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Considerations on the design of flow cells in by-pass systems for process analytical applications and its influence on the flow profile using NMR and CFD

机译:使用过程分析应用的旁路系统中流通池设计的考虑因素及其对使用NMR和CFD进行的流量分布的影响

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The design of sample flow cells, commonly used in on-line analytics and especially for medium resolution NMR spectroscopy (MR-NMR) in low magnetic fields, was experimentally and theoretically investigated by ~1H NMR and numerical simulations. The flow pattern was characterised to gain information about the residence time distribution and mixing effects. Both 1H NMR imaging and spectroscopy were used to determine the characteristics of flow cells and their significance for on-line measurements such as reaction monitoring or hyphenated separation spectroscopy. The volume flow rates investigated were in the range from 0.1 to 10ml/min, typically applied in the above mentioned applications. The special characteristics of flow cells for MR-NMR were revealed by various NMR experiments and compared with CFD simulations and to flow cells commonly used in high-field NMR. The influence of the design of the inlet and outlet on the flow pattern was investigated as well as the effect of the length of the cell. For practical use, a numerical estimation of the inflow length was given. In addition, it was shown how experiments on the polarisation build-up revealed insight into the flow characteristics in MR-NMR.
机译:通过〜1H NMR和数值模拟,从实验和理论上研究了通常用于在线分析,尤其是低磁场中的中分辨率NMR光谱(MR-NMR)的样品流通池的设计。表征流动模式以获得有关停留时间分布和混合效果的信息。 1H NMR成像和光谱学都用于确定流动池的特性及其对在线测量(如反应监测或联用分离光谱学)的重要性。所研究的体积流量通常在上述应用中应用的范围为0.1至10ml / min。各种NMR实验揭示了用于MR-NMR的流通池的特殊特性,并将其与CFD模拟以及高场NMR中常用的流通池进行了比较。研究了进水口和出水口设计对流型的影响以及池长的影响。对于实际使用,给出了流入长度的数值估计。此外,还显示了极化积累的实验如何揭示对MR-NMR流动特性的了解。

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