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    • 2. 发明授权
    • Gas chromatograph
    • 气体色谱
    • US3858435A
    • 1975-01-07
    • US33828773
    • 1973-03-05
    • CALIFORNIA INST OF TECHN
    • STEVENS MARIO R
    • G01N30/28G01N30/34G01N30/84G01N31/08
    • G01N30/28G01N30/84G01N2030/0095G01N30/34G01N2030/8423
    • A compact, efficient, portable gas chromatograph system is disclosed in which the gas chromatographic column is disposed in a closed loop with an electrolytic hydrogen generator-separator. The output from the column containing the bands of analyzable materials dispersed in hydrogen carrier gas is passed through the tubular anode of the generator-separator. The hydrogen passes through the wall of the anode, across the electrolyte through the wall of the cathode and is collected and returned by way of the sample inlet to the inlet to the column. The analyzable material remaining stalled within the anode tube is swept into the detector by an auxiliary electrolytic hydrogen generator. A pressure transducer downstream from the anode develops an increased voltage signal in response to pressure drop which is applied to the controller for the auxiliary hydrogen generator to maintain a constant flow of hydrogen carrier gas within the closed loop circuit while also maintaining a flow of hydrogen sweep gas to the detector.
    • 公开了一种紧凑,高效的便携式气相色谱仪系统,其中气相色谱柱与电解氢发生器 - 分离器一起设置在闭环中。 包含分散在氢载气中的可分析材料带的柱的输出通过发生器 - 分离器的管状阳极。 氢气穿过阳极的壁,穿过阴极的壁穿过电解质,并通过样品入口收集并返回到塔的入口。 在阳极管内残留的可分析材料通过辅助电解氢发生器扫入检测器。 阳极下游的压力传感器产生响应于压降的增加的电压信号,该压降被施加到用于辅助氢气发生器的控制器以保持闭环回路内的恒定氢气载气流,同时还保持氢气流 气体到检测器。
    • 3. 发明授权
    • Isotope-ratio-monitoring gas chromatography-mass spectrometry apparatus
and method
    • 同位素比监测气相色谱 - 质谱仪及方法
    • US5012052A
    • 1991-04-30
    • US173297
    • 1988-03-22
    • John M. Hayes
    • John M. Hayes
    • G01N27/62G01N30/72G01N30/84H01J49/04H01J49/26
    • G01N30/84G01N30/7206G01N2030/8405G01N2030/8423G01N2030/8435
    • An isotope-ratio-monitoring gas chromatography-mass spectrometry apparatus and method are disclosed which provide for on-line analysis of isotope compositions with high precision. With the apparatus and method, samples are introduced in a hydrogen carrier gas into a gas chromatograph and resolved into discrete compounds. The discrete compounds are thereafter introduced to a selectively permeable membrane separator, empolying palladium, palladium alloy or other suitable material, to separate out the hydrogen carrier. A replacement carrier gas is simultaneously introduced to carry the chromatographic sample to a combustion reactor, water separator and isotope-ratio-monitoring mass spectrometer. The replacement carrier gas is introduced at a lower flowrate than the hydrogen carrier gas, thus permitting lower flowrates to be introduced to the mass spectrometer to improve its precision. Flowrates to the mass spectrometer are thus reduced without any loss or fractionation of the sample. An improved combustion system is employed to reduce system volume and equalize system pressure, while still providing quantitative combustion.
    • 公开了同位素比监测气相色谱 - 质谱分析装置和方法,其提供高精度同位素组成的在线分析。 利用该装置和方法,将样品在氢气载气中引入气相色谱仪中并分离成离散的化合物。 然后将离散的化合物引入选择性渗透的膜分离器中,使钯,钯合金或其它合适的材料分解出氢载体。 同时引入替代载气,将色谱样品运送到燃烧反应器,水分离器和同位素比监测质谱仪。 替换的载气以比氢载气更低的流量被引入,从而允许较低的流量被引入质谱仪以提高其精度。 因此,降低到质谱仪的流出而没有样品的任何损失或分级。 采用改进的燃烧系统来降低系统体积和均衡系统压力,同时仍然提供定量燃烧。
    • 9. 发明授权
    • Continuous flow apparatus and method for interfacing liquid
chromatograph and fourier transform infrared spectrometer
    • 液相色谱仪和傅里叶变换红外光谱仪连续流量仪和方法
    • US5538643A
    • 1996-07-23
    • US434306
    • 1995-05-02
    • George J. KallosRichard R. Papenfuss
    • George J. KallosRichard R. Papenfuss
    • G01N21/35G01N30/74G01N30/84B01D15/08
    • G01N30/84G01N2021/3595G01N2030/743G01N2030/8417G01N2030/8423G01N2030/8464G01N2030/8476
    • Apparatus for interfacing a liquid chromatograph (LC) with a spectrometer such as a Fourier transform infrared spectrometer, the LC having an eluant, the eluant containing a solvent and a component of interest. The apparatus includes five basic parts. The first is a means for generating a stream of droplets of the eluant, such as a nebulizer. The second is a means for removing most of the solvent from the stream of droplets of the eluant to thereby generate a stream of particles, the particles containing the component of interest and any residual solvent, such as a membrane solvent separator/momentum separator combination. The third is a cryogenic receiving surface, such as a gold drum. The forth is a means for focusing the stream of particles onto the cryogenic receiving surface so that the particles adhere to the cryogenic receiving surface, such as a one and two-tenths millimeter inside diameter stainless steel tube positioned with a gap between the distal end of the tube and the cryogenic receiving surface of one-quarter millimeter. The fifth is a means for controlling the temperature of the cryogenic receiving surface, such as a helium refrigerator. In operation, the cryogenic receiving surface is maintained at a temperature effective to cause the particles to adhere to the cryogenic receiving surface to form a region of adhered particles, such as a temperature of between seventy and one hundred and five degrees Kelvin, the cryogenic receiving surface being maintained in a partial vacuum. Then, the cryogenic receiving surface is warmed, e.g., to between one hundred and five and two hundred degrees Kelvin, to volatilize essentially all of any remaining solvent from the region of adhered particles prior to spectroscopic analysis of the region of adhered particles.
    • 用于将液相色谱仪(LC)与诸如傅里叶变换红外光谱仪的光谱仪接口的液体色谱仪,具有洗脱剂的LC,含有溶剂的洗脱液和感兴趣的组分。 该装置包括五个基本部分。 第一种是用于产生洗脱液的液滴流的方法,例如喷雾器。 第二种是从洗脱剂液滴流中除去大部分溶剂的手段,从而产生颗粒流,包含目的组分的颗粒和任何残留的溶剂,例如膜溶剂分离器/动量分离器组合。 第三个是低温接收表面,例如金鼓。 第四是用于将颗粒流聚焦到低温接收表面上的手段,使得颗粒粘附到低温接收表面上,例如一个和十分之二十毫米内径的不锈钢管,定位为在 管和低温接收面四分之一毫米。 第五种是用于控制低温接收表面的温度的方法,例如氦制冷机。 在操作中,低温接收表面保持在有效的温度以使颗粒附着到低温接收表面上以形成附着颗粒的区域,例如七十五百分之一百五十五开尔文之间的温度,低温接收 表面保持在部分真空中。 然后,低温接收表面被加热,例如在一百五百到二百开尔文之间,在粘附的颗粒区域的光谱分析之前,从粘附的颗粒区域基本上挥发任何剩余的溶剂。