纤维素
结晶度
极限抗拉强度
蔗渣
材料科学
复合材料
傅里叶变换红外光谱
复合数
化学工程
纤维素纤维
断裂强度
精炼(冶金)
微晶纤维素
再生纤维素
天然纤维
保水性
聚合物
作者
Zhihong Ou,Jizhen Huang,K. G. Li,Jianquan Hu,Yuxin Liu
标识
DOI:10.1515/npprj-2026-0002
摘要
Abstract The effect of beating on the paper performance of bagasse cellulose fibers was investigated by analyzing changes in morphological parameters (fiber length and fines content), physical properties (tensile strength, breaking length, and tensile force), water retention value (WRV), cellulose crystalline structure, and pore structure of the fibers. The results indicate that the fines content increased by 4.98 % at 80°SR compared with the unbeated sample. Tensile strength, breaking length, and tensile force increased with the beating degree. WRV also increased with beating, showing a rise of 62.89 % after the first refining stage. In contrast, the cellulose crystallinity first increased and then decreased with beating intensity, being 3.1 % lower at 80°SR compared with that at 13°SR. FTIR spectra indicated no significant changes in the functional groups of bagasse cellulose during the beating process. With increasing beating intensity, the pore size distribution gradually shifted toward larger pores, leading to an increase in the average pore volume.
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