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首页> 外文期刊>Chromatography >Rapid Separation of Elemental Species by Fast Multicapillary Gas Chromatography with Multichannel Optical Spectrometry Detection following Headspace Solid Phase Microextraction
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Rapid Separation of Elemental Species by Fast Multicapillary Gas Chromatography with Multichannel Optical Spectrometry Detection following Headspace Solid Phase Microextraction

机译:顶空固相微萃取后快速多毛细管气相色谱-多通道光谱检测快速分离元素种类

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A method for conducting fast and efficient gas chromatography based on short multicapillaries in straight alignment combined with atomic emission detection was developed for field analysis. The strategy enables for speciation analysis of organometallic compounds. The analytes are simultaneously ethylated and preconcentrated on a solid phase microextraction (SPME) fiber placed in the headspace over the sample for 25 min. The ethylated species are then completely separated and selectively quantified within 25 s under isothermal conditions. A new miniaturized speciation analyzer has been constructed and evaluated. The system consists of a GC injection port and a lab-made miniaturized GC unit directly coupled with miniaturized plasma excitation source. The emitted light is transferred via optical fiber and registered with a miniaturized charged coupled device (CCD) based spectrometer. Working parameters for multicapillary column gas chromatography with atomic emission detector, including carrier gas flow rate, desorption temperature, and GC column temperature, were optimized to achieve good separation of analytes. Basic investigations of the fundamental properties of 5 cm-long multicapillary column, to evaluate its potential and limitations as a rapid separation unit, are presented. The adaptation of the technique for use with a SPME system and with a multichannel element-selective plasma-emission detector is highlighted.
机译:建立了一种基于短多毛细管直排排列结合原子发射检测的快速高效气相色谱方法,用于现场分析。该策略能够对有机金属化合物进行形态分析。同时将分析物乙基化并在固相微萃取(SPME)纤维上进行预浓缩,该纤维置于样品上方的顶部空间中25分钟。然后将乙基化的物质完全分离,并在等温条件下于25 s内进行选择性定量。一种新型的小型形态分析仪已被构建和评估。该系统由一个GC进样口和一个与微型等离子体激发源直接耦合的实验室制造的微型GC单元组成。发射的光通过光纤传输并与基于微型电荷耦合器件(CCD)的光谱仪配准。优化了带有原子发射检测器的多毛细管柱气相色谱仪的工作参数,包括载气流速,解吸温度和GC柱温,以实现良好的分析物分离。提出了对5 cm长的多毛细管色谱柱基本性能的基础研究,以评估其作为快速分离装置的潜力和局限性。突出说明了该技术与SPME系统和多通道元素选择等离子体发射检测器配合使用的情况。

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