Trubyanov Maxim M, Mochalov Georgy M, Vorotyntsev Ilya V, Vorotyntsev Andrey V, Suvorov Sergey S, Smirnov Konstantin Y, Vorotyntsev Vladimir M
Nanotechnology and Biotechnology Department, Nizhny Novgorod State Technical University n.a. R.E. Alekseev, 24 Minina str., 603950 Nizhny Novgorod, Russia.
Nanotechnology and Biotechnology Department, Nizhny Novgorod State Technical University n.a. R.E. Alekseev, 24 Minina str., 603950 Nizhny Novgorod, Russia.
J Chromatogr A. 2016 May 20;1447:129-34. doi: 10.1016/j.chroma.2016.04.020. Epub 2016 Apr 8.
A novel method for rapid, quantitative determination of trace permanent gases and carbon dioxide in ultra-high purity ammonia by dual-channel two-dimensional GC-PDHID is presented. An improved matrix back-flush-to-vent approach combining back-flush column switching technique with auxiliary NaHSO4 ammonia trap is described. The NaHSO4 trap prevents traces of ammonia from entering the analytical column and is shown not to affect the impurity content of the sample. The approach allows shortening the analysis time and increasing the amount of measurements without extensive maintenance of the GC-system. The performance of the configuration has been evaluated utilizing ammonia- and helium-based calibration standards. The method has been applied for the analysis of 99.9999+% ammonia purified by high-pressure distillation at the production site.
提出了一种通过双通道二维气相色谱-脉冲放电氦离子化检测器快速、定量测定超高纯氨中痕量永久性气体和二氧化碳的新方法。描述了一种改进的基质反吹至放空方法,该方法将反吹柱切换技术与辅助硫酸氢钠氨阱相结合。硫酸氢钠阱可防止痕量氨进入分析柱,且不影响样品的杂质含量。该方法无需对气相色谱系统进行大量维护即可缩短分析时间并增加测量次数。利用基于氨和氦的校准标准对该配置的性能进行了评估。该方法已应用于对生产现场通过高压蒸馏纯化的99.9999 +% 氨的分析。