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    • 81. 发明申请
    • METHOD OF COMPENSATING FREQUENCY DRIFT IN AN INTERFEROMETER
    • 在干扰仪中补偿频率干扰的方法
    • WO2013056726A1
    • 2013-04-25
    • PCT/EP2011/068117
    • 2011-10-17
    • FOSS ANALYTICAL A/SJUHL, Henrik Vilstrup
    • JUHL, Henrik Vilstrup
    • G01J3/45
    • G01J3/45G01J2003/283
    • A method of compensating for frequency drift of a reference energy source in an FT interferometer based spectrometer instrument having an arithmetic unit into which has been obtained data representing a reference interferogram (40) collected in response to a trigger signal having been generated in dependence on the emission frequency of the reference energy source and data representing a target interferogram (42) recorded by the FT interferometer in response to a trigger signal also having been generated in dependence on the emission frequency of the reference energy source in the same manner. The method further comprises the comparing in the arithmetic unit the data representing the reference interferogram (40) and the data representing the target interferogram (42) to determining a phase shift (d) between the interferograms in a window W in at least one region (36) away from center-burst (44) and generating in the arithmetic unit a mathematical transform dependent on the determined shift or shifts (d) to be subsequently applied to control the operation of the spectrometer instrument in order to generate data representing a frequency stabilized interferogram of an unknown sample recorded by the FT interferometer.
    • 一种在具有算术单元的基于FT干涉仪的光谱仪器中补偿参考能量源的频率漂移的方法,其中已经获得表示根据已经根据所述基准干涉仪产生的触发信号而收集的参考干涉图(40)的数据 参考能量源的发射频率和由FT干涉仪记录的响应于也以相同方式根据参考能量源的发射频率产生的触发信号的目标干涉图(42)的数据。 该方法还包括在运算单元中比较表示参考干涉图(40)的数据和表示目标干涉图(42)的数据,以确定至少一个区域中的窗口W中的干涉图之间的相移(d) 36)远离中心突发(44)并且在算术单元中产生依赖于所确定的移位或移位(d)的数学变换,以便随后应用于控制光谱仪器的操作,以便产生表示频率稳定的数据 由FT干涉仪记录的未知样品的干涉图。
    • 82. 发明申请
    • SPECTROMETRIC INSTRUMENT
    • 光谱仪
    • WO2012150172A1
    • 2012-11-08
    • PCT/EP2012/057631
    • 2012-04-26
    • FOSS ANALYTICAL A/SFOLKENBERG, JacobLARSEN, Hans
    • FOLKENBERG, JacobLARSEN, Hans
    • G01B9/02G01J3/453
    • G01J3/45G01J3/4535
    • A spectrometric instrument (38) comprising: a scanning interferometer (40,42,44) having a beamsplitter (40) for dividing incident optical radiation into a reflected beam, following a reflected beam path and a transmitted beam following a transmitted beam path; a monochromatic optical radiation source (52) for launching a reference beam into the interferometer (40,42,44) along a first propagation path (62) to be initially incident on a first face (40') of the beamsplitter (40); an observation optical radiation source (46) for launching a divergent observation beam (64) into the interferometer (4,6,8) along a second propagation path (66) to be initially incident on the first face (40') of beamsplitter (40) and overlap the reference beam at the first face (40'); wherein the radiation sources (52;46) cooperate to generate a first angle (θ) between the directions of propagation of the two beams along respective first (62) and second (66) propagation paths when initially and simultaneously incident at the first face (40') which is larger than a divergence half-angle (α) of the observation beam 64.
