Energy-saving honey decrystallization device

By reducing energy consumption through steam heating components and a circulation system, the problem of high energy consumption in honey crystallization devices has been solved, achieving efficient heating without damaging the nutritional components of honey.

CN223517481UActive Publication Date: 2025-11-07ANHUI FENGXIAN BEE IND
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Patent Information

Application Number
CN202423010867.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-11-07
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Existing honey crystallization heating devices are energy-intensive and direct heating leads to high processing costs, and the nutrients in honey are decomposed and deteriorated by high temperatures.

Method used

It employs a steam heating component, a steam circulation component, and a steam input component. After being cooled by the steam box, the steam enters the heating plate to heat the honey. Excess steam is pumped into the circulation chamber to form a stable heating flow, thus avoiding the impact of high temperature on the quality of the honey.

Benefits of technology

It reduces energy consumption, improves heat utilization efficiency, prevents the deterioration of honey nutrients, and reduces processing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of honey decrystallization, in particular to an energy-saving honey decrystallization device. According to the technical scheme, the energy-saving honey decrystallization device comprises a steam heating assembly, a steam circulating assembly and a steam input assembly, a steam circulating assembly is arranged at the rear end of the steam heating assembly; high-temperature steam led in from the outside is cooled once through the steam box, the situation that the quality of honey is affected due to the fact that the temperature of the steam is too high is avoided, then the steam enters the steam heating disc along with the feeding pump to be sprayed out upwards, and a honey pot placed above the steam heating disc is heated and dissolved; redundant steam enters the steam circulation bin and then is pumped into the steam circulation bin at the other end through the steam circulation pump, so that steam flow in the steam heating assembly forms stable heating flow, the steam heat utilization efficiency is improved, and energy consumption is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to honey uncrystallization technical field, concretely relates to a kind of energy-saving honey uncrystallization device. BACKGROUND

[0002] Honey is easy to crystallize during storage, which is not conducive to the processing, sub-packaging and sales of honey. Crystallization is a normal physical change of honey, which does not affect its chemical composition and nutritional value, but affects its sensory properties and shelf performance.

[0003] The existing honey uncrystallization heating device, such as direct hot melting heating method, has high energy consumption and high heating temperature when directly heating honey. The honey temperature is difficult to control accurately, which can easily damage the effective components of honey, such as reducing enzyme activity and darkening color, resulting in a decrease in honey quality. In addition, long-term high-temperature treatment can also destroy vitamins, proteins, inhibin and aromatic substances in honey, which not only increases the processing cost, but also reduces the nutritional value of honey.

[0004] Therefore, in view of the above-mentioned existing honey uncrystallization heating device, because of its high energy consumption and direct heating of honey, the processing cost is high and the nutritional substances of honey are decomposed and deteriorated by high temperature. An energy-saving honey uncrystallization device can be designed. UTILITY MODEL CONTENTS

[0005] In order to overcome the problem of the existing honey uncrystallization heating device, because of its high energy consumption and direct heating of honey, the processing cost is high and the nutritional substances of honey are decomposed and deteriorated by high temperature.

[0006] The technical scheme of the utility model is as follows: an energy-saving honey uncrystallization device, comprising a steam heating assembly, a steam circulation assembly and a steam input assembly. The rear end of the steam heating assembly is provided with the steam circulation assembly. The lower end of the steam heating assembly is provided with the steam input assembly. The steam heating assembly comprises a steam cover, a steam heating disc, a bin cover, a steam circulation bin and a bin cover cylinder. The steam circulation assembly comprises a steam circulation pump and a high-temperature resistant steam pipe. The steam input assembly comprises a steam tank, a steam filter pipe, a feeding pump and a steam input end.

[0007] Preferably, the high-temperature steam introduced from outside is first cooled by the steam tank to prevent the steam temperature from being too high to affect the quality of honey. Then the steam enters the steam heating disc through the feeding pump and is sprayed upwards to heat and dissolve the honey tank placed above the steam heating disc. The excess steam enters the steam circulation bin and is pumped into the other end of the steam circulation bin by the steam circulation pump, so that the steam flow in the steam heating assembly forms a stable heating flow, thereby improving the steam heat utilization efficiency and reducing energy consumption. The problem of the existing honey uncrystallization heating device, because of its high energy consumption and direct heating of honey, the processing cost is high and the nutritional substances of honey are decomposed and deteriorated by high temperature, is solved.

[0008] Preferably, the inner part of the steam cover is provided with a steam heating disc; the upper end of the steam cover is provided with a cover, and the cover is hingedly connected to the steam cover.

