Hydrogen bond manual generator, preparation method thereof, application in water treatment and method of manually controlling hydrogen bond
A technology of artificial control and generator, applied in water/sewage treatment, chemical instruments and methods, light water/sewage treatment, etc., can solve problems such as hydrogen bond limitation, achieve the effect of improving association degree, promoting metabolism, and enhancing solubility
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Embodiment 1
[0051] The raw materials used in this example are 70 kg of barium titanate, 10 kg of calcium titanate, 2 kg of samarium oxide, 0.5 kg of sodium oxide, 0.5 kg of potassium oxide, 10 kg of aluminum oxide, 3 kg of silicon dioxide, 1 kg of magnesium oxide, and 3 kg of kaolin .
[0052] The preparation method of hydrogen bond artificial generator is,
[0053] (1) Mix the above-mentioned raw materials uniformly, and press and form to obtain a sintered precursor;
[0054] (2) inserting alumina ceramic balls with a diameter of 3 mm into the sintered precursor as electrodes, and utilizing uniform static pressure in all directions to obtain a spherical green body with a diameter of 14 mm;
[0055] (3) The hydrogen bond artificial generator was obtained by sintering at 1250°C.
Embodiment 2
[0057] The raw materials used in this example are: barium titanate 60kg, calcium titanate 20kg, samarium oxide 2kg, sodium oxide 0.5kg, potassium oxide 0.5kg, aluminum oxide 10kg, silicon dioxide 3kg, magnesium oxide 1kg, kaolin 3kg .
[0058] The preparation method of hydrogen bond artificial generator is,
[0059] (1) Mix the above-mentioned raw materials uniformly, and press and form to obtain a sintered precursor;
[0060] (2) inserting alumina ceramic balls with a diameter of 3 mm into the sintered precursor as electrodes, and utilizing uniform static pressure in all directions to obtain a spherical green body with a diameter of 14 mm;
[0061] (3) Sintering at 1200°C to obtain a hydrogen bond artificial generator.
[0062] Put the above-mentioned artificial hydrogen bond generator into the water body to be treated, shake for 10 seconds, and use the method of Example 1 to detect that artificial hydrogen bonds have been generated in the treated water.
Embodiment 3
[0064] The raw materials used in this example are: barium titanate 65kg, calcium titanate 15kg, samarium oxide 2kg, sodium oxide 0.5kg, potassium oxide 0.5kg, aluminum oxide 10kg, silicon dioxide 3kg, magnesium oxide 1kg, kaolin 3kg .
[0065] The preparation method of hydrogen bond artificial generator is,
[0066] (1) Mix the above-mentioned raw materials uniformly, and press and form to obtain a sintered precursor;
[0067] (2) inserting alumina ceramic balls with a diameter of 3 mm into the sintered precursor as electrodes, and utilizing uniform static pressure in all directions to obtain a spherical green body with a diameter of 14 mm;
[0068] (3) The hydrogen bond artificial generator was obtained by sintering at 1300°C.
[0069] Put the above-mentioned artificial hydrogen bond generator into the water body to be treated, shake for 5 seconds, and use the method in Example 1 to detect that artificial hydrogen bonds have been generated in the treated water.
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Abstract
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