CN213984701U - A device for reusing waste gas heat energy from a kitchen waste processor - Google Patents
A device for reusing waste gas heat energy from a kitchen waste processor Download PDFInfo
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- CN213984701U CN213984701U CN202022680948.XU CN202022680948U CN213984701U CN 213984701 U CN213984701 U CN 213984701U CN 202022680948 U CN202022680948 U CN 202022680948U CN 213984701 U CN213984701 U CN 213984701U
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Abstract
The utility model discloses a kitchen garbage processor waste gas heat energy recycles device. It is including collecting the storehouse, collection storehouse including admitting air chamber, waste gas chamber and the waste gas chamber of giving vent to anger, the chamber of admitting air arrange waste gas chamber and waste gas between giving vent to anger the chamber, the left side in chamber of admitting air is equipped with the air intake pipe, the right side in chamber of admitting air is equipped with the air outlet duct, waste gas admit air and be equipped with the waste gas intake pipe on the chamber, waste gas go out to be equipped with the waste gas outlet duct on the chamber, the intracavity of admitting air be equipped with a plurality of capillaries, waste gas chamber of admitting air pass through capillary and waste gas and go out the chamber intercommunication. The utility model has the advantages that: the heat in the waste gas can be fully utilized, the utilization rate of energy is improved, the heat energy conversion efficiency of the capillary tube is improved, the condensation phenomenon is prevented, and the device is sanitary and environment-friendly.
Description
Technical Field
The utility model relates to a kitchen garbage handles relevant technical field, especially indicates a kitchen garbage processor waste gas heat energy recycles device.
Background
Kitchen waste treatment equipment, waste treatment equipment capable of using the product as a pet feed additive or a flower fertilizer product. The basic principle of kitchen waste treatment is that various enzymes are generated by using microbial degradation bacteria, classified organic waste (such as fruits, vegetables, vegetable leaves, vegetable roots, food residues, chicken, duck, fish and meat waste, shrimp and crab shells, egg shells, bones, swill and the like) can be quickly decomposed, and even intractable waste which is difficult to treat also has a decomposition effect of marmoset. After the operation parameters are set, the device can automatically operate for 24 hours, 95% of organic garbage is metabolized into water vapor and biological heat energy within 4 hours and is discharged up to the standard, 5% of solid discharge can be used as organic fertilizer for fruit and vegetable cultivation, the whole treatment process is pollution-free, and secondary pollution is avoided. The method conforms to the principle of 'reduction, harmlessness and recycling' on-site treatment of national garbage treatment. The kitchen waste disposer is suitable for source places of organic waste generation such as hotels, restaurants, residential districts, vegetable markets, food processing factories, airports, ships and the like. After the existing kitchen waste is treated, heat energy is directly discharged after decomposition of the existing kitchen waste is finished, and the heat energy cannot be effectively utilized.
SUMMERY OF THE UTILITY MODEL
The utility model provides a kitchen garbage disposer waste gas heat energy recycling device that can make full use of heat energy in order to overcome the shortcomings of the prior art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a kitchen garbage processor waste gas heat energy recycles device, includes collects the storehouse, collection storehouse including admitting air chamber, waste gas admit air chamber and waste gas play the air cavity, the chamber of admitting air arrange waste gas admit air chamber and waste gas and go out between the air cavity, the left side in the chamber of admitting air is equipped with the air intake pipe, the right side in the chamber of admitting air is equipped with the air outlet duct, waste gas admit air and be equipped with the waste gas intake pipe on the chamber, waste gas play the air cavity and be equipped with the waste gas outlet duct, the intracavity of admitting air be equipped with a plurality of capillaries, waste gas admit air the chamber and go out the air cavity intercommunication through capillary and waste gas.
Through the design of the air inlet cavity, fresh air enters the air inlet cavity through the air inlet pipe and is discharged from the air outlet pipe after being fully contacted with the capillary tube in the air inlet cavity; waste gas generated by the kitchen waste processor enters the waste gas inlet cavity through the waste gas inlet pipe, and the waste gas inlet cavity is communicated with the waste gas outlet cavity through the capillary, so that the waste gas heat passing through the capillary can be fully absorbed when fresh air is fully contacted with the capillary, and then the waste gas after heat absorption enters the waste gas outlet cavity and is discharged through the waste gas outlet pipe; the design can make full use of the heat in the waste gas, and the utilization rate of energy is improved.
Preferably, the air inlet pipe is provided with an air inlet throat pipe, the air inlet throat pipe is internally provided with an air inlet filter plate, and the diameter of the air inlet filter plate is larger than that of the air inlet pipe and is equal to that of the air inlet throat pipe. Through the filter design of admitting air in the intake throat, can once filter fresh air, ensure to enter into fresh air enough clean, prevent that the filth among the fresh air from polluting the capillary and influencing the heat exchange efficiency of capillary, improved the heat energy conversion efficiency of capillary.
