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    • 7. 发明专利
    • METHOD FOR MANUFACTURING ACTIVE COKE WITH HIGH STRENGTH AND HIGH ADSORPTIVE ACTIVITY
    • JPH10296078A
    • 1998-11-10
    • JP10626597
    • 1997-04-23
    • NIPPON STEEL CORP
    • KAMIYAMA HISAAKIUEDA HARUHISA
    • B01D53/56B01D53/81B01J20/20C10B57/00
    • PROBLEM TO BE SOLVED: To improve the strength and the adsorptive performance by mixing fine coke dust with a specified moisture with coal dust obtained by adding a specified amount of coal heavy oil with a specific viscosity to the coal dust with a specified grain size, at a specified mixing ratio, when molding a mixed coal of a double layer structure with a specified average diameter to be pressed into a raw material with a specified diameter and further, activating the raw material through carbonization at a high temperature. SOLUTION: Several different types of coal 1 are crushed using a crusher 3 and the crushed coals are loaded into a coking furnace 4 and further, are carbonized upto such a state that no gas is generated. After that, the carbonized coals are loaded into a dry cooling tower 5 and then are quenched to recover underwater a fine coke duct with a grain diameter of 200 μm and classified to set its impregnation moisture to 10-20% in a moisture impregnating tank 6. In addition, several different types of coal duct crushed to the grain diameter of 50 μm or less using the crusher 3 are mixed so that the fluidity is 2-3. Further, a coal heavy oil 2 with a viscosity of 50 cp or less at 80 deg.C is added to the coal dust at an addition rate of 10-30% for the weight of carbon, and this mixture is introduced into a kneader 7. The fine coke dust and the coal dust are kneaded by a kneader 8 at a mixing ratio of (8:2)-(6:4) to obtain the molded mixed coal of a double structure with an average diameter of 0.5-2 mm which comprises a coal sticking to a coke surface layer. Further, this molding is formed into a column with a diameter of 10-20 mm under pressure using a molding machine 9 and is activated through carbonization at a high temperature at a heading furnace 10.
    • 8. 发明专利
    • Method of measuring flue temperature of coke oven
    • 测定焦炉温度的方法
    • JP2010210462A
    • 2010-09-24
    • JP2009057539
    • 2009-03-11
    • Nippon Steel Corp新日本製鐵株式会社
    • UEDA HARUHISAOSHIMA HIDETAKASATO TOMONORIMIYATA HIDENORIYAMASHITA HIDETAKA
    • G01J5/00G06F3/16
    • PROBLEM TO BE SOLVED: To provide a method of measuring a flue temperature with which even a single operator for measuring a coke oven temperature can quickly and correctly make measurement, recording and data. SOLUTION: The method of measuring a flue temperature includes: a step of audibly outputting flue specification guidance data in a handheld terminal 3 for making audio guidance for the operator; a measurement flue specification step in which the operator 1 audio inputs flue specification data to be measured according to the guidance, a step of transferring the flue specification data converted into electronic data to the handheld terminal; a step of creating temperature measurement guidance data based on the flue specification data in the handheld terminal; a step of audibly outputting the temperature measurement guidance data; a step of transferring temperature measurement data measured according to the guidance to the handheld terminal; and a concatenated data creation step of creating temperature data about a flue to be measured based on the temperature measurement data in the handheld terminal. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种测量烟道温度的方法,甚至用于测量焦炉温度的单个操作者可以快速且正确地进行测量,记录和数据。 解决方案:测量烟道温度的方法包括:在手持终端3中可听地输出烟道规格指导数据的步骤,用于为操作员做出音频引导; 测量烟道规格步骤,其中操作者1音频根据指导输入待测量的烟道规格数据,将转换成电子数据的烟道规格数据传送到手持终端的步骤; 基于手持终端中的烟道规格数据创建温度测量指导数据的步骤; 可视地输出温度测量指导数据的步骤; 将根据指导测量的温度测量数据传送到手持终端的步骤; 以及级联数据创建步骤,基于手持终端中的温度测量数据创建关于要测量的烟道的温度数据。 版权所有(C)2010,JPO&INPIT