CN214494239U - Dampproofing storehouse of storing of biological feed - Google Patents
Dampproofing storehouse of storing of biological feed Download PDFInfo
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- CN214494239U CN214494239U CN202120206892.6U CN202120206892U CN214494239U CN 214494239 U CN214494239 U CN 214494239U CN 202120206892 U CN202120206892 U CN 202120206892U CN 214494239 U CN214494239 U CN 214494239U
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- storehouse
- pipe
- biological feed
- air inlet
- feed
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Abstract
The utility model provides a storehouse is stored in biological feed protection against tide, including the storehouse body, the internal lower part in storehouse is provided with ventilative net, ventilative net below sets up the waste gas storehouse, the upper portion of the storehouse body is provided with the inlet pipe, be provided with the feed valve on the inlet pipe, the lower part in the storehouse body is provided with the discharging pipe, be provided with the bleeder valve on the discharging pipe, the discharging pipe is located waste gas storehouse top, the external side in storehouse is provided with the blast pipe, storehouse body top is connected to the one end of blast pipe, the draught fan is connected to the other end, be provided with the house steward of air inlet in stretching into on the storehouse body, house steward of air inlet is in between breather and the inlet pipe. Biological feed is carried to the storehouse internal by the inlet pipe, realizes ventilation through the draught fan, lets in novel air or hot-blast to biological feed inside through air intake house steward. This store storehouse simple structure need not to mix, makes the interior ventilation overall arrangement that forms from interior to exterior, upper and lower together in the storehouse, has increased ventilation effect, has improved exhaust emission efficiency, has guaranteed biological feed's quality.
Description
Technical Field
The utility model relates to a device for being stored to biological feed belongs to biological feed and stores technical field.
Background
The biological feed is produced by using feed raw materials and additives through fermentation engineering, enzyme engineering, protein engineering and genetic engineering, and aims to improve the intestinal flora of animals, improve the immunity of the animals and improve the digestion and utilization rate of the feed.
The biological fermentation feed has an important effect on providing comprehensive nutrition for cultured animals, the fermentation of feed raw materials is carried out in fermentation equipment, various inoculants are needed in the fermentation process, and the higher the fermentation activity of the inoculants is, the better the fermentation activity is. The feeding microbial strains comprise lactic acid bacteria, bifidobacteria, bacillus, yeast, fungi, photosynthetic bacteria and propionibacterium, the lactic acid bacteria, the bacillus and the yeast are commonly used in production, and the feed is mainly used for drinking water, mixing materials, complete materials and feed raw material fermentation of poultry and the like. In the actual fermentation process, different fungi are selected for fermentation according to different raw materials, and various fungi are cooperated and inhibited mutually, so that the effects of degrading fibers, improving the digestibility of the feed, improving the immunity of animals and the like are finally achieved.
Biological feed only can guarantee high-quality under suitable condition storage, but current storage facility all just ventilates at accumulational biological feed top layer and carries out the drying, and inside can cause the moist condition of generating heat, easily causes the caking.
SUMMERY OF THE UTILITY MODEL
The utility model discloses it is not enough to exist to current biological feed storage technique existence, provide a simple structure, convenient operation, need not to mix, to the dampproofing storehouse of storing of accumulational biological feed ventilation drying effectual biological feed.
The utility model discloses a storehouse is stored in biological feed protection against tide adopts following technical scheme:
this store storehouse, including the storehouse body, the internal lower part in storehouse is provided with ventilative net, and ventilative net below sets up the waste gas storehouse, and the upper portion of the storehouse body is provided with the inlet pipe, is provided with the feed valve on the inlet pipe, and the lower part of the storehouse body is provided with the discharging pipe, is provided with the bleeder valve on the discharging pipe, and the discharging pipe is located waste gas storehouse top, and the storehouse external side is provided with the blast pipe, and storehouse body top is connected to the one end of blast pipe, and the draught fan is connected to the other end, is provided with the air inlet house steward that stretches into in on the storehouse body.
The outer end of inlet pipe sets up the feeder hopper, and the feeder hopper can dock with material conveyor to realize automatic feed.
The feed valve and the discharge valve can adopt the existing electric gate valve.
And the exhaust pipe is connected with an air suction pipe communicated with the waste gas bin.
The upper part of the bin body is provided with an air interchanger (such as an internal suction shutter, a ventilator and the like), and the air inlet main pipe is positioned between the air interchanger and the feed pipe.
The air inlet main pipe is provided with an electric heater to realize the blowing-in of hot air.
The air inlet main pipe is provided with an air inlet branch pipe in the bin body, and air outlet holes are distributed in the air inlet branch pipe.
The biological feed is conveyed into the bin body by the feed pipe and is arranged between the ventilating net and the feed pipe. And the induced draft fan is started to suck out the waste gas collected at the top of the bin body and in the waste gas bin through the exhaust pipe, and the fresh air is conveyed by the air interchanger. Novel air can be let in to biological fodder inside through air inlet manifold, realizes cooling and takes a breath. Hot air can be introduced into the biological feed through the air inlet main pipe, so that the dehumidifying effect is achieved.
The utility model discloses simple structure need not to mix, all sets up exhaust gas discharge pipe on the upper portion and the lower part in the storehouse body to distribute vertical ventilation pipe in the internal storage, make the internal form from interior to exterior, ventilation overall arrangement from top to bottom together, increased ventilation effect, improved exhaust gas discharge efficiency, convenient operation, it is effectual to accumulational biological fodder ventilation drying, guaranteed biological fodder's quality.
Drawings
Fig. 1 is the structural principle schematic diagram of the damp-proof storehouse for storing biological feed of the utility model.
