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台式与高场 NMR:木质素分子量测定的性能相当。

Benchtop versus high field NMR: Comparable performance found for the molecular weight determination of lignin.

机构信息

Bonn-Rhein-Sieg University of Applied Sciences, Department of Natural Sciences, von-Liebig-Straße 20, D-53359 Rheinbach, Germany.

Spectral Service AG, Emil-Hoffmann-Straße 33, D-50996 Köln, Germany.

出版信息

J Pharm Biomed Anal. 2022 Apr 1;212:114649. doi: 10.1016/j.jpba.2022.114649. Epub 2022 Feb 9.

Abstract

Lignin is a promising renewable biopolymer being investigated worldwide as an environmentally benign substitute of fossil-based aromatic compounds, e.g. for the use as an excipient with antioxidant and antimicrobial properties in drug delivery or even as active compound. For its successful implementation into process streams, a quick, easy, and reliable method is needed for its molecular weight determination. Here we present a method using H spectra of benchtop as well as conventional NMR systems in combination with multivariate data analysis, to determine lignin's molecular weight (M and M) and polydispersity index (PDI). A set of 36 organosolv lignin samples (from Miscanthus x giganteus, Paulownia tomentosa and Silphium perfoliatum) was used for the calibration and cross validation, and 17 samples were used as external validation set. Validation errors between 5.6% and 12.9% were achieved for all parameters on all NMR devices (43, 60, 500 and 600 MHz). Surprisingly, no significant difference in the performance of the benchtop and high-field devices was found. This facilitates the application of this method for determining lignin's molecular weight in an industrial environment because of the low maintenance expenditure, small footprint, ruggedness, and low cost of permanent magnet benchtop NMR systems.

摘要

木质素是一种很有前途的可再生生物聚合物,目前正在全球范围内被研究,作为一种对环境友好的化石基芳香族化合物替代品,例如作为赋形剂,具有抗氧化和抗菌性能,用于药物传递,甚至作为活性化合物。为了将其成功应用于工艺流中,需要一种快速、简便、可靠的方法来测定其分子量。在这里,我们提出了一种使用台式和常规 NMR 系统的 H 谱结合多元数据分析来测定木质素分子量(M 和 Mw)和多分散指数(PDI)的方法。使用了一组 36 种有机溶剂木质素样品(来自芒草、泡桐和贯叶连翘)进行校准和交叉验证,17 种样品作为外部验证集。在所有 NMR 设备(43、60、500 和 600 MHz)上,所有参数的验证误差均在 5.6%至 12.9%之间。令人惊讶的是,台式和高场设备的性能没有明显差异。由于永磁台式 NMR 系统的维护费用低、占地面积小、坚固耐用且成本低,因此该方法可以方便地应用于工业环境中木质素分子量的测定。

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