CN109776083A - A kind of multi-stage porous ceramic material and preparation method thereof with complex function - Google Patents

A kind of multi-stage porous ceramic material and preparation method thereof with complex function Download PDF

Info

Publication number
CN109776083A
CN109776083A CN201811601611.6A CN201811601611A CN109776083A CN 109776083 A CN109776083 A CN 109776083A CN 201811601611 A CN201811601611 A CN 201811601611A CN 109776083 A CN109776083 A CN 109776083A
Authority
CN
China
Prior art keywords
stage porous
complex function
aqueous solution
ceramic material
cluster
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201811601611.6A
Other languages
Chinese (zh)
Inventor
马云龙
陈德良
梁碧霞
王飞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Asia Building Materials Co.,Ltd.
Original Assignee
Gu Yi (guangdong) Building Materials Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Gu Yi (guangdong) Building Materials Co Ltd filed Critical Gu Yi (guangdong) Building Materials Co Ltd
Priority to CN201811601611.6A priority Critical patent/CN109776083A/en
Publication of CN109776083A publication Critical patent/CN109776083A/en
Pending legal-status Critical Current

Links

Landscapes

  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

The invention discloses a kind of multi-stage porous ceramic material and preparation method thereof with complex function, multi-stage porous ceramic material are formed by inorganic multi-stage porous matrix and by the complex function thin film that complex function colloidal sol is sprayed on inorganic multi-stage porous matrix surface;Complex function thin film is prepared by titanium dioxide, functional additive, acidic aqueous solution;The compound of two or more different function of the functional additive in Zinc oxide nanoparticle/cluster, copper oxide nanometer particle/cluster, halogenation silver nano-grain/cluster, pucherite nano particle/cluster, graphite phase carbon nitride nano particle/cluster, silver/copper nanocrystallite, gallic acid, polyvinyl alcohol, polyvinyl phenol.Multi-stage porous ceramic material provided by the invention with complex function belongs to solid phase supported catalyst, overcomes the recycling of subparticle catalyst difficulty, reuses the problems such as trouble absorption and decomposition, it can be achieved that the organic pollutants such as dyestuff, formaldehyde.

