Aqueous polyurethane micro-encapsulated phase change energy storage material and preparation thereof
A phase-change energy storage material, water-based polyurethane technology, applied in microcapsule preparations, microsphere preparation, chemical instruments and methods, etc., can solve the problems of complex operation procedures, fragile microcapsules, phase separation and other problems
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Embodiment 1
[0014] In a reaction kettle equipped with a stirring and reflux device, add 150ml of deionized water, 50g of paraffin and 1g of alkylphenol polyoxyethylene ether, heat to 45°C and melt, stir vigorously at 2000rpm for 10 minutes, add heavy Average molecular weight is 17 grams of waterborne polyurethane (solid content is 30wt%, pH value is 7.5) of 20000, stirs 10 minutes, then adds the saturated aqueous solution that contains 9.56 grams of aluminum nitrate, continues to stir 1.5 hours, then is down to room temperature, filters, and The filter cake was dried at 80°C for 4 hours to obtain 47 g of product.
[0015] The latent heat of phase change of the product obtained is 138.5.4J / g, which is much lower than the latent heat of phase change (225.9J / g) of paraffin; the average particle diameter of the product obtained is 5.2 μm; -1 The characteristic peak of polyurethane is shown, and the metal ion complexation peak also appears at the same time, and the characteristic peak of paraf...
Embodiment 2
[0017] Add 150ml of deionized water, 50g of paraffin and 0.5g of alkylphenol polyoxyethylene ether into a reaction kettle equipped with a stirring and reflux device. After heating to 45°C and melting, stir vigorously at 2000rpm for 10 minutes, then add heavy Average molecular weight is 17 grams of waterborne polyurethane (solid content is 30wt%, pH value is 7.5) of 20000, stirs 10 minutes, then adds the saturated aqueous solution that contains 9.56 grams of aluminum nitrate, continues to stir 1.5 hours, then is down to room temperature, filters, and The filter cake was dried at 80°C for 4 hours to yield 46.9 g of product.
[0018] The latent heat of phase change of the product obtained is 140.3J / g, which is much lower than the latent heat of phase change (225.9J / g) of paraffin; the average particle diameter of the product obtained is 8.1 μ m; -1 The characteristic peak of polyurethane is shown, and the metal ion complexation peak also appears at the same time, and the characte...
Embodiment 3
[0021] Add 150ml of deionized water, 50g of paraffin and 0.5g of alkylphenol polyoxyethylene ether into a reaction kettle equipped with a stirring and reflux device. After heating to 45°C and melting, stir vigorously at 2000rpm for 10 minutes, then add heavy Average molecular weight is 20000 waterborne polyurethane (solid content is 30wt%, pH value is 7.5) 17 grams, stirs 10 minutes, then adds the saturated aqueous solution that contains 9.56 grams of aluminum nitrates, slowly warms up to 90 ℃ and stirs 1.5 hours, then cools down to room temperature , filtered, and the filter cake was dried at 80° C. for 4 hours to obtain 44.8 g of the product.
[0022] The latent heat of phase change of the product obtained is 137.6J / g, which is much lower than the latent heat of phase change (225.9J / g) of paraffin; the average particle diameter of the product obtained is 6.8 μm; -1 The characteristic peak of polyurethane is shown, and the metal ion complexation peak also appears at the same ...
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