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Irradiation of Cellulosic Pulps: Understanding Its Impact on Cellulose Oxidation

机译:纤维素纸浆的辐照:了解其对纤维素氧化的影响

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Different pulp samples were irradiated by three energy sources: plasma, electron beaming, and y radiation. The effect of increased exposure to irradiation was studied by multidetector gel permeation chromatography with fluorescence labeling of carbonyl groups to quantify changes of the cellulose. Whereas plasma treatment had no effect, for gamma and electron beam the degradation primarily affects the high molar mass area. Kinetic calculations based on DP_w were performed. They show close-to-linear relations with slopes in the same order of magnitude, suggesting that wood-derived pulps degrade slower than pulps from annual plants. The rise in carbonyl group content is linear with increasing dose. In particular, in pulps from annual plants, most detected carbonyl structures originate from the new reducing end groups. Therefore, oxidative modification of cellulose molecules by means of radiation appears to be viable for pulps produced from wood. Here the increase in oxidized functionalities is partially disconnected from chain scission.
机译:不同的纸浆样品受到三种能源的照射:等离子体,电子束和y辐射。通过多检测器凝胶渗透色谱法对羰基进行荧光标记,以量化纤维素的变化,从而研究了辐照量增加的影响。等离子体处理没有效果,但对于γ和电子束,降解主要影响高摩尔质量区域。进行了基于DP_w的动力学计算。它们与相同数量级的坡度显示出接近线性的关系,这表明木材浆粕的降解速度比一年生植物浆粕的降解慢。羰基含量的增加与剂量增加呈线性关系。特别是在一年生植物的纸浆中,大多数检测到的羰基结构都来自新的还原端基。因此,通过辐射对纤维素分子的氧化修饰对于由木材生产的纸浆似乎是可行的。在此,氧化官能度的增加与断链部分断开。

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