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    • 76. 发明申请
    • Activation apparatus
    • 激活装置
    • US20050260109A1
    • 2005-11-24
    • US10526349
    • 2003-09-05
    • Kazuko Itabashi
    • Kazuko Itabashi
    • B01J19/12C02F1/00C02F1/48F02M27/04B01J19/08
    • B01J19/12B01J2219/0809B01J2219/083B01J2219/0835B01J2219/0841B01J2219/0843B01J2219/0877C02F1/005C02F1/48F02M27/04
    • An activation apparatus (1) is characterized in that two or more of metals or materials mainly containing metals which have different standard electrode potentials are stacked to thereby generate electric charges, and electromagnetic waves are generated by a potential difference between the stacked metals or materials. For example, a layered body (1B) of a two-layer structure having an outer layer metal plate (4) of titanium and an inner layer metal plate (5) of copper is formed into a tubular shape. The layered body is so fixed around a fuel transport pipe (1b) via a plurality of bolts nuts (6) that the outer layer metal plate (4) and the inner layer metal plate (5) divided into two rainwater gutter-like shapes and comprising flanges (4a), (5a) of a joint portion form a two-layer structure having a predetermined space therebetween. The apparatus does not need a new energy source, and is an easily attachable, simple apparatus. The apparatus efficiently activates a fuel to thereby improve fuel consumption.
    • 激活装置(1)的特征在于,主要包含具有不同标准电极电位的金属的金属或材料的两个或多个被堆叠,从而产生电荷,并且通过堆叠的金属或材料之间的电位差产生电磁波。 例如,将具有钛的外层金属板(4)和铜的内层金属板(5)的两层结构的层叠体(1B)形成为筒状。 层状体通过多个螺栓(6)固定在燃料输送管(1b)周围,外壳金属板(4)和内层金属板(5)分成两个雨水沟形状 并且包括接合部分的凸缘(5a),(5a)形成具有预定间隔的两层结构。 该装置不需要新能源,并且是易于附接的简单装置。 该装置有效地启动燃料,从而提高燃料消耗。
    • 80. 发明授权
    • Electrode composition and application method for oxygen generators
    • 氧发生器的电极组成及应用方法
    • US5972182A
    • 1999-10-26
    • US986161
    • 1997-12-05
    • William N. Lawless
    • William N. Lawless
    • B01D53/32B01J7/00B01J19/08B01J19/24C01B13/02C25B9/00C25B11/00
    • B01J7/00B01D53/32B01J19/08B01J19/088B01J19/2485C01B13/0255B01J2219/0807B01J2219/0824B01J2219/0843B01J2219/0875C01B2210/0046
    • The present invention is an oxygen generator including a stabilized bismuth oxide body and a plurality of first and second channels. The first channels receive a first gas containing some oxygen and the second channels are sealed at the input and outlet openings and extend generally in parallel to the first channels. Electrodes are disposed on the channel walls of the first and second channels, the electrode composition includes LXM, wherein L is lanthanum, M is manganate, and X is strontium, calcium, lead or barium. The oxygen generator may further include silver disposed over the LXM which thereby decreases the resistivity of the electrodes without the electromigration of the silver. The silver may be mixed with glass to thereby provide improved adherence of the silver to the LXM. A method of making an oxygen generator includes forming a stabilized bismuth oxide body having channels extending therethrough and forming LXM electrodes in the channels. Forming the LXM electrodes in the channels includes mixing an LXM powder with an organic liquid to form a slurry, applying the slurry to the stabilized bismuth oxide body and firing the body. The method may further include forming a silver layer over the LXM in the channels, thereby forming a multi-layer electrode composition having a low resistivity in which the LXM acts as an electromigration barrier for the silver.
    • 本发明是一种氧发生器,其包括稳定的氧化铋体和多个第一和第二通道。 第一通道接收含有一些氧气的第一气体,并且第二通道在输入和出口开口处被密封并且大致平行于第一通道延伸。 电极设置在第一和第二通道的通道壁上,电极组合物包括LXM,其中L是镧,M是锰酸盐,X是锶,钙,铅或钡。 氧气发生器还可以包括设置在LXM上方的银,从而降低电极的电阻率而不会电镀银。 银可以与玻璃混合,从而提供银对LXM的改善的粘附性。 制造氧气发生器的方法包括形成稳定的氧化铋体,其具有贯穿其中的通道并在通道中形成LXM电极。 在通道中形成LXM电极包括将LXM粉末与有机液体混合以形成浆料,将浆料施加到稳定的氧化铋体并烧制体。 该方法还可以包括在通道中在LXM上形成银层,从而形成具有低电阻率的多层电极组合物,其中LXM用作银的电迁移屏障。