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    • 2. 发明授权
    • Dehumidifier for magnetic disc apparatus
    • 磁碟机除湿机
    • US5012360A
    • 1991-04-30
    • US268235
    • 1988-11-07
    • Shiro YamauchiNaotake Rito
    • Shiro YamauchiNaotake Rito
    • G11B33/14
    • G11B33/1453
    • The present invention relates to a magnetic disc apparatus having a dehumidifying element for removing the moisture flowing from a vent into the apparatus, and the magnetic disc apparatus according to the present invention is provided with a dehumidifying element having a humidity controlling element comprising a hydrogen ion conductor and a pair of porous filmy electrodes which sandwich the conductor therebetween. Applying the voltage to the humidity controlling element, the moisture in the apparatus, after contacting the electrode provided on the central side of the apparatus, is supplied to a hydrogen ion conductor and electrolyzed. The hydrogen ions obtained by electrolysis move toward the electrode provided on the peripheral side of the apparatus, where at least either of the hydrogen or water is evolved to advance the dehumidification in the apparatus. Thus the magnetic disc apparatus according to the present invention is capable of resolving and removing stably the moisture in the apparatus and keeping a constant humidity in the apparatus irrespective of the humidity in the outside air.
    • 本发明涉及一种磁盘装置,其具有用于去除从通风口流入设备的湿气的除湿元件,根据本发明的磁盘装置设置有除湿元件,该除湿元件具有包含氢离子的调湿元件 导体和一对将导体夹在其间的多孔膜电极。 将电压施加到调湿元件时,将与设置在设备中央侧的电极接触后的装置中的水分供给到氢离子导体并进行电解。 通过电解获得的氢离子朝向设置在设备的周边侧的电极移动,其中至少任一个氢或水被放出以促进设备中的除湿。 因此,根据本发明的磁盘装置能够稳定地分解和去除装置中的水分并且保持设备中的恒定湿度,而不管外部空气中的湿度如何。
    • 3. 发明授权
    • Humidity controller
    • 湿度控制器
    • US5059291A
    • 1991-10-22
    • US365899
    • 1989-06-14
    • Shiro YamauchiNaotake Rito
    • Shiro YamauchiNaotake Rito
    • B01D53/26B01D53/32G05D22/02G11B33/14H05K7/20
    • B01D53/326B01D53/26G05D22/02
    • A humidity controller has a humidity controlling element disposed in the opening of a chamber and comprising a hydrogen ion conductor membrane, porous electrodes disposed on two surfaces of the hydrogen ion conductor membrane and collecting electrodes disposed on opposite surfaces of the porous electrodes. Each of the collecting electrodes is disposed over an area than the whole area of each surface of the hydrogen ion conductor membrane such that the current density at a portion of the hydrogen ion conductor membrane where no collecting electrode is located is reduced by at most 1/2, thereby reducing the stress due to the difference between the thermal expansion coefficients of the porous electrodes and the collecting electrodes and limiting disconnection between these two groups of electrodes. The difference between the humidity control performance of this humidity controller and that of an arrangement in which collecting electrodes are disposed over the whole surfaces of the porous electrodes is small.
