摘要
以木浆为原料,分别采用不同磨浆转数对木浆纤维进行原纤化处理,使其表面分丝帚化,再利用冷冻干燥技术保持纤维表面分丝状态而避免角质化,从而制备出可生物降解的纸基空气过滤材料。研究了不同程度原纤化处理对纸基空气滤材结构和性能的影响,探讨了原纤化处理对滤材Z向形貌的影响机理。结果表明,浆料浓度为1.5%、冷冻温度为-56℃、磨浆转数为50000 r时,纸基空气滤材具有较佳的过滤性能。
In this research,a novel method for preparing biodegradable cellulose-based air filter materials based on freeze-drying technique to remain fibrillation of the fiber surface and avoid hornification was presented.The plant fibers were chosen as the raw materials and treated by using grinding in different revolutions.The effect of various degree of fibrillation treatment on the structure and properties of cellulose-based air filter materials was investigated.Besides,the influence mechanism of fibrillation treatment on Z direction morphology of filters was also researched.The results demonstrated that the air filter materials behaved the superior filtering performance under the treatment condition of 50000 r grinding revolution、-56℃freezing temperature and 1.5%pulp concentration.Furthermore,the fibrillation treatment made more microfibrils remained on the surface of fibers and free hydroxyl groups exposed,which enhanced the interleaving force of fibers and uniformed the pore distribution among materials.In addition,three-dimensional spider-web like structure consisted of microfibrils and fiber back bones could improve interception capacity of air filters for particulate particles.Therefore,the environment-friendly cellulose-based air filter material was fabricated efficiently and controllably.
作者
张美云
马珊珊
杨斌
宋顺喜
鲁鹏
苏治平
ZHANG Mei-yun;MA Shan-shan;YANG Bin;SONG Shun-xi;LU Peng;SU Zhi-ping(College of Bioresources Chemical and Materials Engineering,China National Light Industry Key Lab of Paper Based Functional Materials,National Demonstration Center for Experimental Light Chemistry Engineering Education, Shaanxi University of Science&Technology,Xi an,Shaanxi Province,710021;Guangxi Key Lab of Clean Pulp&Papermaking and Pollution Control,Nanning,Guangxi Zhuang Autonomous Region,530004;State Key Lab for Modification of Chemical Fibers and Polymer Materials,Donghua University,Shanghai,201620;State Key Lab of Pulp and Paper Engineering,South China University of Technology,Guangzhou,Guangdong Province,510640)
出处
《中国造纸》
CAS
北大核心
2018年第1期26-32,共7页
China Pulp & Paper
基金
国家重点研发计划(2017YFB0308300)
广西清洁化制浆造纸与污染控制重点实验室开放基金(KF201701)
国家自然科学基金(31670593)
陕西省重点研发计划项目(2017GY-140)
东华大学国家重点实验室开放基金(LK1601)。
关键词
植物纤维
原纤化处理
冷冻干燥
空气滤材
Z向形貌
plant fiber
fibrillation treatment
freeze-drying
air filter material
Z orientation morphology