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Exploring structural variations of hydrogen-bonding patterns in cellulose during mechanical pulp refining of tobacco stems

机译:在烟草机械纸浆中纤维素中纤维素氢粘合图案的结构变形

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摘要

Hydrogen bonding and mechanical refining are closely correlated. In this work, structural variations of hydrogen bonding patterns in cellulose during mechanical pulp refining, including the hydrogen bonding energy and distance as well as the content of hydrogen bonds, have been explored by using the second derivative FTIR spectra and deconvolving spectra in the OH stretching vibrational region. Results show that except for the bond distance, both the hydrogen bonding energy and the content of hydrogen bonds exhibit a significant variation at an increasing beating degree. The calculated hydrogen bonding energies for intermolecular O6-H center dot center dot center dot O3' decrease by 12.9%, while those of intramolecular O3-H center dot center dot center dot O5 and O2-H center dot center dot center dot O6 vary little. Evolutions of the content of certain hydrogen bonds differ depending on the different refining stage. It is suggested that along with the role of water, hydration and swelling, internal/external fibrillation and delamination are strongly related to the structural variations of hydrogen bonding patterns in cellulose during mechanical pulp refining.
机译:氢键和机械矫正密切相关。在这项工作中,通过使用第二衍生物FTIR光谱和DecoNvolving光谱,在机械纸浆精炼期间纤维素在机械纸浆精炼期间的结构变化,包括氢键能量和氢键的含量以及oh拉伸中的解压缩光谱振动区域。结果表明,除了键距离外,氢键能量和氢键的含量都以增加的跳跃程度显示出显着的变化。用于分子间O6-H中心点中心点O3'的计算氢键能量为12.9%,而分子内O3-H中心点中心点中心点O5和O2-H中心点中心点O6变化少。某些氢键的含量的演变根据不同的精制阶段而不同。建议随着水,水合和溶胀的作用,内/外部纤维化和分层与机械纸浆精炼期间纤维素中的氢键图案的结构变化强烈有关。

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