Preferably, the air outlet pipe is provided with a secondary auxiliary heater and an active blower, and the secondary auxiliary heater is arranged between the air inlet cavity and the active blower. Wherein: the secondary auxiliary heater can adopt an electric heating wire. Through the design of secondary auxiliary heater and initiative forced draught blower, can carry out the secondary heating to the air after the heat exchange, can ensure this fresh air's user demand, prevent that fresh air from appearing the condensation phenomenon and influencing fresh air's use in transportation process.
Preferably, the waste gas inlet pipe is provided with a filter chamber, the waste gas inlet pipe is communicated with the waste gas inlet chamber through the filter chamber, the filter chamber is internally provided with a filter baffle and a dust filter plate, the dust filter plate is arranged on the filter baffle, and the diameter of the dust filter plate is larger than that of the waste gas inlet pipe and smaller than the inner diameter of the filter chamber. Through the design of dust filter and filtering baffle, make things convenient for the installation and the dismantlement of dust filter on the one hand, on the other hand can carry out the dust to waste gas and filter, prevents that waste gas from entering into and blockking up the capillary in the capillary to heat energy conversion rate has been improved.
Preferably, the waste gas outlet pipe is provided with an active exhaust fan, and the waste gas outlet cavity is internally provided with a sewage draining outlet. Through the design of the rotary exhaust fan, the circulation efficiency of waste gas can be accelerated, and fresh air can absorb enough heat; and the design of drain can clear up the waste gas and go out the air cavity, has improved the clean and tidy of whole device, has improved the heat exchange efficiency of whole device.
Preferably, the capillary tubes are uniformly distributed in the air inlet cavity, heat exchange fins are arranged on the outer side surfaces of the capillary tubes, and the heat exchange fins are spiral. Through the design of heliciform heat transfer fin, can improve the area of contact between fresh air and the capillary to further improvement heat exchange efficiency.
The utility model has the advantages that: the heat in the waste gas can be fully utilized, the utilization rate of energy is improved, the heat energy conversion efficiency of the capillary tube is improved, the condensation phenomenon is prevented, and the device is sanitary and environment-friendly.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
In the figure: 1. the air-conditioning system comprises an air inlet pipe, 2 parts of an air inlet filter plate, 3 parts of an air inlet throat pipe, 4 parts of a collecting bin, 5 parts of a waste gas inlet cavity, 6 parts of a filtering baffle, 7 parts of a waste gas inlet pipe, 8 parts of a filter cavity, 9 parts of a dust filter plate, 10 parts of an air inlet cavity, 11 parts of an air outlet pipe, 12 parts of an active air feeder, 13 parts of a secondary auxiliary heating heater, 14 parts of heat exchange fins, 15 parts of a capillary pipe, 16 parts of a waste gas outlet cavity, 17 parts of a drain outlet, 18 parts of an active exhaust fan and 19 parts of a waste gas outlet pipe.
Detailed Description
The invention is further described with reference to the accompanying drawings and the detailed description.
In the embodiment of fig. 1, a device is recycled to kitchen garbage processor waste gas heat energy, including collecting storehouse 4, it includes air intake chamber 10 to collect storehouse 4, waste gas air intake chamber 5 and waste gas play air cavity 16, air intake chamber 10 is arranged in between waste gas air intake chamber 5 and the waste gas play air cavity 16, the left side of air intake chamber 10 is equipped with air intake pipe 1, the right side of air intake chamber 10 is equipped with air outlet pipe 11, be equipped with waste gas intake pipe 7 on the waste gas air intake chamber 5, be equipped with waste gas outlet pipe 19 on the waste gas play air cavity 16, be equipped with a plurality of capillaries 15 in the air intake chamber 10, waste gas air intake chamber 105 goes out air cavity 16 intercommunication through capillary 15 and waste gas. The air inlet pipe 1 is provided with an air inlet throat pipe 3, the air inlet throat pipe 3 is internally provided with an air inlet filter plate 2, and the diameter of the air inlet filter plate 2 is larger than that of the air inlet pipe 1 and the diameter of the air inlet throat pipe 3. The air outlet pipe 11 is provided with a secondary auxiliary heater 13 and an active blower 12, and the secondary auxiliary heater 13 is arranged between the air inlet cavity 10 and the active blower 12. Be equipped with filter chamber 8 on the waste gas intake pipe 7, waste gas intake pipe 7 is passed through filter chamber 8 and is admitted air the chamber 105 intercommunication with waste gas, is equipped with filter baffle 6 and dust filter 9 in the filter chamber 8, and on filter baffle 6 was arranged in to dust filter 9, the diameter of dust filter 9 was greater than the diameter of waste gas intake pipe 7 and was less than the internal diameter of filter chamber 8. The waste gas outlet pipe 19 is provided with a driving exhaust fan 18, and the waste gas outlet cavity 16 is provided with a sewage outlet 17. Capillary 15 evenly distributed is in the inside of air inlet chamber 10, is equipped with heat transfer fin 14 on capillary 15's the lateral surface, and heat transfer fin 14's shape is the heliciform.
