Solar inorganic energy storage material and preparation method and application thereof
An energy storage material and solar energy technology, which is applied in the field of solar inorganic energy storage materials and its preparation, can solve the problems of complex chemical reaction process, large one-time investment, and low overall efficiency, and achieve broad application prospects, high enthalpy value, The effect of high latent heat storage density
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Embodiment 1
[0022] A method for preparing a solar inorganic energy storage material, comprising the following steps:
[0023] (1) Weigh 28 kg of anhydrous magnesium chloride, 21 kg of anhydrous calcium chloride, 50 kg of water, 10 kg of nano powder aluminum hydroxide, 5 kg of nano powder iron oxide, 5 kg of nano powder zinc oxide, and 80 kg of 85% phosphoric acid 1 kg of nano-powdered alumina, 1 kg of nano-powdered calcium oxide, and 1 kg of nano-powdered silicon dioxide;
[0024] (2) Mix anhydrous magnesium chloride, anhydrous calcium chloride and water to make a saturated aqueous solution;
[0025] (3) According to the mass ratio of diatomite to saturated aqueous solution of 1:10, immerse the saturated aqueous solution into diatomite at 40°C, stir while heating, and rotate at 40 rpm to obtain energy storage granular materials;
[0026] (4) Add aluminum hydroxide, iron oxide, and zinc oxide to phosphoric acid, and react at 100°C for 10 minutes to obtain a liquid inorganic glue;
[0027...
Embodiment 2
[0030] A method for preparing a solar inorganic energy storage material, comprising the following steps:
[0031] (1) Weigh 30 kg of anhydrous magnesium chloride, 20 kg of anhydrous calcium chloride, 50 kg of water, 10 kg of nano powder aluminum hydroxide, 5 kg of nano powder iron oxide, 5 kg of nano powder zinc oxide, and 80 kg of 85% phosphoric acid 1 kg of nano-powdered alumina, 1 kg of nano-powdered calcium oxide, and 1 kg of nano-powdered silicon dioxide;
[0032] (2) Mix anhydrous magnesium chloride, anhydrous calcium chloride and water to make a saturated aqueous solution;
[0033] (3) The mass ratio of sepiolite to saturated aqueous solution is 1:10, immerse the saturated aqueous solution into the inorganic material at 40°C, stir while heating, and the speed is 40 rpm to obtain the energy storage granular material;
[0034] (4) Add aluminum hydroxide, iron oxide, and zinc oxide to phosphoric acid, and react at 100°C for 10 minutes to obtain a liquid inorganic glue;
...
Embodiment 3
[0038] A method for preparing a solar inorganic energy storage material, comprising the following steps:
[0039] (1) Weigh 32 kg of anhydrous magnesium chloride, 18 kg of anhydrous calcium chloride, 50 kg of water, 10 kg of nano powder aluminum hydroxide, 5 kg of nano powder iron oxide, 5 kg of nano powder zinc oxide, and 80 kg of 85% phosphoric acid 1 kg of nano-powdered alumina, 1 kg of nano-powdered calcium oxide, and 1 kg of nano-powdered silicon dioxide;
[0040] (2) Mix anhydrous magnesium chloride, anhydrous calcium chloride and water to make a saturated aqueous solution;
[0041] (3) Immerse the saturated aqueous solution into the vermiculite at 40°C, and stir while heating at a speed of 40 rpm to obtain the energy storage granular material;
[0042] (3) Add aluminum hydroxide, iron oxide, and zinc oxide to phosphoric acid, and react at 100°C for 10 minutes to obtain a liquid inorganic glue;
[0043] (4) Make aluminum oxide, calcium oxide, and silicon dioxide into c...
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