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The invention relates to a ceramic glaze capable of generating negative ions. The ceramic glaze comprises the following raw materials in part by weight: 20 to 35 parts of lithium feldspar, 30 to 40 parts of opal, 10 to 20 parts of montmorillonite, 5 to 10 parts of silicon dioxide, 5 to 10 parts of nanometer titania, 5 to 10 parts of nano-zinc oxide, 1 to 2 parts of germanium oxide and 1 to 2 parts of thorium chloride. The invention also relates to a preparation method and application of the ceramic glaze capable of generating the negative ions. The invention relates to a ceramic glaze technology; the ceramic glaze has the advantages that the convenience in material accessibility and manufacturing is realized; the negative ions can be efficiently and continuously released under the condition that light exists or the light does not exist; air is effectively purified, the indoor air quality is improved, and body health is benefited.
The invention relates to a ceramic glaze capable of generating negative ions. The ceramic glaze comprises the following raw materials in part by weight: 20 to 35 parts of lithium feldspar, 30 to 40 parts of opal, 10 to 20 parts of montmorillonite, 5 to 10 parts of silicon dioxide, 5 to 10 parts of nanometer titania, 5 to 10 parts of nano-zinc oxide, 1 to 2 parts of germanium oxide and 1 to 2 parts of thorium chloride. The invention also relates to a preparation method and application of the ceramic glaze capable of generating the negative ions. The invention relates to a ceramic glaze technology; the ceramic glaze has the advantages that the convenience in material accessibility and manufacturing is realized; the negative ions can be efficiently and continuously released under the condition that light exists or the light does not exist; air is effectively purified, the indoor air quality is improved, and body health is benefited.
Ceramic glaze capable of releasing negative ions and preparation method thereof
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