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    • 4. 发明申请
    • INDIRECT INTERNAL REFORMING SOLID OXIDE FUEL CELL SYSTEM
    • 间接内部改造固体氧化物燃料电池系统
    • US20130011758A1
    • 2013-01-10
    • US13338584
    • 2011-12-28
    • Yukihiro Sugiura
    • Yukihiro Sugiura
    • H01M8/06
    • H01M8/1246H01M8/04007H01M8/04089H01M8/04223H01M8/04302H01M8/0618H01M8/0625H01M8/2425H01M8/2475Y02E60/521Y02E60/525Y02P70/56
    • The indirect internal reforming solid oxide fuel cell system includes an indirect internal reforming solid oxide fuel cell that has a first reformer which produces a reformed gas from a hydrocarbon-based fuel by using a steam reforming reaction, a solid oxide fuel cell which generates electric power by using the reformed gas obtained in the first reformer, and a container which houses the first reformer and the solid oxide fuel cell, the first reformer being disposed in a position to receive heat radiation from the solid oxide fuel cell; a second reformer which is disposed outside the container and produces a reformed gas by reforming a hydrocarbon-based fuel; and a line which leads the reformed gas obtained in the second reformer from the second reformer to an anode of the solid oxide fuel cell.
    • 间接内部重整固体氧化物燃料电池系统包括间接内部重整固体氧化物燃料电池,其具有通过使用蒸汽重整反应从烃类燃料产生重整气体的第一重整器,产生电力的固体氧化物燃料电池 通过使用在第一重整器中获得的重整气体和容纳第一重整器和固体氧化物燃料电池的容器,第一重整器设置在接收来自固体氧化物燃料电池的热辐射的位置; 第二重整器,其设置在容器外部并通过重整烃类燃料产生重整气体; 以及将在第二重整器中获得的重整气体从第二重整器引导至固体氧化物型燃料电池的阳极的管线。
    • 5. 发明申请
    • Method of hydrotreating gas oil fraction
    • 加氢处理瓦斯油馏分的方法
    • US20060211900A1
    • 2006-09-21
    • US10548313
    • 2004-03-05
    • Hideshi IkiYukihiro SugiuraYuichi TanakaShinya Takahashi
    • Hideshi IkiYukihiro SugiuraYuichi TanakaShinya Takahashi
    • C07C1/00
    • B01J23/85B01J23/883B01J35/1019B01J35/1038B01J35/1061B01J37/20C10G2400/06
    • The gas oil fraction hydrotreatment process of the invention is characterized by using a gas oil fraction with a sulfur content of 0.8-2% by mass and a total aromatic content of 20-35% by volume as the feed oil and subjecting the feed oil to hydrotreatment in the presence of a hydrogenation catalyst comprising at least one metal from among Group 6A metals and at least one metal from among Group 8 metals as active metals, and under reaction conditions with a reaction temperature of 330-390° C., a hydrogen partial pressure of 12-20 MPa and a liquid hourly space velocity of 0.1-1 h−1, to obtain an ultralow sulfur and low- aromatic gas oil fraction having a sulfur content of not greater than 1 ppm by mass and a total aromatic content of not greater than 1% by volume. This hydrotreatment process allows production of a “zero sulfur” and “zero aromatic” gas oil fraction in an efficient and reliable manner without provision of special operating conditions or equipment investment.