Description

A kind of multi-stage porous ceramic material and preparation method thereof with complex function
Technical field
The present invention relates to a kind of functional nano-composites processing technology more particularly to a kind of multistages with complex function Hole ceramic material and preparation method thereof.
Background technique
With the progress of social technology and the raising of manufacture level, more and more New Building Materials are applied, and are taking While obtaining convenient, cheap and comfortable living environment, air in buildings quality, environmental quality are worse and worse.Such as exist following Defect: (1) composite recycled material, paint, coating application so that indoor formaldehyde severely exceed, can not dissipate, seriously endanger people Body health;(2) it significantling change such as the indoor humidity short time, indoor humidity is excessively high to lead to the easy mass propagation such as mould, acarid, or Person's indoor humidity is too low, and to cause throat, nose that will be easy dry and astringent, has dry skin itch, influenza is easily sent out;(3) in addition, large area High-compactness wall, easily causes sound wave to reflect, and causes indoor hearsay condition very poor, mood is caused to be had the fidgets;(4) current city Various interior functional decorations can alleviate environmental problem to a certain extent on face, but due to having a single function, use synthesis Effect is relatively low.
People make great efforts to develop novel and multifunctional ceramic decoration material always as a result, it is desirable to new decorative material for building itself Pernicious gas is not generated, the ornament materials such as coating, wallpaper can be replaced to play decoration function.But currently, there is absorption point simultaneously Solve pernicious gas, moisture absorption damping, antibacterial and mouldproof, anti-algae anti-condensation, sound absorption drop dry, antiallergy, antiviral, Far-infrared Heating physical therapy Etc. multiple functions, can meet a material be mostly used demand functional decoration material be also not seen reported.
Summary of the invention
For overcome the deficiencies in the prior art, one of the objects of the present invention is to provide a kind of multistages with complex function Hole ceramic material.Multi-stage porous ceramic material provided by the invention with complex function belongs to solid phase supported catalyst, overcomes The problems such as trouble, is reused in the recycling of subparticle catalyst difficulty, and it is more preferable, it can be achieved that dyestuff, first to be equipped with illumination apparatus effect The absorption of the organic pollutants such as aldehyde is with decomposition, it can be achieved that effect that a material is mostly used, is provided simultaneously with adsorption-decomposition function pernicious gas, moisture absorption The effects of damping, antibacterial and mouldproof, anti-algae anti-condensation, the dry, antiallergy of sound absorption drop, antiviral, Far-infrared Heating physical therapy.
The second object of the present invention is to provide a kind of preparation method of multi-stage porous ceramic material with complex function.It should The preparation method of material is simple and easy to control, and material quantity is rich inexpensive, in the various interiors for meeting healthy household, low-carbon green life requires It has broad application prospects in wall decoration material.
An object of the present invention adopts the following technical scheme that realization: a kind of multi-stage porous ceramics material with complex function Material, the complex function thin film group of inorganic multi-stage porous matrix surface is sprayed on by inorganic multi-stage porous matrix and by complex function colloidal sol At;The complex function colloidal sol containing titanium salt, acidic aqueous solution, functional additive by being prepared;The functional additive is selected from Zinc oxide nanoparticle/cluster, copper oxide nanometer particle/cluster, halogenation silver nano-grain/cluster, pucherite nano particle/ Cluster, graphite phase carbon nitride nano particle/cluster, silver/copper nanocrystallite, gallic acid, polyvinyl alcohol, two kinds in polyvinyl phenol Or the compound of two or more different function.
Further, the inorganic multi-stage porous matrix is using a variety of inoganic solids powder as raw material, through granulation, molding, 600- 900 DEG C are made;The inoganic solids powder be selected from diatomite, allophane, montmorillonite, Emathlite, bentonite, zeolite, One of attapulgite, sepiolite, flyash, waste gypsum, waste incineration ash content, float stone, medical stone, tourmaline, rutile Or two or more composition.
Further, the aperture of the inorganic multi-stage porous matrix is distributed in nanometer scale to submillimeter magnitude.
Further, the complex function colloidal sol preparation method the following steps are included:
The step of preparing acidic aqueous solution: acid is added in aqueous solution, obtains acidic aqueous solution;
The step of preparing titanium solution: it disperses titaniferous salt in dehydrated alcohol, obtains titanium solution;
The step of mixing: under stirring, 5-40 DEG C of cryogenic conditions, resulting titanium solution is slowly added into acid water-soluble In liquid, titaniferous aqueous solution is obtained;
The step of functional additive is added: function is added into resulting titaniferous aqueous solution under stirring, ultrasound condition and adds Add agent;Under stirring condition, 5-40 DEG C ripening 1-5 days, obtain complex function colloidal sol;
The step of cryo-conservation: it will be saved under 5-40 DEG C of low temperature after the encapsulation of complex function colloidal sol, be stand-by.
Further, in the step of preparing acidic aqueous solution, acid one kind or two in acetic acid, hydrochloric acid, sulfuric acid Kind or more mixed acid, the pH value of the acidic aqueous solution is 1-5.
Further, described to be selected from butyl titanate, titanium tetrachloride, four isopropyls containing titanium salt in the step of preparing titanium solution One or more of alcohol titanium, isopropyl titanate, the dosage containing titanium salt are 0.5-50g/L.
Further, in the step of mixing, the speed of the stirring is 500-1000rpm, and the cryogenic conditions are 5- 40℃。
Further, in the step of functional additive is added, the speed of the stirring is 500-1000rpm, described super Sound condition is 20-40KHz;The dosage of the functional additive is 0.05-25g/L.
The second object of the present invention adopts the following technical scheme that realization: a kind of multi-stage porous ceramic material with complex function Preparation method, include the following steps:
The step of preparing inorganic multi-stage porous matrix: the inorganic multi-stage porous matrix using a variety of inoganic solids powder as raw material, It is made through granulation, molding, 600-900 DEG C;
The step of preparing complex function colloidal sol: secure ph is the aqueous solution of 1-5, obtains acidic aqueous solution;Titanium salt will be contained It is scattered in dehydrated alcohol, obtains titanium solution;Under stirring, 5-40 DEG C of cryogenic conditions, resulting titanium solution is slowly added to Into acidic aqueous solution, titaniferous aqueous solution is obtained;Function is added into resulting titaniferous aqueous solution under stirring, ultrasound condition to add Add agent, ripening 1-5 days under stirring condition obtains complex function colloidal sol;
The step of spraying: complex function colloidal sol is sprayed on the inorganic multi-stage porous matrix surface that temperature is 100-250 DEG C, so Afterwards 300-600 DEG C at a temperature of be heat-treated 10-120 minutes.
Further, the preparation method, in the step of spraying, the complex function colloidal sol is in inorganic multi-stage porous base The mass content in body surface face is 0.1-50g/m2
Compared with prior art, the beneficial effects of the present invention are:
(1) multi-stage porous ceramic material of the present invention is, as matrix, to exist through colloid spraying technology with porous inorganic material Inorganic multi-stage porous matrix surface sprays one layer with titanium dioxide (TiO2) photocatalyst film as main component;Inorganic multi-stage porous The adsorbable multiple pollutant including formaldehyde, foul smell of matrix, while being TiO2Equal nano-photocatalysts provide load physics Space decomposes functional layer of the pollutant based on the photocatalysis, deodorization;According to Functional Design needs, photocatalysis film is applied It may include the oxidate nanos cluster such as ZnO, CuO in layer, also may include the functional additives such as the metal nanometre clusters such as Ag, it can also be with Comprising the antianaphylaxis functions additive such as gallic acid, polyvinyl alcohol, polyvinyl phenol, the multi-stage porous pottery with complex function is constructed Ceramic material.Gained contains TiO2The multi-stage porous ceramic material of equal nano-photocatalysts is mixed in ultraviolet light, visible light or ultraviolet-visible Under illumination condition, organic volatile substances such as the formaldehyde of absorption or dye molecule can be decomposed into other small molecules, had The effect of the organic pollutants such as sterilization, anti-mildew, damping, formaldehyde degradation, indoors household, hospital, school, home for destitute, office The occasions such as room are used as wall decoration material, can significantly improve comfort level, realize the healthy living of high quality.
