CN102533007A - Anion water-based emulsion coating and preparation method thereof - Google Patents

Anion water-based emulsion coating and preparation method thereof Download PDF

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Publication number
CN102533007A
CN102533007A CN2011104214006A CN201110421400A CN102533007A CN 102533007 A CN102533007 A CN 102533007A CN 2011104214006 A CN2011104214006 A CN 2011104214006A CN 201110421400 A CN201110421400 A CN 201110421400A CN 102533007 A CN102533007 A CN 102533007A
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Prior art keywords
based emulsion
water
negative ion
ion water
emulsion coatings
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CN2011104214006A
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CN102533007B (en
Inventor
倪建春
梁海
姜必龙
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CHANGZHOU SHENGAN PAINT CO LTD
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CHANGZHOU SHENGAN PAINT CO LTD
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Abstract

The invention discloses anion water-based emulsion coating which comprises the following components in percentage by weight: 30-40% of water-based emulsion, 7-13% of filler, 13-26% of pigment, 0.2-2% of thickener, 0.05-0.2% of tripolyphosphate, 0.1-1% of mildew preventive, 5-7% of anion material, 0.5-2% of coalescing agent, 0.1-1% of hydroxyethyl cellulose, 0.3-3% of auxiliary assistant, and the remaining water; and the auxiliary assistant is selected from one of dispersant, defoamer and multifunctional assistant. The anion water-based emulsion coating can radiate anion and oxygen ion and can simultaneously absorb various harmful materials such as benzene, formaldehyde, uranium and the like so as to effectively purify the indoor environment and ensure the physical and psychological health of people in the living space. The invention further discloses a preparation method of the anion water-based emulsion coating.

