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作 者:张蛟龙 侯磊磊 张红杰 张雪 李海明[1] ZHANG Jiaolong;HOU Leilei;ZHANG Hongjie;ZHANG Xue;LI Haiming(Liaoning Key Lab of Lignocellulose Chemistry and BioMaterials,Liaoning Collaborative Innovation Center for Lignocellulosic Biorefinery,Dalian Polytechnic University,Dalian,Liaoning Province,116034;China National Pulp and Paper Research Institute Co.,Ltd.,Beijing,100102;National Engineering Lab for Pulp and Paper,Beijing,100102)
机构地区:[1]大连工业大学,辽宁省生物质化学与材料重点实验室,辽宁木质纤维生物质精炼协同创新中心,辽宁大连116034 [2]中国制浆造纸研究院有限公司,北京100102 [3]制浆造纸国家工程实验室,北京100102
出 处:《中国造纸》2024年第6期42-50,138,共10页China Pulp & Paper
基 金:国家自然科学基金面上项目(32171727)。
摘 要:本研究对预水解硫酸盐溶解浆纤维进行了PFI/超声分步协同处理。结果表明,经PFI/超声协同处理后,溶解浆纤维的表面形貌被破坏,大部分初生壁和次生壁S1层被脱除,比表面积、孔容和孔径变大,针叶木溶解浆孔径从未处理的16.76 nm增大到21.85 nm,阔叶木溶解浆从16.74 nm增大到21.61 nm;纤维形貌特征的变化引起了溶解浆纤维保水值和吸液率显著增加,针叶木和阔叶木溶解浆保水值分别增大205.0%和78.5%。同时纤维素结晶度、特性黏度和分子质量降低。PFI/超声协同处理可以有效改善溶解浆在NMMO溶液中的溶解性能。A sequential treatment consisting of initial PFI refining,followed by ultrasonic treatment was performed on pre-hydrolyzed sulfate dissolving pulp fibers in this study.The results showed that after the PFI/ultrasonic synergistic treatment,the surface morphology of dissolving pulp fibers was destroyed,most of the primary wall and S1 layer of the secondary wall were removed,and the specific surface area,pore volume,and pore diameter became larger.Softwood dissolving pulp pore diameter increased from 16.76 nm to 21.85 nm from the untreated treatment and from 16.74 nm to 21.61 nm for hardwood dissolving pulp.The changes in fiber morphology characteristics caused a significant increase in the water retention value and absorbency of dissolving pulp fibers.Softwood and hardwood dissolving pulp water retention values increased by 205.0%and 78.5%,respectively,while the cellulose crystallinity,intrinsic viscosity and molecular weight were reduced.The PFI/ultrasonic synergistic treatment could effectively improve the solubility of dissolving pulp in NMMO solution.
分 类 号:TS74[轻工技术与工程—制浆造纸工程]
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