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    • 1. 发明授权
    • Method for detecting a gaseous analyte present as a minor constituent in an admixture
    • 用于检测在混合物中作为次要成分存在的气态分析物的方法
    • US07265842B2
    • 2007-09-04
    • US10966314
    • 2004-10-14
    • Barbara PaldusBruce RichmanAlexander KachanovEric Crosson
    • Barbara PaldusBruce RichmanAlexander KachanovEric Crosson
    • G01J5/02G01J1/42G01N21/00
    • G01N21/39
    • A gaseous target analyte present as a minor constituent in an admixture with at least one other gaseous species can be detected using a cavity enhanced optical spectrometer by a process comprising the steps of: i) identifying a plurality of strong spectral absorption peaks of the target analyte which are present within the scanning range of the spectrometer, ii) determining for the identified peaks the pressure region above which the peak width increases substantially with increasing pressure and below which the peak width is substantially independent of pressure, iii) determining which of the peaks identified in step i) are, within the pressure region determined in step ii), free from spectral interference by any of the other components of the admixture. iv) measuring the spectrum of the admixture at the pressure region identified in step ii).
    • 可以使用空腔增强型光谱仪通过包括以下步骤的方法检测与至少一种其它气态物质混合物中作为次要成分存在的气态目标分析物:i)鉴定目标分析物的多个强光谱吸收峰 它们存在于光谱仪的扫描范围内,ii)确定所识别的峰的压力区域,在该压力区域上,峰宽度随着压力的增加而基本上增加并且低于该压力峰值宽度基本上与压力无关,iii)确定哪个峰值 在步骤i)中确定的压力区域在步骤ii)中确定的压力区域内,不受混合物中任何其它组分的光谱干扰。 iv)测量在步骤ii)中鉴定的压力区域上的混合物的光谱。
    • 2. 发明申请
    • Method for increasing the dynamic range of a cavity enhanced optical spectrometer
    • 增加腔增强型光谱仪的动态范围的方法
    • US20060084180A1
    • 2006-04-20
    • US10966315
    • 2004-10-14
    • Barbara PaldusBruce RichmanAlexander KachanovEric Crosson
    • Barbara PaldusBruce RichmanAlexander KachanovEric Crosson
    • G01N24/00
    • G01N21/3504G01N21/39
    • Target analytes present in low concentration as components in a gaseous admixture can be detected using a cavity enhanced optical spectrometer by a process comprising: i) identifying from the spectrum of the pure target analyte a series of absorption peaks free from spectral interference by peaks of any additional gaseous species which are present, the first member of the series being the strongest spectral absorption peak of said target analyte ii) identifying one or more successive peaks of the series which have an absorption that is weaker than the immediately previously identified peak of the series, iii) performing a spectral scan at the wavelengths of the peaks identified in steps i) and ii), and iv) calculating the concentration of the target analyte from the spectral scan of the admixture performed at the wavelength determined in step iii).
    • 以气体混合物中的组分存在的目标分析物可以使用空腔增强型光谱仪通过以下方法来检测,所述方法包括:i)从纯的目标分析物的光谱中鉴定出一系列没有光谱干扰的吸收峰, 存在的另外的气体物质,该系列的第一个成员是所述目标分析物的最强光谱吸收峰。ii)识别该系列的一个或多个连续的峰,其吸收比紧接着之前鉴定的该序列峰 ,iii)在步骤i)和ii)中确定的峰的波长处执行光谱扫描,以及iv)从在步骤iii)中确定的波长执行的混合物的光谱扫描计算目标分析物的浓度。
    • 3. 发明申请
    • Method for increasng the dynamic range of a cavity enhanced optical spectrometer
    • 增加腔增强光谱仪的动态范围的方法
    • US20060082778A1
    • 2006-04-20
    • US10966314
    • 2004-10-14
    • Barbara PaldusBruce RichmanAlexander KachanovEric Crosson
    • Barbara PaldusBruce RichmanAlexander KachanovEric Crosson
    • G01N21/00
    • G01N21/39
    • A gaseous target analyte present as a minor constituent in an admixture with at least one other gaseous species can be detected using a cavity enhanced optical spectrometer by a process comprising the steps of: i) identifying a plurality of strong spectral absorption peaks of the target analyte which are present within the scanning range of the spectrometer, ii) determining for the identified peaks the pressure region above which the peak width increases substantially with increasing pressure and below which the peak width is substantially independent of pressure, iii) determining which of the peaks identified in step i) are, within the pressure region determined in step ii), free from spectral interference by any of the other components of the admixture. iv) measuring the spectrum of the admixture at the pressure region identified in step ii).
    • 可以使用空腔增强型光谱仪通过包括以下步骤的方法检测与至少一种其它气态物质混合物中作为次要成分存在的气态目标分析物:i)鉴定目标分析物的多个强光谱吸收峰 它们存在于光谱仪的扫描范围内,ii)确定所识别的峰的压力区域,在该压力区域上,峰宽度随着压力的增加而基本上增加并且低于该压力峰值宽度基本上与压力无关,iii)确定哪个峰值 在步骤i)中确定的压力区域在步骤ii)中确定的压力区域内,不受混合物中任何其它组分的光谱干扰。 iv)测量在步骤ii)中鉴定的压力区域上的混合物的光谱。