Self-propelled aeration equipment for breeding of aquatic products
A kind of aeration equipment and self-moving technology, which is applied in the field of breeding, can solve the problems of limited contact area, limited and low oxygen content, and the need for a small amount of multiple times, etc., to achieve the purpose of delaying the release rate, increasing the contact area, and improving the utilization rate Effect
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Embodiment 1
[0020] like Figure 1-2 As shown, a self-moving aeration equipment for aquatic product cultivation includes a disc-shaped housing 1 filled with a catalyst 2, and the catalyst is MnO 2 , the lower end of the housing 1 is fixedly connected with an airbag 3, the airbag 3 is an elastic rubber airbag with good deformability, and the airbag 3 is filled with an oxygen-making liquid, specifically, the oxygen-making liquid is H 2 o 2 , Catalyst 2 is MnO 2 , capable of catalyzing H 2 o 2 The following reaction occurs: 2H 2 o 2 =2H 2 O+O 2 ↑, the side wall of the airbag 3 is provided with a one-way valve 4 communicating with the outside. The one-way valve 4 can only allow outside water to enter the airbag 3. The airbag 3 communicates with the inside of the housing 1 through the one-way tube 5. The one-way tube 5. Only the liquid in the airbag 3 is allowed to enter the housing 1. The overall density of the device is slightly higher than that of water, and it can sink slowly in the...
Embodiment 2
[0026] like image 3 As shown, the difference between this embodiment and Embodiment 1 is that a plurality of air holes 8 are arranged on the side wall of one side of the fan blade 6, and the plurality of air holes 8 are arranged in an equidistant array. 7 are connected.
[0027] When the fan blade 6 rotates, a local low-pressure area is generated on the back of the fan blade 6, which forms a large pressure difference with the inside of the exhaust passage 7, so that the oxygen in the exhaust passage 7 can quickly pass through the air hole 8, and at this time, the air discharged from the air hole 8 Oxygen bubbles will be hit and scattered by the next rotating fan blade 6, which increases the contact area between oxygen and water, improves the dissolution rate of oxygen in water, and further improves the utilization rate of oxygen.
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