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    • 2. 发明专利
    • OPTICAL MEMORY ELEMENT
    • JP2000090489A
    • 2000-03-31
    • JP26194098
    • 1998-09-16
    • MITSUBISHI CHEM CORP
    • MAENOZONO SHINYAYAMAGUCHI YUKIO
    • G11B7/24G03C1/72
    • PROBLEM TO BE SOLVED: To increase the increase rate of light emission intensity and the holding time of a memory by providing a protective layer consisting of an insulating material on aggregates of light-emitting fine particles which increase and memorize photoluminescence as a function of irradiation amt. of exciting light. SOLUTION: Light-emitting fine particles of 1 to 10 nm particle size consisting of any of metal oxides such as CuCl, CdS, CdSe, InAs, TiO2, SiO and SiO2, phosphorus, fullerenes, dendrimers, phthalocyanine or azo compds. are applied by a spin coating method on a substrate to form a nano-particle thin film. In the nano-particle thin film consisting of the light-emitting fine particles, the average intergranular distance of each light-emitting fine particle is controlled in a range within 2 times as the particle diameter. An insulating material consisting of inorg. compds. such as SiO2, SiOx, TiO2, TiOx, Ta2O5, diamond, Si3N4 or a thin film such as polyimide resin, polycarbonate is applied on the nano-particle thin film to provide a protective layer having to 100 μm diameter of the light-emitting fine particles.
    • 5. 发明专利
    • PRODUCTION OF COKE
    • JPH09316454A
    • 1997-12-09
    • JP8733597
    • 1997-03-24
    • MITSUBISHI CHEM CORP
    • MUNEKANE FUMINORIYAMAGUCHI YUKIOTANIOKA SEIICHI
    • C10B21/20C10B41/00C10B45/00
    • PROBLEM TO BE SOLVED: To obtain the substantially maximal quantity of a surplus gas in a chamber oven type coke oven for carrying out the carbonization treatment of a raw material coal according to a uniform heating method. SOLUTION: This method for producing coke by using a uniform heating method with a chamber oven type coke oven comprises controlling the moisture content in a raw material coal to the optimal value computed by the simulation in relation to the heat transfer and reaction in the carbonization chamber of the coke oven in order to maximize the net quantity of a gas obtained by subtracting the quantity of a fuel gas required for the carbonization treatment from the quantity of the produced gas at the time of carrying out the carbonization treatment of the raw material coal when the operation rate of the coke oven and properties of the raw material coal such as moisture content or volatile content are determined, in the method for producing coke by using the uniform heating method with the chamber oven type coke oven.
    • 6. 发明专利
    • PRODUCTION OF COKE
    • JPH09316453A
    • 1997-12-09
    • JP8733397
    • 1997-03-24
    • MITSUBISHI CHEM CORP
    • MUNEKANE FUMINORIYAMAGUCHI YUKIOTANIOKA SEIICHI
    • C10B21/20C10B41/00C10B45/00
    • PROBLEM TO BE SOLVED: To obtain the maximal quantity of a surplus gas within a temperature range in which the coke grade is expectedly maintained for the temperature of a combustion temperature set when carrying out the carbonization of a raw material coal and producing coke in a chamber oven type coke oven. SOLUTION: This method for producing coke by using a uniform heating method with a chamber oven type coke oven comprises setting the baking reference temperature in order to maximize the net gas quantity obtained by subtracting the quantity of a fuel gas required for the carbonization treatment from the quantity of the produced gas at the time of carrying out the carbonization treatment of a raw material coal at the optimal value computed by the simulation in relation to the heat transfer and reaction in the carbonization chamber of the coke oven, maintaining the set reference temperature and performing the carbonization treatment when the operation rate of the coke oven and properties of the raw material coal such as moisture content or volatile content are determined, in the method for producing coke by using the uniform heating method with the chamber oven type coke oven.