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通过 1D 和 2D H NMR 弛豫谱分析木材中的水分含量:在测定木材干质量中的应用。

Analysis of water content in wood material through 1D and 2D H NMR relaxometry: Application to the determination of the dry mass of wood.

机构信息

Lab. Navier, Ecole des Ponts, Université Gustave Eiffel, CNRS, Marne la Vallée, 77420, France.

GERS-LEE, Université Gustave Eiffel, IFSTTAR, Bouguenais, F-44344, France.

出版信息

Magn Reson Chem. 2021 Jun;59(6):614-627. doi: 10.1002/mrc.5125. Epub 2021 Jan 14.

Abstract

There is an increasing interest on wood as it is an environmentally sustainable product (e.g., biodegradable and renewable). Thus, an accurate characterisation of wood properties is of extreme importance as they define the kind of application for which each type of wood can be used. For instance, dry mass of wood is a key parameter itself and is needed to calculate Moisture Content (MC) of wood, which is correlated to its physical properties. Due to the limitations of commonly used drying methods, preliminary work has shown the potential of H NMR to measure dry mass of wood, but it has never been validated. Here, we performed a critical analysis of 1D and 2D H NMR relaxometry methods for obtaining the dry mass of wood, and we compared their performance to three commonly used drying methods. This showed that commonly used drying methods do not remove all water from wood. Moreover, we are able to classify them accordingly to their performance. In addition, we showed that MC values obtained by H NMR relaxometry methods are higher (up to 20%) than values from commonly used drying methods. This empathises the importance of accurate values of dry mass of wood and the utility of H NMR relaxometry on wood sciences. When comparing both NMR relaxometry methods, 2D should provide the more accurate results, but 1D measurements would also be a recommended choice as they are faster than 2D and their results clearly overcome commonly used drying methods in a noninvasive and nondestructive manner.

摘要

木材作为一种环境可持续的产品(例如可生物降解和可再生),越来越受到关注。因此,准确地描述木材的特性非常重要,因为它们定义了每种类型的木材可以用于哪种应用。例如,木材的干质量本身就是一个关键参数,它是用来计算木材的含水率(MC)的,而 MC 与木材的物理性能有关。由于常用干燥方法的局限性,初步研究表明 1 H NMR 有潜力用于测量木材的干质量,但尚未得到验证。在这里,我们对一维和二维 1 H NMR 弛豫测量法进行了分析,以获取木材的干质量,并将其与三种常用的干燥方法进行了比较。结果表明,常用的干燥方法并不能将木材中的所有水分都去除。此外,我们能够根据它们的性能对它们进行分类。此外,我们还表明,1 H NMR 弛豫测量法得到的 MC 值比常用干燥方法得到的值高(高达 20%)。这强调了准确的木材干质量值的重要性,以及 1 H NMR 弛豫测量法在木材科学中的实用性。在比较两种 NMR 弛豫测量法时,二维方法应该能提供更准确的结果,但一维测量也是一个不错的选择,因为它比二维测量更快,并且以非侵入性和非破坏性的方式明显优于常用的干燥方法。

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