GAS ANALYSIS DEVICE AND GAS ANALYSIS METHOD
    57.
    发明申请
    GAS ANALYSIS DEVICE AND GAS ANALYSIS METHOD 有权
    气体分析装置和气体分析方法

    公开(公告)号:US20160331270A1

    公开(公告)日:2016-11-17

    申请号:US15063432

    申请日:2014-09-08

    申请人: RIKEN

    摘要: To provide a gas analysis device comprising: a cell; a light source; and a detector, wherein two or more types of gaseous components contained in the gas are measurement targets, a mid-infrared light with a wavelength that is caused to match the absorption spectrum of the measurement target gaseous components is output from the light source, and concentrations of the gaseous components are obtained based on light intensity detected by the detector. The gas analysis device sets a cumulative measurement time for the mid-infrared lights with the wavelengths for respective ones of the measurement target gaseous components; and controls at least one of an output time of the light source and a detection time of the detector in accordance with the cumulative measurement times, thereby efficiently measuring the plurality of types of gaseous components contained in the gas by using the mid-infrared lights with the plurality of wavelengths.

    摘要翻译: 提供一种气体分析装置,包括:电池; 光源; 以及检测器,其中气体中包含的两种或更多种气态组分是测量目标,从光源输出具有与测量对象气体组分的吸收光谱相匹配的波长的中红外光,并且 基于由检测器检测到的光强度获得气态成分的浓度。 所述气体分析装置对所述中红外线的累积测量时间设定为所述各测定​​对象气体成分的波长; 并且根据累积的测量时间来控制光源的输出时间和检测器的检测时间中的至少一个,从而通过使用具有以下方式的中红外光来有效地测量包含在气体中的多种类型的气体成分: 多个波长。

    ARRAY NEAR-FIELD HIGH OPTICAL SCATTERING MATERIAL DETECTION METHOD
    60.
    发明申请
    ARRAY NEAR-FIELD HIGH OPTICAL SCATTERING MATERIAL DETECTION METHOD 审中-公开
    阵列近场高光散射材料检测方法

    公开(公告)号:US20160320299A1

    公开(公告)日:2016-11-03

    申请号:US14697633

    申请日:2015-04-28

    摘要: An array near-field high optical scattering material detection method is disclosed, which comprises steps of irradiating an input light onto a high scattering material to generate a diffuse reflection, a diffusion, and a transmission within the high scattering material; reading out an optical energy over different positions on the high scattering material, respectively; forming a two dimensional light intensity distribution data image according to the optical energy over different positions on the high scattering material, respectively; and analyzing an internal composition variation of the high scattering material according to the two dimensional light intensity distribution data image to obtain the internal composition data of the high scattering material. By using the above technical means, the internal composition of the high optical scattering material may be known by detecting the same, and may be successfully applied onto a detection use on the green technology involving the biomedical engineering, chemical engineering, and environmental engineering.

    摘要翻译: 公开了一种阵列近场高光散射材料检测方法,其包括将输入光照射到高散射材料上以在高散射材料内产生漫反射,扩散和透射的步骤; 分别在高散射材料上读出不同位置的光能; 根据高散射材料上不同位置上的光能分别形成二维光强分布数据图像; 并根据二维光强分布数据图像分析高散射材料的内部组成变化,以获得高散射材料的内部组成数据。 通过使用上述技术手段,通过检测高光散射材料的内部组成可以是已知的,可以成功地应用于涉及生物医学工程,化学工程和环境工程的绿色技术的检测用途。