    • 本发明的粗柴油馏分加氢处理方法的特征在于,使用硫含量为0.8〜2质量%,总芳烃含量为20〜35体积%的粗柴油馏分作为原料油, 在包含至少一种金属的6A族金属和至少一种金属作为活性金属的第8族金属中进行加氢处理,在反应温度为330-390℃的反应条件下,加氢处理 12-20MPa的分压和0.1-1小时-1的液时空速,得到硫含量不大于1ppm的超低硫和低芳烃瓦斯油馏分 并且总芳族含量不大于1体积%。 该加氢处理方法允许以有效和可靠的方式生产“零硫”和“零芳烃”瓦斯油馏分,而不需要特殊的操作条件或设备投资。
    • 6. 发明授权
    • Indirect internal reforming solid oxide fuel cell system
    • 间接内部重整固体氧化物燃料电池系统
    • US08841039B2
    • 2014-09-23
    • US13338584
    • 2011-12-28
    • Yukihiro Sugiura
    • Yukihiro Sugiura
    • H01M8/06H01M8/04H01M8/10H01M8/12H01M8/24
    • H01M8/1246H01M8/04007H01M8/04089H01M8/04223H01M8/04302H01M8/0618H01M8/0625H01M8/2425H01M8/2475Y02E60/521Y02E60/525Y02P70/56
    • The indirect internal reforming solid oxide fuel cell system includes an indirect internal reforming solid oxide fuel cell that has a first reformer which produces a reformed gas from a hydrocarbon-based fuel by using a steam reforming reaction, a solid oxide fuel cell which generates electric power by using the reformed gas obtained in the first reformer, and a container which houses the first reformer and the solid oxide fuel cell, the first reformer being disposed in a position to receive heat radiation from the solid oxide fuel cell; a second reformer which is disposed outside the container and produces a reformed gas by reforming a hydrocarbon-based fuel; and a line which leads the reformed gas obtained in the second reformer from the second reformer to an anode of the solid oxide fuel cell.
    • 间接内部重整固体氧化物燃料电池系统包括间接内部重整固体氧化物燃料电池,其具有通过使用蒸汽重整反应从烃类燃料产生重整气体的第一重整器,产生电力的固体氧化物燃料电池 通过使用在第一重整器中获得的重整气体和容纳第一重整器和固体氧化物燃料电池的容器,第一重整器设置在接收来自固体氧化物燃料电池的热辐射的位置; 第二重整器,其设置在容器外部并通过重整烃类燃料产生重整气体; 以及将在第二重整器中获得的重整气体从第二重整器引导至固体氧化物型燃料电池的阳极的管线。
    • 9. 发明申请
    • INDIRECT INTERNAL REFORMING SOLID OXIDE FUEL CELL SYSTEM
    • 间接内部改造固体氧化物燃料电池系统
    • US20090197131A1
    • 2009-08-06
    • US12307520
    • 2007-06-18
    • Yukihiro Sugiura
    • Yukihiro Sugiura
    • H01M8/18
    • H01M8/1246H01M8/04007H01M8/04089H01M8/04223H01M8/04302H01M8/0618H01M8/0625H01M8/2425H01M8/2475Y02P70/56
    • An indirect inside reforming SOFC system that enables elimination of the use of hydrogen storage equipment for anode protection at start-up, etc. There is provided an indirect inside reforming solid oxide fuel cell comprising a first reformer for producing a reformate gas from a hydrocarbon fuel with the use of steam reforming reaction; a solid oxide fuel cell for power generation from the reformate gas obtained by the first reformer; and a container for housing both of the first reformer and the solid oxide fuel cell, wherein the first reformer is disposed at a position receiving heat radiation from the solid oxide fuel cell. Further, there is provided an indirect inside reforming solid oxide fuel cell system comprising the indirect inside reforming solid oxide fuel cell and further comprising a second reformer for reforming a hydrocarbon fuel to thereby produce a reformate gas, disposed outside the container; and a line leading the reformate gas obtained by the second reformer from the second reformer to an anode of the solid oxide fuel cell.
    • 一种间接内部重整SOFC系统,能够消除在启动等时使用阳极保护的氢存储设备。提供了一种间接内部重整固体氧化物燃料电池,其包括用于从烃燃料生产重整气体的第一重整器 利用蒸汽重整反应; 由第一重整器得到的由重整产气产生的固体氧化物燃料电池; 以及用于容纳所述第一重整器和所述固体氧化物型燃料电池的容器,其中,所述第一重整器设置在从所述固体氧化物型燃料电池接受热辐射的位置。 此外,提供了一种间接内部重整固体氧化物燃料电池系统,其包括间接内部重整固体氧化物燃料电池,并且还包括用于重整烃燃料的第二重整器,从而产生置于容器外部的重整气体; 以及将由第二重整器得到的重整气体从第二重整器引导至固体氧化物型燃料电池的阳极的线。