Boiler treating agent and preparation process thereof

By introducing a stirring and rotating mixing process into the mixing tank of the boiler treatment agent, the problems of insufficient mixing degree and emission pollution of the existing boiler treatment agent are solved, and more efficient mixing and pollution reduction are achieved.

CN120120550AInactive Publication Date: 2025-06-10ANHUI SPECIAL EQUIP INSPECTION INST
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510407804.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the production and preparation of existing boiler treatment agents, the phosphate-based formula causes later emission pollution, and the mixing degree is poor, affecting the preparation process.

Method used

By introducing a stirring and rotating mixing process inside the mixing tank, the mixing degree of boiler treatment agent raw materials is increased, and specific formulas include wood pulp cotton, plant extracts, bamboo vinegar liquid and ceramic rings.

Benefits of technology

The mixing of boiler treatment agent raw materials is improved, the later emission pollution is reduced, the eutrophication pollution to the water environment is avoided, and the production effect of boiler treatment agents is improved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure HDA0005341709710000011
    Figure HDA0005341709710000011
  • Figure HDA0005341709710000012
    Figure HDA0005341709710000012
  • Figure HDA0005341709710000021
    Figure HDA0005341709710000021
Patent Text Reader

Abstract

The invention is suitable for the technical field of boiler treating agents, and provides a boiler treating agent and a preparation process thereof.The boiler treating agent is prepared from, by mass, 20% of wood pulp cotton, 18% of plant extract, 9% of bamboo vinegar and the balance ceramic rings, the treatment mechanism comprises a treatment assembly and a mixing assembly rotationally matched on the treatment assembly; according to the preparation technology, the problems that in the production and preparation process of existing boiler treating agents, most of the boiler treating agents are in phosphate series formulas, so that in the later use process of the boiler treating agents, the later emission pollution is increased, and the production cost is reduced are solved. The problems that in the prior art, water eutrophication pollution is easily caused to the surrounding water environment, and an existing mixing assembly is single in function, can only conduct circumferential mixing and stirring, is poor in mixing degree and easily affects the later boiler treating agent preparation process are solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of boiler treatment agents, and more specifically, to a boiler treatment agent and its preparation process. Background Art

[0002] With the rapid development of economic construction, the use of boilers is increasing. As a special equipment, boilers are high-energy devices. Therefore, the water quality of boiler water is very important. In the boiler water environment, even pure water will decompose into oxygen, further oxidizing and corroding the inner wall of the boiler and generating some phosphate deposits, causing eutrophication pollution to the environment in the later emissions.

[0003] Currently, in the process of production and preparation of boiler treatment agents on the market, there are mostly the following technical problems:

[0004] In the process of production and preparation of existing boiler treatment agents, most of them are phosphate-based formulations, which lead to increased pollution in later emissions during use and are prone to causing eutrophication pollution to the surrounding water environment. Moreover, when the raw materials of the boiler treatment agent are being mixed during production and preparation, the functions of existing mixing components are relatively single, and they can only perform circumferential mixing and stirring, resulting in poor mixing degree during the preparation process and easily affecting the later preparation process of the boiler treatment agent. Summary of the Invention

[0005] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a boiler treatment agent and its preparation process that can initially and further increase the mixing degree of the raw materials of the boiler treatment agent inside the mixing tank, so that the boiler treatment agent inside the mixing tank can be repeatedly stirred and rotated in the up-and-down and circumferential processes during mixing, thereby initially and further mixing the raw materials of the boiler treatment agent inside the mixing tank and avoiding affecting the later production process of the boiler treatment agent.

[0006] To achieve the above purpose, the present invention provides the following technical solutions:

[0007] A boiler treatment agent, the boiler treatment agent includes the following raw materials: wood pulp cotton with a mass fraction of 20%, plant extract with a mass fraction of 18%, bamboo vinegar liquid with a mass fraction of 9%, and ceramic rings to make up the remaining mass fraction.

