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    • 12. 发明专利
    • コークス炉ガスの燃焼放散管
    • JP2020117623A
    • 2020-08-06
    • JP2019009690
    • 2019-01-23
    • NIPPON STEEL CORP
    • DOKI MASAHIROMACHIDA KAZUYOSHISUGAWARA SHOTAUEDA HARUHISAITO TATEO
    • C10B27/00C10B45/00F23G7/08
    • 【課題】エゼクタ管に噴射する蒸気の量の原単位を低減する。【解決手段】未精製のコークス炉ガスを誘導し、頂上部に、内側に向く庇を備える垂直円筒管、垂直円筒管の頂上部の中に、垂直円筒管に平行に配置され、上下に開口する短筒管、短筒管の下部から垂直円筒管に向かって下向きに傾斜して、垂直円筒管の外側に突出して配置され、短筒管に空気を導入する複数のエゼクタ管、エゼクタ管の下方の垂直円筒管の周囲に配置され、複数のエゼクタ管に蒸気を噴射する複数の噴射ノズルを備え、噴射する蒸気の量を制御できる下部蒸気供給管、及び、下部蒸気供給管の上方の垂直円筒管の周囲に配置され、垂直円筒管の開口の上方に蒸気を噴射する複数の噴射ノズルを備え、噴射する蒸気の量を制御できる上部蒸気供給管からなり、上部蒸気供給管の噴射ノズルから噴射する蒸気の量と、下部蒸気供給管の噴射ノズルから噴射する蒸気の量を、それぞれ独立して制御する燃焼放散管。【選択図】図3
    • 13. 发明专利
    • Method for controlling coal charge level in coke oven
    • 用于控制焦炭炉中煤焦水平的方法
    • JP2005350539A
    • 2005-12-22
    • JP2004171406
    • 2004-06-09
    • Nippon Steel Corp新日本製鐵株式会社
    • ENAMI YOSHIHIKOSUZUKI HIROYUKIUEDA HARUHISAITO KOJIYOKOZEKI HIDENOBU
    • G01F23/284C10B31/04C10B41/00
    • C10B41/005
    • PROBLEM TO BE SOLVED: To provide a method for controlling a coal charge level in a coke oven in which the coal charge level in the direction of oven width is maintained substantially constant even if there are variations in coal properties and dispensing speed of each coal feed hopper. SOLUTION: Coal is charged from each coal feed hopper 5 on a coal charge car 4 for each of n-pieces of coal charge ports 2 which are arranged in the direction of oven width on a coke oven 1, followed by measuring the coal charge level in the oven using a level-measuring device 20 of a microwave type installed on the upper part of each of the coal feed hoppers 5. Then, the amount of coal to be additionally charged into each of the coal charge ports 2 is calculated from the difference between the coal charge level preset for each of the coal charge ports 2 and the measured coal charge level, and coal is additionally charged from the coal feed hopper 5 without delay to correct the coal charge level to the preset level. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种用于控制焦炉中的煤装料量的方法,其中炉宽度方向上的煤装料量保持基本上恒定,即使煤的性质和分配速度有变化, 每个煤炭进料斗。

      解决方案:从炉煤炉1的炉宽度方向排列的n个煤加料口2的每个煤加料车4上的每个煤炭进料斗5装入煤,然后测量 使用安装在每个供煤料斗5的上部的微波型液位测量装置20在炉中进行煤装料量。然后,另外装入每个煤加料口2中的煤的量为 根据对每个煤炭收集口2预先设定的煤矿装料量与测量煤矿装料量之间的差异计算出煤,并且煤炭从煤供给料斗5中不加延时地补充以将煤矿装料水平校正到预设水平。 版权所有(C)2006,JPO&NCIPI

    • 16. 发明专利
    • Denitrification method of exhaust gas
    • 排气净化方法
    • JP2007098309A
    • 2007-04-19
    • JP2005292766
    • 2005-10-05
    • Nippon Steel Corp新日本製鐵株式会社
    • YAMAMURA YUICHITAKAOKI SUSUMUSHIBATA DAISUKEUEDA HARUHISA
    • B01D53/60B01D53/34B01D53/74
    • PROBLEM TO BE SOLVED: To provide a denitrification method of an exhaust gas which can controls powdering of an exhaust-gas treatment material to effectively achieve a high denitrification rate.
      SOLUTION: The denitrification method is carried out by making the exhaust gas, which contains SO
      X and NO
      X and is loaded with a NH
      3 gas, contact with the exhaust-gas treatment material 10 moving from upward to downward in a treatment tank 1, wherein the exhaust-gas treatment material 10 is used, which has a volume of macropores with the maximum inner width of ≤1,000 nm, formed in the outer layer part, of ≤4% of the total pore volume of the exhaust-gas material 10.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供能够控制排气处理材料的粉化以有效地实现高脱氮率的废气的脱氮方法。 解决方案:脱氮方法是通过使含有SO X 和NO X 的废气进行,并装载NH 3 SB 3, SB>气体,在废气处理材料10中与废气处理材料10接触,废气处理材料10在处理槽1中从上向下移动,其中使用废气处理材料10,其具有最大内部宽度≤1,000nm的大孔体积 在外层部分形成的废气材料10的总孔体积的≤4%。(C)2007,JPO&INPIT