[0009] Preferably, the two sides of the cover are provided with steam circulation bins, and the inner side of the steam circulation bin is provided with a vent hole.

[0010] Preferably, the rear end of the steam cover is provided with a steam circulation pump; the input end and the output end of the steam circulation pump are provided with high-temperature-resistant steam pipes, and the high-temperature-resistant steam pipes are respectively in communication with the interiors of the two steam circulation bins.

[0011] Preferably, the lower end of the steam cover is provided with a feeding pump, and the output end of the feeding pump is connected with a pipeline below the steam heating disc.

[0012] Preferably, the input end of the feeding pump is provided with a steam tank; the inner part of the steam tank is provided with steam filter pipes, the upper end surface of the steam filter pipe is uniformly distributed with filter air holes, and one end of the steam filter pipe is in communication with the input end of the feeding pump.

[0013] Preferably, the rear end of the steam tank is provided with a steam input end, and the steam input end is in communication with the inner part of the steam tank, and the steam input end is in communication with an external high-temperature steam source.

[0014] The beneficial effects of the utility model are as follows:

[0015] 1. The existing honey uncrystallization heating device has the problems of high energy consumption and directly heating the honey, resulting in high processing cost and decomposition of honey nutrients due to high temperature. The high-temperature steam introduced from outside is first cooled by the steam tank to prevent the steam temperature from being too high to affect the quality of the honey. Then the steam enters the steam heating disc through the feeding pump and is sprayed upwards to heat and dissolve the honey tank placed above the steam heating disc. The excess steam enters the steam circulation bin and is pumped into the other end of the steam circulation bin by the steam circulation pump, so that the steam flow in the steam heating assembly forms a stable heating flow, thereby improving the steam heat utilization efficiency and reducing the energy consumption.

[0016] 2. By arranging the steam filter pipe, the steam entering the steam tank enters from the upper end surface filter hole of the steam filter pipe, so that the particulate matter in the steam is filtered to prevent impurities in the steam from polluting the honey. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 The overall three-dimensional structure of the energy-saving honey uncrystallization device is shown.

[0018] Figure 2 The whole rear view solid structure schematic diagram of the energy-saving honey de-crystallization device is shown.

[0019] Figure 3 The inside solid structure schematic diagram of the steam box of the energy-saving honey de-crystallization device is shown.

[0020] Figure 4 The solid structure schematic diagram of the steam heating disc of the energy-saving honey de-crystallization device is shown.

[0021] The marks in the drawings are: 1, steam heating assembly; 2, steam circulation assembly; 3, steam input assembly; 101, steam cover; 102, steam heating disc; 103, bin cover; 104, steam circulation bin; 105, bin cover air cylinder; 201, steam circulation pump; 202, high-temperature-resistant steam pipe; 301, steam box; 302, steam filter pipe; 303, feeding pump; 304, steam input end. DETAILED DESCRIPTION

[0022] The utility model is further explained in connection with the drawings and examples.

[0023] Please refer to Figures 1-4 The utility model provides an energy-saving honey de-crystallization device, including steam heating assembly 1, still including steam circulation assembly 2, steam input assembly 3, the rear end of steam heating assembly 1 is provided with steam circulation assembly 2, the lower end of steam heating assembly 1 is provided with steam input assembly 3, steam heating assembly 1 includes steam cover 101, steam heating disc 102, bin cover 103, steam circulation bin 104, bin cover air cylinder 105, steam circulation assembly 2 includes steam circulation pump 201, high-temperature-resistant steam pipe 202, steam input assembly 3 includes steam box 301, steam filter pipe 302, feeding pump 303, steam input end 304.

[0024] Please refer to Figures 1-4In the embodiment, the inside of the steam cover 101 is provided with a steam heating disc 102; the upper end of the steam cover 101 is provided with a cover 103, and the cover 103 is hingedly connected with the steam cover 101; both sides of the cover 103 are provided with steam circulation bins 104, and the inside of the steam circulation bin 104 is provided with air holes; the rear end of the steam cover 101 is provided with a steam circulation pump 201; the input end and the output end of the steam circulation pump 201 are provided with high-temperature-resistant steam pipes 202, and the high-temperature-resistant steam pipes 202 are respectively in communication with the interiors of the two steam circulation bins 104; the lower end of the steam cover 101 is provided with a feeding pump 303, and the output end of the feeding pump 303 is connected with a pipeline below the steam heating disc 102; the input end of the feeding pump 303 is provided with a steam tank 301; the inside of the steam tank 301 is provided with steam filter pipes 302, the upper end faces of the steam filter pipes 302 are uniformly distributed with filter air holes, one end of the steam filter pipe 302 is in communication with the input end of the feeding pump 303; the rear end of the steam tank 301 is provided with a steam input end 304, the steam input end 304 is in communication with the inside of the steam tank 301, and the steam input end 304 is in communication with an external high-temperature steam source.