[0008] The preparation method of the plant extract is as follows: taking tea leaves and gallic acid fruit with a mass ratio of 3:4 and a water content of 15%, adding an ethanol aqueous solution with a mass concentration of 80% and a mass of 8 times the mass of the tea leaves and the gallic acid fruit, all of which are added into a flash extractor, and after extracting at a speed of 5200r / min and 40KHz ultrasonic assisted extraction for 1-2min, filtering with a 150-mesh filter to obtain a coarse filtration extract, and distilling the coarse filtration extract under reduced pressure at 68°C and a vacuum degree of 700mbar for 15min, collecting the residual liquid to obtain the plant extract;

[0009] The preparation process of the boiler treatment agent is as follows: Step 1: Pour bamboo vinegar and plant extract into the interior of the treatment mechanism, and perform processing operations at 25° C. and 200 r / min for 30 minutes to obtain a mixed solution of boiler treatment agent raw materials.

[0010] Step 2: drip the mixed solution of boiler treatment agent raw materials in step 1 into the dried wood pulp cotton in sequence.

[0011] Step 3: Cut the treated wood pulp cotton into strips with a diameter of 1 cm slightly larger than the inner diameter of the ceramic ring, gently press them into the ceramic ring, and leave the excess length evenly exposed on both sides of the ceramic ring to obtain the boiler treatment agent.

[0012] The present invention is further configured as follows: the processing mechanism comprises a processing component and a mixing component rotatably engaged with the processing component.

[0013] The processing assembly comprises a processing member and a flip member rotatably engaged with the processing member.

[0014] The processing part includes a mounting bottom ring, a J-shaped vertical plate is fixed on the top of the mounting bottom ring, a limiting cylinder is fixed on the top of the J-shaped vertical plate, a first motor is fixed on the inner wall of the J-shaped vertical plate, a rotating disk is fixed on the output shaft of the first motor outside the J-shaped vertical plate, and a shift rod is fixed on the side of the rotating disk eccentrically.

[0015] The present invention is further configured as follows: the flipping part includes a rotating shaft rotatably engaged inside a limiting cylinder, a threaded column is fixed at one end of the rotating shaft, a circumferential side surface of the threaded column is threadedly connected with a limiting nut, a guide rail is fixed to the other end surface of the rotating shaft, a T-shaped slide rail is slidably engaged inside the guide rail, an L-shaped flipping plate is fixed on the top of the T-shaped slide rail, and a flipping arc plate is fixed on the bottom of the L-shaped flipping plate.

[0016] A circular hole is formed on the side of the T-shaped slide rail and is rotatably matched with the peripheral side of the shifting rod.

[0017] The present invention is further configured such that: symmetric two support vertical plates are fixed to the top of the installation bottom ring, a positioning ring is fixed to the top of the two support vertical plates, the positioning ring is provided with symmetric two T-shaped grooves, T-shaped sliding rails are slidably fitted inside the two T-shaped grooves, an extension plate is fixed to one side of the T-shaped sliding rail, a positioning arc plate is fixed to the side surface of the extension plate inside the positioning ring, and an arc-shaped rotating groove is provided on the inner wall of the positioning arc plate.

[0018] The present invention is further configured such that: L-shaped bottom plates are fixed to the opposite side surfaces of the two support vertical plates near the top, threaded rods are connected through the side surfaces of the L-shaped bottom plates, an extrusion ball that fits with the T-shaped sliding rail is fixed to the end of the threaded rod inside the T-shaped groove, and a return spring sleeved on the threaded rod is fixed between the T-shaped sliding rail and the L-shaped bottom plate.

[0019] The present invention is further configured such that: the mixing assembly includes a rotating ring rotatably fitted between the two arc-shaped rotating grooves, a conical outer sleeve located inside the positioning ring is fixed to the inner wall of the rotating ring, and a mixing pool is fixed to the top of the conical outer sleeve.

[0020] The present invention is further configured such that: a drip tube is communicated and arranged at the outer bottom of the mixing pool inside the conical outer sleeve, the bottom of the drip tube penetrates through the inner bottom of the conical outer sleeve, and the drip tube extends downward, and a flow control valve is fixed to the peripheral side surface of the drip tube.