(2) the multi-stage porous ceramic material provided by the invention with complex function belongs to solid phase supported catalyst, overcomes The problems such as trouble, is reused in the recycling of subparticle catalyst difficulty, can be achieved at the same time adsorption-decomposition function pernicious gas, moisture absorption tune Dry, antiallergy, antiviral, Far-infrared Heating physical therapy and other effects drop in wet, antibacterial and mouldproof, anti-algae anti-condensation, sound absorption.
(3) preparation method of the material is simple and easy to control, and material quantity is rich inexpensive, is meeting healthy household, low-carbon green life It is required that various indoor wall decoration materials in have broad application prospects.
Detailed description of the invention
Fig. 1 is the finished figure for the multi-stage porous ceramic material that the embodiment of the present invention 2 has complex function;
Fig. 2 is that 2 multi-stage porous ceramic material of the embodiment of the present invention degrades rhodamine aqueous solution with ultraviolet-visible light spoke Take time extended decoloration picture;
Fig. 3 is rhodamine aqueous solution of degrading under 1-4 of embodiment of the present invention multi-stage porous ceramic material ultraviolet-visible light Decolourize curve;
Fig. 4 is nitrogen adsorption-desorption curve of 2 multi-stage porous ceramic material of the embodiment of the present invention;
Fig. 5 is the pore size distribution curve of 2 multi-stage porous ceramic material of the embodiment of the present invention;
Fig. 6 is the electron scanning micrograph of 2 multi-stage porous ceramic material of the embodiment of the present invention.
Specific embodiment
In the following, being described further in conjunction with attached drawing and specific embodiment to the present invention, it should be noted that not Under the premise of conflicting, new implementation can be formed between various embodiments described below or between each technical characteristic in any combination Example.
In the present invention, if not refering in particular to, all parts, percentage are unit of weight, used equipment and raw material etc. It is commercially available or commonly used in the art.Method in following embodiments is unless otherwise instructed the normal of this field Rule method.
A kind of multi-stage porous ceramic material with complex function, sprays by inorganic multi-stage porous matrix and by complex function colloidal sol It is formed in the complex function thin film of inorganic multi-stage porous matrix surface;The complex function colloidal sol is by containing titanium salt, acidic aqueous solution, function Energy additive is prepared;
The functional additive is selected from Zinc oxide nanoparticle/cluster, copper oxide nanometer particle/cluster, halogenation silver nanoparticle Particle/cluster, pucherite nano particle/cluster, graphite phase carbon nitride nano particle/cluster, silver/copper nanocrystallite, gallic acid, The compound of two or more different function in polyvinyl alcohol, polyvinyl phenol.The Zinc oxide nanoparticle/ Cluster, copper oxide nanometer particle/cluster, halogenation silver nano-grain/cluster, pucherite nano particle/cluster, graphite phase carbon nitride are received Forbidden bandwidth is in 2.0-3.2eV in rice grain/cluster, silver/copper nanocrystallite functional additive, in ultraviolet light, visible light or purple All there is photocatalysis performance under outside-visible light.Halogenation silver nano-grain particle/cluster is because of Ag+Presence have sterilization, sterilizing Effect, be a kind of excellent nontoxic sterilization material.Also, a small amount of Ag metal simple-substance has surface plasma resonance effect, Visible light can be absorbed, further increase catalytic degradation and bactericidal effect.Titanium dioxide and functional additive are applied in combination can To improve photocatalysis performance, photo-catalysis capability is weak under visible light for single titanium dioxide, can improve dioxy after being applied in combination Change titanium photocatalysis performance under visible light.And can have stronger bactericidal effect, greatly improve titanium dioxide uses model It encloses.In addition, gallic acid, tannic acid, polyvinyl alcohol and polyvinyl phenol have antianaphylactic effect.
As further embodiment, the inorganic multi-stage porous matrix is using a variety of inoganic solids powder as raw material, through making Grain, molding, 600-900 DEG C be made;The inoganic solids powder be selected from diatomite, allophane, montmorillonite, Emathlite, Bentonite, zeolite, attapulgite, sepiolite, flyash, waste gypsum, waste incineration ash content, float stone, medical stone, tourmaline, gold The composition of one or more of red stone.
As further embodiment, the aperture of the inorganic multi-stage porous matrix is in nanometer scale to submillimeter magnitude point Cloth.
As further embodiment, the preparation method of the complex function colloidal sol the following steps are included:
The step of preparing acidic aqueous solution: acid is added in aqueous solution, obtains acidic aqueous solution;
The step of preparing titanium solution: it disperses titaniferous salt in dehydrated alcohol, obtains titanium solution;
The step of mixing: under stirring, 5-40 DEG C of cryogenic conditions, resulting titanium solution is slowly added into acid water-soluble In liquid, titaniferous aqueous solution is obtained;
The step of functional additive is added: function is added into resulting titaniferous aqueous solution under stirring, ultrasound condition and adds Add agent, under stirring condition, 5-40 DEG C ripening 1-5 days, obtain complex function colloidal sol;Stirring can prevent molten in ageing process Glue is layered and influences uniformity.
The step of cryo-conservation: it will be saved under 5-40 DEG C of low temperature after the encapsulation of complex function colloidal sol, be stand-by.
As further embodiment, in the step of preparing acidic aqueous solution, the acid is selected from acetic acid, hydrochloric acid, sulphur One or more kinds of mixed acid in acid, the pH value of the acidic aqueous solution are 1-5.
It is described to be selected from butyl titanate, tetrachloro containing titanium salt in the step of preparing titanium solution as further embodiment Change the one or more of titanium, titanium tetraisopropylate, isopropyl titanate, the dosage containing titanium salt is 0.5-50g/L.
As further embodiment, in the step of mixing, the speed of the stirring is 500-1000r/min, institute Stating cryogenic conditions is 5-40 DEG C.
As further embodiment, in the step of functional additive is added, the speed of the stirring is 500- 1000r/min, the ultrasound condition are 20-40KHz;The dosage of the functional additive is 0.05-25g/L.
The second object of the present invention adopts the following technical scheme that realization: a kind of multi-stage porous ceramic material with complex function Preparation method, include the following steps:
The step of preparing inorganic multi-stage porous matrix: the inorganic multi-stage porous matrix using a variety of inoganic solids powder as raw material, It is made through granulation, molding, 600-900 DEG C;
The step of preparing complex function colloidal sol: secure ph is the aqueous solution of 1-5, obtains acidic aqueous solution;Titanium salt will be contained It is scattered in dehydrated alcohol, obtains titanium solution;Under stirring, 5-40 DEG C of cryogenic conditions, resulting titanium solution is slowly added to Into acidic aqueous solution, titaniferous aqueous solution is obtained;Function is added into resulting titaniferous aqueous solution under stirring, ultrasound condition to add Add agent, ripening 1-5 days under stirring condition obtains complex function colloidal sol;
The step of spraying: complex function colloidal sol is sprayed on the inorganic multi-stage porous matrix surface that temperature is 100-250 DEG C, so Afterwards 300-600 DEG C at a temperature of, be heat-treated 10-120 minutes.
As further embodiment, in the step of spraying, the complex function colloidal sol is in inorganic multi-stage porous matrix The mass content on surface is 0.1-50g/m2
It is specific embodiment of the present invention below, used raw material, equipment etc. remove special limit in the following embodiments It can be obtained by buying pattern outside fixed.
Embodiment 1 is a kind of with adsorption-decomposition function pernicious gas+dehumidifying damping+deodorization complex function multi-stage porous ceramic material
The multi-stage porous ceramic material with complex function, is sprayed on by inorganic multi-stage porous matrix and by complex function colloidal sol The complex function thin film of inorganic multi-stage porous matrix surface forms;The complex function thin film is by titanium dioxide, functional additive (oxygen Change zinc nanoparticles/cluster), acidic aqueous solution is prepared;The functional additive is selected from Zinc oxide nanoparticle/cluster.
The preparation method of the multi-stage porous ceramic material, includes the following steps:
The step of preparing inorganic multi-stage porous matrix: inorganic multi-stage porous matrix is 1 He of inoganic solids powder of 3:1 with weight ratio Inoganic solids powder 2 is raw material, is made through granulation, molding, 600-900 DEG C;Inoganic solids powder 1 is diatomite, inorganic Solid powder 2 is bentonite.The aperture of the porous, inorganic matrix is 20nm-30nm.
The step of preparing complex function colloidal sol: secure ph is the aqueous solution of 1-3, obtains acidic aqueous solution;Titanium salt will be contained It is scattered in dehydrated alcohol, obtains titanium solution;The titanium salt that contains is butyl titanate, and the dosage containing titanium salt is 0.5g/L.? Under stirring, cryogenic conditions, the speed of the stirring is 800r/min, and the cryogenic conditions are 25 DEG C, and resulting titanium solution is delayed Slowly it is added in acidic aqueous solution, obtains titaniferous aqueous solution;Under stirring, ultrasound condition, the speed of the stirring is 800r/ Min, the ultrasound condition are 35KHz;The Zinc oxide nanoparticle/cluster functional additive dosage is 0.05g/L, toward institute Titaniferous aqueous solution in Zinc oxide nanoparticle/cluster functional additive is added, ripening 1-5 days under stirring condition, obtain To complex function colloidal sol;
