Hydrogen-rich water or hydrogen-rich beverage preparation method
A hydrogen-rich water and beverage technology, applied in the field of drinking water or beverages, can solve the problems of high price, easy escape of hydrogen gas, and loss of dissolved hydrogen, and achieve the effects of reducing production costs, reducing dissipation losses, and low cost
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Embodiment 1
[0016] The dosage of each component of the calcium hydroxide sustained-release tablet: the mass ratio of the binder and the release-controlling agent in the auxiliary material is 1:1, and the mass ratio of the calcium hydroxide to the auxiliary material is 1:1. Pass the calcium hydride through a 100-mesh sieve, mix the calcium hydride and auxiliary materials evenly in proportion, then process it into flakes through a rolling machine, crush the flakes into granules through a granulator, pass through a 24-mesh sieve, and then extrude them into Tablets (or pass the calcium hydride through a 100-mesh sieve, mix the calcium hydride and auxiliary materials evenly in proportion, and directly squeeze it into tablets with a tablet machine). Put the sustained-release tablet in water, the calcium hydride is slowly released into the water in the sustained-release tablet, and hydrogen gas is generated immediately after contacting with water. While ensuring sufficient hydrogen gas generation...
Embodiment 2
[0018] The dosage of each component of the calcium hydroxide sustained-release tablet: the mass ratio of the binder and the release-controlling agent in the auxiliary material is 1:2, and the mass ratio of the calcium hydroxide to the auxiliary material is 1:2. Pass the calcium hydride through a 100-mesh sieve, mix the calcium hydride and auxiliary materials evenly in proportion, then process it into flakes through a rolling machine, crush the flakes into granules through a granulator, pass through a 24-mesh sieve, and then extrude them into Tablets (or pass the calcium hydride through a 100-mesh sieve, mix the calcium hydride and auxiliary materials evenly in proportion, and directly squeeze it into tablets with a tablet machine). Put the sustained-release tablet in water, the calcium hydride is slowly released into the water in the sustained-release tablet, and hydrogen gas is generated immediately after contacting with water. While ensuring sufficient hydrogen gas generation...
Embodiment 3
[0020] Pass the calcium hydride through a 100-mesh sieve, then process it into flakes through a rolling machine, crush the flakes into granules through a granulator, pass through a 24-mesh sieve, and then squeeze it into tablets with a tablet machine (or pass the calcium hydride through a 100-mesh sieve After that, it is directly squeezed into tablets with a tablet press). Put the slow-release tablet in water, because calcium hydride is made into flakes, compared with the same mass of calcium hydride particles, the specific surface area in contact with water is reduced, calcium hydride is slowly released into water, and hydrogen gas is generated immediately after contact with water. While ensuring sufficient hydrogen generation, it is conducive to the diffusion of the generated hydrogen to other parts of the water, reducing the possibility of local hydrogen escape.
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