In the figure: 1. the air purifier comprises an exhaust pipe, 2 parts of a feed hopper, 3 parts of a feed valve, 4 parts of a feed pipe, 5 parts of a cabin body, 6 parts of a ventilation net, 7 parts of a waste gas cabin, 8 parts of an air suction pipe, 9 parts of an induced draft fan, 10 parts of a discharge pipe, 11 parts of a discharge valve, 12 parts of an air outlet, 13 parts of an air inlet branch pipe, 14 parts of an air inlet main pipe and 15 parts of an air interchanger.
Detailed Description
The utility model discloses a storehouse is stored in biological feed protection against tide, as shown in fig. 1, including the storehouse body 5, the lower part is provided with ventilative net 6 in the storehouse body 5, makes 5 lower parts in the storehouse body separate out a waste gas storehouse 7. The upper portion of storehouse body 5 is provided with inlet pipe 4, is provided with feed valve 3 on the inlet pipe 4, and the outer end of inlet pipe 4 sets up feeder hopper 2, and feeder hopper 2 can dock with material conveyor to realize automatic feed. The lower part of the bin body 5 is provided with a discharge pipe 10, the discharge pipe 10 is provided with a discharge valve 11, and the discharge pipe 10 is positioned above the waste gas bin 7. The feed valve 3 and the discharge valve 11 may be conventional electric gate valves.
The outside of the storehouse body 5 is provided with blast pipe 1, and the one end of blast pipe 1 is connected with the gas vent on the 5 tops in the storehouse body, and draught fan 9 is connected to the other end, still is connected with the breathing pipe 8 with 7 intercommunications in waste gas storehouse on the blast pipe 1.
The upper part of the bin body 5 can be provided with an air interchanger 15, such as an internal suction shutter, a ventilator and the like.
An air inlet main pipe 14 is arranged on the bin body 5, and the air inlet main pipe 14 extends into the bin body 5 and is positioned between the air interchanger 15 and the feeding pipe 4. The outer end of the air inlet main pipe 14 is connected with a fan, and an electric heater is arranged on the part, positioned on the outer side of the bin body 5, of the air inlet main pipe 14 so as to realize the blowing-in of hot air. The part of the main air intake pipe 14 in the bin body 5 is connected with a vertical air intake branch pipe 13, and air outlet holes 12 are distributed on the air intake branch pipe 13.
The moisture-proof process of the storage bin for the biological feed is as follows.
The feed valve 3 is opened, and the biological feed is conveyed into the bin body 5 from the feed hopper 2 along the feed pipe 4 and is arranged between the air permeable net 6 and the feed pipe 4. After the feed is completed, the feed valve 3 is closed. Under normal conditions, can open draught fan 9 and breather 15 and carry out ventilation to the storehouse body 5 in, draught fan 9 passes through blast pipe 1 and carries fresh air to the waste gas suction of gathering in storehouse body 5 top and waste gas storehouse 7, by breather 15.
If the heating phenomenon is monitored in the piled biological feed, novel air is introduced into the biological feed through the air inlet main pipe 14 and the air inlet branch pipes 13 distributed on the air inlet main pipe, so that cooling and ventilation are realized. If moisture is detected in the accumulated biological feed, the heating device on the air inlet main pipe 14 is started to blow hot air into the biological feed.
When the material is taken, the discharge valve 11 is opened, and the biological feed is discharged from the discharge pipe 10.
Claims (7)
1. The utility model provides a storehouse is stored to biological fodder is dampproofing, characterized by: including the storehouse body, the internal lower part in storehouse is provided with ventilative net, and ventilative net below sets up the waste gas storehouse, and the upper portion of the storehouse body is provided with the inlet pipe, is provided with the feed valve on the inlet pipe, and the lower part in the storehouse body is provided with the discharging pipe, is provided with the bleeder valve on the discharging pipe, and the discharging pipe is located waste gas storehouse top, and the external side in storehouse is provided with the blast pipe, and storehouse body top is connected to the one end of blast pipe, and the draught fan is connected to the other end, is provided with the air inlet main pipe that stretches into in it on the storehouse body.
2. The moisture-proof biological feed storage bin of claim 1, wherein: the outer end of the feeding pipe is provided with a feeding hopper.
3. The moisture-proof biological feed storage bin of claim 1, wherein: and the feed valve and the discharge valve adopt electric gate valves.
4. The moisture-proof biological feed storage bin of claim 1, wherein: and the exhaust pipe is connected with an air suction pipe communicated with the waste gas bin.
5. The moisture-proof biological feed storage bin of claim 1, wherein: the upper portion in the storehouse body is provided with breather, air inlet house steward is in between breather and the inlet pipe.
6. The moisture-proof biological feed storage bin of claim 1, wherein: an electric heater is arranged on the air inlet main pipe.
7. The moisture-proof biological feed storage bin of claim 1, wherein: the air inlet main pipe is provided with an air inlet branch pipe in the bin body, and air outlet holes are distributed in the air inlet branch pipe.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120206892.6U CN214494239U (en) | 2021-01-25 | 2021-01-25 | Dampproofing storehouse of storing of biological feed |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120206892.6U CN214494239U (en) | 2021-01-25 | 2021-01-25 | Dampproofing storehouse of storing of biological feed |
Publications (1)
Publication Number | Publication Date |
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CN214494239U true CN214494239U (en) | 2021-10-26 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202120206892.6U Active CN214494239U (en) | 2021-01-25 | 2021-01-25 | Dampproofing storehouse of storing of biological feed |
Country Status (1)
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CN (1) | CN214494239U (en) |
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2021
- 2021-01-25 CN CN202120206892.6U patent/CN214494239U/en active Active
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