The step of spraying: complex function colloidal sol is sprayed on the inorganic multi-stage porous matrix surface that temperature is 100 DEG C, is then existed At a temperature of 300 DEG C, it is heat-treated 10 minutes.The complex function colloidal sol is in the mass content of inorganic multi-stage porous matrix surface 0.1g/m2
Embodiment 2 is a kind of with adsorption-decomposition function pernicious gas+dehumidifying damping+deodorization+antibacterial complex function multi-stage porous pottery Ceramic material
The multi-stage porous ceramic material with complex function, as shown in Figure 1, by inorganic multi-stage porous matrix and by complex function Colloidal sol is sprayed on the complex function thin film composition of inorganic multi-stage porous matrix surface;The complex function thin film is by titanium dioxide, function Energy additive, acidic aqueous solution are prepared;The functional additive is selected from Zinc oxide nanoparticle/cluster, halogenation silver nanoparticle Particle/cluster composition, Zinc oxide nanoparticle/cluster, halogenation silver nano-grain/cluster volume ratio are 4:1.
The preparation method of the multi-stage porous ceramic material, includes the following steps:
The step of preparing inorganic multi-stage porous matrix: inorganic multi-stage porous matrix is 1 He of inoganic solids powder of 1:1 with weight ratio Inoganic solids powder 2 is raw material, is made through granulation, molding, 600-900 DEG C;Inoganic solids powder 1 is diatomite, inorganic Solid powder 2 is zeolite.The aperture of the porous, inorganic matrix is 16nm-30nm.
The step of preparing complex function colloidal sol: secure ph is the aqueous solution of 1-3, obtains acidic aqueous solution;Titanium salt will be contained It is scattered in anhydrous alcohol solution, obtains titanium solution;The titanium salt that contains is butyl titanate, and the dosage containing titanium salt is 4g/L.? Under stirring, cryogenic conditions, the speed of the stirring is 800r/min, and the cryogenic conditions are 25 DEG C, and resulting titanium solution is delayed Slowly it is added in acidic aqueous solution, obtains titaniferous aqueous solution;Under stirring, ultrasound condition, the speed of the stirring is 800r/ Min, the ultrasound condition are 35KHz;Zinc oxide nanoparticle/the cluster, halogenation silver nano-grain/cluster functional additive Dosage be respectively 0.8g/L, 0.2g/L, functional additive is added into resulting titaniferous aqueous solution, under stirring condition at ageing Reason 1-5 days, obtains complex function colloidal sol;
The step of spraying: complex function colloidal sol is sprayed on the inorganic multi-stage porous matrix surface that temperature is 150 DEG C, is then existed At a temperature of 350 DEG C, it is heat-treated 20 minutes.The complex function colloidal sol is in the mass content of inorganic multi-stage porous matrix surface 1g/m2
Embodiment 3 is a kind of with adsorption-decomposition function pernicious gas+dehumidifying damping+deodorization complex function multi-stage porous ceramic material
A kind of multi-stage porous ceramic material with complex function, sprays by inorganic multi-stage porous matrix and by complex function colloidal sol It is formed in the complex function thin film of inorganic multi-stage porous matrix surface;The complex function thin film by titanium dioxide, functional additive, Acidic aqueous solution is prepared;The functional additive be selected from copper oxide nanometer particle/cluster, halogenation silver nano-grain/cluster, Pucherite nano particle/cluster composition.Copper oxide nanometer particle/cluster, halogenation silver nano-grain/cluster, pucherite nanometer Particle/cluster is 1:1:1 with volume ratio.
The preparation method of the multi-stage porous ceramic material, includes the following steps:
The step of preparing inorganic multi-stage porous matrix: inorganic multi-stage porous matrix is 1 He of inoganic solids powder of 2:1 with weight ratio Inoganic solids powder 2 is raw material, is made through granulation, molding, 600-900 DEG C;Inoganic solids powder 1 is sepiolite, inorganic Solid powder 2 is montmorillonite.The aperture of the porous, inorganic matrix is 22nm-32nm.
The step of preparing complex function colloidal sol: secure ph is the aqueous solution of 1-3, obtains acidic aqueous solution;Titanium salt will be contained It is scattered in anhydrous alcohol solution, obtains titanium solution;The titanium salt that contains is butyl titanate, and the dosage containing titanium salt is 50g/L.? Under stirring, cryogenic conditions, the speed of the stirring is 800r/min, and the cryogenic conditions are 25 DEG C, and resulting titanium solution is delayed Slowly it is added in acidic aqueous solution, obtains titaniferous aqueous solution;Under stirring, ultrasound condition, the speed of the stirring is 800r/ Min, the ultrasound condition are 35KHz;The dosage of complex function additive is 8g/L, is added into resulting titaniferous aqueous solution Functional additive obtains complex function colloidal sol ripening 1-5 days under stirring condition;
The step of spraying: complex function colloidal sol is sprayed on the inorganic multi-stage porous matrix surface that temperature is 200 DEG C, is then existed At a temperature of 500 DEG C, it is heat-treated 60 minutes.The complex function colloidal sol is in the mass content of inorganic multi-stage porous matrix surface 25g/m2
Embodiment 4: one kind having adsorption-decomposition function pernicious gas+dehumidifying damping+ deodorizationThe multi-stage porous of+antiallergy complex function Ceramic material
A kind of multi-stage porous ceramic material with complex function, sprays by inorganic multi-stage porous matrix and by complex function colloidal sol It is formed in the complex function thin film of inorganic multi-stage porous matrix surface;The complex function thin film is by titanium dioxide, photo-catalysis function Additive, acidic aqueous solution and gallic acid with anti-allergic effects, tannic acid, polyvinyl alcohol and polyvinyl phenol it is anti- Allergy functional additive is prepared;The photo-catalysis function additive is copper oxide nanometer particle/cluster, cupric oxide nano Grain/cluster is 1:1 with volume ratio.The volume ratio of gallic acid, polyvinyl alcohol and polyvinyl phenol in antianaphylaxis function additive For 2:2:1.
The preparation method of the multi-stage porous ceramic material, includes the following steps:
The step of preparing inorganic multi-stage porous matrix: inorganic multi-stage porous matrix is 1 He of inoganic solids powder of 5:1 with weight ratio Inoganic solids powder 2 is raw material, is made through granulation, molding, 600-900 DEG C;Inoganic solids powder 1 is allophane, nothing Machine solid powder 2 is bentonite.The aperture of the porous, inorganic matrix is 16nm-32nm.
The step of preparing complex function colloidal sol: secure ph is the aqueous solution of 1-3, obtains acidic aqueous solution;Titanium salt will be contained It is scattered in anhydrous alcohol solution, obtains titanium solution;The titanium salt that contains is butyl titanate, and the dosage containing titanium salt is 50g/L.? Under stirring, cryogenic conditions, the speed of the stirring is 800r/min, and the cryogenic conditions are 25 DEG C, and resulting titanium solution is delayed Slowly it is added in acidic aqueous solution, obtains titaniferous aqueous solution;Continue the function that addition has anti-allergic effects in above-mentioned phthalein solution It can additive.Under stirring, ultrasound condition, the speed of the stirring is 800r/min, and the ultrasound condition is 35KHz;It is described The dosage of functional additive is 25g/L, the addition photo-catalysis function additive into resulting titaniferous aqueous solution, old under stirring condition Change processing 1-5 days, obtains complex function colloidal sol;
The step of spraying: complex function colloidal sol is sprayed on the inorganic multi-stage porous matrix surface that temperature is 250 DEG C, is then existed At a temperature of 600 DEG C, it is heat-treated 120 minutes.The complex function colloidal sol is in the mass content of inorganic multi-stage porous matrix surface 50g/m2
Effect assessment and performance detection
1. being verifying example, the ability of observation multi-stage porous ceramic material degradation rhodamine with embodiment 1-4.
Detection method is as follows: take four groups of test tubes, every group of test tube contains 7 test tubes, be separately added into the rhodamine of equivalent with The water of equivalent is dissolved, then the complex function colloidal sol in the corresponding embodiment 1-4 that equivalent is added, in ultraviolet-visible light spoke After 0min, 5min, 10min, 20min, 30min, 45min, 60min, observation complex function colloidal sol degrades to rhodamine Decolorizing effect afterwards, and describe decoloration curve, the abscissa for the curve that decolourizes is light application time, and ordinate is that rhodamine is dense Degree, as a result referring to fig. 2-6.
Fig. 2 is that 2 multi-stage porous ceramic material of the embodiment of the present invention degrades rhodamine aqueous solution with ultraviolet-visible light spoke Take time extended decoloration picture;As seen from Figure 2, with the extension of ultraviolet-visible light irradiation time, complex function colloidal sol To rhodamine degradation after decolorizing effect be more obvious, illustrate complex function colloidal sol of the invention can degrade rhodamine dye Material is applied on specific inorganic multi-stage porous matrix, the applicable scene of its product can be made to add extensively.