Description

Negative ion water-based emulsion coatings and preparation method thereof
Technical field
The present invention relates to a kind of aqueous emulsion paint, particularly a kind of negative ion water-based emulsion coatings; The invention still further relates to the preparation method of this negative ion water-based emulsion coatings.
Background technology
Aqueous emulsion paint is through being permitted years of development, though haveing breakthrough aspect health, the environmental protection, with respect to common coating, only be that organic flux and the harmful substance contents such as heavy metal and formaldehyde of self are controlled.Yet when this series products itself and other finishing material are used simultaneously, can not effectively prevent the toxic substance of other material production.
Summary of the invention
The technical problem that the present invention will solve is: provide a kind of and can radiate oxonium ion, can absorb objectionable impuritiess such as various benzene, formaldehyde, uranium simultaneously, reach the negative ion water-based emulsion coatings of effective purification of indoor environment.
In order to achieve the above object, the technical scheme of negative ion water-based emulsion coatings employing of the present invention is:
Negative ion water-based emulsion coatings is characterized in that comprising by weight percentage the water-based emulsion of following component: 30-40%, the filler of 7-13%; The pigment of 13-26%, the thickening material of 0.2-2%, the tri-polyphosphate of 0.05-0.2%; The mould inhibitor of 0.1-1%, the anion material of 5-7%, the film coalescence aid of 0.5-2%; 0.1-1 Natvosol, the auxiliary addition agent of 0.3-3%, surplus is a water; Said auxiliary addition agent is selected from least a in dispersion agent, skimmer and the multifunctional assistant.
This negative ion water-based emulsion coatings can radiate negative ion, oxonium ion, can absorb objectionable impuritiess such as various benzene, formaldehyde, uranium simultaneously, reaches effective purification of indoor environment, the physical and mental health of underwriter in the space of life.
As a kind of optimal way of technique scheme, said water-based emulsion is a modified plant gum, and the preparation method of modified plant gum comprises following steps:
A) the intensification deionized water drops into vegetable jelly subsequently and makes its dissolving to 80-85 ℃;
B) drop into behind the vegetable jelly 1 hour, add an organosilane monomer, catalytic promoter and plant monomer, and be warming up to 220-240 ℃, constant temperature 4.5-5.5 hour subsequently;
C) regulate the Ph value to 6-7;
Wherein, the consumption of the material of above-mentioned each step calculates by weight and is respectively: 300 parts in water, vegetable jelly 150-180 part, an organosilane monomer 35-40 part, 25 parts of plant monomers, catalytic promoter 0.5-0.8 part; Said plant monomer is and the corresponding plant monomer of vegetable jelly;
In addition, said modified plant gum has following character:
Outward appearance: milky white liquid;
Solid content: 45-48%;
Ph value: 6-7;
Use is coated with-4 glasss of viscosity that measures: 16-20s.
In the preferred embodiment, the raw material of modified plant gum is degradable vegetable jelly, thereby can further reduce the content of heavy metal ion in the water-soluble emulsion coating.Through detecting, this negative ion water-based emulsion coatings has following character:
Volatile organic content≤3.6g/L;
Free formaldehyde content≤0.013k/kg;
Dissoluble lead content≤0.11mg/kg;
The separated content of solubility: do not measure;
Soluble chromium content≤0.49mg/kg;
Soluble mercury content≤0.37mg/kg
Negative ion quantity >=600ion/cc.
The technical problem that the present invention further will solve is, a kind of preparation method of negative ion water-based emulsion coatings is provided, and comprises following steps:
1) aqueous solution, Natvosol and the ammoniacal liquor with tri-polyphosphate drops in the deionized water, fully stirs to reach even thick liquid;
2) drop into auxiliary addition agent, pigment and filler successively;
3) material is fully stirred, and be ground to fineness less than 80 μ m;
4) add anion material and water-based emulsion and stirring;
5) add film coalescence aid, and utilize ammoniacal liquor adjustment Ph value to 8-9;
6) fully stir under at rotating speed less than 800 rev/mins condition;
7) drop into thickening material and regulate viscosity;
8) mix colours making sheet behind the adding mould inhibitor.
Embodiment
Below in conjunction with embodiment preferred implementation of the present invention is further explained.
Embodiment the 1, the 2nd, as the example of the preferred implementation of the water-based emulsion in the negative ion water-based emulsion coatings.
Embodiment 1:
With the guar gum is the feedstock production modified plant gum, and its preparation method comprises following steps:
A) intensification 300g deionized water to 80 ℃ drops into the 150g guar gum subsequently and makes its dissolving;
B) drop into behind the guar gum 1 hour, add 35g methyl chlorosilane, 0.5g catalytic promoter and 25g guar-bean monomer, and be warming up to 220 ℃, constant temperature is 4.5 hours subsequently;
C) regulate Ph value to 6.
The modified plant gum of present embodiment product has following character:
Outward appearance: milky white liquid;
Solid content: 45%;
Ph value: 6;
Viscosity: 20s (being coated with-4 glasss);
Calcium ion stability: qualified;
Brushing resistance ability: good;
Film forming properties: good.
Embodiment 2:
With the fenugreek gum is the feedstock production modified plant gum.
Prepare modified plant gum according to the following steps:
A) intensification 300g deionized water to 85 ℃ drops into the 180g fenugreek gum subsequently and makes its dissolving;