[0021] The present invention is further configured such that: an extended bottom plate is fixed to one side of one support vertical plate below the positioning ring, a U-shaped seat is fixed to the side surface of the extended bottom plate, a second motor is fixed to an outer side surface of the U-shaped seat, an output shaft of the second motor penetrates through the outer side surface of the U-shaped seat, and the output shaft of the second motor is located inside the U-shaped seat, the output shaft of the second motor is rotatably fitted with the U-shaped seat, and a worm is fixed to the output shaft of the second motor.

[0022] A worm gear ring adapted to the worm is fixed to the outer wall of the conical outer sleeve below the rotating ring.

[0023] The advantages of the present invention are: 1. Through the combined cooperation of three aspects, the present invention physically scrapes the water scale in the boiler while softening the scale and fouling. During the scraping process, it can inhibit the oxidation inside the boiler and the fouling of metal ions to prevent the formation of new scale. Finally, while removing the scale and restoring the internal environment of the boiler, the residual antibacterial substances after discharge inhibit the growth of harmful bacteria in the water body and reduce the generation of inorganic substances such as nitrogen, avoiding the impact of the treated boiler water on the external water environment.

[0024] 2. In the present invention, the lever fixed at the side of the rotating disk and eccentric to the axis rotates inside the circular rotating hole, and in combination with the sliding fit of the T-shaped slide rail inside the guiding rail, drives the L-shaped material turning plate fixed at the top of the T-shaped slide rail to swing reciprocally inside the mixing tank, so that the turning arc plate fixed at the bottom of the L-shaped material turning plate synchronously turns and stirs repeatedly inside the mixing tank. At the same time, in combination with the matching action between the worm and the worm gear ring, the entire mixing assembly is synchronously driven to rotate circumferentially inside the two arc-shaped rotating grooves, thereby initially and further increasing the mixing degree of the boiler treatment agent raw materials inside the mixing tank, enabling the boiler treatment agent inside the mixing tank to be repeatedly stirred and rotated in the up-and-down and circumferential processes during the mixing process, and then initially and further mixing the boiler treatment agent raw materials inside the mixing tank to avoid affecting the later production process of the boiler treatment agent. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic structural view of the treatment mechanism of the present invention.

[0026] Figure 2 It is a schematic structural view of the treatment assembly of the present invention.

[0027] Figure 3 It is a schematic structural view of the mixing assembly of the present invention.

[0028] Figure 4 It is a front view of the mixing assembly of the present invention.

[0029] Figure 5 It is a schematic structural view of the treatment part of the present invention.

[0030] Figure 6 It is a top view of the treatment part of the present invention.

[0031] Figure 7 It is a front view of the treatment part of the present invention.

[0032] Figure 8 It is a schematic structural view of the turning part of the present invention.

[0033] Figure 9 It is a front view of the turning part of the present invention.

[0034] In the figure: 1, processing mechanism; 2, processing component; 3, mixing component; 4, processing part; 5, turning part; 301, rotating ring; 302, conical outer sleeve; 303, mixing pool; 304, dropping pipe; 305, flow control valve; 306, worm gear ring; 401, installation bottom ring; 402, J-shaped vertical plate; 403, limiting cylinder; 404, first motor; 405, rotating disk; 406, dial rod; 407, supporting vertical plate; 408, positioning circular ring; 409, T-shaped groove; 410, T-shaped sliding rail; 411, extension plate; 412, positioning arc plate; 413, arc-shaped rotating groove; 414, L-shaped bottom plate; 415, threaded rod; 416, extrusion ball; 417, return spring; 418, protruding bottom plate; 419, U-shaped seat; 420, second motor; 421, worm; 501, rotating shaft; 502, threaded column; 503, limiting nut; 504, guiding track; 505, T-shaped sliding rail; 506, L-shaped turning plate; 507, turning arc plate; 508, circular rotating hole. Detailed implementation mode

[0035] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. The present invention will be described in detail below with reference to the drawings and in combination with the embodiments.

[0036] It should be pointed out that, unless otherwise specified, all technical and scientific terms used in the present application have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present application belongs.

[0037] In the present invention, unless otherwise stated, the orientations such as "upper, lower" are usually in the directions shown in the drawings, or in the vertical, perpendicular or gravitational directions; similarly, for the convenience of understanding and description, "left, right" are usually in the left and right shown in the drawings; "inside, outside" refer to the inside and outside relative to the contour of each component itself, but the above orientation terms are not used to limit the present invention.