Fig. 3 is rhodamine aqueous solution of degrading under 1-4 of embodiment of the present invention multi-stage porous ceramic material ultraviolet-visible light Decolourize curve.As seen from Figure 3, embodiment 1-4 multi-stage porous ceramic material can degrade Luo Dan in rhodamine aqueous solution Bright dyestuff.
Fig. 4 is nitrogen adsorption-desorption curve of 2 multi-stage porous ceramic material of the embodiment of the present invention;Specific surface as seen from Figure 4 Product is probably in 82.1295m2/g,.Hysteresis loop, which is begun with, in relative pressure 0.5 illustrates that hole is bigger.What higher-pressure region adsorbance rose Comparatively fast, illustrate that macropore is relatively more, belong to IV type adsorption isotherm, aperture size is larger and distribution is relatively wide.
Fig. 5 is the pore size distribution curve of 2 multi-stage porous ceramic material of the embodiment of the present invention;The aperture of material as seen from Figure 5 For size range in 16nm-32nm, the absorption property of material is stronger.At this point, the main pore structure of material is mesoporous, and Jie Hole aperture is inhomogenous.
Fig. 6 is the electron scanning micrograph of 2 multi-stage porous ceramic material of the embodiment of the present invention.By clearly visible in Fig. 6 The hole for having many sizes inhomogenous to multi-stage porous ceramic material surfaces.
2. being verifying example with embodiment 1-4, the ability of multi-stage porous ceramic material degradation of formaldehyde is observed
Test method is as follows:
1. experimental condition: carrying out test purification product removal gas with two Laboratory Modules (A is blank cabin, and B is sample chamber) The concentration of polluter.2. experimental condition carries out at normal temperatures and pressures.The preparation of pollution sources: with the medical degreasing of 17cm*40cm Reagent bottle of 500ml is fixed with cotton thread and be uprightly placed on it to 5 layers of gauze volume on 2 diameter 5mm, the glass bar of long 30cm In, it is packed into 200ml, the formaldehyde that concentration is 0.2%.And container is pasted A1、B1.3. experimental procedure: sample is put into sample chamber B, By the container A of the pollutant source of release prepared1And B1It is respectively placed in blank assay cabin A and sampling test cabin B, closes cabin immediately Door.The fan of Laboratory Module is opened, so that air in cabin is simultaneously closed off wind with after the pollutant mixing of source of release release after opening 1min Fan, samples the air in blank cabin, and the concentration value for measuring pollutants in air in blank cabin is initial concentration, is denoted as C0.The pollutant concentration in two cabins is sampled after 24H, analysis test, the concentration value in the cabin A, B as in certain time period, It is denoted as CAWith CB.Scavenging material is to pollutants removal rate according to formula
In formula:
Y-removal rate, %;
CA- blank assay cabin pollutant concentration value, mg/m3
CBPollutant concentration value, mg/m in-sample chamber3
Test result and analysis:
Table 1 is the aptitude tests result of embodiment 1-4 multi-stage porous ceramic material degradation of formaldehyde
As shown in table 1, blank cabin concentration of formaldehyde value is 1.08mg/m after test result is for 24 hours3, sample chamber concentration of formaldehyde value 0.04~0.07mg/m3, formaldehyde removal rate is 93.5~96.3% for 24 hours.
3. being verifying example with embodiment 2, the ability of multi-stage porous ceramic material antibacterial is observed
Test method is as follows: 1. tests use plate culture, and culture on certain colony inoculation to measuring samples is acted on Certain time observes its clump count (cfu), calculates antibacterial product to the antibiotic rate of bacterium.Staphylococcus aureus is prepared first With the culture medium of Escherichia coli, 85% physiological saline and phosphate buffer are then configured.2. operating method: 2.1 breakdown standards Strain inoculated 3-4 branch on nutrient agar slopes in test tube, being placed in 36 DEG C of ± 1 DEG C of insulating boxs and cultivating 18~20h is the first generation, 2~8 DEG C are placed on to save backup.It takes first generation strain to be directly inoculated with nutrient agar slopes, is cultivated in 36 DEG C of ± 1 DEG C of insulating boxs 18~20h continuously reaches the third generation as experiment strain.Strain is scraped off dilution as bacterium standard by 2.2 preparation bacterium solutions Opacity tube concentration is identical, and as 5 × 108A bacterium/ml.Then 1.0 × 10 are diluted to8After a bacterium/ml, carries out 10 times and be serially diluted 10-1~10-6Various concentration bacterium solution.2.3 take 10-1Dilution bacterium solution 0.1ml is directly inoculated in nutrient agar plate, is done 3 and is put down For 24 hours in 36 DEG C of ± 1 DEG C of cultures, clump count is 0h clump count to ware.Take above-mentioned 10-3Dilution bacterium solution 0.5ml is inoculated in 50mm respectively The surface of test piece of × 50mm is simultaneously paved, and is covered surface of test piece with insurance plastic film, is kept 90% or more humidity, make surface of test piece Bacterium solution is not done after for 24 hours.Set 36 DEG C of ± 1 DEG C of cultures for 24 hours.Test specimen after taking culture for 24 hours, respectively will examination with 9.5ml physiological saline Bacterium solution on part is flushed in sterilizing plates, is diluted to 5000~10000 bacterium/ml after mixing.At 5000~10000 1~2 signal bacterial concentration is selected between bacterium/ml, and 0.1ml is respectively taken to make clump count (cfu) calculating.Each dilution is inoculated with nutrition fine jade Rouge plate three, result is observed for 24 hours in 36 DEG C of ± 1 DEG C of cultures.
In formula: the clump count on test specimen that A-is cultivated for 24 hours;
Clump count on B-" 0 " time of contact test specimen.
Test result and analysis: after tested the result shows that: the antibiotic rate of Escherichia coli be 99.27%, Staphylococcus aureus The antibiotic rate of bacterium is 99.25%.
4. being verifying example with embodiment 3, the ability of multi-stage porous ceramic material deodorization is observed
Test method is as follows: 1. experimental conditions: carrying out test purification with two Laboratory Modules (A is blank cabin, and B is sample chamber) The concentration of product removal gas pollutant.2. experimental condition carries out at normal temperatures and pressures.The preparation of pollution sources: 17cm* is used 5 layers of the medical absorbent cotton/gauze volume of 40cm are fixed with cotton thread on 2 diameter 5mm, the glass bar of long 30cm and are uprightly placed on it In the reagent bottle of 500ml, it is packed into 200ml, the ammonia that concentration is 1%.And container is pasted A1、B1.3. experimental procedure: sample is put into In sample chamber B, by the container A of the pollutant source of release prepared1And B1It is respectively placed in blank assay cabin A and sampling test cabin B, Hatch door is closed immediately.The fan of Laboratory Module is opened, is made in cabin after the pollutant mixing of air and source of release release after opening 1min, Fan is simultaneously closed off, the air in blank cabin is sampled, the concentration value for measuring ammonia in air in blank cabin is initial concentration, It is denoted as C0.The concentration of the ammonia in two cabins is sampled after 24H, analysis test, the concentration in the cabin A, B as in certain time period Value, is denoted as CAWith CB.4. sampling step:
Scavenging material is to pollutants removal rate according to formula
In formula:
Y-removal rate, %;
CA- blank assay cabin pollutant concentration value, mg/m3
CBPollutant concentration value, mg/m in-sample chamber3
Test result and analysis: blank cabin ammonia density value is 2.01mg/m after for 24 hours3, sample chamber ammonia density value 0.2mg/m3, Ammonia removal rate is 90.0% for 24 hours.
5. being verifying example with embodiment 4, the damping of multi-stage porous ceramic material and antianaphylactic ability are observed
Test method is as follows: the temperature in constant temperature humidity chamber is set as (23 ± 0.5) DEG C.Selection is in low humidity shape first It is tested under state, maintenance humidity is set as 30%, and moisture absorption process humidity is 55%, and humidity is maintained at 30% during moisture releasing.Conserve 2h Samples weighing (m afterwards0) and be put under 55% damp condition and keep for 24 hours.Weight (the m of sample after measurement for 24 hoursa).Then quickly Humidity in case is adjusted to 30% from 55%, keeps for 24 hours, then measuring the weight (m of sample at this timed)。
Antianaphylactic test: it is adsorbed on the solid phase carriers such as polystyrene, is immunized with soluble antigen or antibody The qualitative and quantitative approach of reaction.That is elisa enzyme-linked immunosorbent assay method.
Test result and analysis: 3h hygroscopic capacity is 46 × 10-3kg/m2, 6h hygroscopic capacity is 88 × 10-3kg/m2, 12h moisture absorption Amount is 121 × 10-3kg/m2, hygroscopic capacity is 171 × 10 for 24 hours-3kg/m2.Comply with standard and remote overproof hygroscopic capacity >=25 3h × 10-3kg/m2, hygroscopic capacity >=35 × 10 6h-3kg/m2, hygroscopic capacity >=55 × 10 12h-3kg/m2, hygroscopic capacity >=60 × 10 for 24 hours-3kg/ m2.Moisture releasing amount is 124 × 10 for 24 hours-3kg/m2
Test result shows that Elisa concentration is less than 1ng/ml after the test of elisa antiallergy, and galla turcica is used alone The result of acid is greater than 5ng/ml.
The above embodiment is only the preferred embodiment of the present invention, and the scope of protection of the present invention is not limited thereto, The variation and replacement for any unsubstantiality that those skilled in the art is done on the basis of the present invention belong to institute of the present invention Claimed range.

