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超吸水改性棉纤维膜的制备及其性能
引用本文:谢婉婷,刘其海,贾振宇,朱小花,王荣辉. 超吸水改性棉纤维膜的制备及其性能[J]. 纺织学报, 2021, 42(4): 48-54. DOI: 10.13475/j.fzxb.20200706307
作者姓名:谢婉婷  刘其海  贾振宇  朱小花  王荣辉
作者单位:1.仲恺农业工程学院 化学化工学院, 广东 广州 5102252.广东维芊科技有限公司,广东 佛山 5282163.湛江博泰生物化工科技实业有限公司, 广东 湛江 524051
基金项目:广东省科技计划项目(2017A010103024,2020B121202014);广东省促进经济发展专项资金资助项目(粤自然资源合[2019]016号);湛江市海洋经济创新发展示范市建设项目(湛海创2017C4A);佛山市(南海区)科技创新项目(FS0AA-KJ919-4402-0057)。
摘    要:为制备具有较高吸水性及稳定性的超吸水纤维膜,首先利用氯乙酸对NaOH碱化处理后的棉纤维进行改性制备吸水纤维,然后通过溶液分散法将吸水纤维在水中分散成膜制备超吸水纤维膜材料.对纤维膜材料的表面结构、化学结构、结晶结构、热稳定性、羧甲基取代度、吸水性能及力学性能进行表征与分析.结果表明:对棉纤维进行碱化处理可促进氯乙酸与棉...

关 键 词:超吸水纤维膜  氯乙酸  亲水改性  吸水材料  羧甲基取代度  棉纤维
收稿时间:2020-07-24

Preparation and performance of super absorbent modified cotton fiber membrane
XIE Wanting,LIU Qihai,JIA Zhenyu,ZHU Xiaohua,WANG Ronghui. Preparation and performance of super absorbent modified cotton fiber membrane[J]. Journal of Textile Research, 2021, 42(4): 48-54. DOI: 10.13475/j.fzxb.20200706307
Authors:XIE Wanting  LIU Qihai  JIA Zhenyu  ZHU Xiaohua  WANG Ronghui
Affiliation:1. College of Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong 510225, China2. Guangdong Weiqian Technology Co., Ltd., Foshan, Guangdong 528216, China3. Zhanjiang Botai Bio-Chemical Technology Industrial Co., Ltd., Zhanjiang, Guangdong 524051, China
Abstract:In order to prepare super absorbent fiber membranes with higher water absorption and stability,the cotton fibers alkalized by NaOH were modified by the chloroacetic acid to enhance the water absorbence,and then the water-absorbent fibers were dispersed in water to prepare a super absorbent fiber membrane material.The surface structure,chemical structure,crystalline structure,thermal stability,the degree of carboxymethyl substitution,water absorption and mechanical properties of the fiber membrane material were eveluated and analyzed.The results show that alkali treatment to cotton fiber can promote the substitution reaction between chloroacetic acid and cotton fiber,and the amount of chloroacetic acid directly affects the degree of carboxymethyl substitution of cotton fiber,which has an important impact on the improvement in water absorption performance of the membrane.However,too high a dosage will significantly reduce the tensile strength of the fiber membrane.When the degree of carboxymethyl substitution is about 0.264,the shape of the absorbent fiber membrane material remains relatively complete after absorbing water,and has generally good mechanical properties,and its water absorption rate can reach 163.3 times,with the water retention rate reaching more than 73.7 times.
Keywords:super absorbent fiber membrane  chloroacetic acid  hydrophilic modification  water-absorbent material  degree of carboxymethyl substitution  cotton fiber
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