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    • 4. 发明申请
    • Fluorine Gas Generation Apparatus
    • 氟气生成装置
    • US20140326596A1
    • 2014-11-06
    • US14358630
    • 2012-10-31
    • Central Glass Company, Limited
    • Tatsuya IrieAkifumi Yao
    • C25B15/02C25B1/24
    • C25B15/02C01B7/20C25B1/245C25B9/00C25B15/08
    • A fluorine gas generating device comprises an electrolytic tank that generates at an anode side a main-product containing as a main component fluorine gas and at a cathode side a by-product gas containing as a main component hydrogen gas by subjecting, in an electrolytic bath, hydrogen fluoride in a molten salt containing therein hydrogen fluoride to an electrolysis; a hydrogen fluoride supply source that stores therein hydrogen fluoride that is to be fed to the electrolytic tank to fill up hydrogen fluoride; a hydrogen fluoride supply passage through which hydrogen fluoride flows from the hydrogen fluoride supply source to the electrolytic tank; and a vaporizer that is connected to the hydrogen fluoride supply passage to vaporize hydrogen fluoride supplied from the hydrogen fluoride supply source.
    • 氟气发生装置包括:电解槽,其在阳极侧产生以主要成分为氟气的主要成分,在阴极侧产生含有作为主要成分的氢气的副产物,在电解槽 在其中含有氟化氢的熔融盐中的氟化氢进行电解; 其中存储有要供给到电解槽以填充氟化氢的氟化氢的氟化氢供应源; 氟化氢供应通道,氟化氢从氟化氢供应源流到电解槽; 以及蒸发器,其与氟化氢供给通道连接以蒸发从氟化氢供应源供应的氟化氢。
    • 8. 发明申请
    • FLUORINE GAS GENERATING APPARATUS
    • 氟燃气发生装置
    • US20130008781A1
    • 2013-01-10
    • US13520237
    • 2010-11-30
    • Akiou KikuchiAkifumi YaoTatsuo MiyazakiNobuyuki Tokunaga
    • Akiou KikuchiAkifumi YaoTatsuo MiyazakiNobuyuki Tokunaga
    • C25B1/24
    • C25B1/245C01B7/20C25B9/00C25B15/08F17C7/04
    • A fluorine gas generating apparatus includes an electrolytic cell where the molten salt is retained and which is separated and divided above the liquid level of the molten salt into a first gas chamber where a product gas mainly containing a fluorine gas generated at an anode immersed in the molten salt is led and a second gas chamber where a byproduct gas mainly containing a hydrogen gas generated at a cathode immersed in the molten salt is led, and a refining device refining the fluorine gas by coagulating with a cooling medium and trapping a hydrogen fluoride gas evaporated from the molten salt in the electrolytic cell and mixed in the product gas generated from the anode. The cooling medium for coagulation of the hydrogen fluoride gas in the refining device and discharged is re-used as a utility gas used at spots in the fluorine gas generating apparatus.
    • 氟气发生装置包括电解池,其中熔融盐保持并且在熔融盐的液面之上分离和分割成第一气室,在第一气室中主要含有在阳极中产生的氟气的产物浸没在 引入熔融盐,引导第二气室,其中主要含有浸在熔盐中的阴极产生的氢气的副产物被引导,精炼装置通过用冷却介质凝结和捕获氟化氢气体来精炼氟气 从电解池中的熔融盐中蒸发出来并混合在从阳极产生的产物气体中。 精炼装置中的氟化氢气体的凝结用冷却介质被排出,作为在氟气发生装置的点处使用的有用气体。
    • 9. 发明授权
    • Method of generating fluorine gas using coruscative reaction
    • 使用腐蚀反应产生氟气的方法
    • US07638006B2
    • 2009-12-29
    • US10922866
    • 2004-08-23
    • James R. Wood
    • James R. Wood
    • C06B33/00C06B45/00D03D23/00D03D43/00
    • C01B7/20
    • A fluorine gas generating material composition comprises a fluorine bearing material, the fluorine bearing material releasing fluorine gas at a first temperature, and a coruscative material, a reaction temperature of the coruscative material equal to or greater than the first temperature. In some embodiments, the fluorine bearing material is a nickel-based alloy and the coruscative material includes an element from Group IVB, VB or VIB of the periodic table or a transition metal and a carbon-based material. The fluorine gas generating material composition can be incorporated into a product such as a munition, a flare, a shape charge or an impulse device. The disclosed fluorine gas generating material composition can be used to produce work in applications and methods that include point delivery of fluorine gas, explosives related applications, aerospace applications, and applications in the fields of mining and drilling.
    • 氟气发生材料组合物包括氟轴承材料,在第一温度下释放氟气的氟轴承材料和腐蚀性材料,所述腐蚀性材料的反应温度等于或大于第一温度。 在一些实施例中,含氟轴承材料是镍基合金,并且腐蚀性材料包括来自周期表的IVB族,VB族或VIB族的元素或过渡金属和碳基材料。 氟气发生材料组合物可以结合到诸如弹药,火炬,形状电荷或脉冲装置的产品中。 所公开的氟气发生材料组合物可用于在采矿和钻井领域包括氟气的点输送,爆炸物相关应用,航空航天应用和应用的应用和方法中进行工作。