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一种结合直接应用生物质大规模蒸汽爆炸水样定量核磁共振波谱的检查方案。

A Workup Protocol Combined with Direct Application of Quantitative Nuclear Magnetic Resonance Spectroscopy of Aqueous Samples from Large-Scale Steam Explosion of Biomass.

作者信息

Løhre Camilla, Underhaug Jarl, Brusletto Rune, Barth Tanja

机构信息

Department of Chemistry, University of Bergen, Allégt. 41, Bergen 5007, Norway.

出版信息

ACS Omega. 2021 Mar 2;6(10):6714-6721. doi: 10.1021/acsomega.0c05642. eCollection 2021 Mar 16.

Abstract

Methods for thermochemical conversion of biomass into renewable energy and materials rapidly increase in range and outreach. A focus on the target product streams for valorization is natural, yet several pretreatment steps and conversion methods also result in an aqueous byproduct, which has been given less attention. This paper aims to fill this knowledge gap in the existing literature on identification and quantification of organic components in such aqueous phases by reporting a fast and direct workup protocol combined with application of quantitative analytical nuclear magnetic resonance (NMR) spectroscopy. Laboratory workup procedures combined with subsequent proton NMR spectroscopy with water signal suppression using presaturation pulses during relaxation delay, , have been established, evaluated, and approved by testing on three different Bruker BioSpin NMR spectrometers; an 850 MHz AVANCE III HD with a 5 mm TCI CryoProbe, a 600 MHz AVANCE NEO with a QCI CryoProbe, and a 500 MHz AVANCE with a 5 mm BBO room-temperature probe additionally confirmed the quantification method to be applicable. The analytical procedure identified furfural, methanol, acetic acid, and formic acid as the dominating compounds in the analyzed aqueous samples, which were process effluents generated by the patented Arbacore pellet production process using steam explosion of wood shavings. A selected range of quantitative results in the aqueous phase from large-scale steam explosion is included in the study. The described procedure provides excellent quantitative reproducibility with experimental series standard deviations of <1% (mM), is nondestructive, and can be automated on demand.

摘要

生物质热化学转化为可再生能源和材料的方法在范围和应用方面迅速增加。关注目标产物流的增值是很自然的,但几个预处理步骤和转化方法也会产生一种含水副产物,对此关注较少。本文旨在通过报告一种快速直接的后处理方案并结合定量分析核磁共振(NMR)光谱的应用,填补现有文献中关于此类水相中有机成分鉴定和定量的知识空白。通过在三台不同的布鲁克生物自旋核磁共振光谱仪上进行测试,建立、评估并批准了实验室后处理程序,随后结合在弛豫延迟期间使用预饱和脉冲抑制水信号的质子核磁共振光谱法;一台配备5毫米TCI低温探头的850兆赫AVANCE III HD、一台配备QCI低温探头的600兆赫AVANCE NEO以及一台配备5毫米BBO室温探头的500兆赫AVANCE,进一步证实了该定量方法的适用性。分析程序确定糠醛、甲醇、乙酸和甲酸是分析的含水样品中的主要化合物,这些样品是使用刨花蒸汽爆破的专利Arbacore颗粒生产工艺产生的工艺废水。该研究包括了大规模蒸汽爆破水相中的一系列选定定量结果。所描述的程序具有<1%(毫摩尔)的实验系列标准偏差,提供了出色的定量重现性,是非破坏性的,并且可根据需要实现自动化。

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