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    • 2. 发明申请
    • ETHYNYLINDOLE COMPOUNDS
    • 乙烯基化合物
    • US20100160647A1
    • 2010-06-24
    • US12644378
    • 2009-12-22
    • Kazuyuki OHMOTOSatoshi ITADANIYoshisuke NAKAYAMAJun TAKEUCHIManabu FUJITA
    • Kazuyuki OHMOTOSatoshi ITADANIYoshisuke NAKAYAMAJun TAKEUCHIManabu FUJITA
    • C07D209/12
    • C07D209/18
    • As a compound having a potent oral activity and a long-lasting cysLT1/cysLT2 receptor antagonistic activity, the compound of the formula (I): which exhibits potent antagonistic activity against the cysLT1/cysLT2 receptor, and have long-lasting effects even in case of oral administration, and therefore is useful as an oral agent for preventing and/or treating a variety of diseases, for example, respiratory disease (for example, asthma (bronchial asthma, etc.), chronic obstructive pulmonary disease (COPD), pulmonary emphysema, chronic bronchitis, pneumonia (interstitial pneumonia, etc.), severe acute respiratory syndrome (SARS), acute respiratory distress syndrome (ARDS), apnea syndrome, allergic rhinitis, sinusitis (acute sinusitis, chronic sinusitis, etc.), pulmonary fibrosis, coughing (chronic coughing, etc.), and the like) was developed.
    • 作为具有有效的口服活性和持久的cysLT1 / cysLT2受体拮抗活性的化合物,式(I)化合物:其对cysLT1 / cysLT2受体具有强的拮抗活性,并且即使在例如 因此可用作预防和/或治疗各种疾病的口服药物,例如呼吸系统疾病(例如哮喘(支气管哮喘等),慢性阻塞性肺病(COPD),肺部 肺气肿,慢性支气管炎,肺炎(间质性肺炎等),严重急性呼吸综合征(SARS),急性呼吸窘迫综合征(ARDS),呼吸暂停综合征,过敏性鼻炎,鼻窦炎(急性鼻窦炎,慢性鼻窦炎等),肺纤维化 ,咳嗽(慢性咳嗽等)等)。
    • 6. 发明申请
    • WATER ELECTROLYSIS SYSTEM AND METHOD FOR OPERATING WATER ELECTROLYSIS SYSTEM
    • 水电解系统和水电解系统的运行方法
    • US20120298520A1
    • 2012-11-29
    • US13449314
    • 2012-04-18
    • Jun TAKEUCHI
    • Jun TAKEUCHI
    • C25B1/04C25B15/02
    • C25B15/02C25B1/08C25B1/10C25B15/08H01M8/04208H01M8/0656H01M2250/20Y02E60/366Y02T90/32
    • A water electrolysis system includes a water electrolysis device, a gas-liquid separator, a water-amount detector, a hydrogen storage device, a hydrogen storage device, a decompressing device, and a control device. The control device includes a residual capacity calculator, a hydrogen production amount calculator, and an electrolysis termination determiner. The residual capacity calculator is configured to calculate a residual capacity of the hydrogen storage device. The hydrogen production amount calculator is configured to calculate an amount of hydrogen produced by the water electrolysis device in a drainage period in which the amount of water in the gas-liquid separator increases to an upper limit from a lower limit. The electrolysis termination determiner is configured to terminate the water electrolysis process when the amount of hydrogen calculated by the hydrogen production amount calculator is greater than the residual capacity calculated by the residual capacity calculator.
    • 水电解系统包括水电解装置,气液分离器,水量检测器,氢存储装置,氢存储装置,减压装置和控制装置。 控制装置包括剩余容量计算器,氢产生量计算器和电解终止确定器。 剩余容量计算器被配置为计算氢存储装置的剩余容量。 氢产生量计算器被配置为在排气期间计算由水电解装置产生的氢气量,其中气液分离器中的水量从下限增加到上限。 电解终止确定器被配置为当由氢产生量计算器计算的氢的量大于由剩余容量计算器计算的剩余容量时终止水电解过程。
    • 8. 发明申请
    • METHOD FOR COATING INTERNAL MEMBER HAVING HOLES IN VACUUM PROCESSING APPARATUS AND THE INTERNAL MEMBER HAVING HOLES COATED BY USING THE COATING METHOD
    • 在真空加工装置中涂覆内孔的内部构件的方法和使用涂覆方法涂覆的内孔的内部构件
    • US20100089323A1
    • 2010-04-15
    • US12553415
    • 2009-09-03
    • Jun TAKEUCHIMasaaki KishidaTadakazu MatsunagaShosuke Endoh
    • Jun TAKEUCHIMasaaki KishidaTadakazu MatsunagaShosuke Endoh
    • C23C16/54
    • C23C4/01Y10T279/23
    • A coating method for a internal member having holes in a vacuum processing apparatus is provided. The method includes a process (A) of filling small holes 78 of the internal member 81 with padding plugs 20 each of which has a core member 22 made from a metal material and a metal-resin composite layer 24 covering the circumferential surface of the core member 22, the metal-resin composite layer 24 being a complex consisting of a metal material and a resinous material exhibiting nonconjugative property to a coating film 80, a process (B) of forming the ceramic coating film 80 on the surface of the internal member 81 by plasma spraying after the process (A) anda process (C) of extracting the padding plugs 20 out of the holes 78 after the process (B). By this coating method, it becomes possible to solve various problems about the technique of filling the holes with the pudding plugs, so that a coating film superior in its quality performance can be produced effectively.
    • 提供了一种在真空处理装置中具有孔的内部构件的涂覆方法。 该方法包括:填充内部构件81的小孔78的填充塞20,其具有由金属材料制成的芯构件22和覆盖芯的圆周表面的金属 - 树脂复合层24 构件22,金属 - 树脂复合层24是由金属材料和对涂膜80显示非共轭性的树脂材料构成的复合体,在内部构件的表面上形成陶瓷涂膜80的工艺(B) (A)中的等离子体喷涂81和在处理(B))之后将填充塞20从孔78中提取出的工序(C)。 通过这种涂布方法,可以解决用布丁塞填充孔的技术的各种问题,从而可以有效地制造出其质量性能优异的涂膜。