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    • 5. 发明专利
    • METHOD FOR MEASURING CONCENTRATION OF NITROGEN OXIDE
    • JPH10123080A
    • 1998-05-15
    • JP27910196
    • 1996-10-22
    • TOYOTA CENTRAL RES & DEV
    • YAMADA YASUSHIYAMASHITA KATSUJISENOO YOSHIKIMASUOKA MASAYOSHI
    • G01N27/12G01N27/04G01N27/16
    • PROBLEM TO BE SOLVED: To measure the concentration of nitrogen oxide accurately regardless of the concentration of reductive gas by measuring the mixed concentration of a nitrogen oxide and a reductive gas independently from the concentration of the reductive gas and then correcting the mixed concentration with the reductive gas concentration. SOLUTION: A gas containing nitrogen oxide and butane gas at constant concentrations is prepared and the concentration is measured using a semiconductor variable resistance type sensor 10 and a contact combustion sensor 20 before delivering respective output signals. Output signals from respective sensors 10, 20 are then binarized through a numeric operating unit 30 and corrected using the numerically expressed output signal from the semiconductor variable resistance type sensor 10. Correlation between the concentration of nitrogen oxide and sensor output is sustained even if the concentration of coexisting butane gas is varied arbitrarily. Consequently, the concentration of nitrogen oxide can be measured accurately by correcting the output signal from the semiconductor variable resistance type sensor 10 through numerical operation using the output signal from the catalytic combustion type sensor 20.
    • 7. 发明专利
    • X-ray analyzing sample container and sample container housing device
    • X射线分析样品容器和样品容器装置
    • JP2005257306A
    • 2005-09-22
    • JP2004065584
    • 2004-03-09
    • Japan Synchrotron Radiation Research InstToyota Central Res & Dev Lab Inc株式会社豊田中央研究所財団法人高輝度光科学研究センター
    • NOZAKI HIROSHITOWATA SHINICHIAOKI MASAKAZUNORITAKE TATSUOSENOO YOSHIKIHIROZAWA ICHIROSATO MASANAO
    • G01N23/20
    • PROBLEM TO BE SOLVED: To provide an X-ray analyzing sample container, capable of arbitrarily setting the incident angle of incident X-rays and the emission angle of diffracted X-rays, capable of being adapted even to a high-pressure gas and capable of being reduced in size and cost, and to provide a sample container housing device capable of easily introducing/discharging a desired gas, with respect to the X-ray analyzing sample container. SOLUTION: In the X-ray analyzing sample container 10, a sample 22 is housed in a hermetically closed space 42, formed by a dome partition wall 34 and a placing stand 12. Since the dome partition wall 34 is formed into a semispherical shape by a polyimide film, the incidence angle of the incident X-rays can be arbitrarily set to an angle range of a 0-90° and the diffracted X-rays can be emitted from the dome part 36 at an emission angle range of 0-90° to enable measurement. Further, even when the high-pressure gas is introduced into the hermetically closed space 42, gas pressure is dispersed uniformly to the semispherical inner wall surface of the dome part 36 and the elastic deformation range of the dome part 36 is wide, the sample container can withstand the high pressure gas. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供能够任意设定入射X射线的入射角和衍射X射线的发射角的X射线分析样本容器,能够适应于高压 气体并且能够减小尺寸和成本,并且提供相对于X射线分析样品容器能够容易地引入/排出所需气体的样品容器容纳装置。 解决方案:在X射线分析样品容器10中,样品22容纳在由圆顶隔壁34和放置台12形成的气密封闭空间42中。由于圆顶隔壁34形成为 通过聚酰亚胺膜的半球形状,入射X射线的入射角可以任意设定为0-90°的角度范围,衍射X射线可以从圆顶部36发射,发射角度范围为 0-90°使能测量。 此外,即使将高压气体导入密封空间42,气压均匀地分散到圆顶部36的半球形内壁面,并且圆顶部36的弹性变形范围宽,样品容器 可承受高压气体。 版权所有(C)2005,JPO&NCIPI