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Coupling of a gas-phase chemiluminescence nitrogen detector and a capillary electrophoretic system

机译:气相化学发光氮检测器与毛细管电泳系统的耦合

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A capillary electrophoretic system has been successfully connected to a gas-phase chemiluminescence nitrogen detector via a pneumatic nebulizer interface. The interface, built in-house, consists of a nebulizing gas delivery subsystem, a sheath liquid subsystem, a short spray tube, and a liquid gap. The liquid gap is formed at the point where the spray tube, the separation capillary, and the sheath liquid subsystem meet. The sheath liquid subsystem consists of a grounding connection to complete the electric circuit for the electrophoretic system, a sheath liquid delivery pump, a sheath Liquid overflow outlet maintained at atmospheric pressure, and a sheath liquid conduit with a hydrodynamic resistance that is much smaller than that of the separation capillary. The interface operates at the natural self-aspiration rate of the short spray tube. The design ensures that the natural self-aspiration rate of the nebulizer is higher than the maximum electroosmotic now rate that can be produced in the separation capillary. The now difference is made up by the sheath liquid which, due to the hydrodynamic resistance differences, is sucked into the liquid gap preferentially from the sheath liquid conduit. Thus, the spray tube and the separation capillary are decoupled from each other hydrodynamically, and any laminar now-induced additional band broadening in the separation capillary is avoided, Using the combined electrophoretic separation and gas-phase chemiluminescence nitrogen detector system, the mass detection limit for five nucleotide bases used as test compounds was found to be about 10 pmol nitrogen. [References: 26]
机译:毛细管电泳系统已通过气动雾化器接口成功连接到气相化学发光氮检测器。内部构建的接口包括雾化气体输送子系统,鞘液子系统,短喷管和液隙。液体间隙形成在喷管,分离毛细管和鞘液子系统相遇的位置。鞘液子系统包括一个用于完成电泳系统电路的接地连接,一个鞘液输送泵,一个保持在大气压下的鞘液溢流出口,以及一个流体动力阻力比其小得多的鞘液导管。分离毛细管的该接口以短喷管的自然自吸率运行。该设计可确保雾化器的自然自吸率高于分离毛细管中可产生的最大电渗率。现在的差异由鞘液弥补,该鞘液由于流体动力阻力差异而优先从鞘液导管吸入液隙。因此,喷管和分离毛细管在流体力学上彼此分离,并且避免了层流现在在分离毛细管中引起的额外谱带展宽。使用电泳分离和气相化学发光氮检测器组合系统,质量检测极限用作测试化合物的5个核苷酸碱基的5个碱基的氮含量约为10 pmol。 [参考:26]

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