CN210154266U - Drying device - Google Patents

Drying device Download PDF

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Publication number
CN210154266U
CN210154266U CN201920615135.7U CN201920615135U CN210154266U CN 210154266 U CN210154266 U CN 210154266U CN 201920615135 U CN201920615135 U CN 201920615135U CN 210154266 U CN210154266 U CN 210154266U
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group
drying
conveying
box body
hot air
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CN201920615135.7U
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于方兆
李望东
郭建谊
古群红
陈创华
谢小意
盘润洪
刘湘
李勇
骆明飞
刘强
丁唯
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Zhuhai modern agricultural development center
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Zhuhai modern agricultural development center
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Abstract

The utility model discloses a drying device, which comprises a drying group, a conveying group and a purifying group, wherein the drying group is provided with a drying box body, the purifying group is communicated with the drying box body, the purifying group is used for sucking and purifying waste gas in the drying box body, the conveying group is arranged in the drying box body in a penetrating way, and the conveying group is distributed in the drying box body in a snake shape; the drying box is internally provided with a hot air assembly, and the hot air assembly can provide hot air for materials on the conveying group. According to the drying device, the conveying group is arranged on the drying box body to carry out production line type drying, so that the drying and conveying efficiency is improved; the conveying groups are distributed in a snake shape in the drying box body, so that the volume of the drying box body is reduced, and meanwhile, materials can be fully dried in a limited space. According to the fish airing device, the hot air component is used for blowing hot air for airing, so that the odor of the dead fish of the diseased fish can be brought away, and meanwhile, the dead fish of the diseased fish can be aired; in addition, utilize the purification group to aspirate and purify the waste gas in the stoving box, improve the environmental protection degree.