B) drop into behind the fenugreek gum 1 hour, add 35g propyltrichlorosilan, 0.8g catalytic promoter and 25g tonka-bean monomer, and be warming up to 240 ℃, constant temperature is 5.5 hours subsequently;
C) regulate Ph value to 7.
The modified plant gum of present embodiment product has following character:
Outward appearance: milky white liquid;
Solid content: 48%;
Ph value: 7;
Viscosity: 16s (being coated with-4 glasss);
Calcium ion stability: qualified;
Brushing resistance ability: good;
Film forming properties: good.
What the detection method of above mentioned Calcium ion stability adopted is following steps:
The modified plant gum that in the 10ml test tube, adds 5ml adds the calcium chloride solution of 1ml 5wt% then, shakes up and leaves standstill, and after 1 hour, 24 hours, observes, and as finding layering, phenomenons such as deposition flocculation are defective, otherwise then are qualified.
As some preferred exemplary of the vegetable jelly of raw material, except guar gum and fenugreek gum that embodiment 1,2 mentions, can also be sesbania gum or flax gum.
In addition, the methyl chlorosilane among the embodiment 1 is replaceable to be the propyltrichlorosilan among the embodiment 2, otherwise also can.Thereby as a kind of summary, so long as an organosilane monomer all can solve the technical problem that the present invention will solve.That is to say, except methyl chlorosilane and propyltrichlorosilan, also can select in phenyl chlorosilane, methyl ethylene chlorosilane, ethyl trichlorosilane, vinyl trichloro silane and the γ-chloropropyl trichloro-silane any for use.
Embodiment 3-embodiment 5 is preferred exemplary of preparation negative ion water-based emulsion coatings.
Embodiment 3:
Press the negative ion of formulation shown in the table 1 water-based emulsion coatings, said preparation method comprises following steps:
1) aqueous solution, Natvosol and the ammoniacal liquor with tri-polyphosphate drops in the deionized water, fully stirs to reach even thick liquid;
2) drop into auxiliary addition agent, pigment and filler successively;
3) material is fully stirred, and be ground to fineness less than 80 μ m;
4) add anion material and water-based emulsion and stirring;
5) add film coalescence aid, and utilize ammoniacal liquor adjustment Ph value to 8-9;
6) fully stir under at rotating speed less than 800 rev/mins condition;
7) drop into thickening material and regulate viscosity;
8) mix colours making sheet behind the adding mould inhibitor.
Table 1
Component Content (wt%) Remarks
Water 34.3  
10% the tripolyphosphate aqueous solution 0.5 The aqueous solution of 10wt%
Natvosol 30000s 0.1 30000s
5040 dispersion agents 0.1 Shenzhen Hai Chuan chemical company
The AMP-95 multifunctional assistant 0.1 U.S. Mykrolis Corp
The 309A skimmer 0.1 Shenzhen Hai Chuan chemical company
White titanium pigment 15 Rutile-type
Zinc sulfide white 7 800 orders
Ultrafine heavy calcium 3 800 orders
Talcum powder 4 800 orders
Water-based emulsion 30 The modified plant gum of embodiment 1
Secondary ionic material 5  
Film coalescence aid 0.5 The Yi Siman chemical industry
Ammoniacal liquor 0.1  
Thickening material (polyurethanes) 0.1 Shenzhen Hai Chuan chemical company
Mould inhibitor 0.1 Shenzhen Hai Chuan chemical company
Embodiment 2:
Repeat embodiment 1, difference is that prescription prepares shown in the use table 2.
Table 2
Component Content (wt%) Remarks
Water 25 ?
10% the tripolyphosphate aqueous solution 1.1 The aqueous solution of 10wt%
Natvosol 30000s 0.2 30000s
5040 dispersion agents 0.2 Shenzhen Hai Chuan chemical company
The AMP-95 multifunctional assistant 0.1 U.S. Mykrolis Corp
The 309A skimmer 0.2 Shenzhen Hai Chuan chemical company
White titanium pigment 17 Rutile-type
Zinc sulfide white 5 800 orders
Ultrafine heavy calcium 5 800 orders
Talcum powder 6 800 orders
Water-based emulsion 32 The modified plant gum of embodiment 2
Secondary ionic material 6.6  
Film coalescence aid 1 The Yi Siman chemical industry
Ammoniacal liquor 0.2  
Thickening material (polyurethanes) 0.3 Shenzhen Hai Chuan chemical company
Mould inhibitor 0.1 Shenzhen Hai Chuan chemical company
Embodiment 3:
Repeat embodiment 1, difference is that prescription prepares shown in the use table 3.
Table 3
Component Content (wt%) Remarks
Water 21.5  
The tripolyphosphate aqueous solution 2 The aqueous solution of 10wt%
Natvosol 1 30000s
5040 dispersion agents 1 Shenzhen Hai Chuan chemical company
The AMP-95 multifunctional assistant 1 U.S. Mykrolis Corp
The 309A skimmer 1 Shenzhen Hai Chuan chemical company
White titanium pigment 13 Rutile-type
Ultrafine heavy calcium 6 800 orders
Talcum powder 7 800 orders
Water-based emulsion 35 The modified plant gum of embodiment 1
Secondary ionic material 7  
Film coalescence aid 2 The Yi Siman chemical industry
Ammoniacal liquor 0.5  
Thickening material (polyurethanes) 1 Shenzhen Hai Chuan chemical company
Mould inhibitor 1 Shenzhen Hai Chuan chemical company
Embodiment 6:
The product that embodiment 3-5 is made detects, and obtains data as shown in table 4:
Table 4
? Embodiment 3 Embodiment 4 Embodiment 5
Volatile organic content <3.6g/L <3.6g/L <3.6g/L
Free formaldehyde content <0.013g/kg <0.013g/kg <0.013g/kg
Dissoluble lead content <0.11mg/kg <0.11mg/kg <0.11mg/kg
Soluble cadmium content Do not detect Do not detect Do not detect
Soluble chromium content <0.49mg/kg <0.49mg/kg <0.49mg/kg
Soluble mercury content <0.37mg/kg <0.37mg/kg <0.37mg/kg
Negative ion quantity 1200/cm 3 1200/cm 3 1200/cm 3
Combine embodiment that the present invention has been done detailed explanation above; But the present invention is not limited to this; The technician in any present technique field under the prerequisite of aim of the present invention, can make various distortion and modification to it in the ken that is possessed.

