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在超纯氨中痕量水分的气相色谱测定中碳化钙与水的相互作用。

Towards the interaction between calcium carbide and water during gas-chromatographic determination of trace moisture in ultra-high purity ammonia.

机构信息

Laboratory of membrane and catalytic processes, Nanotechnology and Biotechnology Department, Nizhny Novgorod State Technical University n.a. R.E. Alekseev, 24 Minina Str., 603950, Nizhny Novgorod, Russian Federation.

Laboratory of membrane and catalytic processes, Nanotechnology and Biotechnology Department, Nizhny Novgorod State Technical University n.a. R.E. Alekseev, 24 Minina Str., 603950, Nizhny Novgorod, Russian Federation.

出版信息

J Chromatogr A. 2018 Jul 27;1560:71-77. doi: 10.1016/j.chroma.2018.05.028. Epub 2018 May 16.

Abstract

The current study focuses on the processes involved during the flow conversion of water into acetylene in a calcium carbide reaction cell for the trace moisture analysis of ammonia by reaction gas chromatography. The factors negatively affecting the reproducibility and the accuracy of the measurements are suggested and discussed. The intramolecular reaction of the HOCaCCH intermediate was found to be a side reaction producing background acetylene during the contact of wet ammonia gas with calcium carbide. The presence of the HOCaCCH intermediate among the reaction products is confirmed by an FTIR spectral study of calcium carbide powder exposed to wet gas. The side reaction kinetics is evaluated experimentally and its influence on the results of the gas chromatographic measurements is discussed in relation to the determination of the optimal operating parameters for ammonia analysis. The reaction gas chromatography method for the trace moisture measurements in an ammonia matrix was experimentally compared to an FTIR long-path length gas cell technique to evaluate the accuracy limitations and the resource intensity.

摘要

本研究关注的是在电石反应池中,水转化为乙炔的过程,用于通过反应气相色谱法对氨中的痕量水分进行分析。提出并讨论了影响测量重现性和准确性的因素。研究发现,在湿氨气体与电石接触过程中,HO-CaCCH 中间体会发生分子内反应,生成背景乙炔。通过对暴露于湿气体的电石粉末进行傅里叶变换红外光谱研究,证实了反应产物中存在 HO-CaCCH 中间物。通过实验评估了副反应动力学,并根据优化操作参数的要求,讨论了其对气相色谱测量结果的影响。实验比较了痕量水分测量的反应气相色谱法和 FTIR 长光程气体池技术,以评估准确性限制和资源强度。

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