Description

Drying device
Technical Field
The utility model relates to an aquatic products processing technology field especially relates to a drying device.
Background
In the current aquaculture, the aquaculture is easily affected by the outside, such as sudden change of weather, pollution of water quality or outbreak of plant diseases and insect pests, and large-scale diseased fish or dead fish inevitably occur due to the factors. The traditional method for treating the dead fishes caused by the diseases adopts a pollution-free landfill mode, but the pollution-free landfill mode has the defects that the landfill occupied space is large, the decay is slow in the later period, and if the decay process is unqualified, the pollution event is easy to occur, although the pollution-free landfill has the defects, the method is simple and convenient, the cost is low, and the method can become the mainstream of aquaculture treatment on the dead fishes caused by the diseases.
However, the uncontrollable property of directly burying the dead fish of the diseased fish and the environment-friendly property of the burying treatment mode are not good, so that the pollution-free treatment of the equipment capable of effectively treating the dead fish of the diseased fish is urgently needed in the aquaculture industry at present. Some pioneer enterprises in the industry develop equipment for drying, recovering and finely processing the fish died of the diseased fish, and fish meal obtained by finely processing can be used as animal protein or other organic fertilizers after being disinfected, so that a new way is provided for the traditional treatment of the fish died of the diseased fish. However, the existing recovery treatment mode still has the problems of poor drying effect and serious waste gas pollution in the drying link.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a simple structure, the drying effect is good, is favorable to the drying device of environmental protection.
The utility model provides a technical scheme that its technical problem adopted does:
a drying device comprises a drying group, a conveying group and a purifying group, wherein the drying group is provided with a drying box body, the purifying group is communicated with the drying box body, the purifying group is used for sucking and purifying waste gas in the drying box body, the conveying group penetrates through the drying box body, and the conveying group is distributed in the drying box body in a snake shape; the drying box is internally provided with a hot air assembly, and the hot air assembly can provide hot air for materials on the conveying group.
As an improvement of the technical scheme, the conveying group comprises an input conveying belt, a transfer conveying belt and an output conveying belt, the input conveying belt, the transfer conveying belt and the output conveying belt are stacked and installed in the drying box body from top to bottom along a snake shape, and the transfer conveying belt can convey materials on the input conveying belt to the output conveying belt.
As an improvement of the technical scheme, the bottom of the drying box body is provided with a heating chamber, the hot air assembly comprises hot air pipelines and a suction pump, the hot air pipelines are communicated with the heating chamber through the suction pump, the hot air pipelines are provided with two groups and are respectively arranged on two sides of the conveying group, and the hot air pipelines are provided with nozzles facing the conveying group.
As an improvement of the technical scheme, the hot air pipelines are arranged above the two sides of the conveying group in an inclined mode, and the nozzles point to the conveying group in an inclined downward mode.
As an improvement of the technical scheme, a heating rod is arranged in the heating chamber, and an air inlet is arranged in the heating chamber.
As an improvement of the technical scheme, the drying box body is provided with a feeding hole and a discharging hole, one input end of the input conveyor belt extends out of the feeding hole, and one output end of the output conveyor belt extends out of the discharging hole; and the feed inlet and the discharge outlet are respectively provided with a baffle curtain.
As the improvement of above-mentioned technical scheme, purification group includes clean room, the dust chamber and the deodorization chamber of setting in the clean room, filter component and ozone generator, the clean room passes through the top of negative pressure suction tube intercommunication stoving box, the dust chamber passes through filter screen and negative pressure suction tube intercommunication, the gas outlet in dust chamber is connected through filter component in the deodorization chamber, ozone generator installs in the deodorization intracavity, be provided with the active carbon adsorption layer on the gas outlet in deodorization chamber.
As an improvement of the technical proposal, the lower end of the dust cavity is provided with an ash discharge valve
The beneficial effects of the utility model are that:
according to the drying device, the conveying group is arranged on the drying box body to carry out production line type drying, so that the drying and conveying efficiency is improved; the conveying groups are distributed in a snake shape in the drying box body, so that the volume of the drying box body is reduced, and meanwhile, materials can be fully dried in a limited space. According to the fish airing device, the hot air component is used for blowing hot air for airing, so that the odor of the dead fish of the diseased fish can be brought away, and meanwhile, the dead fish of the diseased fish can be aired; in addition, utilize the purification group to aspirate and purify the waste gas in the stoving box, improve the environmental protection degree.
Drawings
The present invention will be further described with reference to the accompanying drawings and specific embodiments, wherein:
fig. 1 is a schematic structural diagram of an embodiment of the present invention;
fig. 2 is a partial structural schematic diagram of an embodiment of the present invention;
fig. 3 is a cross-sectional view of an embodiment of the invention.
Detailed Description