Wherein: the secondary auxiliary heater 13 may be an electric heating wire. When the kitchen waste treatment device is used, waste gas generated by the kitchen waste treatment device is introduced from the waste gas inlet pipe 7, dust filtration is carried out through the dust filter plate 9 in the filter chamber 8 at first, then the waste gas enters the waste gas inlet chamber 5 and enters the waste gas outlet chamber 16 through the capillary 15, and the active exhaust fan 18 on the waste gas outlet pipe 19 works together at the same time to accelerate the flow of the waste gas so that the waste gas is discharged from the waste gas outlet pipe 19; meanwhile, fresh air is introduced from the air inlet pipe 1 and is filtered by the air inlet filter plate 2 in the air inlet throat pipe 3, so that the air in the air inlet cavity 10 is sufficiently clean, the fresh air is fully contacted with the capillary 15 after entering the air inlet cavity 10, and the spiral heat exchange fins 14 are arranged on the capillary 15, so that heat energy exchange can be fully performed with waste gas in the capillary 15, the fresh air after heat exchange enters the air outlet pipe 11, the secondary auxiliary heating heater 13 is arranged on the air outlet pipe 11 to secondarily heat the fresh air, and the fresh air flows as soon as possible by matching with the active air feeder 12 on the air outlet pipe, so that the heated fresh air is utilized.
Claims (6)
1. The utility model provides a kitchen garbage processor waste gas heat energy recycles device, characterized by, including collecting storehouse (4), collecting storehouse (4) including admitting air chamber (10), waste gas admit air chamber (5) and waste gas go out air cavity (16), admit air chamber (10) arrange waste gas admit air chamber (5) and waste gas go out between air cavity (16), the left side of admitting air chamber (10) is equipped with air intake pipe (1), the right side of admitting air chamber (10) is equipped with air outlet pipe (11), waste gas admit air chamber (5) on be equipped with waste gas intake pipe (7), waste gas go out to be equipped with waste gas outlet pipe (19) on air cavity (16), admit air chamber (10) in be equipped with a plurality of capillaries (15), waste gas admit air chamber (5) through capillary (15) and waste gas chamber (16) intercommunication.
2. The waste gas heat energy recycling device of the kitchen waste disposer as claimed in claim 1, wherein the air inlet pipe (1) is provided with an air inlet throat (3), the air inlet throat (3) is internally provided with an air inlet filter plate (2), and the diameter of the air inlet filter plate (2) is larger than that of the air inlet pipe (1) and is larger than that of the air inlet throat (3).
3. The waste gas heat energy recycling device of the kitchen waste disposer as claimed in claim 1, wherein the air outlet pipe (11) is provided with a secondary auxiliary heater (13) and an active blower (12), and the secondary auxiliary heater (13) is arranged between the air inlet cavity (10) and the active blower (12).
4. The waste gas heat energy recycling device of the kitchen waste disposer as claimed in claim 1, wherein the waste gas inlet pipe (7) is provided with a filter chamber (8), the waste gas inlet pipe (7) is communicated with the waste gas inlet chamber (5) through the filter chamber (8), the filter chamber (8) is internally provided with a filter baffle (6) and a dust filter plate (9), the dust filter plate (9) is arranged on the filter baffle (6), and the diameter of the dust filter plate (9) is larger than that of the waste gas inlet pipe (7) and smaller than the inner diameter of the filter chamber (8).
5. The waste gas heat energy recycling device of the kitchen waste disposer as claimed in claim 1, wherein the waste gas outlet pipe (19) is provided with a driving exhaust fan (18), and the waste gas outlet cavity (16) is provided with a sewage outlet (17).
6. The waste gas heat energy recycling device of the kitchen waste disposer according to claim 1, wherein the capillary tubes (15) are uniformly distributed in the air inlet cavity (10), heat exchange fins (14) are arranged on the outer side surfaces of the capillary tubes (15), and the heat exchange fins (14) are spiral in shape.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202022680948.XU CN213984701U (en) | 2020-11-19 | 2020-11-19 | A device for reusing waste gas heat energy from a kitchen waste processor |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202022680948.XU CN213984701U (en) | 2020-11-19 | 2020-11-19 | A device for reusing waste gas heat energy from a kitchen waste processor |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN213984701U true CN213984701U (en) | 2021-08-17 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202022680948.XU Expired - Fee Related CN213984701U (en) | 2020-11-19 | 2020-11-19 | A device for reusing waste gas heat energy from a kitchen waste processor |
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| CN (1) | CN213984701U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN117771850A (en) * | 2024-02-26 | 2024-03-29 | 多氟多(昆明)科技开发有限公司 | Dust removal heat sink is used in aluminium fluoride production |
-
2020
- 2020-11-19 CN CN202022680948.XU patent/CN213984701U/en not_active Expired - Fee Related
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN117771850A (en) * | 2024-02-26 | 2024-03-29 | 多氟多(昆明)科技开发有限公司 | Dust removal heat sink is used in aluminium fluoride production |
| CN117771850B (en) * | 2024-02-26 | 2024-06-25 | 多氟多(昆明)科技开发有限公司 | Dust removal heat sink is used in aluminium fluoride production |
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| GR01 | Patent grant | ||
| GR01 | Patent grant | ||
| CF01 | Termination of patent right due to non-payment of annual fee | ||
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20210817 |