 are provided with discharge pipes 2, which facilitate the discharge of materials after the reaction is completed, completing the discharge link of the entire production process. The upper surface of the reaction kettle 1 is fixedly connected with a feeding pipe 6, a water inlet pipe 7 and an air exchange pipe 8. The feeding pipe 6 is used to put in the reaction raw materials, the water inlet pipe 7 is used to supplement water as needed, and the air exchange pipe 8 is used to ensure the gas exchange in the reaction kettle 1. The three pipes are circumferentially distributed on the upper surface of the reaction kettle 1, which is convenient for operation and does not interfere with each other, and cooperatively maintains the reaction environment in the reaction kettle 1. The oil storage pipe 11 is located below the oil collection block 15, which facilitates the natural flow of oil stains into the oil storage pipe 11 relying on gravity, in line with the physical properties of oil stain discharge. The output end of the oil outlet pipe 12 and the output end of the discharge pipe 2 are in the same direction, which makes the device layout more regular and facilitates subsequent connection with unified collection or processing equipment.
[0024] Working principle: through the feed pipe 6 according to the process requirements and inject the appropriate amount of triazine ketone raw material into the reaction kettle 1, then, open the valve of water inlet pipe 7, during the water injection process, the water quantity can be monitored by observing the liquid level mark on the reaction kettle 1 or other measuring means, start the motor 4, drive the rotating column 5 at the output end to rotate, and then make the four inclined scrapers 14 fixed on the outer surface of the rotating column 5 rotate, and the material in the reaction kettle 1 is stirred, so that the raw materials and water are fully mixed and contacted, and the hydrolysis reaction is started, and the running state of the motor 4 needs to be paid attention to during the stirring process to prevent abnormality, with the reaction proceeding, the grease is gradually produced and floats up, under the rotating action of the inclined scraper 14, the oil stains are scraped to the direction of the oil collecting block 15, since the oil removal tank 9 is communicated with the inside of the reaction kettle 1, the oil stains flow into the oil removal tank 9, the baffle 16 in the tank assists in blocking the oil stains when the scraper rotates, to avoid its backflow to the reaction kettle 1, the oil stains flowing into the oil removal tank 9 are then flowed downward into the oil storage pipe 11 through the four oil removal pipes 10 communicated therewith for temporary storage, the gas exchange condition of the air exchange pipe 8 is regularly checked to ensure that the gas pressure in the reaction kettle 1 is stable, the gas discharge is normal, the pressure is avoided to affect the reaction or the equipment safety, at the same time, the state of the reaction material, such as color, consistency and the like, is observed to judge whether the reaction progress meets the expectation, the stirring effect can be optimized by adjusting the motor 4 speed as required, when the reaction reaches the predetermined degree, the motor 4 is first closed to stop stirring, then the valve on the discharge pipe 2 is opened, so that the material after reaction is discharged from the discharge pipe 2 to the specified collection container under the action of gravity, after the discharge is completed, if there is accumulated oil stains in the oil storage pipe 11, the mechanical valve 13 on the oil removal pipe 12 is opened to discharge the oil stains to the corresponding treatment area, after the discharge is completed, the valve is closed to prepare for the next use.
[0025] The embodiments of the utility model are explained in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, within the knowledge range of ordinary skilled in the art, various changes can be made without departing from the purpose of the utility model.
Claims
1. A triazinone hydrolysis apparatus comprising: The utility model provides a reaction kettle (1), its characterized in be: the reaction kettle (1) upper surface is connected with motor (4) fixedly, the output of motor (4) is connected with rotating column (5) fixedly, the outer surface of rotating column (5) is connected with four oblique scrapers (14) fixedly, the outer surface middle part of reaction kettle (1) is connected with oil collecting block (15) fixedly, the inside of oil collecting block (15) is equipped with oil removal groove (9), and oil removal groove (9) and the inside of reaction kettle (1) are communicated, the lower surface of four oblique scrapers (14) all is connected with groove inner baffle (16) fixedly, and groove inner baffle (16) is located in the inside of oil removal groove (9), the lower surface of oil collecting block (15) is connected with four oil removal pipes (10), the lower surface of four oil removal pipes (10) all is connected with oil storage pipe (11) fixedly, the lower surface of oil storage pipe (11) is connected with oil outlet pipe (12) fixedly, the inside of oil outlet pipe (12) is connected with mechanical valve (13) fixedly.
2. The triazinone hydrolysis apparatus of claim 1, wherein: The oblique scraper (14) extends to the inside of the oil removal groove (9), the groove inner baffle (16) and the rotating column (5) are arranged in parallel.
3. The triazinone hydrolysis apparatus of claim 1, wherein: The inside of the oil removal groove (9) is matched with the oblique scraper (14) and the groove inner baffle (16), and the four oblique scrapers (14) are circumferentially distributed on the outer surface of the rotating column (5).
4. The triazinone hydrolysis apparatus of claim 1, wherein: The inside of the four oil removal pipes (10) is communicated with the inside of the oil removal groove (9), and the oil storage pipe (11) is matched with the inside of the oil removal pipe (10).
5. The triazinone hydrolysis apparatus of claim 1, wherein: The lower surface of the reaction kettle (1) is fixedly connected with the four supporting legs (3), and the shaft center of the four supporting legs (3) is provided with the discharge pipe (2).
6. The triazinone hydrolysis apparatus of claim 1, wherein: The upper surface of the reaction kettle (1) is fixedly connected with the feed pipe (6), the water inlet pipe (7) and the air exchange pipe (8), and the feed pipe (6), the water inlet pipe (7) and the air exchange pipe (8) are circumferentially distributed on the upper surface of the reaction kettle (1).
7. The triazinone hydrolysis apparatus of claim 1, wherein: The oil storage pipe (11) is located below the oil collecting block (15), and the output end of the oil outlet pipe (12) and the output end of the discharge pipe (2) are in the same direction.