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TEMPO-mediated oxidation of lignocellulosic fibers from date palm leaves

机译:TEMPO介导的枣椰子叶木质纤维素纤维的氧化

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摘要

The TEMPO-mediated oxidation of date palm lignocellulosic fibers (DPLF) from Phoenix dactylifera - i.e. cellulosic fibers still containing their initial lignin and hemicellulose components - was performed under conditions leading to a high degree of oxidation. The resulting carboxylated fibers were shown to still contain high residual contents of lignin (12%, w/w) and hemicelluloses (34%, w/w). The ultrastructure of the oxidized DPLF was revealed by scanning electron microscopy, energy dispersive X-ray and X-ray photoelectron spectroscopy. These techniques not only confirmed the surface carboxylation of the DPLF, but also gave some insight on the oxidation heterogeneity when going from the surface to the core of the fibers. Finally, in relation with the chemical data and the morphology of the substrate, it has been possible to propose a heterogeneous oxidation kinetic model, which was applied with success not only to DPLF but also to the cellulose whiskers extracted from the rachis of the palm from P. dactylifera.
机译:在导致高度氧化的条件下,进行了TEMPO介导的来自凤凰木的椰枣木质纤维素纤维(DPLF)的氧化-即仍然包含其初始木质素和半纤维素成分的纤维素纤维。已显示出所得的羧化纤维仍然含有高残留量的木质素(12%,w / w)和半纤维素(34%,w / w)。通过扫描电子显微镜,能量色散X射线和X射线光电子能谱揭示了氧化的DPLF的超微结构。这些技术不仅证实了DPLF的表面羧基化,而且还使人们了解了从纤维表面到纤芯的氧化不均一性。最后,关于底物的化学数据和形态,有可能提出一种非均相的氧化动力学模型,该模型不仅成功地应用于DPLF,而且还成功地应用于从棕榈叶中提取的纤维素晶须。 P. dactylifera。

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