Automatic aquaculture system

A breeding system and automatic technology, applied in fish farming, animal husbandry, application and other directions, can solve the problems of water body not being well improved, affecting the output of aquatic products, poor dispersion of bait, etc., achieving simple structure, rust prevention and so on Good effect, avoid the waste of bait

Inactive Publication Date: 2016-09-21
ZHONGSHAN NUODUN SCI RES TECH SERVICE CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to design defects, the existing aquaculture system generally only relies on setting up oxygenation equipment on the water surface of the pond to increase the oxygen content of the pond water. The water body is not well improved, and diseases are prone to occur during the aquaculture process, affecting aquatic products. output
[0003] In addition, in order to improve the efficiency of breeding work, feeding devices are generally used when feeding feed to the farming area. Due to design defects, the current feeding devices on the market have poor dispersion of bait when feeding, and fish and shrimp need to be concentrated. eat in a small area
it's bad for feeding

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0059] In the present invention, the degree of automation is high, only need to manually pour the material into the discharge box, and the automatic feeding can be realized by setting the feeding time interval and feeding amount on the controller, which saves time and effort, is not affected by the weather, and can control the amount of feeding. Precise control avoids the waste of bait. Example 1 - Anti-rust coating

[0060] Antirust coating of the present invention comprises following component by weight percentage:

[0061]

[0062]

[0063] Preparation method: Mix and stir graphene, strontium chromate, trilead tetroxide, ammonium metaborate, and titanium dioxide evenly, grind in a conical grinder until the fineness is <60 μm, then add silicone modified acrylate emulsion, o- Dibutyl phthalate, propylene glycol methyl ether and other components are uniformly dispersed.

[0064] Example 2 - Anti-rust coating

[0065] Antirust coating of the present invention comprises...

Embodiment 4

[0073] Example 4 - Corrosion Resistant Coating

[0074] Corrosion-resistant coatings include the following components by weight percentage:

[0075]

[0076] Preparation method: Mix fluorinated acrylate and coal tar pitch evenly, stir and heat to 45°C, stir for 10 minutes, add nepheline powder and zinc citrate, heat to 120°C, stir for 3 hours, cool to 50°C, add other components , stirred and kept for 1 hour, ultrasonically dispersed for 10 minutes, and ground to a fineness of <60 μm in a conical grinder.

Embodiment 5

[0077] Example 5 - Corrosion Resistant Coating

[0078] Corrosion-resistant coatings include the following components by weight percentage:

[0079]

[0080]

[0081] Preparation method: Mix fluorinated acrylate and coal tar pitch evenly, stir and heat to 60°C, stir for 60 minutes, add nepheline powder and zinc citrate, heat to 145°C, stir for 5 hours, cool to 60°C, add other components , stirred and kept for 2 hours, ultrasonically dispersed for 25 minutes, and ground to a fineness of <60 μm in a conical grinder.

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Abstract

The invention discloses an automatic aquaculture system comprising a pond; multiple aeration devices are installed in the pond with intervals; a water treatment device is installed at one end of the pond; a water inlet pipe of the water treatment device extending to the pond; a water output pipe of the water treatment device is installed at the other side of the pond; a feeding device is installed at the middle part of the pond; the feeding device comprises a floating platform; a storage barrel is installed at one end of the floating platform; a discharging opening is installed under the storage barrel; a control valve which can control the discharge amount is installed on the discharging opening; a feeding tray is installed on the floating platform under the discharging opening; a feeding opening is installed at the front end of the feeding tray; a discharging seat is installed on the floating platform; the feeding opening and the discharging seat are installed at the same side; an ejection device which can eject material in the feeding tray out of the discharging seat is installed on the floating platform. an aeration device is installed at the other end of the floating platform. The automatic aquaculture system comprises simple structure, is capable of keeping good condition of water quality and water oxygen content, and has good cultivation effect, good dispersibility of bait and wide range of feeding.

Description

technical field [0001] The invention relates to an automatic breeding system. Background technique [0002] In the process of aquatic product cultivation, the quality of water quality directly determines the effect of cultivation. The worse the water quality is, that is, the lower the oxygen content, the higher or lower the content of nitrogen, phosphorus and other substances, the worse the growth of aquatic products will be. On the contrary, the yield and quality of aquatic products are better. Due to design defects, the existing aquaculture system generally only relies on setting up oxygenation equipment on the water surface of the pond to increase the oxygen content of the pond water. The water body is not well improved, and diseases are prone to occur during the aquaculture process, affecting aquatic products. output. [0003] In addition, in order to improve the efficiency of breeding work, feeding devices are generally used when feeding feed to the farming area. Due ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01K63/00A01K63/04A01K61/02C09D133/04C09D161/06C09D5/08C09D7/12C09D4/06C09D4/02
CPCA01K63/003A01K63/04A01K63/042A01K63/045C08L2205/03C09D4/06C09D5/08C09D7/61C09D7/63C09D7/65C09D143/04C08L61/06C08L1/12C08K13/02C08K3/04C08K3/38C08K5/12C08F283/006
Inventor 吴素娟陈伟景郭月强陈秋菊
Owner ZHONGSHAN NUODUN SCI RES TECH SERVICE CO LTD
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