Production of Ceramics Using Negative Ions
专利摘要:
The present invention relates to the production of anionic antibacterial ceramics. More specifically, when firing pottery, anionic antibacterial ceramics are prepared by synthesizing 0.5 mol of tourmaline powder, which is a large amount of anion generating material, with 0.5 moles of zinc powder, which is an antimicrobial metal, by mixing with emulsion, etc. It is characterized by the manufacture of functional ceramics. 公开号:KR20040032717A 申请号:KR1020020063017 申请日:2002-10-09 公开日:2004-04-17 发明作者:최명부;이광덕 申请人:최명부;이광덕; IPC主号:
专利说明:
Production of Ceramics Using Negative Ions [1] The present invention is to produce a functional porcelain by synthesizing a tourmaline powder, a mineral that generates a large amount of negative ions and a zinc powder, which is an antibacterial metal with excellent antimicrobial properties, in porcelain latex. It is decayed and rotted by the back and smells. [2] In order to solve this problem, the present invention synthesizes pottery by synthesizing tourmaline powder and zinc powder, which are anion-generating substances, in an emulsion applied to the surface of porcelain in order to prevent bone from being decayed by anion and antibacterial treatment to the crypts frequently used in crypts. By firing it can be provided with crypts excellent in deodorizing effect as well as antibacterial and antiseptic effect. [3] In the present invention, the core technology is an antimicrobial metal, which has high antimicrobial properties (silver) but is expensive. [4] In the present invention, the use of zinc as an antimicrobial agent is an inorganic zinc causes a genetic variation in the factor, so it is a problem in use, but oxidizes zinc, which has been proved to be excellent in antibacterial activity, zinc oxide is used as a children's sweat medicine, and zinc chloride has a bactericidal and antiseptic effect. Is very excellent. [5] According to the present invention, when the inorganic zinc is formulated together with the emulsion, it is calcined at 1,260 degrees, so that the zinc powder is not exposed or dropped, and thus high antimicrobial properties can be maintained. By increasing the antimicrobial effect while increasing the bones of the bones are characterized by decay or odor removal. [6] According to the present invention, the anion antibacterial ceramics are manufactured by releasing an anion into the ceramics in a large quantity and using them as vases or pots to purify the air of chemical, electrical, and radioactive substances, and to clean various polluted air smells of tobacco in the room. Pollen plant promotes the growth, and the effect of negative ions on the human body is the brain's alpha wave is activated by drinking 1000 negative ions / cc to relax the mind, blood purification, mental stability, autonomic nervous system, It is reported that the effect of immune strengthening, pulmonary strengthening, analgesic, cell activation, air-vitamin action, allergic constitution and so on. [7] In the present invention, it is characterized in that it can generate 2000 / cc per g anion. [8] The mechanism of the tourmaline which is an anion generating material in the present invention is as follows. [9] Tourmaline is semi-permanently fine electricity flows. [10] The intensity of the current is a weak current of about 0.06A and is a mineral material in which microcurrent flows. [11] The tourmaline is separated by friction and the vertical pressure or the air or the like is tipped a hydrogen ion to the water molecule (HO 2) surrounding also (H +) and hydroxide ions (OH), and wherein the hydrogen ions (H +) in tourmaline negative potential Attracted and released into the air as hydrogen molecules (H 2 ). In addition, hydroxyl ions (OH) combine with the surrounding water molecules to form Hydroxyl ions (H 3 O 2 ) and these particles are measured as anions. [12] In addition, the antimicrobial properties of zinc used in the present invention are omitted, and in particular, it is used as an antimicrobial agent by synthesizing it with porcelain emulsion using a melting point of zinc at 600 degrees. [13] In order to form an anion antimicrobial porcelain of the present invention as described above, it is used as a porcelain emulsion by synthesizing a tourmaline emulsion and a tourmaline powder and zinc powder which is an anion generating material. [14] Anion Antibacterial Ceramics Manufacturer [15] Example 1 [16] ㆍ 1st process [17] Formulate from existing ceramics and quantify 1000g of ceramic latex. [18] ㆍ 2nd process [19] 50g of tourmaline powder, an anion generating material, is quantified. [20] ㆍ 3rd process [21] Weigh 50 g of zinc powder. [22] ㆍ 4th process [23] Anionic antibacterial emulsion is prepared by synthesizing 50 g of the second step tourmaline powder and 50 g of the zinc powder of the third step to 1000 g of the first step porcelain emulsion. [24] ㆍ 5th process [25] The ceramics dried on a mold are immersed in an emulsion of the fourth process, dried, and fired at 1,260 degrees Celsius to produce anionic antibacterial ceramics of the present invention. [26] As described above, the present invention is to prevent the bone dust of the bones to be decayed when using the anion and antibacterial treatment to existing porcelain, and to make bones of the bones, and in particular, to produce anion by making a flower pot or a vase to purify the air in the room. It is also characterized by having a very good effect on humans by generating anions by activating plant growth.
