...
首页> 外文期刊>International Journal of Bio-Inorganic Hybrid Nanomaterials >Synthesis and characterization of optically active polyester thin-film bionanocomposite membrane achieved by functionalized cellulose /silica for gas permeation
【24h】

Synthesis and characterization of optically active polyester thin-film bionanocomposite membrane achieved by functionalized cellulose /silica for gas permeation

机译:官能化纤维素/二氧化硅用于气体渗透的光学活性聚酯薄膜仿生复合膜的合成与表征

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Optically active bionanocomposite membranes composed of polyester(PE) and cellulose /silica bionanocomposite (BNCs) are a novel method to enhance gas separation performance. Commercially available silica nanoparticles were modified with biodegradable nanocellulose through ultrasonic irradiation technique. Transmission electron microscopy (TEM) analyses showed that the cellulose/silica composites were well dispersed in the polymer matrix on a nanometer scale.The tensile stress–strain of the hybrids was investigated, and the resulting nanocomposites showed good mechanical properties.Thermo gravimetric analysis (TGA) data indicated an increase thermal stability of the PE/BNCs in comparison with the pure polymer. The permeability and selectivity of the PE/BNCs membranes as a function of the BNCs weight percentage were studied and the results obtained from gas permeation experiments showed that adding BNCs to the PE membrane structure increased the permeability of the membranes. Increasing the cellulose/silica mass fraction in the membrane increased the diffusion coeffificients of gases considered in the current study. Further, antimicrobial test against pathogenic bacteria was carried out.
机译:由聚酯(PE)和纤维素/二氧化硅生物纳米复合材料(BNC)组成的光学活性生物纳米复合膜是提高气体分离性能的一种新方法。通过超声辐照技术,用可生物降解的纳米纤维素对市售的二氧化硅纳米粒子进行了改性。透射电镜(TEM)分析表明,纤维素/二氧化硅复合材料在纳米尺度上很好地分散在聚合物基体中。研究了杂化物的拉伸应力-应变,所得纳米复合材料显示出良好的机械性能。热重分析( TGA)数据表明,与纯聚合物相比,PE / BNC的热稳定性有所提高。研究了PE / BNCs膜的渗透性和选择性与BNCs重量百分比的关系,从气体渗透实验获得的结果表明,向PE膜结构中添加BNCs可以提高膜的渗透性。膜中纤维素/二氧化硅质量分数的增加增加了当前研究中所考虑的气体的扩散系数。此外,进行了针对病原菌的抗菌测试。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号