Mineral ceramic material, ceramic-based hydrogen storage and production material raw material composition, ceramic-based hydrogen storage and production material and particles, and preparation method and application of ceramic-based hydrogen storage and production material
A raw material composition and a technology for ceramic materials are applied in the field of mineral ceramic materials, ceramic-based hydrogen storage and production materials and particles, ceramic-based hydrogen storage and production material raw material compositions, and preparation fields, and can solve the problem of low hydrogen production purity and weak hydrogen storage capacity. , cost increase and other issues, to achieve the effect of high hydrogen production purity, large hydrogen production, and cost saving
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[0035] The preparation of ceramic-based hydrogen storage materials can be achieved by mixing the above-mentioned raw materials according to the required amount, which can be realized by means in the prior art, such as a mixer; and then mix the obtained mixture with water or nano-graphene oxide solution , to prepare the desired shape, such as using a granulator to prepare granules or spheres. It is also possible to choose to carry out secondary coating on the obtained ceramic-based hydrogen storage and production materials according to the requirements. The coating materials are microporous mineral materials and inorganic gelling materials. There is no specific requirement for the amount of microporous mineral materials and inorganic gelling materials. Choose according to the surface area of the material to be coated. Larger surface area requires more materials, and smaller surface area requires less material. The selection is based on the premise that it can be overmolded, co...
Embodiment 1
[0037] Embodiment 1 prepares mineral ceramic material
[0038] The mineral ceramic material a comprises the following components: 10 parts of sepiolite, 10 parts of activated carbon powder, 5 parts of sodium carbonate, and 5 parts of malic acid.
[0039] The mineral ceramic material b includes the following components: 45 parts of attapulgite, 1 part of activated carbon powder, 1 part of calcium bicarbonate, and 1 part of glycolic acid.
[0040] The mineral ceramic material c includes the following components: 40 parts of zeolite, 5 parts of activated carbon powder, 2 parts of sodium bicarbonate, and 1 part of citric acid.
[0041] Mineral ceramic material d, comprising the following components: 15 parts of clay, 8 parts of activated carbon powder, 10 parts of magnesium bicarbonate, 5 parts of malonic acid.
[0042] The mineral ceramic material e comprises the following components: 20 parts of zeolite, 10 parts of sepiolite, 10 parts of activated carbon powder, 5 parts of pot...
Embodiment 2
[0055] Example 2 Preparation of raw materials for ceramic-based hydrogen storage materials
[0056] Raw material A1: take each component of mineral ceramic material c, 5 parts of nano silicon powder, 42 parts of cement and 5 parts of magnesium. Wherein, the particle size of nano silicon powder is 500nm.
[0057] Raw material A2: Take each component of mineral ceramic material c, 1 part of nano silicon powder, and 25 parts of gypsum. Wherein, the particle size of the nano silicon powder is 5nm.
[0058] Raw material A3: Take the components of mineral ceramic material c, 15 parts of nano silicon powder, 25 parts of cement, 10 parts of gypsum and 1 part of metal antibacterial agent. Wherein, the particle size of nano silicon powder is 500nm.
[0059] Raw material A4: Take each component of mineral ceramic material e, 25 parts of nano silicon powder, 40 parts of cement, 10 parts of gypsum and 5 parts of photocatalytic antibacterial agent. Wherein, the particle size of nano sil...
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