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    • 1. 发明专利
    • Method and system for producing carbonized product from waste
    • 从废物生产碳化物的方法和系统
    • JP2005171104A
    • 2005-06-30
    • JP2003413867
    • 2003-12-11
    • Kawasaki Heavy Ind Ltd川崎重工業株式会社
    • KUSUDA HIROMASAFUJII KENICHIHATAKEYAMA SHUICHIROSAWAI MASAKAZU
    • B09B3/00B09B5/00C10L5/46
    • Y02E50/10Y02E50/30
    • PROBLEM TO BE SOLVED: To provide a method for producing a carbonized product, so designed that the concentration of dioxins in the product is reduced, any pulverizer is eliminated, and the corrosion of an actively carbonizing conveyor by chlorine is prevented.
      SOLUTION: The method comprises the following process: Wastes are charged into a fluidized bed-type carbonizing oven 10 and carbonized, a carbonized product-containing exhaust gas from the oven 10 is introduced into a carbonized product-separating/retrieving vessel 18 and separated into a carbonized product and an exhaust gas, the exhaust gas is then introduced into a recombustion oven 20 and burned, whereas the carbonized product is introduced into a heat dechlorination section 22 and heat-dechlorinated to decompose dioxins contained in the product, the resultant carbonized product from the section 22 is directly charged into a washing agitation tank 26 to effect desalting the product to prevent resynthesis of dioxins. Subsequently, the carbonized product from the washing agitation tank 26 is dewatered, at least part of the carbonized product thus dewatered is then introduced into the actively carbonizing conveyor 50 equipped in the recombustion oven 20 and made into the final active carbonized product by the heat of combustion in the recombustion oven 20.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种生产碳化产物的方法,设计成使得产物中二恶英的浓度降低,任何粉碎机被消除,并且防止了主动碳化输送机由氯气的腐蚀。 解决方案:该方法包括以下过程:将废物装入流化床型碳化炉10中并碳化,将来自烘箱10的含碳化产物的废气引入碳化产物分离/回收容器18 并分离为碳化产物和废气,然后将废气引入再燃烧炉20中并燃烧,而将碳化产物引入加热脱氯部分22并进行热脱氯以分解产物中所含的二恶英, 将来自部分22的所得碳化产物直接装入洗涤搅拌槽2​​6中,以使产物脱盐以防止二恶英的再合成。 随后,来自洗涤搅拌槽2​​6的碳化产物脱水,然后将至少部分如此脱水的碳化产物引入装配在重整炉20中的主动碳化输送机50中,并通过 在重组炉20中燃烧。版权所有(C)2005,JPO&NCIPI
    • 2. 发明专利
    • Corrosion monitoring sensor
    • 腐蚀监测传感器
    • JP2005091281A
    • 2005-04-07
    • JP2003328103
    • 2003-09-19
    • Kawasaki Heavy Ind Ltd川崎重工業株式会社
    • KAMEI YUJIIWASAKI ISATOFUJII KENICHIFUJIMOTO YASUSHIMURASE KEISUKE
    • G01N17/02G01N17/04G01N27/02G01N27/06G01N27/26
    • PROBLEM TO BE SOLVED: To provide a corrosion monitoring sensor capable of stable use and facilitating handling at transportation etc. by compensating for the low impact resistance of a reference electrode and the tip part of a probe 4.
      SOLUTION: The corrosion monitoring sensor 1 is a sensor for measuring the corrosion rate of metal to be evaluated in a corrosive environment. A electrode part substrate 6 of an insulator is mounted to part of a side surface of the probe 4 made of metal, in such a way as not to divide the probe 4 in the longitudinal direction. A sample electrode 2 made of the metal to be evaluated, its counter electrode 3, and a reference electrode 5 are provided on the electrode part substrate 6.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:通过补偿参考电极和探针4的尖端部分的低耐冲击性,提供能够稳定使用并便于运输处理的腐蚀监测传感器。解决方案: 腐蚀监测传感器1是用于测量腐蚀环境中待评价金属的腐蚀速度的传感器。 将绝缘体的电极部件基板6安装在金属制的探针4的侧面的一部分上,不会使探头4在长度方向上分割。 在电极部件基板6上设置由待评估金属制成的样品电极2,其对电极3和参考电极5.(C)2005,JPO&NCIPI
    • 9. 发明专利
    • COAL COMBUSTION APPARATUS AND METHOD OF USING THE SAME
    • JPS6391414A
    • 1988-04-22
    • JP23522086
    • 1986-10-02
    • KAWASAKI HEAVY IND LTD
    • SHIRAHA MICHIHIROMORI KENJIFUJII KENICHISUZUTANI SHINGOHARADA HIDEKAZU
    • F23D1/02F23J1/02
    • PURPOSE:To prevent ashes from being accumulated at the bottom part of a boiler furnace by a method wherein coal ashes flowed into the boiler furnace and dropped onto the bottom part of the furnace are cooled to keep their powdery nature and accumulated at an ash reservoir of the bottom part of the furnace with furnace bottom blowing air, thereafter they are discharged out of a system from the boiler furnace through a furnace bottom ash transferring device. CONSTITUTION:More than two or three stages of furnace bottom water pipes 4 arranged in a zig-zag form so as to have an opening 3 are arranged at a bottom part of a boiler furnace 1. A furnace bottom ash reservoir 6 is arranged below the furnace bottom water pipe 4 through a space 5 below the water pipes, a furnace bottom ash transferring device 7 such as a water-cooled screw feeder is connected to a part below the furnace bottom ash reservoir 6. The space 5 below the water pipes is provided with a furnace bottom blowing air supplying pipe for blowing out the ignited ashes and a furnace bottom blowing gas supplying pipe 8 such as a soot blower are arranged. Combustion air of 10-60% of total combustion air is blown into the space 5 below the water pipes to cause the combustion ashes to be moved to the furnace bottom ash reservoir 6. A furnace bottom ash transferring device is connected to a lower part of the furnace bottom ash reservoir.