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    • 43. 发明授权
    • Gas separation method using adsorbent
    • 使用吸附剂的气体分离方法
    • US07604683B2
    • 2009-10-20
    • US11449725
    • 2006-06-09
    • Taihei Mukaide
    • Taihei Mukaide
    • B01D53/02
    • C01B23/0073B01D53/02B01D53/04B01D2253/20B01D2256/10B01D2256/18B01D2257/102B01D2257/11C01B23/0052C01B2210/0034
    • A gas separation method for separating a specific component gas from a mixed gas using an adsorbent comprises (1) a contact step of bringing a mixed gas into a vessel to contact at a first pressure the mixed gas with an adsorbent whose adsorption property with respect to a specific component gas exhibits hysteresis, (2) a decompression step of decompressing the mixed gas in the vessel to a second pressure which is lower than the first pressure and which is within the hysteresis range, and (3) a desorption step of causing adsorbed matter to detach by placing the adsorbent at a third pressure which is lower than the second pressure and which is outside of the hysteresis range and/or by heating the adsorbent.
    • 使用吸附剂从混合气体中分离特定成分气体的气体分离方法包括:(1)将混合气体以第一压力与混合气体接触的接触步骤,所述吸附剂的吸附性相对于 特定成分气体显示迟滞,(2)将容器内的混合气体减压至低于第一压力并处于滞后范围内的第二压力的减压步骤,以及(3)引起吸附的解吸步骤 通过将吸附剂置于低于第二压力并且在滞后范围之外的第三压力和/或通过加热吸附剂来分离物质。
    • 45. 发明授权
    • Glass composition and optical device
    • 玻璃组成和光学装置
    • US08921246B2
    • 2014-12-30
    • US13580603
    • 2011-02-23
    • Tomohiro WatanabeTaihei Mukaide
    • Tomohiro WatanabeTaihei Mukaide
    • C03C3/062C03C3/095C03C4/00
    • C03C3/062C03C4/0085
    • There is provided a glass composition containing an oxide containing Lu, Si, and Al, in which the composition of the glass composition lies within a compositional region of a ternary composition diagram of Lu, Si, and Al in terms of cation percent, the compositional region being defined by the following six points: (32.3% LuO3/2, 30.0% SiO2, 37.7% AlO3/2), (32.3% LuO3/2, 37.7% SiO2, 30.0% AlO3/2), (20.8% LuO3/2, 55.0% SiO2, 24.2% AlO3/2), (10.0% LuO3/2, 45.0% SiO2, 45.0% AlO3/2), (20.8% LuO3/2, 24.2% SiO2, 55.0% AlO3/2), and (30.0% LuO3/2, 25.0% SiO2, 45.0% AlO3/2). For the glass composition, a glassy state having low or no intrinsic birefringence in the ultraviolet region is stably obtained.
    • 提供了含有Lu,Si和Al的氧化物的玻璃组合物,其中玻璃组合物的组成位于Lu,Si和Al的三元组成图的组成范围内,以阳离子百分比计,组成 (32.3%LuO3 / 2,30.0%SiO2,37.7%AlO3 / 2),(32.3%LuO3 / 2,37.7%SiO2,30.0%AlO3 / 2)(20.8%LuO3 / 2%,55.0%SiO 2,24.2%AlO 3/2)(10.0%LuO 3/2,45.0%SiO 2,45.0%AlO 3/2)(20.8%LuO 3/2,24.2%SiO 2,55.0%AlO 3/2) (30.0%LuO 3/2,25.0%SiO 2,45.0%AlO 3/2)。 对于玻璃组合物,稳定地获得在紫外区域中具有低或没有固有双折射的玻璃状态。
    • 46. 发明申请
    • X-RAY APPARATUS AND X-RAY MEASURING METHOD
    • X射线装置和X射线测量方法
    • US20130108020A1
    • 2013-05-02
    • US13809335
    • 2011-08-01
    • Taihei Mukaide
    • Taihei Mukaide
    • G01N23/20
    • G01N23/20G01N23/04G01N23/083G21K1/06G21K2201/06G21K2201/067G21K2207/005
    • An apparatus for deriving X-ray absorbing and phase information comprises; a splitting element for splitting spatially an X-ray, a detector for detecting intensities of the X-rays transmitted through an object, the intensity of the X-rays changing according to X-ray phase and also position changes, and an calculating unit for calculating an X-ray transmittance image, and an X-ray differential phase contrast or phase sift contrast image as the phase information. The X-ray is split into two or more X-rays having different widths, and emitted onto the detector unit. And, the calculating unit calculates the X-ray absorbing and phase information based on a difference, between the two or more X-rays, in correlation between the changing of the phase of the X-ray and the changing the intensity of the X-ray in the detector unit.
    • 用于导出X射线吸收和相位信息的装置包括: 用于在空间上分割X射线的分离元件,用于检测透过物体的X射线的强度的检测器,X射线相位变化的X射线的强度以及位置变化,以及用于 计算X射线透射率图像,以及X射线差分相位对比度或相移筛选图像作为相位信息。 X射线被分成具有不同宽度的两个或更多个X射线,并被发射到检测器单元上。 并且,计算单元根据X射线的相位的变化与X射线的强度的变化的关系,基于两个以上的X射线之间的差异来计算X射线吸收和相位信息, 射线在检测器单元。