    • 湿度控制器具有设置在室的开口内的湿度控制元件,包括氢离子导体膜,设置在氢离子导体膜的两个表面上的多孔电极和设置在多孔电极的相对表面上的集电极。 每个集电极设置在比氢离子导体膜的每个表面的整个区域的面积以上,使得在没有集电极的氢离子导体膜的一部分处的电流密度减少至多1个/ 2,从而减少由于多孔电极和收集电极的热膨胀系数之间的差异引起的应力,并且限制了这两组电极之间的断开。 该湿度控制器的湿度控制性能与在多孔电极的整个表面上设置集电极的布置的差异小。
    • 7. 发明授权
    • Intermittent ozone feeding apparatus
    • 间歇性臭氧供给装置
    • US4453953A
    • 1984-06-12
    • US324423
    • 1981-11-24
    • Masaaki TanakaShiro YamauchiShigeki Nakayama
    • Masaaki TanakaShiro YamauchiShigeki Nakayama
    • A62D3/00C01B13/10C02F1/78B01D53/04
    • C02F1/78C01B13/10C02F2201/782
    • An intermittent ozone feeding apparatus including an ozonier for producing ozonized oxygen, an adsorption-desorption tower for adsorbing ozone from the ozonized oxygen and desorbing the ozone with oxygen produced from adsorbing ozone in said adsorption-desorption tower being recycled to the ozonizer, adsorption-desorption tower being cooled during an ozone adsorption period and being heated at a temperature higher than that in the adsorption period during the ozone desorption period while the adsorption-desorption tower is subject to suction under a reduced pressure so as to desorb ozone wherein the sucking operation is maintained until the pressure on the suction side of the tower side is lower than that within the adsorption-desorption tower after the desorption period has been completed.
    • 一种包括用于生产臭氧氧化的臭氧发生器的间歇式臭氧输送装置,用于从臭氧化氧吸附臭氧的吸附解吸塔和在所述吸附 - 脱附塔中吸附臭氧产生的氧解除臭氧,再循环到臭氧发生器中,吸附 - 解吸附 塔在臭氧吸附期间被冷却,并且在臭氧解吸期间在比吸附期间高的温度下加热,同时吸附解吸塔在减压下进行抽吸以解吸臭氧,其中吸入操作是 在解吸期结束后,直到塔侧的吸力侧的压力低于吸附 - 解吸塔内的压力。
    • 8. 发明授权
    • Ozone generating apparatus
    • 臭氧发生装置
    • US09079773B2
    • 2015-07-14
    • US13145642
    • 2009-05-28
    • Tomio FujitaHitoshi NagaoShiro Yamauchi
    • Tomio FujitaHitoshi NagaoShiro Yamauchi
    • B01J19/08C01B13/11
    • C01B13/11C01B2201/14C01B2201/22C01B2201/32C01B2201/64C01B2201/72
    • There is provided an ozone generating apparatus that requires no use of cooling water, is small in size and easy in maintenance. The ozone generating apparatus includes a ground electrode 1 formed of a substantially cylindrical metal tube, and a high voltage electrode 5 having a substantially cylindrical dielectric body substantially concentrically arranged inside the ground electrode, and having a high voltage applied to an electrically conductive layer 6 formed on an inner peripheral surface thereof, in which an oxygen-containing gas is supplied into an electric discharge gap formed between the ground electrode and the high voltage electrode to generate ozone, wherein the ground electrode is formed integrally with plural air cooling fins 2 extending in a longitudinal direction at an outer peripheral side thereof.
    • 提供了不需要使用冷却水的臭氧发生装置,尺寸小,维护方便。 臭氧发生装置包括由大致圆筒状的金属管形成的接地电极1和具有基本上同心配置在接地电极内部的大致圆筒状的电介质体的高电压电极5,并具有施加到形成的导电层6的高电压 在其内周面上,将含氧气体供给到形成在接地电极和高电压电极之间的放电间隙,生成臭氧,其中,接地电极与多个空气冷却翅片2一体地形成, 在其外周侧的纵向方向。
    • 9. 发明申请
    • Nitrogen oxide decomposing element and nitrogen oxide decomposing apparatus including the same
    • 氮氧化物分解元件和包含该氮氧化物分解装置的氮氧化物分解装置
    • US20050230269A1
    • 2005-10-20
    • US10511679
    • 2003-09-26
    • Masato MachidaShiro YamauchiMinoru KimuraShigeru Yamaji
    • Masato MachidaShiro YamauchiMinoru KimuraShigeru Yamaji
    • B01D53/22B01D53/32B01D53/56B01D53/94C25C7/00C25D17/00
    • B01D53/56B01D53/326
    • A nitrogen oxide decomposing element and a nitrogen oxide decomposing apparatus can perform a treatment at a relatively low temperature without using a material, which is suspected to have influence on the environment and human body, as an oxidant or a catalyst. There is proposed a nitrogen oxide decomposing element 1 including a conductive solid electrolyte film 2 for selectively allowing a hydrogen ion to pass through, a first electrode layer 3 made of an electronic conductivity base material and a catalyst for accelerating anodic oxidation, a second electrode layer 4 made of an electronic conductivity basematerialandacatalystforacceleratingcathodicreduction, and a platinum group catalyst 6 supported by a porous metal oxide 5 disposed to be adjacent to the second electrode layer 4. A low-power consumption nitrogen oxide decomposing apparatus which can efficiently use electric energy is obtained by locating a nitrogen oxide sensor 14 in the vicinity of the platinum group catalyst 6 supported by the metal oxide 5, and controlling the magnitude of a current flowing between the first and the second electrode layers 3 and 4 and the energization time by a power source/control device 15 in accordance with the concentration of nitrogen oxide detected by the nitrogen oxide sensor 14.
