Liquid active carbon colloid emulsion

A technology of colloidal emulsion and activated carbon, which is applied in the field of liquid activated carbon colloidal emulsion and colloidal emulsion of nanomaterials, to achieve the effect of reducing construction costs and no secondary pollution

Inactive Publication Date: 2010-01-27
赵东育
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] It can be seen that there are certain deficiencies in the current products for removing chemical and biological pollution in the indoor environment, which need to be improved by technological progress.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] 15g of supramolecular polycrate siloxane, 3g of nano-scale activated carbon, 3g of nano-diatomaceous earth, 3g of nano-titanium dioxide, 4g of nano-tourmaline, 2g of nano-silica, 3g of rare earth activator, 5g of polyethylene glycol, and benzene Add 5g of sodium formate, 5g of sodium hexametaphosphate, 0.5g of amino acid, 0.3g of vitamin C, and 1g of surfactant into the mixer and stir for 0.5-1 hour at a low speed of 40-50r / min, then put it into a ball mill for ball milling, and the ball milling speed is 40-50r / min; then put it into the mixer and mix it at a medium speed of 300-500r / min for 30-50 minutes; put it in a dryer at 100-150 degrees Celsius for 1-1.5 hours; then put it into a high-speed mixer Stir and mix at a high speed of 1500-3000r / min for 20-40 minutes; remove impurities with a 100-150 mesh screen to obtain a powder; add 3g of carboxymethyl cellulose to 20g of distilled water, soak for 2-3 days, and prepare a spare solvent; Put the above powder and spare so...

Embodiment 2

[0032]30g of supramolecular polycrate siloxane, 8g of nano-scale activated carbon, 8g of nano-diatomaceous earth, 8g of nano-titanium dioxide, 9g of nano-tourmaline, 5g of nano-silicon dioxide, 7g of rare earth activator, 12g of polyethylene glycol, and benzene Sodium formate 15g, sodium hexametaphosphate 12g, amino acid 1.2g, vitamin C 0.8g, and surfactant 3g are added to the mixer and stirred at a low speed of 40-50r / min for 0.5-1 hour, and then put into a ball mill for ball milling. The ball milling speed is 40-50r / min; then put it into the mixer and mix it at a medium speed of 300-500r / min for 30-50 minutes; put it in a dryer at 100-150 degrees Celsius for 1-1.5 hours; then put it into a high-speed mixer Stir and mix at a high speed of 1500-3000r / min for 20-40 minutes; use a 100-150 mesh screen to remove impurities and obtain a powder; add 1g of carboxymethyl cellulose to 10g of distilled water and soak for 2-3 days to prepare a spare solvent ;Put the above powder and spar...

Embodiment 3

[0035] 22g of supramolecular polycage siloxane, 6g of nano-scale activated carbon, 5.5g of nano-diatomaceous earth, 5.5g of nano-titanium dioxide, 7g of nano-tourmaline, 3.5g of nano-silicon dioxide, 4g of rare earth activator, polyethylene glycol Add 8g, sodium benzoate 10g, sodium hexametaphosphate 8g, amino acid 1g, vitamin C0.5g, surfactant 2g into the mixer and stir at a low speed of 40-50r / min for 0.5-1 hour, put it into a ball mill for ball milling, ball milling The speed is 40-50r / min; then put it into the mixer and mix it at a medium speed of 300-500r / min for 30-50 minutes; put it in a dryer at 100-150 degrees Celsius for 1-1.5 hours; then put it into a high-speed mixer Stir and mix at medium and high speed 1500-3000r / min for 20-40 minutes; remove impurities with a 100-150 mesh screen to obtain a powder; add 2g of carboxymethyl cellulose to 15g of distilled water, soak for 2-3 days, and prepare a spare Solvent; put the above powder and spare solvent into a mixer and m...

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PUM

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Abstract

The invention discloses a liquid active carbon colloid emulsion belonging to the technical field of construction materials. The liquid active carbon colloid emulsion is prepared from the following raw materials according to parts by weight: 15-30 parts of supramolecular poly cage shape siloxane, 3-8 parts of nano level active carbon, 3-8 parts of nano kieselguhr, 3-8 parts of nano titanium oxide, 4-9 parts of nano tourmaline, 2-5 parts of nano silicon dioxide, 3-7 parts of rare earth activator, 5-12 parts of polyethylene glycol, 5-15 parts of sodium benzoate, 5-12 parts of sodium hexametaphosphate, 0.5-1.2 parts of amino acid, 0.3-0.8 parts of vitamin C, 1-3 parts of surfactant, 10-20 parts of distilled water and 1-3 parts of carboxymethyl cellulose. The invention effectively eliminates chemical contaminants released by decoration materials after indoor decoration and also can destroy biologic contaminants, such as viruses, bacteria and the like, a product has no irritative smell and no secondary pollution, protection is not needed in the construction process, components, such as metal and the like, can not be corroded, and the construction cost can be lowered.

Description

technical field [0001] The invention relates to a colloidal emulsion of nanomaterials sprayed on the surface of indoor walls and furniture, in particular to a liquid activated carbon colloidal emulsion, which belongs to the technical field of building materials. Background technique [0002] After interior decoration, chemical pollutants such as formaldehyde in adhesives, benzene series in paint, and ammonia released from walls will be released slowly for a long time, posing a serious threat to the health of indoor personnel. People who stay in the room for a period of time will feel dizzy, dizzy, and breathing discomfort, which directly affect the health of the indoor personnel. Therefore, it is an urgent health project to comprehensively manage the indoor environment after decoration. [0003] In the prior art, in order to remove indoor chemical pollution and improve the indoor environment, products such as solid activated carbon, photocatalyst, and formaldehyde-dissolving...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L83/04C08K13/02C08K3/04C08K3/22C09D183/04C09D7/12B01J31/38
Inventor 赵东育
Owner 赵东育
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