[0038] Example 1, please refer to Figures 1-9 , the present invention provides the following technical solutions:

[0039] A boiler treatment agent. Specifically, the boiler treatment agent includes the following raw materials: wood pulp cotton with a mass fraction of 20%, plant extract with a mass fraction of 18%, bamboo vinegar liquid with a mass fraction of 9%, and ceramic rings to make up the remaining mass fraction;

[0040] The preparation method of the plant extract is as follows: take tea leaves and gallic acid fruit with a mass ratio of 3:4 and a water content of 15%, add an ethanol aqueous solution with a mass concentration of 80% and a mass of 8 times the mass of the tea leaves and gallic acid fruit, add all of them into a flash extractor (model KM1-JHBE-50T), extract at a speed of 5200r / min and 40KHz ultrasonic assisted extraction for 1-2min, filter with a 150-mesh filter to obtain a coarse filtration extract, distill the coarse filtration extract under reduced pressure at 68°C and a vacuum degree of 700mbar for 15min, collect the remaining liquid to obtain the plant extract (the machine model for the reduced pressure distillation of the coarse filtration extract is RE-2000E);

[0041] The preparation process of the boiler treatment agent is as follows: Step 1: Pour the bamboo vinegar liquid and the plant extract into the processing mechanism 1, and perform a processing operation at 25° C. and 200 r / min for 30 minutes to obtain a mixed solution of the raw materials of the boiler treatment agent;

[0042] Step 2: dripping the mixed solution of boiler treatment agent raw materials in step 1 into the dried wood pulp cotton in sequence;

[0043] Step 3: Cut the treated wood pulp cotton into strips with a diameter of 1 cm slightly larger than the inner diameter of the ceramic ring, gently press them into the ceramic ring, and leave the excess length evenly exposed on both sides of the ceramic ring to obtain the boiler treatment agent.

[0044] The specific application of the first embodiment is as follows: during the production and preparation of the boiler treatment agent, firstly, ceramic rings (specifications of the ceramic rings are that each section has an outer diameter of 1 cm, a length of 1.5 cm, and a thickness of 0.2 cm) and wood pulp cotton are used to form multi-angle and forceful impacts to scrape off the scale in the boiler. Secondly, the plant extract in the boiler treatment agent contains tea polyphenols and gallic acid for anti-oxidation, tannic acid to form chelates with metal ions in water to prevent scaling, and cellulose to play a dispersant effect. Finally, the bamboo vinegar in the boiler treatment agent (the bamboo vinegar is collected by dry distillation of bamboo charcoal at a chimney temperature of 130° C.) is anti-mildew, antibacterial and anti-oxidant, and the lower pH value brought by the high acetic acid can help adjust a weakly acidic boiler environment to soften the scale on the boiler.

[0045] The synergistic effect of the above three aspects can soften the scale while continuously physically scraping off the scale in the boiler. In the process of scraping, it can inhibit the oxidation and metal ion scaling inside the boiler to prevent the formation of new scale. Finally, while removing the scale and restoring the environment inside the boiler, the antibacterial substances remaining after discharge inhibit the growth of harmful bacteria in the water and reduce the production of inorganic substances such as nitrogen, thus avoiding the impact of the discharged treated boiler water on the external water environment.

