Air purification material, preparation method therefor and application of air purification material
A technology for air purification materials and raw materials, applied in chemical instruments and methods, gas treatment, other chemical processes, etc., can solve the problems of unsatisfactory air purification effect, poor selection of air purification materials, and unsatisfactory purification effect. Effects of light weight, reduced production costs, high porosity
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[0017] Example 1
[0018] In the embodiment of the present invention, an air purification material is composed of the following raw materials in parts by weight: 31 parts of seaweed mud, 8 parts of naphthalene acetic acid, 3 parts of nano zinc oxide, 5 parts of triethanolamine, and 1 part of guar gum.
[0019] Triethanolamine is mixed with 9.5 times the mass of deionized water to prepare a triethanolamine solution; naphthalene acetic acid is mixed with 4.8 times the mass of absolute ethanol to prepare a naphthalene acetic acid solution. The seaweed mud and nano-zinc oxide were mixed and ground, passed through a 120-mesh sieve, added with the triethanolamine solution, placed in the reaction kettle and sealed and stirred for 1.8 hours at a temperature of 68° C. to obtain a mixture A. The guar gum and the naphthalene acetic acid solution were mixed, and the mixture was sealed and stirred for 55 min at a temperature of 69° C. to obtain a mixture B. Mix the mixture A and the mixture B,...
Example Embodiment
[0020] Example 2
[0021] In the embodiment of the present invention, an air purification material is composed of the following raw materials in parts by weight: 39 parts of seaweed mud, 16 parts of naphthalene acetic acid, 11 parts of nano zinc oxide, 9 parts of triethanolamine, and 5 parts of guar gum.
[0022] Triethanolamine is mixed with 9.5 times the mass of deionized water to prepare a triethanolamine solution; naphthalene acetic acid is mixed with 4.8 times the mass of absolute ethanol to prepare a naphthalene acetic acid solution. The seaweed mud and nano-zinc oxide were mixed and ground, passed through a 120-mesh sieve, added with the triethanolamine solution, placed in the reaction kettle and sealed and stirred for 1.8 hours at a temperature of 68° C. to obtain a mixture A. The guar gum and the naphthalene acetic acid solution were mixed, and sealed and stirred at a temperature of 69° C. for 60 minutes to prepare a mixture B. Mix the mixture A and the mixture B, heat up...
Example Embodiment
[0023] Example 3
[0024] In the embodiment of the present invention, an air purification material is composed of the following raw materials in parts by weight: 33 parts of seaweed mud, 10 parts of naphthalene acetic acid, 5 parts of nano zinc oxide, 6 parts of triethanolamine, and 2 parts of guar gum.
[0025] Triethanolamine is mixed with 9.5 times the mass of deionized water to prepare a triethanolamine solution; naphthalene acetic acid is mixed with 4.8 times the mass of absolute ethanol to prepare a naphthalene acetic acid solution. The seaweed mud and nano-zinc oxide were mixed and ground, passed through a 120-mesh sieve, added with the triethanolamine solution, placed in the reaction kettle and sealed and stirred for 1.8 hours at a temperature of 68° C. to obtain a mixture A. The guar gum and the naphthalene acetic acid solution were mixed, and sealed and stirred for 58 min at a temperature of 69° C. to obtain a mixture B. Mix the mixture A and the mixture B, heat up to 72...
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