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采用拉曼光谱法进行气相甲醇合成中的气体成分监测。

Gas phase methanol synthesis with Raman spectroscopy for gas composition monitoring.

作者信息

Maksimov Pavel, Laari Arto, Ruuskanen Vesa, Koiranen Tuomas, Ahola Jero

机构信息

Lappeenranta-Lahti University of Technology, LUT School of Engineering Science P.O. Box 20 FI-53851 Lappeenranta Finland

Lappeenranta-Lahti University of Technology, LUT School of Energy Systems P.O. Box 20 FI-53851 Lappeenranta Finland.

出版信息

RSC Adv. 2020 Jun 24;10(40):23690-23701. doi: 10.1039/d0ra04455e. eCollection 2020 Jun 19.

Abstract

Applicability of Raman spectroscopy for time-resolved gas composition monitoring during direct methanol synthesis carbon dioxide hydrogenation was investigated. A series of methanol synthesis experiments with varied reactor conditions was conducted and the reactor outlet stream was analyzed with in-line gas Raman spectroscopy. Concentrations of H, CO and CO were determined directly from the acquired spectral data. For evaluation of methanol and water content a data reconciliation algorithm was developed. The algorithm involves estimation of the occurring chemical reactions' extents by iterative minimization of the difference between concentration values acquired from the experimental data and concentration values computed based on the mass conservation principle. The obtained experimental concentrations were compared and validated against the results of the reactor mathematical modeling, which is based upon a well-established kinetic interpretation of the process. The findings indicate good repeatability and accuracy of the developed gas analysis system, which together with the advantageous temporal resolution of the method, make Raman spectroscopy a promising technique for fast response monitoring of the process.

摘要

研究了拉曼光谱在直接甲醇合成二氧化碳加氢过程中对时间分辨气体成分监测的适用性。进行了一系列在不同反应器条件下的甲醇合成实验,并用在线气体拉曼光谱对反应器出口物流进行了分析。直接从获取的光谱数据中确定了H、CO和CO的浓度。为了评估甲醇和水的含量,开发了一种数据协调算法。该算法通过迭代最小化从实验数据获得的浓度值与基于质量守恒原理计算的浓度值之间的差异,来估计发生的化学反应程度。将获得的实验浓度与基于该过程成熟动力学解释的反应器数学模型结果进行了比较和验证。研究结果表明,所开发的气体分析系统具有良好的重复性和准确性,再加上该方法有利的时间分辨率,使拉曼光谱成为一种用于该过程快速响应监测的有前途的技术。

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