[0046] For example 2, please refer to Figures 1-9, in the second embodiment, the following improvements are made on the basis of the first embodiment. Specifically, the processing mechanism 1 includes a processing component 2 and a mixing component 3 rotatably fitted on the processing component 2; the processing component 2 includes a processing part 4 and a turning part 5 rotatably fitted on the processing part 4; the processing part 4 includes a mounting bottom ring 401, a J-shaped vertical plate 402 is fixed on the top of the mounting bottom ring 401, a limiting cylinder 403 is fixed on the top of the J-shaped vertical plate 402, a first motor 404 is fixed on the inner wall of the J-shaped vertical plate 402, and the output shaft of the first motor 404 is located outside the J-shaped vertical plate 402 and fixed with a rotating disk 405, and a dial rod 406 is fixed at a position offset from the center on the side of the rotating disk 405; the turning part 5 includes a rotating shaft 501 rotatably fitted inside the limiting cylinder 403, a threaded column 502 is fixed at one end of the rotating shaft 501, a limiting nut 503 is threadedly connected to the circumferential side of the threaded column 502, a guiding track 504 is fixed on the other end face of the rotating shaft 501, a T-shaped sliding rail 505 is slidably fitted inside the guiding track 504, an L-shaped material turning plate 506 is fixed on the top of the T-shaped sliding rail 505, and a material turning arc plate 507 is fixed on the bottom of the L-shaped material turning plate 506; a circular rotating hole 508 rotatably fitted on the circumferential side of the dial rod 406 is formed through the side of the T-shaped sliding rail 505; two symmetric support vertical plates 407 are fixed on the top of the mounting bottom ring 401, a positioning circular ring 408 is fixed on the top of the two support vertical plates 407, two symmetric T-shaped grooves 409 are formed in the positioning circular ring 408, a T-shaped sliding rail 410 is slidably fitted inside each of the two T-shaped grooves 409, an extension plate 411 is fixed on one side of the T-shaped sliding rail 410, a positioning arc plate 412 is fixed on the side of the extension plate 411 inside the positioning circular ring 408, and an arc-shaped rotating groove 413 is formed in the inner wall of the positioning arc plate 412; L-shaped bottom plates 414 are fixed on the opposite sides of the two support vertical plates 407 near the top, threaded rods 415 are threadedly connected through the sides of the L-shaped bottom plates 414, and extrusion balls 416 that fit with the T-shaped sliding rail 410 are fixed at the ends of the threaded rods 415 inside the T-shaped grooves 409, and a return spring 417 sleeved on the threaded rod 415 is fixed between the T-shaped sliding rail 410 and the L-shaped bottom plate 414; the mixing component 3 includes a rotating ring 301 rotatably fitted between the two arc-shaped rotating grooves 413, a conical outer sleeve 302 located inside the positioning circular ring 408 is fixed on the inner wall of the rotating ring 301, and a mixing pool 303 is fixed on the top of the conical outer sleeve 302; a drip tube 304 is communicated and arranged at the outer bottom of the mixing pool 303 inside the conical outer sleeve 302, the bottom of the drip tube 304 penetrates through the inner bottom of the conical outer sleeve 302 and extends downward, and a flow control valve 305 is fixed on the circumferential side of the drip tube 304;On one side of a supporting vertical plate 407, below the positioning circular ring 408, there is a protruding base plate 418 fixed. On the side surface of the protruding base plate 418, there is a U-shaped seat 419 fixed. On one outer side surface of the U-shaped seat 419, there is a second motor 420 fixed. The output shaft of the second motor 420 penetrates through one outer side surface of the U-shaped seat 419, and the output shaft of the second motor 420 is located inside the U-shaped seat 419. The output shaft of the second motor 420 is rotationally matched with the U-shaped seat 419, and the output shaft of the second motor 420 is fixed with a worm 421; on the outer wall of the conical outer sleeve 302, below the rotating ring 301, there is a worm gear ring 306 fixed that is adapted to the worm 421.

[0047] The specific application of the second embodiment is as follows: During the preparation of the boiler treatment agent, as the preparation raw materials are generated, first, the rotating ring 301 in the mixing assembly 3 is placed between the two arc-shaped rotating grooves 413. Subsequently, the two threaded rods 415 are rotated, so that the two threaded rods 415 respectively perform threaded movement on one outer side surface of the two L-shaped base plates 414, driving and thereby driving the extrusion balls 416 respectively fixed to the opposite end faces of the two threaded rods 415 to approach and squeeze the opposite side surfaces of the two T-shaped sliding rails 410. In combination with the elastic force of the return spring 417 fixed between the T-shaped sliding rail 410 and the L-shaped base plate 414, the two T-shaped sliding rails 410 respectively perform a slow and uniform linear movement of approaching inside the two T-shaped grooves 409 until the arc-shaped rotating grooves 413 respectively opened on the inner walls of the two positioning arc-shaped plates 412 coincide with the rotating ring 301, and then the rotation of the two threaded rods 415 is stopped, thus completing the rotational connection of the mixing assembly 3.

