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高场和低场 NMR 仪器之间多变量校准模型的校准转移是否可行?木质素分子量的案例研究。

Is the Calibration Transfer of Multivariate Calibration Models between High- and Low-Field NMR Instruments Possible? A Case Study of Lignin Molecular Weight.

机构信息

Department of Chemistry and Biotechnology, FH Aachen University of Applied Sciences, Jülich 52428, Germany.

Department of Natural Sciences, Bonn-Rhein-Sieg University of Applied Sciences, Rheinbach 53359, Germany.

出版信息

Anal Chem. 2022 Mar 8;94(9):3997-4004. doi: 10.1021/acs.analchem.1c05125. Epub 2022 Feb 24.

Abstract

Although several successful applications of benchtop nuclear magnetic resonance (NMR) spectroscopy in quantitative mixture analysis exist, the possibility of calibration transfer remains mostly unexplored, especially between high- and low-field NMR. This study investigates for the first time the calibration transfer of partial least squares regressions [weight average molecular weight () of lignin] between high-field (600 MHz) NMR and benchtop NMR devices (43 and 60 MHz). For the transfer, piecewise direct standardization, calibration transfer based on canonical correlation analysis, and transfer via the extreme learning machine auto-encoder method are employed. Despite the immense resolution difference between high-field and low-field NMR instruments, the results demonstrate that the calibration transfer from high- to low-field is feasible in the case of a physical property, namely, the molecular weight, achieving validation errors close to the original calibration (down to only 1.2 times higher root mean square errors). These results introduce new perspectives for applications of benchtop NMR, in which existing calibrations from expensive high-field instruments can be transferred to cheaper benchtop instruments to economize.

摘要

尽管台式核磁共振(NMR)光谱在定量混合物分析中有几个成功的应用案例,但校准转移的可能性仍未得到充分探索,特别是在高场和低场 NMR 之间。本研究首次调查了在高场(600 MHz)NMR 和台式 NMR 设备(43 和 60 MHz)之间进行偏最小二乘回归 [木质素的重均分子量(Mw)] 的校准转移。为了进行转移,采用分段直接标准化、基于典范相关分析的校准转移以及通过极限学习机自动编码器方法的转移。尽管高场和低场 NMR 仪器之间存在巨大的分辨率差异,但结果表明,在物理性质(即分子量)的情况下,从高场到低场的校准转移是可行的,达到了与原始校准非常接近的验证误差(仅高出 1.2 倍均方根误差)。这些结果为台式 NMR 的应用带来了新的视角,其中昂贵的高场仪器的现有校准可以转移到更便宜的台式仪器上,以节省成本。

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