[0025] In operation, the high-temperature steam introduced from outside is first cooled by the steam tank 301 to prevent the high temperature of the steam from affecting the quality of the honey, and then the steam enters the steam heating disc 102 through the feeding pump 303 and is sprayed upward to heat and dissolve the honey tank placed above the steam heating disc 102, and the excess steam enters the steam circulation bin 104 and is pumped into the other end of the steam circulation bin 104 by the steam circulation pump 201, so that the steam flow in the steam heating assembly 1 forms a stable heating flow, thereby improving the steam heat utilization efficiency and reducing energy consumption; The existing honey uncrystallization heating device solves the problems of high energy consumption and direct heating of honey, resulting in high processing cost and decomposition of honey nutrients by high temperature.

[0026] Then, the steam entering the steam tank 301 enters from the upper end face filter holes of the steam filter pipes 302, so as to filter the particulate matter in the steam and prevent impurities in the steam from polluting the honey.

[0027] Through the above steps, the high-temperature steam introduced from outside is cooled once by the steam tank 301 to prevent the steam temperature from being too high to affect the quality of the honey, and then the steam enters the steam heating disc 102 through the feeding pump 303 and is sprayed upwards to heat and dissolve the honey tank placed above the steam heating disc 102, and the excess steam enters the steam circulation bin 104 and is pumped into the steam circulation bin 104 at the other end by the steam circulation pump 201, so that the steam flow in the steam heating assembly 1 forms a stable heating flow, thereby improving the steam heat utilization efficiency and reducing the energy consumption, and avoiding the existing honey deliquescence heating device, which has the problems of high processing cost and decomposition and deterioration of the nutrients of the honey due to high-temperature heating.

[0028] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range possessed by the person skilled in the art without departing from the purpose of the utility model.

Claims

1. An energy saving honey de-crystallization apparatus comprising a steam heating assembly (1), characterized in that: Also include a steam cycle assembly (2), steam input assembly (3); the rear end of the steam heating assembly (1) is provided with steam cycle assembly (2); the lower end of the steam heating assembly (1) is provided with steam input assembly (3); the steam heating assembly (1) includes steam cover (101), steam heating disc (102), cover (103), steam circulation bin (104), cylinder (105); the steam cycle assembly (2) includes steam circulation pump (201), high temperature resistant steam pipe (202); the steam input assembly (3) includes steam tank (301), steam filter pipe (302), feeding pump (303), steam input end (304).

2. The energy saving honey de-crystallization apparatus as claimed in claim 1, wherein: The inside of the steam cover (101) is provided with steam heating disc (102); the upper end of the steam cover (101) is provided with the cover (103), and the cover (103) and the steam cover (101) are hingedly connected.

3. The energy saving honey de-crystallization apparatus as claimed in claim 2, wherein: Both sides of the cover (103) are provided with steam circulation bin (104), and the inside of the steam circulation bin (104) is provided with air hole.

4. The energy saving honey de-crystallization apparatus as claimed in claim 1, wherein: The rear end of the steam cover (101) is provided with steam circulation pump (201); the input end and the output end of the steam circulation pump (201) are provided with high temperature resistant steam pipe (202), and the high temperature resistant steam pipe (202) is respectively communicated with the inside of the two steam circulation bins (104).

5. The energy saving honey de-crystallization apparatus as claimed in claim 1, wherein: The lower end of the steam cover (101) is provided with feeding pump (303), and the output end of the feeding pump (303) is connected with the pipeline below the steam heating disc (102).

6. The energy saving honey de-crystallization apparatus as claimed in claim 5, wherein: The input end of the feeding pump (303) is provided with steam tank (301); the inside of the steam tank (301) is provided with steam filter pipe (302), and the upper end surface of the steam filter pipe (302) is uniformly distributed; one end of the steam filter pipe (302) is communicated with the input end of the feeding pump (303).

7. The energy saving honey de-crystallization apparatus as claimed in claim 6, wherein: The rear end of the steam tank (301) is provided with steam input end (304), and the steam input end (304) is communicated with the inside of the steam tank (301), and the steam input end (304) is communicated with the outside high temperature steam source.

Citation Information

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