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    • 1. 发明专利
    • Liquid fuel production plant
    • 液体燃料生产厂
    • JP2005336076A
    • 2005-12-08
    • JP2004154990
    • 2004-05-25
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • HIRABAYASHI TAKUYAMIYAMOTO HITOSHIWATABE MASAHARUNAKAMORI NOBUOMATSUMURA SATOSHIKODAMA JUNICHIROYAMAZAKI HISAHIRO
    • C07C29/151C07C31/04C07C41/09C07C43/06C10G3/00C10L1/02
    • Y02P30/20
    • PROBLEM TO BE SOLVED: To provide a liquid fuel production plant enabling a liquid fuel to be produced more than the conventional cases relative to the amount of a feedstock gas to be charged, and enabling continuous operation by continually stably heating a reformer, thus enabling the liquid fuel to be produced in high efficiency. SOLUTION: The liquid fuel production plant comprises the step S1 of charging a feedstock gas, the step S2 of removing substances unnecessary for the reforming step, the step S3 of reforming methane in the feedstock gas into a mixed gas comprising at least carbon dioxide and hydrogen among carbon monoxide, carbon dioxide and hydrogen, the step S4 of compressing the mixed gas and the step S5 of synthesizing methanol. In this plant, as part or the whole of heat necessary for reforming in the step S3, waste heat discharged from adjoining other plant(s) is utilized, and there is an auxiliary heating means 8 for supplementing the deficit of waste heat fed from the other plant(s). COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种液体燃料生产设备,其使液体燃料比常规的情况相对于待加料的原料气体的量更多地产生,并且能够通过连续稳定地加热重整器来连续运行, 从而能够高效率地制造液体燃料。 解决方案:液体燃料生产设备包括对原料气体进行充料的步骤S1,除去重整步骤所不需要的物质的步骤S2,将原料气体中的甲烷重整成包含至少碳的混合气体的步骤S3 一氧化碳,二氧化碳和氢气中的二氧化碳和氢气,压缩混合气体的步骤S4和合成甲醇的步骤S5。 在该工厂中,作为在步骤S3中重整所需的热量的一部分或全部,利用从相邻的其他设备排出的废热,并且存在辅助加热装置8,用于补充从 其他植物。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • DIAGNOSIS METHOD FOR SOUNDNESS OF UNDERGROUND CONSTRUCTION
    • JPH09196897A
    • 1997-07-31
    • JP799396
    • 1996-01-22
    • MITSUBISHI HEAVY IND LTD
    • TANAKA MAMORUMISHIMA TOSHIHIKOTOMITA MITSURUNAKAMORI NOBUO
    • G01N29/12G01H17/00
    • PROBLEM TO BE SOLVED: To facilitate the diagnosis of the soundness of an underground construction by striking the underground construction or a construction on an underground construction such as a footing foundation, and measuring its response through a submersible microphone arranged in the water in a hole provided in the ground surrounding the underground construction. SOLUTION: A covering earth on a footing foundation 1 is removed, and a boring hole 6 is bored in a surrounding ground near a foundation pipe 2. The inside of the boring hole 6 is fully filled with water by subterranean water or positively poured water, and a submersible microphone 5 is inserted at each underground position in the boring holes corresponding to the upper, middle and lower parts of the foundation pile 6. The upper face of the footing foundation 1 is struck by a hammer with a load meter 3, and then the response of the load meter of the hammer 3 with load meter and the response of the submersible microphone 5 are recorded in a computer 4, and the soundness of the foundation pole 2 is diagnosed by analyzing the wave form of the response. Boring into the footing foundation 1 becomes unnecessary, and the man-hour and cost can be therefore reduced.