    • 一种光谱仪器(38),包括:扫描干涉仪(40,42,44),具有分束器(40),用于将入射光辐射分成反射光束,跟随反射光束路径和发射光束跟随传输光束路径; 用于沿着第一传播路径(62)将参考光束发射到干涉仪(40,42,44)中以最初入射在分束器(40)的第一面(40')上的单色光辐射源(52); 观察光辐射源(46),用于沿着第二传播路径(66)将发散观察光束(64)发射到干涉仪(4,6,8)中,以最初入射到分束器的第一面(40') 40)并且在所述第一面(40')处与所述参考光束重叠; 其中所述辐射源(52; 46)协作以在最初和同时入射在所述第一面处时沿着相应的第一(62)和第二(66)传播路径在所述两个光束的传播方向之间产生第一角度(θ) 40'),其大于观察光束64的发散半角(a)。
    • 83. 发明申请
    • DETERMINATION OF SULPHUR DIOXIDE IN A LIQUID
    • 液体中二氧化硫的测定
    • WO2012072106A1
    • 2012-06-07
    • PCT/EP2010/068483
    • 2010-11-30
    • FOSS ANALYTICAL A/STHOMSEN, Henrik
    • THOMSEN, Henrik
    • G01N21/35C12G1/04G01N33/00G01N33/14
    • G01N21/59G01N21/3504G01N33/0042G01N33/146Y02A50/248
    • A system for the measurement of free and bound SO 2 in a liquid beverage product sample comprising a sample container (10) having a volume sufficient to provide a headspace (14) above the sample (12) into which a gas can pass; a gas flow system (6) adapted to extract gas from the headspace (14) and recirculating it back into the liquid volume (12); a measurement system (4) configured to monitor a time dependent evolution of SO 2 in gas from the gas flow system (6); and a dosing apparatus (8) fluidly connected to the container (10) to supply an hydrolysis reagent thereto. A heater unit (3) is provided for supplying thermal radiation into the container (10) to elevate the temperature of sample therein sufficient to facilitate the hydrolysis reaction and a signal processor (30) operates to deconvolute the monitored evolution to generate an indication of the concentration of each of the free SO 2 and the total SO 2 content of the sample.
    • 一种用于测量液体饮料产品样品中的游离和结合的SO 2的系统,其包括样品容器(10),其具有足以提供气体可以通过的样品(12)上方的顶部空间(14)的体积; 适于从顶部空间(14)提取气体并将其再循环回到液体体积(12)中的气体流动系统(6); 测量系统(4),其被配置为监测来自所述气体流动系统(6)的气体中SO 2的时间依赖性演化; 以及流体连接到容器(10)以向其提供水解试剂的计量装置(8)。 提供加热器单元(3),用于将热辐射提供到容器(10)中以提升其中的样品的温度,足以促进水解反应,并且信号处理器(30)操作以对所监视的进化进行解卷积,以产生 样品中游离SO2和SO2含量的浓度。
    • 88. 发明申请
    • DEVICE AND METHOD FOR ASSAYING A VINEFICATION LIQUID
    • 用于测定乙烯基液体的装置和方法
    • WO2009000615A1
    • 2008-12-31
    • PCT/EP2008/056868
    • 2008-06-04
    • FOSS ANALYTICAL A/SJUHL, Henrik Vilstrup
    • JUHL, Henrik Vilstrup
    • G01N33/14
    • G01N33/146
    • The invention concerns a device for the spectrometric assay of a liquid vinefication product (1) comprising an optical spectrometer (5) adapted to generate spectral information from the contents of a spectroscopic a sample cell (4); a data processor (10) having access to a chemometric calibration (11) developed from a spectral database (12) linking optical spectral information to compounds of interest in the liquid vinefication product (1) and configured to process the same to generate an output result (13) indicative of the presence of one or more compounds of interest in the liquid vinefication product (1) characterized in that the device further comprises a freezer unit (3) adapted for freeze distillation of the liquid vinefication product (1) to generate a liquid distillate for analysis in the spectroscopic sample cell (4).
    • 本发明涉及一种用于液体醋化产品(1)的光谱测定的装置,包括光谱仪(5),适于从分光的样品池(4)的内容产生光谱信息; 数据处理器(10)可以访问从光谱数据库(12)开发的化学计量校准(11),该光谱数据库(12)将光谱信息与液体葡萄产品(1)中的感兴趣化合物相连接,并且被配置为处理它以产生输出结果 (13),其指示一种或多种感兴趣的化合物在液体酿造产品(1)中的存在,其特征在于,所述装置还包括适于冷冻蒸馏所述液体葡萄酒产品(1)的冷冻装置(3),以产生 液体馏出物用于在光谱样品池中分析(4)。