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    • 2. 发明专利
    • Liquid waste disposal burner
    • 液体废物处理燃烧器
    • JP2003329230A
    • 2003-11-19
    • JP2002135403
    • 2002-05-10
    • Denki Kagaku Kogyo Kk電気化学工業株式会社
    • NAKAMURA MASARUOKAMOTO YASUNORIITO KAZUYUKINISHIOKA CHOMEI
    • F23G7/04
    • PROBLEM TO BE SOLVED: To provide a liquid waste disposal burner with excellent endurance capable of disposing liquid waste in which sludge is mixed without problems. SOLUTION: The liquid waste disposal burner is provided with a mixer 7 mixing the liquid waste with air, a burner pipe 3 extending from the mixer 7 toward the inside of a furnace, and an outer pipe 5 extending along the outside of the burner pipe 3. A width of a flow path in the mixer 7 and the burner pipe 3 is 5 mm or over. A space 17 which cooling airflow is flowed through is formed between an inner periphery of the outer pipe 5 and an outer periphery of the burner pipe 3. Gas and liquid can be mixed in good condition and mixture of the gas and liquid can be discharged at a pressure and a velocity nearly equal to those of a nozzle by getting a diameter of the burner pipe 3 to be 5 mm or over. As a cooling means for the burner pipe 3 is provided, the liquid waste remaining in the burner is not carbonized and the burner pipe is free from oxidation corrosion or the like due to the remaining liquid waste. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种具有良好耐久性的液体废物处理燃烧器,其能够处理混合污泥的废液,而没有问题。 解决方案:液体废物处理燃烧器设置有混合器7,将废液与空气混合,从混合器7向炉内延伸的燃烧器管3和沿着炉内外延伸的外管5 燃烧器管3中。混合器7和燃烧管3中的流路宽度为5mm以上。 在外管5的内周和燃烧器管3的外周之间形成有冷却空气流过的空间17.气体和液体可以在良好状态下混合,气体和液体的混合物可以在 通过使燃烧器管3的直径为5mm或更大而与喷嘴的压力和速度几乎相等。 作为燃烧器管3的冷却装置,残留在燃烧器中的废液不会碳化,燃烧管由于剩余的废液而不会发生氧化腐蚀等。 版权所有(C)2004,JPO
    • 7. 发明专利
    • METHOD AND DEVICE TO MEASURE ELECTRODE LENGTH OF ELECTRIC FURNACE BY ULTRASONIC WAVE
    • JPH1114338A
    • 1999-01-22
    • JP17759297
    • 1997-06-18
    • DENKI KAGAKU KOGYO KK
    • JEN C CHANGGLEN D HERBELLYAMADA MASAHIROHAMADA MUTSUMIOKAMOTO YASUNORI
    • G01B17/00
    • PROBLEM TO BE SOLVED: To provide a method and a device to safely, quickly and reliably measure an electrode length by an ultrasonic wave. SOLUTION: An ultrasonic sensor 60 is positioned separately from a furnace inside raw material 30 in a hollow part 12 penetrating into an electrode 10 in the lengthwise direction up to its tip, and an ultrasonic wave is transmitted toward the material 30 existing on the tip of the electrode 10 from the ultrasonic sensor 60, and the ultrasonic wave reflected by the material 30 is received by the ultrasonic sensor 60, and an electrode length in an electric furnace is measured. A raising-lowering device of the ultrasonic sensor 60 is composed of a means which is a housing part arranged on the same axis as the hollow part 12 on an extension line of the hollow part 12 penetrating into the electrode 10 in the lengthwise direction up to its tip and can house the ultrasonic sensor 60 at length unmeasured time of the electrode 10, a mean which connects the housing part and the hollow part 12 and is a raw material introducing part to introduce the material 30 through the hollow part 12 and has in a side part a conduit into which the material 30 is inputted and a raising-lowering means to hold the ultrasonic sensor 60 so as to be freely raised/lowered through the inside of the raw material introducing part between the inside of the housing part and the inside of the hollow part 12.