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    • 4. 发明专利
    • PRODUCTION OF DEODORANT AND ANTIMICROBIAL CERAMIC POWDER MATERIAL
    • JPH1112024A
    • 1999-01-19
    • JP19473397
    • 1997-06-16
    • NIPPON MIZUSHIYORI GIKEN KK
    • TOKUDA YOSHIYUKIISHIYAMA YOSHIYASU
    • A61L9/01B01J2/04C04B35/00
    • PROBLEM TO BE SOLVED: To obtain a ceramic powder material generating active oxygen by exciting effectively water molecules and excellent in deodorizing and antimicrobicidal properties by including silicon oxide and aluminum as a main component, and furthermore including transition element oxides consisting of cobalt oxide, iron oxide, manganese oxide and titan oxide and zinc oxide in the equal compositional rate, followed by burning the mixture uniformly. SOLUTION: This method comprises: (A) preparing a material of silicon oxide and aluminum oxide of 25 to 50 wt.% the silicon oxide, adding to the material 180 to 240 wt.% of water as a binding material based the material and subjecting the resultant mixture to spray burning so as to obtain a silicon oxide-aluminum oxide powder material; (B) adding water in the same ratio as the above to cobalt oxide and iron oxide mixed in an equal ratio and subjecting the resultant mixture to spray burning so as to obtain a cobalt oxide-iron oxide powder material; (C) preparing manganese oxide and titan oxide of 20 to 40 wt.% the manganese oxide, and adding water in the same ratio as the above thereto, followed by subjecting it to spray burning so as to obtain a manganese oxide-titan oxide powder material; and subjecting the mixture of 60 to 80 wt.% of component A, 15 to 30 wt.% of components B and C, and 5 to 10 wt.% of zinc oxide to spray burning.
    • 5. 发明专利
    • ANTIBACTERIAL METHOD
    • JPH10165483A
    • 1998-06-23
    • JP35931996
    • 1996-12-10
    • NIPPON MIZUSHIYORI GIKEN KK
    • TOKUDA YOSHIYUKIISHIYAMA YOSHIYASU
    • A61L2/02A61L2/08
    • PROBLEM TO BE SOLVED: To provide a method to safely inhibit physiological functions and breeding of bacteria for a long time, by utilizing oxygen generated by effectively making water molecules be resonated and excited by electromagnetic wave radiating ceramics powder which can radiate near infrared electromagnetic waves with the radiating wavelength of 2.5-3.2μm and far infrared electromagnetic waves with the radiating wavelength of 5.0-7.4μm. SOLUTION: Electromagnetic wave radiated ceramics powder radiated by near infrared electromagnetic waves with the wavelength of 2.5-3.2μm centering on 2.7 p and far infrared electromagnetic waves with the radiating wavelength of 5.0-7.4μm centering on 5.9-6.6μm at a radiation rate of at least not lower than 0.8 against the radiation rate of a black body and with the particle diameter not larger than 1μm is used to effectively make water molecules in moisture to form bacterial bodies and in environmental water necessary for breeding be resonated and excited and active oxygen generated thereby is utilized to inhibit physiological functions and breeding of bacteria.
    • 6. 发明专利
    • METHOD AND DEVICE FOR PROMOTING HEALTH USING FAR INFRARED RAY
    • JPH1133074A
    • 1999-02-09
    • JP22419797
    • 1997-07-16
    • NIPPON MIZUSHIYORI GIKEN KK
    • TOKUDA YOSHIYUKIISHIYAMA YOSHIYASU
    • A61N5/06A61H33/04A61H33/06
    • PROBLEM TO BE SOLVED: To provide a method and a device for promoting health by far infrared rays by promoting perspiration and metabolism without applying physical burden even to the aged, infants, or the sick. SOLUTION: This health promoting method using far infrared rays is achieved when either zeolite particles obtained when a zeolite with a base substitution capacity (meq/100 g) of 100 meq or more and a pore surface area of 6.0 m /g or more is crushed into particle diameters of 1 to 10 mm, or ceramic particles obtained when electromagnetic-wave-radiating ceramic powders, such that near infrared rays with radiation wavelengths of 2.5 to 3.2 μm and far infrared electromagnetic waves with radiation wavelengths of 5.0 to 7.4 μm have emissivities of at least 0.8 or more with respect to black body emissivity, are supported on the zeolite particles by 0.3 to 3.0 wt.%, are stored by the required capacity in an enclosure 2 whose interior wall surface 3A and bottom surface 3B are made from a heat insulating material 3 and on the bottom face of which a heating element 4 capable of heating the ceramic particles to the required temperature is placed; then the particles are heated to appropriate temperatures of 35 to 50 deg.C, and the body is buried in the heated ceramic particles.