[0048] After the above rotational connection is completed, the first motor 404 is started to drive the rotating disk 405 fixed to the output shaft of the first motor 404 to rotate, so that the lever 406 fixed at the eccentric position on the side surface of the rotating disk 405 rotates inside the circular rotating hole 508, and in combination with the sliding fit of the T-shaped sliding rail 505 inside the guiding track 504, it drives the L-shaped material turning plate 506 fixed to the top of the T-shaped sliding rail 505 to perform a reciprocating swinging and turning inside the mixing tank 303, so that the material turning arc-shaped plate 507 fixed to the bottom of the L-shaped material turning plate 506 synchronously and repeatedly stirs inside the mixing tank 303, thereby increasing the mixing degree of the boiler treatment agent raw materials inside the mixing tank, enabling the boiler treatment agent inside the mixing tank 303 to be repeatedly stirred during the mixing process in the up and down process, and further preliminarily mixing the boiler treatment agent raw materials inside the mixing tank 303 to avoid affecting the later production process of the boiler treatment agent.

[0049] During the above-mentioned initial reciprocating up-and-down stirring process, the second motor 420 is synchronously started to drive the worm 421 fixed to the output shaft of the second motor 420 to rotate, so that the worm gear ring 306 adapted to the worm 421 rotates circumferentially synchronously, thereby driving the entire mixing assembly 3 to rotate circumferentially inside the two arc-shaped rotating grooves 413, so as to cooperate with the reciprocating up-and-down stirring process to further increase the mixing degree of the boiler treatment agent raw materials inside the mixing tank 303. After completing the initial and further reciprocating up-and-down stirring and circumferential rotation mixing, the flow control valve 305 fixed to the circumferential side of the drip tube 304 is opened, so that the boiler treatment agent after the initial and further reciprocating up-and-down stirring and circumferential rotation mixing is dropped and discharged, so as to facilitate its subsequent preparation process and avoid affecting the later production process of the boiler treatment agent, and improve the production effect of the boiler treatment agent.

[0050] Obviously, the above-described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0051] It should be noted that the terms used herein are only for describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0052] It should be noted that the terms "first", "second", etc. in the specification, claims and drawings of the present application are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein.

[0053] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

[0054] The above are only the preferred embodiments of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the concept of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as within the protection scope of the present invention.

Claims

1. A boiler treatment agent, characterized in that: The boiler treatment agent comprises the following raw materials: 20% by mass of wood pulp cotton, 18% by mass of plant extract, 9% by mass of bamboo vinegar and ceramic rings to make up the rest; The preparation method of the plant extract is as follows: Take tea leaves and gallic acid fruit with a mass ratio of 3:4 and a water content of 15%, add an ethanol aqueous solution with a mass concentration of 80% that is 8 times the mass of the tea leaves and the gallic acid fruit, add all of them into a flash extractor, extract at a speed of 5200r / min and 40KHz ultrasonic assisted extraction for 1-2min, filter with a 150-mesh filter to obtain a coarse filtration extract, distill the coarse filtration extract under reduced pressure at 68°C and a vacuum degree of 700mbar for 15min, and collect the residual liquid to obtain the plant extract; The preparation process of the boiler treatment agent is as follows: Step 1: Pour the bamboo vinegar and the plant extract into the processing mechanism (1), and perform a processing operation at 25° C. and 200 r / min for 30 minutes to obtain a mixed solution of boiler treatment agent raw materials; Step 2: dripping the mixed solution of boiler treatment agent raw materials in step 1 into the dried wood pulp cotton in sequence; Step 3: Cut the treated wood pulp cotton into strips with a diameter of 1 cm slightly larger than the inner diameter of the ceramic ring, gently press them into the ceramic ring, and leave the excess length evenly exposed on both sides of the ceramic ring to obtain the boiler treatment agent.