Referring to fig. 1 to 3, the drying device of the present invention includes a drying group 1, a conveying group 2 and a purifying group 3, wherein the drying group 1 is provided with a drying box 11, the purifying group 3 is communicated with the drying box 11, the purifying group 3 is used for sucking and purifying waste gas in the drying box 11, the conveying group 2 is arranged in the drying box 11 in a penetrating manner, and the conveying group 2 is distributed in the drying box 11 in a serpentine shape; and a hot air assembly 4 is arranged in the drying box body 11, and the hot air assembly 4 can provide hot air for materials on the conveying group 2. In this application, because carrying out the dry sick fish and dying the fish, obviously the fish that dies of sick fish all still contains a large amount of moisture, directly influences dry efficiency, consequently can be provided with in the stoving box 11 and air-dry district and main drying area in advance, and the air-dry district can adopt the waste heat gas of living air-dry district to air-dry in advance, and such can reduce the energy consumption, can improve the efficiency of drying simultaneously effectively. Of course, the cleaning group 3 is obviously sucking the exhaust air of the pre-drying zone.
Furthermore, in order to better dry, a heating chamber 12 is arranged at the bottom of the drying box body 11, a heating rod is arranged in the heating chamber 12, and an air inlet is arranged in the heating chamber 12. If for better energy saving, the heating chamber 12 can also be used for drying by using heat from fuel combustion, such as garbage or already dried diseased and dead fish, which can effectively reduce the drying cost. The dried seat fuel for dead fishes can effectively and continuously dry the seat fuel, and the drying cost can be reduced.
In order to improve the drying efficiency, the hot air assembly 4 includes the hot air pipeline 41 and the suction pump 42 in the present application, the hot air pipeline 41 is communicated with the heating chamber 12 through the suction pump 42, the hot air pipeline 41 is provided with two sets, and is respectively arranged on two sides of the conveying group 2, and the hot air pipeline 41 is provided with a nozzle facing the conveying group 2. The suction pump 42 may be a conventional pump body for sucking fluid, and a heating circuit may be added to the hot air pipeline 41 to improve the drying efficiency. Wherein, the hot air pipeline 41 is arranged at the two sides of the conveying group 2 obliquely above, and the nozzles are obliquely downwards directed to the conveying group 2. The nozzle directly blows hot-blast on sick fish and dead fish body for hot-blast more direct contact sick fish dies the fish, can blow in the broken rotten or notched health of dead fish disease fish well simultaneously, raises the efficiency.
Further, the conveying group 2 comprises an input conveying belt 21, a transfer conveying belt 22 and an output conveying belt 23, wherein the input conveying belt 21, the transfer conveying belt 22 and the output conveying belt 23 are stacked in a serpentine shape from top to bottom in the drying box body 11, and the transfer conveying belt 22 can convey the materials on the input conveying belt 21 to the output conveying belt 23. It should be noted that, in the present application, the input conveyor 21, the transfer conveyor 22, and the output conveyor 23 are all metal chain conveyors, which can ensure normal operation at high temperature. Since the plurality of conveyors in the conveying group 2 are stacked in a serpentine shape from top to bottom in the present application, the pre-air drying area in the foregoing is on the uppermost surface of the drying box 11 for matching the position of the input conveyor 21, and since the heating chamber 12 is on the bottom of the drying box 11, the temperature of the whole drying box 11 is the highest relatively to the temperature of the bottom, which also conforms to the whole drying sequence and reduces the energy consumption.
For this purpose, the drying box body 11 is provided with a feeding hole 13 and a discharging hole 14, one input end of the input conveyor belt 21 extends out of the feeding hole 13, and one output end of the output conveyor belt 23 extends out of the discharging hole 14; and the feed inlet 13 and the discharge outlet 14 are both provided with a baffle curtain 15. The curtain 15 can effectively ensure the heat air flow of the whole drying box body 11, reduce energy consumption and prevent the waste gas from polluting the environment.
Referring to fig. 3, in order to better illustrate that the purification group 3 includes a purification chamber 31, a dust chamber 32 and a deodorization chamber 33 which are arranged in the purification chamber 31, a filter member 34 and an ozone generator 35, the purification chamber 31 is communicated with the top of the drying box body 11 through a negative pressure suction pipe, the dust chamber 32 is communicated with the negative pressure suction pipe through a filter screen, the deodorization chamber 33 is connected with an air outlet of the dust chamber 32 through the filter member 34, the ozone generator 35 is arranged in the deodorization chamber 33, and an activated carbon adsorption layer is arranged on the air outlet of the deodorization chamber 33. The dust discharging valve 36 is disposed at the lower end of the dust chamber 32, so that dust deposited in the dust chamber 32 can be removed well. The ozone generator 35 mainly functions to oxidize malodorous components in the exhaust gas, such as odorous gases like hydrogen sulfide; the odor generated by putrefaction of dead fish of diseased fish is mainly hydrogen sulfide and ammonia gas, and other gases such as methyl mercaptan, methylamine and methyl sulfide can be treated by adsorption or ozone oxidation.
According to the drying device, the conveying group 2 is arranged on the drying box body 11 for carrying out assembly line type drying, so that the drying and conveying efficiency is improved; the conveying group 2 is distributed in a snake shape in the drying box body 11, the volume of the drying box body 11 is reduced, and meanwhile materials can be fully dried in a limited space. According to the fish drying device, the hot air component 4 is used for blowing hot air for drying, so that the odor of the dead fish of the diseased fish can be brought away, and meanwhile, the dead fish of the diseased fish can be dried; in addition, the purification group 3 is used for sucking and purifying the waste gas in the drying box body 11, and the environmental protection degree is improved.
The above description is only a preferred embodiment of the present invention, but the present invention is not limited to the above embodiments, and the technical effects of the present invention should be all included in the protection scope of the present invention as long as the technical effects are achieved by any of the same or similar means.

