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Development of a model for the fast analysis of polymer mixtures based on cellulose, hemicellulose (xylan), lignin using thermogravimetric analysis and application of the model to poplar wood

机译:基于纤维素,半纤维素(XYLAN),木质素的高分子混合物快速分析模型的研制使用热重分析和模型对白杨树的应用

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摘要

The storage of wood chips is associated with high dry matter losses and changes in raw material properties due to microbiological-chemical degradation processes. For a better understanding of degradation processes and their effect on wood components, very labor intensive chemical analysis of a large number of wood samples over a storage period of 6 to 9 months is necessary. The thermogravimetric analysis (TGA) of wood samples offers the possibility to considerably reduce the analysis effort while at the same time achieving a high repeat accuracy. For this purpose, a method was first developed in which the determination of characteristic values for wood analysis is possible in a staged TGA setup in a combined nitrogen and oxygen atmosphere. Based on these characteristic values, a model for the quantification of cellulose, xylan and lignin in polymer blends was developed and three polymer blends representing a broad spectrum of naturally occurring compositions in wood were analyzed to validate the model. The deviation between the polymer fractions determined by the model and used in the experiment was max. 1.37%. The developed model was then transferred to the analysis of extract-free poplar wood samples. The model results were validated by comparison with chemical analysis (NREL) and literature values. This comparison has shown that the wood constituents under consideration can be determined with sufficient accuracy using the new method. The developed method can thus serve as a basis for the development of a method for the continuous monitoring of degradation processes in wood chip storage.
机译:由于微生物 - 化学降解过程,木屑的储存与高干物质损失和原料特性的变化有关。为了更好地了解降解过程及其对木材成分的影响,很需要在6至9个月的储存期间非常劳动地分析大量木质样品。木材样品的热重分析(TGA)提供了大大降低分析工作的可能性,同时实现高重复精度。为此目的,首先开发一种方法,其中在组合的氮气和氧气气氛中的分阶段TGA设置中可以确定木材分析的特征值。基于这些特征值,分析了在聚合物共混物中定量纤维素,木聚糖和木质素的模型,并分析了三种聚合物共混物,其代表木材中的广谱谱的自然形成的组合物,以验证模型。通过模型确定并在实验中使用的聚合物级分之间的偏差最大。 1.37%。然后将开发的模型转移到免疫杨树木样品分析。通过与化学分析(NREL)和文献值进行比较验证了模型结果。这种比较表明,可以使用新方法以足够的精度来确定所考虑的木材成分。因此,开发方法可以作为开发用于连续监测木屑存储中的降解过程的方法的基础。

著录项

  • 来源
    《Fuel》 |2020年第1期|118169.1-118169.11|共11页
  • 作者

    Luehr C.; Pecenka R.;

  • 作者单位

    Leibniz Inst Agr Engn & Bioecon ATB Max Eyth Allee 100 D-14469 Potsdam Germany;

    Leibniz Inst Agr Engn & Bioecon ATB Max Eyth Allee 100 D-14469 Potsdam Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Poplar; Lignocellulosic materials; Thermal analysis; Polymer; Chemical analysis;

    机译:杨树;木质纤维素材料;热分析;聚合物;化学分析;

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