Center for Accelerator Mass Spectrometry, Lawrence Livermore National Laboratory, Livermore, California 94551, United States.
Anal Chem. 2011 Dec 15;83(24):9413-7. doi: 10.1021/ac202013s. Epub 2011 Nov 21.
We describe a 100%-efficient moving-wire interface (MWI) for online coupling of high-performance liquid chromatography (HPLC) that transmits 100% of the carbon in nonvolatile analytes to a CO(2)-gas-accepting ion source. This interface accepts a flow of analyte in solvent, evaporates the solvent, combusts the remaining analyte, and directs the combustion products to the instrument of choice. Effluent is transferred to a periodically indented wire by a coherent jet to increase efficiency and maintain peak resolution. The combustion oven is plumbed such that gaseous combustion products are completely directed to an exit capillary, avoiding the loss of combustion products to the atmosphere. This system achieves almost-complete transfer of the analyte at HPLC flow rates up to 125 μL/min at a wire speed of 6 cm/s. This represents a 30× increase in efficiency and an 8× increase in maximum wire loading, compared to the spray transfer technique used in earlier MWIs.
我们描述了一种 100%高效的移动线接口 (MWI),用于高效液相色谱 (HPLC) 的在线耦合,可将非挥发性分析物中的 100%碳传输到 CO(2)-气体接受离子源。该接口接受溶剂中的分析物流动,蒸发溶剂,燃烧剩余的分析物,并将燃烧产物引导至所需的仪器。通过连续射流将流出物转移到周期性压痕的线上,以提高效率并保持峰分辨率。燃烧炉的管道布置使得气态燃烧产物完全导向出口毛细管,避免燃烧产物损失到大气中。与早期 MWIs 中使用的喷雾传输技术相比,该系统在 6 cm/s 的线速度下,在高达 125 μL/min 的 HPLC 流速下实现了几乎完全的分析物转移。这代表效率提高了 30 倍,最大线负载提高了 8 倍。