Midsummer high temperature goose house eight ways cool

Summer heat is hot, and the temperature of the goose house is high, which will have a certain impact on the growth and development of the goose. Using the following simple methods, the goose house can be effectively cooled, and the goose can pass through the midsummer safely.

1. In the pens, about 2 meters away from the goose body, a layer of ceiling is made of 1.5-2.5 cm thick white foam plastic panels. The insulation effect of the plastic plate can reduce the temperature of the housing by 2~4°C.

2. Cover the roof of the house with a layer of rice straw, wheat straw, or straw that is 15 to 20 cm thick, and sprinkle with cold water to keep it moist. This will reduce the amount of heat drawn into the circle.

3. The exterior walls of the pens are painted white with lime water or white paint. The roof is covered with white materials, which can enhance the reflection of light and reduce the absorption of heat by the pens.

4. Plant vine climbing plants such as grapes, sponge gourds, pumpkins, etc. around the pen quarters so that the vines cover the walls, the roof, and the pergola. This reduces the amount of solar radiation heat transferred into the pens.

5. Plant flowers and grass around the house to reduce solar radiant heat and reflected heat.

6. Shade the shacks on the sunny side of the house, doors, windows and activities.

7. Install fans in the pen quarters to forcibly exhaust the heat and air in the homes to enhance air circulation.

8. At noon high temperatures, the deep well water that has just been pumped is sprayed on the house with a sprayer, or the roof and the outer wall are washed out. This can enhance heat dissipation and reduce the temperature.

New Energy

The main use of LiPF6 is in commercial secondary batteries, an application that exploits its high solubility in non aqueous, polar solvents. Specifically, solutions of lithium hexafluorophosphate in carbonate blends of ethylene carbonate, dimethyl carbonate, diethyl carbonate and/or ethyl methyl carbonate, with a small amount of one or many additives such as fluoroethylene carbonate and vinylene carbonate, serve as state-of-the-art electrolytes in lithium-ion batteries.[6][7] This application also exploits the inertness of the hexafluorophosphate anion toward strong reducing agents, such as lithium metal.

Lithium Hexafluorophosphate

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