用于快速预测工业木质素结构和材料性质的可翻译ir -化学计量学模型。

IF 13.1 1区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Luke A Riddell, Peter de Peinder, Jean-Pierre B Lindner, Florian Meirer, Pieter C A Bruijnincx
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引用次数: 0

摘要

技术木质素是植物生物质加工的工业副产品,例如,造纸或生物炼制操作。它们具有高功能性和芳香性,因此可能适用于各种应用;然而,它们的确切结构组成取决于植物种类和所涉及的工业过程。一般来说,木质素增值和生物精炼的一个主要瓶颈是对每个样品进行全面表征所需的设备和时间投资。通常需要一系列湿化学、光谱、色谱和热方法来有效地表征给定木质素样品。为了减轻分析负担,测量的木质素性质可以与从快速分析技术获得的详细光谱数据相关联,例如衰减全反射(ATR)傅里叶变换红外(IR)光谱,这需要最少的样品制备。由于光谱数据具有足够的灵敏度,偏最小二乘回归模型可以进行校准,从而预测仅记录ATR-IR光谱的未来样品的这些特性。到目前为止,木质素的一些结构和大分子性质已经与ATR-IR光谱数据相关联,并以这种方式进行了定量预测,包括分子量、羟基含量([OH])、单元间连锁丰度和玻璃化转变温度。本文描述了应用这种强大的木质素表征方法的方案。在这里,我们还提出了一个简单的校准转移步骤,当在偏最小二乘回归之前实施时,解决了仪器依赖性问题。使用校准的模型,可以通过单次ATR-IR光谱测量(每个样品约5分钟)确定木质素的性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A translatable IR-chemometrics model for the rapid prediction of structural and material properties of technical lignins.

Technical lignins are an industrial byproduct of plant biomass processing, for example, paper production or biorefinery operations. They are highly functional and aromatic, making them potentially suitable for a diverse range of applications; however, their exact structural composition depends on the plant species and the industrial process involved. A major bottleneck to lignin valorization and to biorefining in general is the equipment and time investment required for the full characterization of each sample. An array of wet chemical, spectroscopic, chromatographic and thermal methods are typically required to effectively characterize a given lignin sample. To ease the analytical burden, measured lignin properties can be correlated with detailed spectroscopic data obtained from a rapid analytical technique, such as attenuated total reflectance (ATR) Fourier-transform infrared (IR) spectroscopy, which requires minimal sample preparation. With sufficient sensitivity of the spectroscopic data, partial least squares regression models can be calibrated and, thus, predict these properties for future samples for which only the ATR-IR spectra are recorded. So far, several structural and macromolecular properties of lignin have been correlated with ATR-IR spectral data and quantitatively predicted in such a manner, including molecular weight, hydroxyl group content ([OH]), interunit linkage abundance and glass transition temperature. The protocol to apply this powerful lignin characterization methodology is described herein. Here, we also present a simple calibration transfer step, which when implemented before partial least squares regression, addresses the problem of instrument dependency. With the calibrated model, it is possible to determine lignin properties from a single ATR-IR spectral measurement (in ~5 min per sample).

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来源期刊
Nature Protocols
Nature Protocols 生物-生化研究方法
CiteScore
29.10
自引率
0.70%
发文量
128
审稿时长
4 months
期刊介绍: Nature Protocols focuses on publishing protocols used to address significant biological and biomedical science research questions, including methods grounded in physics and chemistry with practical applications to biological problems. The journal caters to a primary audience of research scientists and, as such, exclusively publishes protocols with research applications. Protocols primarily aimed at influencing patient management and treatment decisions are not featured. The specific techniques covered encompass a wide range, including but not limited to: Biochemistry, Cell biology, Cell culture, Chemical modification, Computational biology, Developmental biology, Epigenomics, Genetic analysis, Genetic modification, Genomics, Imaging, Immunology, Isolation, purification, and separation, Lipidomics, Metabolomics, Microbiology, Model organisms, Nanotechnology, Neuroscience, Nucleic-acid-based molecular biology, Pharmacology, Plant biology, Protein analysis, Proteomics, Spectroscopy, Structural biology, Synthetic chemistry, Tissue culture, Toxicology, and Virology.
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