Claims (10)

1. a kind of multi-stage porous ceramic material with complex function, which is characterized in that by inorganic multi-stage porous matrix and by compound function Energy colloidal sol is sprayed on the complex function thin film composition of inorganic multi-stage porous matrix surface;The complex function colloidal sol is by containing titanium salt, acid Property aqueous solution, functional additive are prepared;The functional additive is selected from Zinc oxide nanoparticle/cluster, cupric oxide nano Particle/cluster, halogenation silver nano-grain/cluster, pucherite nano particle/cluster, graphite phase carbon nitride nano particle/cluster, Silver/copper nanocrystallite, gallic acid, polyvinyl alcohol, two or more different function in polyvinyl phenol compound.
2. as described in claim 1 with the multi-stage porous ceramic material of complex function, which is characterized in that the inorganic multi-stage porous Matrix is made using a variety of inoganic solids powder as raw material through granulation, molding, 600-900 DEG C;The inoganic solids powder is selected from Diatomite, allophane, montmorillonite, Emathlite, bentonite, zeolite, attapulgite, sepiolite, flyash, waste gypsum, rubbish Rubbish burns the composition of one or more of ash content, float stone, medical stone, tourmaline, rutile.
3. as described in claim 1 with the multi-stage porous ceramic material of complex function, which is characterized in that the inorganic multi-stage porous The aperture of matrix is distributed in nanometer scale to submillimeter magnitude.
4. as described in claim 1 with the multi-stage porous ceramic material of complex function, which is characterized in that the complex function is molten The preparation method of glue the following steps are included:
The step of preparing acidic aqueous solution: acid is added in aqueous solution, obtains acidic aqueous solution;
The step of preparing titanium solution: it disperses titaniferous salt in dehydrated alcohol, obtains titanium solution;
The step of mixing: under stirring, 5-40 DEG C of cryogenic conditions, resulting titanium solution is slowly added into acidic aqueous solution In, obtain titaniferous aqueous solution;
The step of functional additive is added: functional additive is added into resulting titaniferous aqueous solution under stirring, ultrasound condition; Under stirring condition, 5-40 DEG C ripening 1-5 days, obtain complex function colloidal sol;
The step of cryo-conservation: it will be saved under 5-40 DEG C of low temperature after the encapsulation of complex function colloidal sol, be stand-by.
5. as claimed in claim 4 with the multi-stage porous ceramic material of complex function, which is characterized in that acid water-soluble preparing In the step of liquid, acid mixed acid one or more kinds of in acetic acid, hydrochloric acid, sulfuric acid, the acidic aqueous solution PH value is 1-5.
6. as claimed in claim 4 with the multi-stage porous ceramic material of complex function, which is characterized in that preparing titanium solution It is described to be selected from one or more of butyl titanate, titanium tetrachloride, titanium tetraisopropylate, isopropyl titanate containing titanium salt in step, The dosage containing titanium salt is 0.5-50g/L.
7. as claimed in claim 4 with the multi-stage porous ceramic material of complex function, which is characterized in that in the step of mixing In, the speed of the stirring is 500-1000rpm, and the cryogenic conditions are 5-40 DEG C.
8. as claimed in claim 4 with the multi-stage porous ceramic material of complex function, which is characterized in that function addition is being added In the step of agent, the speed of the stirring is 500-1000rpm, and the ultrasound condition is 20-40KHz;The functional additive Dosage be 0.05-25g/L.
9. a kind of preparation method of the multi-stage porous ceramic material with complex function, which comprises the steps of:
The step of preparing inorganic multi-stage porous matrix: the inorganic multi-stage porous matrix is using a variety of inoganic solids powder as raw material, through making Grain, molding, 600-900 DEG C be made;
The step of preparing complex function colloidal sol: secure ph is the aqueous solution of 1-5, obtains acidic aqueous solution;Titaniferous salt is dispersed In dehydrated alcohol, titanium solution is obtained;Under stirring, 5-40 DEG C of cryogenic conditions, resulting titanium solution is slowly added into acid In property aqueous solution, titaniferous aqueous solution is obtained;Function addition is added into resulting titaniferous aqueous solution under stirring, ultrasound condition Agent obtains complex function colloidal sol ripening 1-5 days under stirring condition;
The step of spraying: complex function colloidal sol is sprayed on the inorganic multi-stage porous matrix surface that temperature is 100-250 DEG C, is then existed It is heat-treated 10-120 minutes at a temperature of 300-600 DEG C.
10. preparation method as claimed in claim 9, which is characterized in that in the step of spraying, the complex function colloidal sol exists The mass content of inorganic multi-stage porous matrix surface is 0.1-50g/m2
CN201811601611.6A 2018-12-26 2018-12-26 A kind of multi-stage porous ceramic material and preparation method thereof with complex function Pending CN109776083A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811601611.6A CN109776083A (en) 2018-12-26 2018-12-26 A kind of multi-stage porous ceramic material and preparation method thereof with complex function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811601611.6A CN109776083A (en) 2018-12-26 2018-12-26 A kind of multi-stage porous ceramic material and preparation method thereof with complex function

