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    • 4. 发明授权
    • Palladium alloy membrane unit, storage structure thereof, and method of purifying hydrogen by using the same
    • 钯合金膜单元,其储存结构以及使用该氢气的方法
    • US09433889B2
    • 2016-09-06
    • US14581284
    • 2014-12-23
    • Japan Pionics Co., Ltd.
    • Yoshinao KomiyaSatoshi ArakawaToshio AkiyamaYasuo SatoNoboru Takemasa
    • B01D53/22B01D71/02C01B3/50B01D63/02
    • B01D53/228B01D63/022B01D63/024B01D71/022B01D2053/223B01D2256/16B01D2313/21C01B3/505C01B2203/0233C01B2203/0405C01B2203/043C01B2203/046
    • The present invention is to provide a means for easily replacing palladium alloy capillaries in a hydrogen purification device formed by using hydrogen separation membrane formed from the palladium alloy capillaries. The hydrogen purification device can be easily disassembled into a palladium alloy membrane unit and a storage structure thereof. A palladium alloy membrane unit is provided with a plurality of palladium alloy capillaries, a disk-shaped tube sheet supporting the palladium alloy capillaries, a pure hydrogen discharge pipe having a cylinder being in close contact with a periphery of the tube sheet at one end, a joint connecting with a pure hydrogen outlet of the storage structure at the other end, and preferably a joint being in close contact with an opening of a container of the storage structure at a position between the cylinder and the outlet joint. The storage structure is provided with a container storing the palladium alloy membrane unit, a heater, a raw material hydrogen inlet, an impurity-containing gas outlet, and a pure hydrogen outlet, a member provided on the pure hydrogen outlet, the member connecting with a joint provided at one end of the palladium alloy membrane unit, and preferably a member provided on the opening of the container, the member being in close contact with a joint provided on the cylinder of the palladium alloy membrane unit.
    • 本发明提供一种用于在通过使用由钯合金毛细管形成的氢分离膜形成的氢净化装置中容易地替换钯合金毛细管的装置。 氢净化装置可以容易地分解成钯合金膜单元及其储存结构。 钯合金膜单元设置有多个钯合金毛细管,支撑钯合金毛细管的盘状管片,一端具有与管板周边紧密接触的圆筒的纯氢排出管, 在另一端与储存结构的纯氢出口连接的接头,优选地在气缸和出口接头之间的位置处与储存结构的容器的开口紧密接触的接头。 储存结构设有容纳钯合金膜单元,加热器,原料氢入口,含杂质气体出口和纯氢出口的容器,设置在纯氢出口上的构件,与 设置在钯合金膜单元的一端的接头,优选设置在容器的开口部的部件,该部件与设置在钯合金膜单元的圆筒上的接头紧密接触。
    • 6. 发明申请
    • METHOD FOR REFINING HYDROGEN
    • 炼氢方法
    • US20160115022A1
    • 2016-04-28
    • US14873380
    • 2015-10-02
    • Japan Pionics Co., LTD.
    • Yoshinao KOMIYASatoshi ARAKAWAToshio AKIYAMAYasuo SATONoboru TAKEMASA
    • C01B3/50B01D53/22B01D53/00
    • C01B3/505B01D53/00B01D53/228B01D2256/16C01B2203/0233C01B2203/0405C01B2203/043C01B2203/046C01B2203/1211C01B2203/1223C01B2203/1241C01B2203/1247
    • The present invention is to provide a method for refining hydrogen with a hydrogen refining device in which the inside of a cell is divided into a primary side space and a secondary side space by palladium alloy capillaries each having one end being closed and a tube sheet supporting the open end of the palladium alloy capillaries, in which impurity-containing hydrogen is introduced from the primary side space to allow hydrogen to permeate the palladium alloy capillaries so as to collect pure hydrogen from the secondary side space. The method for refining hydrogen has a capability of decreasing the removed amount of gas containing impurities and efficiently collecting pure hydrogen from the secondary side space. From hydrogen with 1000 ppm or less of impurities as raw material hydrogen, gas containing impurities that does not penetrate the palladium alloy capillaries is removed from the primary side space at the flow rate of 10% or less of the introduction flow rate of the raw material hydrogen. Furthermore, gas containing impurities that does not penetrate the palladium alloy capillaries is removed from the primary side space at a flow rate based on the content of impurities contained in raw material hydrogen.
    • 本发明提供一种利用氢精制装置精炼氢的方法,其中通过钯合金毛细管将电池内部分成一次侧空间和二次侧空间,每个一端封闭,管板支撑 钯合金毛细管的开口端,其中从初级侧空间引入含杂质的氢,以允许氢渗透到钯合金毛细管中,从而从次级侧空间收集纯氢。 精炼氢的方法具有减少去除量的含杂质的气体并有效地从次级侧空间收集纯氢的能力。 从作为原料氢的1000ppm以下的杂质的氢气中,以原料的导入流量为10%以下的流量,从初级侧空间除去含有不渗入钯合金毛细管的杂质的气体 氢。 此外,基于原料氢中所含的杂质含量的流量,从一次侧空间除去含有不渗入钯合金毛细管的杂质的气体。