Attapulgite/nano-strontium-titanate/nano-tin-oxide photocatalysis silicone-acrylic coating preparation method

A technology of tin oxide photocatalytic silicon and nano-strontium titanate, applied in the direction of coating, etc., to achieve the effects of excellent photocatalytic performance, excellent thickening property, and good weather resistance

Inactive Publication Date: 2017-08-11
ANHUI BOSHUO TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Currently, attapulgite-loaded nano-titanium dioxide is commonly used in photocatalytic coatings in the market, and attapulgite-loaded strontium titanate / tin oxide composite nanomaterials are rarely used in photocatalytic coatings.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] A preparation method of attapulgite / nanometer strontium titanate / nanometer tin oxide photocatalyzed silicone acrylic coating, comprising the following steps:

[0020] (1) Weigh strontium acetate and tetrabutyl titanate according to an equimolar ratio, then dissolve strontium acetate in 3 times the volume of distilled water to obtain solution A, and dissolve tetrabutyl titanate in 15 times the volume of isopropanol , to obtain solution B; then, under magnetic stirring, solution A was added dropwise to solution B at a rate of 2 drops per second, continued stirring for 2 minutes, and left to age for 24 hours to form gel A;

[0021] (2) Dissolve tin tetrachloride in distilled water to prepare a solution with a concentration of 0.5mol / L, and then add 2mol / L ammonia solution dropwise at a rate of 2 drops per second under magnetic stirring to make the solution PH=7, Stand at constant temperature for 10 hours in a water bath at 35°C to obtain gel B;

[0022] (3) Mix the gel A ...

Embodiment 2

[0030] A preparation method of attapulgite / nanometer strontium titanate / nanometer tin oxide photocatalyzed silicone acrylic coating, comprising the following steps:

[0031] (1) Weigh strontium acetate and tetrabutyl titanate according to an equimolar ratio, then dissolve strontium acetate in 3 mass distilled water to obtain solution A, and dissolve tetrabutyl titanate in 16 times the volume of isopropanol , to obtain solution B; then, under magnetic stirring, solution A was added dropwise to solution B at a rate of 2 drops per second, continued to stir for 3 minutes, and left to age for 36 hours to form gel A;

[0032] (2) Dissolve tin tetrachloride in distilled water to prepare a solution with a concentration of 0.5mol / L, and then add 2mol / L ammonia solution dropwise at a rate of 2 drops per second under magnetic stirring to make the solution pH=7.5, Standing and aging for 8 hours at a constant temperature in a water bath at 40°C to obtain gel B;

[0033] (3) Mix the gel A ...

Embodiment 3

[0041] A preparation method of attapulgite / nanometer strontium titanate / nanometer tin oxide photocatalyzed silicone acrylic coating, comprising the following steps:

[0042] (1) Weigh strontium acetate and tetrabutyl titanate according to an equimolar ratio, then dissolve strontium acetate in 4 mass distilled water to obtain solution A, and dissolve tetrabutyl titanate in 20 times the volume of isopropanol , to obtain solution B; then, under magnetic stirring, solution A was added dropwise to solution B at a rate of 3 drops per second, continued stirring for 4 minutes, and left to age for 48 hours to form gel A;

[0043] (2) Dissolve tin tetrachloride in distilled water to prepare a solution with a concentration of 0.5mol / L, and then add 2mol / L ammonia solution dropwise at a rate of 3 drops per second under magnetic stirring to make the solution PH=8, Standing and aging for 5 hours at a constant temperature in a water bath at 45°C to obtain gel B;

[0044] (3) Mix the above-p...

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PUM

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Abstract

The invention discloses an attapulgite / nano-strontium-titanate / nano-tin-oxide photocatalysis silicone-acrylic coating preparation method. Tin tetrachloride, strontium acetate and tetrabutyl titanate serve as raw materials, nano-tin-oxide and nano-strontium-titanate are loaded on the surface of attapulgite by a sol-gel method, the attapulgite is modified by photocatalysis, a prepared attapulgite loaded strontium-titanate / tin-oxide composite nano-material has excellent thickening property, leveling property and photocatalysis activity and then serves as a thickening agent and a photocatalyst for preparing a silicone-acrylic coating, and the prepared silicone-acrylic coating has excellent photocatalysis property, good weather resistance, water resistance, chemical resistance, stain resistance, flexibility and adhesiveness.

Description

technical field [0001] The invention relates to a preparation method of attapulgite / nanometer strontium titanate / nanometer tin oxide photocatalyzed silicon acrylic coating, which belongs to the field of coating additives. Background technique [0002] In recent years, with the improvement of people's living standards, indoor environmental problems caused by interior decoration, furniture materials and people's indoor life have increasingly attracted people's attention and attention, and indoor pollution has gradually become a social hot spot. Indoor pollutants mainly include formaldehyde, benzene, ammonia, radioactive substances and volatile organic compounds. Ventilation is usually used to control indoor pollutants. In many places, it is stipulated that new houses must be ventilated for at least three months before occupancy, ensure that there is sufficient sunlight in the room, and use ultraviolet rays in the sun to sterilize; the above methods cannot fundamentally remove ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D133/04C09D7/12
CPCC09D143/04C08K2003/2231C08K2003/265C08K2201/011C08L2205/03C08L2205/035C09D7/61C09D7/63C09D7/65C09D7/70C08L97/005C08L71/02C08K13/06C08K9/12C08K3/24C08K3/22C08K3/346C08K3/26C08K5/103C08L33/26C08L83/04C08K7/26C08K5/101C08K5/06C08L33/02C08K3/30C08K3/34C08K3/36C08K5/42C08K5/521
Inventor 张志军
Owner ANHUI BOSHUO TECH
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