Publications (1)

Publication Number Publication Date
CN109776083A true CN109776083A (en) 2019-05-21

Family

ID=66498584

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201811601611.6A Pending CN109776083A (en) 2018-12-26 2018-12-26 A kind of multi-stage porous ceramic material and preparation method thereof with complex function

Country Status (1)

Country Link
CN (1) CN109776083A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110237803A (en) * 2019-06-18 2019-09-17 南京永能新材料有限公司 A kind of environment-friendly garbage deodorant and preparation method thereof
CN111893833A (en) * 2020-07-27 2020-11-06 朱晶磊 Asphalt pavement with low-noise and anti-skid functions and preparation method thereof
CN112741979A (en) * 2020-12-07 2021-05-04 东南大学 Dearsenic adsorbent in pyrolysis treatment process of urban garbage
CN114100655A (en) * 2021-10-27 2022-03-01 石家庄学院 Preparation method of surface-modified functional ceramic-based Bi-based composite photocatalytic material
CN115254154A (en) * 2022-08-10 2022-11-01 浙江库实健康科技有限公司 Mineral particles with indoor VOCs purification function and preparation method thereof
CN116004184A (en) * 2023-02-07 2023-04-25 西南石油大学 Nano metal oxide/carbon composite wave-absorbing material and preparation method thereof