    • 氮氧化物分解元件和氮氧化物分解装置可以在相对低的温度下进行处理,而不使用怀疑对环境和人体有影响的材料作为氧化剂或催化剂。 提出了一种氮氧化物分解元件1,其包括用于选择性地允许氢离子通过的导电固体电解质膜2,由电子导电性基体材料制成的第一电极层3和用于加速阳极氧化的催化剂,第二电极层 由电子导电性基体材料和加速电解反应的催化剂制成的4,以及与多孔金属氧化物5负载的铂族催化剂6,其设置为与第二电极层4相邻。可以通过以下方式获得能够有效地使用电能的低功耗氮氧化物分解装置 将氮氧化物传感器14设置在由金属氧化物5支撑的铂族催化剂6附近,并且通过电源/电流控制来控制在第一和第二电极层3,4之间流动的电流的大小和通电时间, 控制装置15根据氮氧化物浓度的检测 d通过氮氧化物传感器14。
    • 10. 发明授权
    • Dehumidifier and method of using
    • 减湿器及其使用方法
    • US5096549A
    • 1992-03-17
    • US552850
    • 1990-07-13
    • Shiro YamauchiKenichi MoriEiichi NagaoKoichi Hirooka
    • Shiro YamauchiKenichi MoriEiichi NagaoKoichi Hirooka
    • B01D53/26B01D53/32G02F1/15C25B1/02C25B1/04
    • G02F1/1523B01D53/26B01D53/326
    • A dehumidifier for removing moisture from a gas containing moisture comprises a first electrode which is in contact with a gas containing moisture on a first surface thereof and, when a positive voltage is applied thereto, which produces protons from said moisture, a proton conductive solid having first and second portions which is connected to a second surface of the first electrode at the first portion and allows the protons to pass therethrough, and a second electrode which is connected to the second portion of the proton conductive solid on a first surface thereof and in contact with air on a second surface thereof. In a preferred embodiment, the first electrode, the proton conductive solid, and the second electrode are formed as a laminate. When a negative voltage is applied between the first and second electrodes, hydrogen or water is produced from the protons passed through the proton conductive solid.
    • PCT No.PCT / JP87 / 00589 371日期1989年1月6日 102(e)日期1989年1月6日PCT PCT 1987年8月6日PCT公布。 出版物WO88 / 08742 用于从含有水分的气体除去水分的除湿器包括:第一电极,其与在其第一表面上含有水分的气体接触,并且当施加正电压时,其产生从所述第一表面产生质子的第一电极 水分,具有第一和第二部分的质子传导固体,其在第一部分处连接到第一电极的第二表面,并允许质子通过;以及第二电极,其连接到质子传导固体的第二部分 在其第一表面上并与其第二表面上的空气接触。 在优选实施例中,第一电极,质子传导固体和第二电极形成为层压体。 当在第一和第二电极之间施加负电压时,从通过质子传导固体的质子产生氢或水。