Claims (8)

1. The utility model provides a drying device which characterized in that: the device comprises a drying group, a conveying group and a purifying group, wherein the drying group is provided with a drying box body, the purifying group is communicated with the drying box body, the purifying group is used for sucking and purifying waste gas in the drying box body, the conveying group penetrates through the drying box body, and the conveying group is distributed in the drying box body in a snake shape; the drying box is internally provided with a hot air assembly, and the hot air assembly can provide hot air for materials on the conveying group.
2. A drying apparatus as claimed in claim 1, wherein: the conveying set comprises an input conveying belt, a transfer conveying belt and an output conveying belt, the input conveying belt, the transfer conveying belt and the output conveying belt are arranged in the drying box body from top to bottom along a snake-shaped stack, and the transfer conveying belt can convey materials on the input conveying belt to the output conveying belt.
3. A drying apparatus as claimed in claim 1, wherein: the drying oven is characterized in that a heating chamber is arranged at the bottom of the drying oven body, the hot air assembly comprises hot air pipelines and a suction pump, the hot air pipelines are communicated with the heating chamber through the suction pump, the hot air pipelines are arranged in two groups and are respectively arranged on two sides of the conveying group, and nozzles facing the conveying group are arranged on the hot air pipelines.
4. A drying apparatus according to claim 3, wherein: the hot air pipeline is arranged above the two sides of the conveying group in an inclined mode, and the spray nozzles point to the conveying group in an inclined downward mode.
5. A drying apparatus according to claim 3, wherein: and a heating rod is arranged in the heating chamber, and an air inlet is arranged in the heating chamber.
6. A drying apparatus according to claim 2, wherein: the drying box body is provided with a feeding hole and a discharging hole, one end of the input conveyor belt extends out of the feeding hole, and one end of the output conveyor belt extends out of the discharging hole; and the feed inlet and the discharge outlet are respectively provided with a baffle curtain.
7. A drying apparatus according to any one of claims 1 to 6, characterised in that: purification group includes clean room, sets up dust chamber and deodorization chamber, filter component and ozone generator in the clean room, the clean room passes through the top of negative pressure suction tube intercommunication stoving box, the dust chamber passes through filter screen and negative pressure suction tube intercommunication, the gas outlet in filter component connection dust chamber is passed through in the deodorization chamber, ozone generator installs in the deodorization intracavity, be provided with the active carbon adsorption layer on the gas outlet in deodorization chamber.
8. A drying apparatus according to claim 7, wherein: and the lower end of the dust cavity is provided with an ash discharge valve.
CN201920615135.7U 2019-04-29 2019-04-29 Drying device Active CN210154266U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920615135.7U CN210154266U (en) 2019-04-29 2019-04-29 Drying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920615135.7U CN210154266U (en) 2019-04-29 2019-04-29 Drying device

Publications (1)

Publication Number Publication Date
CN210154266U true CN210154266U (en) 2020-03-17

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ID=69758137

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920615135.7U Active CN210154266U (en) 2019-04-29 2019-04-29 Drying device

Country Status (1)

Country Link
CN (1) CN210154266U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114562867A (en) * 2022-03-04 2022-05-31 温州市金榜轻工机械有限公司 Solid dryer for efficiently recycling hydrogen fluoride in lithium fluoride in vacuum system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114562867A (en) * 2022-03-04 2022-05-31 温州市金榜轻工机械有限公司 Solid dryer for efficiently recycling hydrogen fluoride in lithium fluoride in vacuum system

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