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101318823A (en) * 2008-07-03 2008-12-10 浙江大学 Method for manufacturing vanadium doped visible light-responsible titanium dioxide nanocrystalline composite colloidal sols
CN101891497A (en) * 2010-07-02 2010-11-24 华北水利水电学院 Kieselguhr-based porous ceramics and method for loading Ag doped with nano TiO2 on same
CN103100386A (en) * 2013-01-15 2013-05-15 汕头大学 Preparation method of monolithic catalyst for degrading VOCS (Volatile Organic Compounds)
CN103521218A (en) * 2013-10-29 2014-01-22 中国海洋石油总公司 Preparation method for photocatalyst used for treating volatile organic compounds
CN106475125A (en) * 2016-08-29 2017-03-08 上海电力学院 Graphite phase carbon nitride and nano titanium oxide composite coating additive and preparation method
CN106902797A (en) * 2017-03-31 2017-06-30 北京师范大学 The light floamed ceramic composite of area load photocatalytic activity layer
CN108201889A (en) * 2016-12-17 2018-06-26 天津发洋环保科技有限公司 It is a kind of using porous ceramics as the photocatalyst air purifying material of carrier

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101318823A (en) * 2008-07-03 2008-12-10 浙江大学 Method for manufacturing vanadium doped visible light-responsible titanium dioxide nanocrystalline composite colloidal sols
CN101891497A (en) * 2010-07-02 2010-11-24 华北水利水电学院 Kieselguhr-based porous ceramics and method for loading Ag doped with nano TiO2 on same
CN103100386A (en) * 2013-01-15 2013-05-15 汕头大学 Preparation method of monolithic catalyst for degrading VOCS (Volatile Organic Compounds)
CN103521218A (en) * 2013-10-29 2014-01-22 中国海洋石油总公司 Preparation method for photocatalyst used for treating volatile organic compounds
CN106475125A (en) * 2016-08-29 2017-03-08 上海电力学院 Graphite phase carbon nitride and nano titanium oxide composite coating additive and preparation method
CN108201889A (en) * 2016-12-17 2018-06-26 天津发洋环保科技有限公司 It is a kind of using porous ceramics as the photocatalyst air purifying material of carrier
CN106902797A (en) * 2017-03-31 2017-06-30 北京师范大学 The light floamed ceramic composite of area load photocatalytic activity layer

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
冯文林等主编: "《近代物理实验教程》", 28 February 2015, 重庆大学出版社 *
朱静平主编: "《化学材料合成与制备技术实训》", 31 July 2014, 北京理工大学出版社 *

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110237803A (en) * 2019-06-18 2019-09-17 南京永能新材料有限公司 A kind of environment-friendly garbage deodorant and preparation method thereof
CN111893833A (en) * 2020-07-27 2020-11-06 朱晶磊 Asphalt pavement with low-noise and anti-skid functions and preparation method thereof
CN113265926A (en) * 2020-07-27 2021-08-17 朱晶磊 Asphalt pavement with low-noise anti-skid function
CN112741979A (en) * 2020-12-07 2021-05-04 东南大学 Dearsenic adsorbent in pyrolysis treatment process of urban garbage
CN114100655A (en) * 2021-10-27 2022-03-01 石家庄学院 Preparation method of surface-modified functional ceramic-based Bi-based composite photocatalytic material
CN115254154A (en) * 2022-08-10 2022-11-01 浙江库实健康科技有限公司 Mineral particles with indoor VOCs purification function and preparation method thereof
CN116004184A (en) * 2023-02-07 2023-04-25 西南石油大学 Nano metal oxide/carbon composite wave-absorbing material and preparation method thereof
CN116004184B (en) * 2023-02-07 2024-04-16 西南石油大学 Nano metal oxide/carbon composite wave-absorbing material and preparation method thereof

Similar Documents

Publication Publication Date Title
CN109776083A (en) A kind of multi-stage porous ceramic material and preparation method thereof with complex function
CN104263049B (en) A kind of interior sheet material seam eliminates the unusual smell putty paste and preparation method thereof
CN107252699B (en) Photocatalyst microsphere for indoor air purification and light storage and preparation method thereof
CN107349111A (en) Application of the porous framework material in facial mask
CN110204933A (en) A kind of multifunction negative ion dry powder paint
CN105688660B (en) Using photocatalyst of titanium dioxide as material for air purification of base material and preparation method thereof
CN108558381A (en) A kind of the diatomite nogging and preparation method of high-efficient purification room air
CN103966769A (en) Method for preparing photocatalysis self-cleaning nanometer fiber felt
CN110586093A (en) Inorganic material with antibacterial and catalytic activity and preparation method thereof
CN110628246A (en) Composite photocatalyst wall coating
CN101492282A (en) Finishing material with negative ion release tripolite as raw material and manufacturing technique
CN103966686B (en) A kind of preparation method of photocatalytic self-cleaning curtain fiber
KR100956843B1 (en) Antimicrobial photocatalyst, antimicrobial articles coated with photocatalyst and manufacturing method thereof
CN105478075A (en) Air-purifying modified nano-composite material for aqueous system
KR20100041251A (en) Preparation method of inorganic coating composition with humidity control and harmful materials reduction function
KR101754266B1 (en) Manufacturing method of antibiosis deodorant using firing diatomite, and a deodorant thereby
CN101327423B (en) Spherical particle compound material containing active carbon and preparation technique thereof
CN111841518A (en) Composite photocatalyst and photocatalyst material
KR101168010B1 (en) The multi-functional eco-friendly interior panel for living space, based on aqueous silicate binder with variety of mineral fine powders that possess high anti-microbacteral with execllent mildew-resistant effect and should be able to produce hign ecological functionality, the composition and eco-friendly interior panel and making method thereof
CN110304888A (en) A kind of heat preservation humidity conditioning dry powder diatom ooze and preparation method thereof
CN106242455A (en) A kind of composite multi-functional meerschaum/kieselguhr basic ring protects chamber interior walls material
CN106689201B (en) Nano silver antibacterial agent and preparation method thereof
CN107686290A (en) Purify antimicrobial form diatom ooze wall material
KR20120026260A (en) Method of manufacturing moisture absorbent and deodorant by microorganism on diatomite and opal
CN109011920B (en) Antibacterial air filtering membrane

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
TA01 Transfer of patent application right

Effective date of registration: 20201119

Address after: 200333 Room 408, No. 2088, Caoyang Road, Putuo District, Shanghai

Applicant after: Asia Building Materials Co.,Ltd.

Address before: Room 608, floor 6, block C, building 2, No. 131, Jihua West Road, Chancheng District, Foshan City, Guangdong Province

Applicant before: GUYI (GUANGDONG) BUILDING MATERIALS Co.,Ltd.

TA01 Transfer of patent application right