Claims (9)

1. negative ion water-based emulsion coatings is characterized in that comprising by weight percentage the water-based emulsion of following component: 30-40%, the filler of 7-13%; The pigment of 13-22%, the thickening material of 0.1-1%, the tri-polyphosphate of 0.05-0.2%; The mould inhibitor of 0.1-1%, the anion material of 5-7%, the film coalescence aid of 0.5-2%; 0.1-1 Natvosol, the auxiliary addition agent of 0.3-3%, surplus is a water; Said auxiliary addition agent is selected from least a in dispersion agent, skimmer and the multifunctional assistant.
2. negative ion water-based emulsion coatings according to claim 1 is characterized in that: comprise following component by weight percentage: 32% water-based emulsion, 11% filler; 22% pigment, 0.3% thickening material, 0.11% tri-polyphosphate; 0.1% mould inhibitor, 6.6% anion material, 1% film coalescence aid; Other auxiliary agents of 0.5%, surplus are water; Said other auxiliary agents comprise 0.2% dispersion agent, 0.1% multifunctional assistant, 0.2% skimmer.
3. negative ion water-based emulsion coatings according to claim 1 and 2 is characterized in that: said filler is ultrafine heavy calcium and/or talcum powder.
4. negative ion water-based emulsion coatings according to claim 1 and 2 is characterized in that: said pigment is white titanium pigment and/or zinc sulfide white.
5. negative ion water-based emulsion coatings according to claim 1 and 2 is characterized in that: said water-based emulsion is a modified plant gum, and the preparation method of modified plant gum comprises following steps:
The intensification deionized water drops into vegetable jelly subsequently and makes its dissolving to 80-85 ℃;
Dropped into behind the vegetable jelly 1 hour, and added an organosilane monomer, catalytic promoter and plant monomer, and be warming up to 220-240 ℃, constant temperature 4.5-5.5 hour subsequently;
Regulate the Ph value to 6-7;
Wherein, the consumption of the material of above-mentioned each step calculates by weight and is respectively: 300 parts in water, vegetable jelly 150-180 part, an organosilane monomer 35-40 part, 25 parts of plant monomers, catalytic promoter 0.5-0.8 part; Said plant monomer is and the corresponding plant monomer of vegetable jelly;
In addition, said modified plant gum has following character:
Outward appearance: milky white liquid;
Solid content: 45-48%;
Ph value: 6-7;
Use is coated with-4 glasss of viscosity that measures: 16-20s.
6. negative ion water-based emulsion coatings according to claim 1 and 2 is characterized in that: said thickening material is the polyurethanes thickening material.
7. the preparation method of negative ion water-based emulsion coatings is characterized in that comprising following steps:
The aqueous solution, Natvosol and the ammoniacal liquor of tri-polyphosphate are dropped in the deionized water, and fully stirring reaches even thick liquid;
Drop into auxiliary addition agent, pigment and filler successively;
Material is fully stirred, and be ground to fineness less than 80 μ m;
Add anion material and water-based emulsion and stirring;
Add film coalescence aid, and utilize ammoniacal liquor adjustment Ph value to 8-9;
Fully stir under at rotating speed less than 800 rev/mins condition;
Drop into thickening material and regulate viscosity;
Mix colours making sheet after adding mould inhibitor.
8. the preparation method of negative ion water-based emulsion coatings according to claim 7 is characterized in that: in step 1), the aqueous solution of tri-polyphosphate is the aqueous solution of 10wt% tri-polyphosphate.
9. the preparation method of negative ion water-based emulsion coatings according to claim 7 is characterized in that: in step 1), the viscosity of Natvosol is 30000s.
CN201110421400.6A 2011-12-16 2011-12-16 Anion water-based emulsion coating and preparation method thereof Expired - Fee Related CN102533007B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103084326A (en) * 2013-02-01 2013-05-08 江声 Coating method of molecular resonance membrane (MRM) material powder sprayed on element
CN104449306A (en) * 2013-09-24 2015-03-25 丹阳恒安化学科技研究所有限公司 Technique for processing latex paint

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1810899A (en) * 2005-01-27 2006-08-02 上海富臣化工有限公司 Antiseptic wall paint capable of eliminating bad smell
CN101343452A (en) * 2008-08-12 2009-01-14 无锡市虎皇漆业有限公司 High-efficiency insect-disinfestation environment friendly paint and preparation thereof
CN101684221A (en) * 2008-09-26 2010-03-31 杨录真 Anion healthy paint

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1810899A (en) * 2005-01-27 2006-08-02 上海富臣化工有限公司 Antiseptic wall paint capable of eliminating bad smell
CN101343452A (en) * 2008-08-12 2009-01-14 无锡市虎皇漆业有限公司 High-efficiency insect-disinfestation environment friendly paint and preparation thereof
CN101684221A (en) * 2008-09-26 2010-03-31 杨录真 Anion healthy paint

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103084326A (en) * 2013-02-01 2013-05-08 江声 Coating method of molecular resonance membrane (MRM) material powder sprayed on element
CN104449306A (en) * 2013-09-24 2015-03-25 丹阳恒安化学科技研究所有限公司 Technique for processing latex paint

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