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Characterization of Pseudo-Lignin from Steam ExplodedBirch

机译:蒸汽爆炸中伪木质素的表征桦木

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摘要

There is a growing interest in a more wholesome utilization of biomass as the need for greener chemistry and non-mineral oil-based products increases. Lignin is the largest renewable resource for aromatic chemicals, which is found in all types of lignocellulosic biomass. Steam-explosion of lignocellulosic biomass is a useful pretreatment technique to make the polymeric material more available for processing. However, this heat-based pretreatment is known to result in the formation of pseudo-lignin, a lignin-like polymer made from carbohydrate degradation products. In this work, we have analyzed steam-exploded birch with a varying severity factor (3.1–5.0) by pyrolysis–gas chromatography–mass spectrometry, 2D-NMR, and Fourier transform infrared spectroscopy. The main results reveal a consumption of acetic acid at higher temperatures, with the increase of furan components in the pyrolyzate. The IR and NMR spectral data support these results, and there is a reason to believe that the conditions for humin formation are accomplished under steam explosion. Pseudo-lignin seems to bea humin-like compound.
机译:随着对绿色化学和非矿物油基产品的需求增加,人们越来越希望对生物质进行更有益的利用。木质素是芳族化学品的最大可再生资源,存在于所有类型的木质纤维素生物质中。木质纤维素生物质的蒸汽爆破是一种有用的预处理技术,可使聚合物材料更易于加工。然而,已知这种基于热的预处理导致假木素的形成,假木素是由碳水化合物降解产物制成的木质素样聚合物。在这项工作中,我们通过热解-气相色谱-质谱,2D-NMR和傅里叶变换红外光谱分析了具有不同严重性因子(3.1-5.0)的蒸汽爆桦。主要结果表明,随着高温下乙酸的消耗,热解产物中呋喃组分的增加。 IR和NMR光谱数据支持了这些结果,并且有理由相信,在蒸汽爆炸条件下即可形成腐殖质。伪木质素似乎是一种类似于人的化合物。

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