权利要求:
Claims (1) [1" claim-type="Currently amended] The present invention relates to the production of anionic antimicrobial ceramics, anionic antimicrobial ceramics made by synthesizing 50g and 50g zinc powder, which is an anion generating material, and 50g of zinc powder, which are widely used in porcelain emulsions.
类似技术:
公开号 | 公开日 | 专利标题 Haider et al.2015|Preparation of silver nanoparticles and their industrial and biomedical applications: a comprehensive review Bari et al.2017|Copper-containing mesoporous bioactive glass nanoparticles as multifunctional agent for bone regeneration JP3109101B2|2000-11-13|Antimicrobial solid, method for producing the same, and method for using the same Chu2007|Plasma-treated biomaterials US6315959B2|2001-11-13|Salt air freshener apparatus and method Kaya et al.2018|Mesoporous silica-based bioactive glasses for antibiotic-free antibacterial applications CN100579919C|2010-01-13|Method and apparatus for generating hydrogen-enriched water CN100493696C|2009-06-03|Doped zinc oxide and its preparation and application for photocatalysis degradation for organic matter and killing bacteria JP2005501113A|2005-01-13|Antibacterial glass powder that suppresses inflammation and heals wounds, and method of using the same Kolmas et al.2014|Substituted hydroxyapatites with antibacterial properties Zhang et al.2017|3D-printed bioceramic scaffolds with antibacterial and osteogenic activity WO2002085385A3|2003-01-16|Medicament containing a metal such as silver, gold, platinum or palladium as an antimicrobial agent and their use in the treatment of diseases of the mucosa Liu et al.2011|Effect of tricalcium aluminate on the properties of tricalcium silicate–tricalcium aluminate mixtures: setting time, mechanical strength and biocompatibility JP2005500972A|2005-01-13|Water insoluble antibacterial silicate glass and method of use CN105478003A|2016-04-13|New material with air cleaning function and preparation method thereof EP1499564A1|2005-01-26|Sterilisation system, especially for sterilising drinking water and industrial water and the production and use of said sterilisation system DE102004011520A1|2005-10-06|Antimicrobial refractive index adapted phosphate glass CA2671798A1|2008-07-10|Precipitated silica materials exhibiting high compatibility with cetylpyridinium chloride CN104072084B|2016-04-06|Nano ore powder multiple-effect flexible ceramic vessel CN103539485B|2017-06-27|It is a kind of that the modified method of ceramic material surfaces is carried out by Liquid Penetrant EP2261189A3|2013-01-16|Leucite based glass ceramic containing nanoscale metallic oxide powder CN104386982B|2017-05-10|Environmental-friendly tourmaline composite home decoration material and preparation method thereof JP2006518697A|2006-08-17|Antimicrobial action phosphate glass JP5224427B2|2013-07-03|Composite material into calcium phosphate layer and method for producing the same CN103397532A|2013-11-20|Winter element fiber body-building protective suit for ship repairing and building personnel
同族专利:
公开号 | 公开日
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
法律状态:
2002-10-09|Application filed by 최명부, 이광덕 2002-10-09|Priority to KR1020020063017A 2004-04-17|Publication of KR20040032717A
优先权:
[返回顶部]
申请号 | 申请日 | 专利标题 KR1020020063017A|KR20040032717A|2002-10-09|2002-10-09|Production of Ceramics Using Negative Ions| 相关专利
Sulfonates, polymers, resist compositions and patterning process
Washing machine
Washing machine
Device for fixture finishing and tension adjusting of membrane
Structure for Equipping Band in a Plane Cathode Ray Tube
Process for preparation of 7 alpha-carboxyl 9, 11-epoxy steroids and intermediates useful therein an
国家/地区
|