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    • 9. 发明申请
    • Integrated fuel processor apparatus and enclosure and methods of using same
    • 集成燃料处理装置及其外壳及其使用方法
    • US20040197240A1
    • 2004-10-07
    • US10407876
    • 2003-04-04
    • Texaco Inc.
    • William Spencer WheatKenneth Joseph BunkRalph Stanley Worsley
    • G05B001/00B21D051/16B01D035/18
    • B01J8/02C01B3/38C01B3/48C01B2203/0233C01B2203/0244C01B2203/0283C01B2203/04C01B2203/042C01B2203/045C01B2203/0485C01B2203/0495C01B2203/066C01B2203/0877H01M8/04164H01M8/0618H01M8/0668Y10T29/49345Y10T29/49428
    • An integrated fuel processor apparatus and enclosure for converting hydrocarbon fuel to a hydrogen rich gas. The integrated apparatus includes a fuel processor for producing a hydrogen-rich reformate that contains water and a combustible gas component. The fuel processor is enclosed in a gas impermeable enclosure that has a collection vessel for receiving water separated from the reformate stream. The collection vessel has a drain for directing the water out of the enclosure. The collection vessel is open to the interior of the enclosure so that combustible gases that are entrained in the water can evaporate to the interior of the enclosure. The enclosure has a ventilator for evacuating the combustible gases from within the enclosure. Where high levels of combustible gases are present, the ventilator is configured to direct the gases to a combustor. A gas detection sensor is included in the enclosure to monitor the interior of the enclosure. A processor receives data from the sensor and controls the removal of the combustible gases. The apparatus can further include a separator for separating the water from the hydrogen-rich reformate and directing the water into the collection vessel. The apparatus can include a separator for receiving and separating product water from a fuel cell exhaust stream and directing the product water to the collection vessel. In addition, collection vessel is connected to the outlet of a process water tank for receiving process water from the tank. Methods for manufacturing an apparatus for separating water from a reformate stream for safe disposal and methods for separating water from a reformate stream for safe disposal are disclosed.
    • 一种用于将碳氢化合物燃料转化为富氢气体的综合燃料处理装置和外壳。 该集成装置包括用于生产含有水和可燃气体成分的富氢重整产品的燃料处理器。 燃料处理器封闭在不透气的外壳中,该外壳具有用于接收与重整产品流分离的水的收集容器。 收集容器具有用于将水引导出外壳的排水口。 收集容器通向外壳的内部,使得夹带在水中的可燃气体可以蒸发到外壳的内部。 外壳具有用于从外壳内抽空可燃气体的通风机。 当存在高水平的可燃气体时,通风机构造成将气体引导到燃烧器。 外壳中包含一个气体检测传感器,用于监控外壳的内部。 处理器从传感器接收数据并控制可燃气体的去除。 该装置还可以包括用于从富氢重整产物分离水并将水引入收集容器中的分离器。 该装置可以包括用于从燃料电池排气流接收和分离产物水并将产品水引导到收集容器的分离器。 另外,收集容器连接到工艺用水箱的出口,以从罐中接收工艺用水。 公开了用于从用于安全处置的重整产品流中分离水的装置的制造方法和用于从重整产品流中分离出水的方法以进行安全处理。
    • 10. 发明申请
    • Plate and tube join and method
    • 板和管接合和方法
    • US20040168320A1
    • 2004-09-02
    • US10473027
    • 2004-04-08
    • Ronald Malcolm Bond Sanderson
    • B23P017/00B21D051/16
    • F01N13/185B21D39/06B21D53/88F01N13/08Y10T29/49398
    • A joined plate and tube includes a plate (12) with an annular neck (13), and a tube (11) extending through the annular neck and including a first reversing fold (14) around a peripheral end of the annular neck, and a second reversing fold (15), such that at least part of the annular neck (13) is held within a substantially S-shaped folded portion (16) of the tube (11). A method of joining a tube (11) to a plate (12) includes providing a tube (11) having a radially outwardly-extending annular portion (27), providing a plate (12) having an annular neck (13) extending therefrom, positioning the tube such that it extends through the annular neck and the annular neck (13) abuts the annular portion (27), and folding the annular portion (27) over the annular neck (13) to hold at least part of the annular neck in a substantially S-shaped portion of the tube.
    • 连接的板和管包括具有环形颈部(13)的板(12)和延伸穿过环形颈部并且围绕环形颈部的周边端部的第一反向折叠(14)的管(11),以及 第二反转折叠(15),使得环形颈部(13)的至少一部分保持在管(11)的大致S形折叠部分(16)内。 将管(11)连接到板(12)的方法包括提供具有径向向外延伸的环形部分(27)的管(11),提供具有从其延伸的环形颈部(13)的板(12) 定位管使得其延伸穿过环形颈部,并且环形颈部(13)邻接环形部分(27),并且将环形部分(27)折叠在环形颈部(13)上以保持环形颈部的至少一部分 在管的大致S形部分。