Photocatalytic nano spray coating and preparation method thereof

A technology of spraying paint and photocatalysis, which is applied in the direction of asphalt paint, coating, etc., can solve the problems of reducing the anti-skid and water seepage performance of the road surface, large color difference of asphalt pavement, poor storage stability, etc., and achieve good wear resistance and low wear , good adhesion effect

Active Publication Date: 2019-01-22
GUANGDONG PROVINCIAL CHANGDA HIGHWAY ENG +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to achieve the above object, the present invention provides a photocatalytic nano-spray paint, which solves the problem of poor storage stability of road spray paint in the prior art, large color difference from asphalt pavement, and reduces the anti-skid and water seepage performance of the road surface itself, thereby affecting driving safety issues

Method used

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  • Photocatalytic nano spray coating and preparation method thereof
  • Photocatalytic nano spray coating and preparation method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0022] Make 1kg of photocatalytic nano-spray paint, in which anatase nano-TiO 2 The content is 16% of the quality of the soap solution, and the specific steps are as follows:

[0023] Step 1, preparation of soap solution: add stabilizer CaCl with 0.4% soap solution mass into high-purity water 2 , after heating and fully stirring and dissolving, add the slow-cracked emulsifier SY-CME with 4% soap liquid mass to the solution to dissolve, and then add 3.2% soap liquid mass of sodium polyacrylate dispersant (addition of sodium polyacrylate dispersant) The amount of anatase nano-TiO 2 20% of the mass of the soap solution), and fully stir to dissolve, then slowly add anatase nano-TiO with a mass of 16% of the soap solution 2 , stirred for 15min, kept at 70℃ for later use;

[0024] Step 2, heating the asphalt to a flowing state, keeping the temperature at 140°C for use;

[0025] Step 3, emulsification: first add 0.505kg of soap liquid to the emulsifier, then add 0.485kg of asphal...

Embodiment 2

[0027] Make 1kg of photocatalytic nano-spray paint, in which anatase nano-TiO 2 The content is 10% of the quality of the soap solution, and the specific steps are as follows:

[0028] Step 1, preparation of soap solution: add stabilizer NH of 2% by mass of soap solution to high-purity water 4 Cl, after heating and fully stirring and dissolving, add the slow-cracked emulsifier SY-CME of 3% by mass of soap liquid to the solution to dissolve, and then add sodium polyacrylate dispersant of 2% by mass of soap solution (the amount of sodium polyacrylate dispersant). The amount added is anatase nano-TiO 2 20% of the mass of the soap solution), and fully stir to dissolve, then slowly add anatase nano-TiO with a mass of 10% of the soap solution 2 , stirred for 15min, kept at 65℃ for later use;

[0029] Step 2, heating the asphalt to a flowing state, keeping the temperature at 135°C for use;

[0030] Step 3, emulsification: first add 0.5kg of soap liquid to the emulsifier, then add ...

Embodiment 3

[0032] Make 1kg of photocatalytic nano-spray paint, in which anatase nano-TiO 2 The content is 20% of the quality of the soap solution, and the specific steps are as follows:

[0033] Step 1, preparation of soap solution: add 1% soap solution mass oxalic acid stabilizer into high-purity water, heat and fully stir to dissolve, add 6% soap solution mass SY-CME slow-breaking emulsifier to the solution to dissolve, then Then add 6% sodium polyacrylate dispersant (the amount of sodium polyacrylate dispersant is anatase type nano-TiO) 2 30% of the mass of the soap solution), and fully stir to dissolve, then slowly add anatase nano-TiO with 20% of the mass of the soap solution 2 , stirred for 15min, kept at 68°C for use;

[0034] Step 2, heating the asphalt to a flowing state, keeping the temperature at 138°C for use;

[0035] Step 3, emulsification: firstly add 0.51kg of soap liquid into the emulsifier, then add 0.485kg of asphalt into the emulsifier, emulsification for 3 minutes...

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Abstract

The invention discloses photocatalytic nanometer spray coating and a method for preparing the same, and belongs to the technical field of photocatalytic coating. The photocatalytic nanometer spray coating comprises, by weight, 48.5%-49.5% of asphalt, 50%-51% of liquid soap and 0.5%-1% of silane coupling agents. The sum of the mass percents of the asphalt, the liquid soap and the silane coupling agents is a hundred percent; the liquid soap comprises, by weight, 0.4%-2% of stabilizers, 3%-6% of emulsifiers, 2%-6% of dispersing agents, 10%-20% of nanometer TiO2 and the balance high-purity water, and the sum of the mass percents of various components of the liquid soap is a hundred percent; the mass of the dispersing agents accounts for 20%-30% of that of the nanometer TiO2. The photocatalytic nanometer spray coating and the method have the advantage that problems that road spray coating is poor in storage stability, colors of the road spray coating are greatly different from colors of asphalt pavements, the antislip and permeability performance of the pavements are deteriorated and the driving safety is affected in the prior art can be solved by the aid of the photocatalytic nanometer spray coating and the method.

Description

technical field [0001] The invention belongs to the technical field of photocatalytic coatings, and relates to a photocatalytic nano-spray coating used for degrading automobile exhaust in roads and a preparation method thereof. Background technique [0002] In recent years, with the rapid development of my country's automobile industry, automobiles have entered thousands of households. While automobiles bring convenience to people, automobile exhaust emissions from automobiles have also brought more and more serious air pollution. At the time, the self-purification ability of the atmosphere could purify most of the automobile exhaust, but now the number of automobiles is increasing rapidly, and the exhaust gas emitted by the automobile far exceeds the self-purification ability of the atmosphere. According to statistics, every 1,000 vehicles in the city emit about 3000kg of CO, about 200kg to 400kg of HC, and about 200kg to 400kg of NO. x About 50kg to 150kg. By the end of 20...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D195/00C09D7/61C09D7/63
CPCC08K2201/011C09D7/61C09D7/63C09D7/65C09D195/00C08L33/02C08K13/02C08K5/5435C08K2003/2241
Inventor 王辉陈杰徐一鸣刘成虎任冶刘刚亮张起森雷鸣夏兼
Owner GUANGDONG PROVINCIAL CHANGDA HIGHWAY ENG
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