2. A boiler treatment agent according to claim 1, characterized in that: The processing mechanism (1) comprises a processing component (2) and a mixing component (3) rotatably engaged with the processing component (2); The processing assembly (2) comprises a processing member (4) and a flip member (5) rotatably engaged with the processing member (4); The processing member (4) comprises a mounting bottom ring (401), a J-shaped vertical plate (402) is fixed on the top of the mounting bottom ring (401), a limiting cylinder (403) is fixed on the top of the J-shaped vertical plate (402), a first motor (404) is fixed on the inner wall of the J-shaped vertical plate (402), an output shaft of the first motor (404) is located outside the J-shaped vertical plate (402), a rotating disk (405) is fixed, and a shifting rod (406) is fixed on the side of the rotating disk (405) at a position eccentric to the axis.

3. A boiler treatment agent according to claim 2, characterized in that: The flipping member (5) comprises a rotating shaft (501) rotatably engaged inside the limiting cylinder (403), a threaded column (502) being fixed at one end of the rotating shaft (501), a circumferential side surface of the threaded column (502) being threadedly connected to a limiting nut (503), a guide rail (504) being fixed at the other end surface of the rotating shaft (501), a T-shaped slide rail (505) being slidably engaged inside the guide rail (504), an L-shaped flipping plate (506) being fixed at the top of the T-shaped slide rail (505), and a flipping arc plate (507) being fixed at the bottom of the L-shaped flipping plate (506); The side surface of the T-shaped slide rail (505) is penetrated by a circular hole (508) which is rotatably engaged with the peripheral side surface of the shifting rod (406).

4. A boiler treatment agent according to claim 3, characterized in that: Two symmetrical supporting vertical plates (407) are fixed on the top of the mounting bottom ring (401), and a positioning ring (408) is fixed on the top of the two supporting vertical plates (407). The positioning ring (408) is provided with two symmetrical T-shaped grooves (409), and the two T-shaped grooves (409) are both slidably matched with T-shaped sliding rails (410). An extension plate (411) is fixed on one side of the T-shaped sliding rail (410), and a positioning arc plate (412) is fixed on the side of the extension plate (411) inside the positioning ring (408), and the inner wall of the positioning arc plate (412) is provided with an arc-shaped rotation groove (413).

5. A boiler treatment agent according to claim 4, characterized in that: An L-shaped bottom plate (414) is fixed to the side opposite to the top of the two supporting vertical plates (407), and a threaded rod (415) is threadedly connected to the side of the L-shaped bottom plate (414). The end of the threaded rod (415) is located inside the T-shaped groove (409) and is fixed with an extrusion ball (416) that fits the T-shaped sliding rail (410). A return spring (417) that is sleeved and fitted on the threaded rod (415) is fixed between the T-shaped sliding rail (410) and the L-shaped bottom plate (414).

6. A boiler treatment agent according to claim 5, characterized in that: The mixing assembly (3) comprises a rotating ring (301) rotatably engaged between two arc-shaped rotating grooves (413), a conical outer sleeve (302) located inside a positioning ring (408) being fixed to the inner wall of the rotating ring (301), and a mixing tank (303) being fixed to the top of the conical outer sleeve (302).

7. A boiler treatment agent according to claim 6, characterized in that: The outer bottom of the mixing pool (303) is located inside the conical outer sleeve (302) and is connected to a dripping tube (304). The bottom of the dripping tube (304) passes through the inner bottom of the conical outer sleeve (302), and the dripping tube (304) extends downward. A flow control valve (305) is fixed on the side surface of the dripping tube (304).

8. A boiler treatment agent according to claim 7, characterized in that: A protruding bottom plate (418) is fixed on one side of the supporting vertical plate (407) below the positioning ring (408), a U-shaped seat (419) is fixed on the side of the protruding bottom plate (418), a second motor (420) is fixed on an outer side of the U-shaped seat (419), an output shaft of the second motor (420) passes through an outer side of the U-shaped seat (419), and the output shaft of the second motor (420) is located inside the U-shaped seat (419), the output shaft of the second motor (420) is rotatably matched with the U-shaped seat (419), and a worm (421) is fixed on the output shaft of the second motor (420); A worm wheel ring (306) adapted to the worm (421) is fixed on the outer wall of the conical outer sleeve (302) below the rotating ring (301).