...
首页> 外文期刊>Journal of nanoscience and nanotechnology >Spinning of Photocatalytic Fiber as Splittable Segmented-Pie Bi-Component Fibers for Antibacterial Textiles
【24h】

Spinning of Photocatalytic Fiber as Splittable Segmented-Pie Bi-Component Fibers for Antibacterial Textiles

机译:光催化纤维的纺丝作为可分段分段饼肽抗菌纺织品的双组分纤维

获取原文
获取原文并翻译 | 示例

摘要

The increase of public concern regarding hygienic living environments has accelerated research on anti-microbialmodifications for many commodity and technical textile products. This study attempted to produce a durable self-cleaning and antibacterial textile material with a relatively low production cost using inorganic photocatalytic nanoparticles embedded in the textile fibers. The spinning of segmented-pie bi-component fibers was conducted using compositions of polyethylene and nylon 6 with 1.0% of TiO2 as photocatalytic particulate filler. A lab-scale double-extrusion fiber spinning system was used to spin the filament fibers with differing winding speeds of 300 m/min, 500 m/m, and 700 m/m. The extruded round fibers were split into minuscule pie-shaped filaments, which significantly increased their photocatalytic surface areas. The compositions and morphologies of the split filaments and the TiO2 particles in the filaments were characterized by optical microscopic images. Scanning electron microscopic images were used to investigate particles secured on the filament surfaces. The antibacterial effects of the fibers were assessed using a modified method based on the standard method, AATCC100: Assessment of Antibacterial Finishes on Textile Materials, by adding a visible light source above the test samples. The filament samples were tested with the two test organisms of Staphylococcus aureus and Klebsiella pneumoniae. The numbers of bacteria present were determined, and the percent reduction for the specimens with fibers embedded with TiO2 and that with fibers without TiO2 were calculated. The segmented-pie bi-component fiber with 1.0% TiO2 showed enhanced bioactivity against both species of tested bacteria.
机译:对卫生生活环境的公众关注的增加加速了许多商品和技术纺织品的抗微生物制制研究。该研究试图使用嵌入在纺织纤维中的无机光催化纳米颗粒产生耐用的自清洁和抗菌纺织材料,其具有相对较低的生产成本。使用聚乙烯和尼龙6的组合物进行分段饼图双组分纤维的纺丝,其中1.0%的TiO 2作为光催化颗粒填料。使用实验室水垢双挤出纤维纺丝系统旋转纱线纤维,不同的绕组速度为300米/分钟,500米/ m和700米/米。将挤出的圆形纤维分成小细胞,显着增加了它们的光催化表面积。通过光学显微图像表征分裂细丝的组合物和形态和长丝中的TiO 2颗粒。扫描电子显微图像用于研究固定在细丝表面上的颗粒。使用基于标准方法的修饰方法评估纤维的抗菌作用,AATCC100:通过在试验样品上方添加可见光源,对纺织材料进行抗菌表面的评估。用金黄色葡萄球菌和Klebsiella肺炎的两种测试生物测试丝状样品。确定存在的细菌数,并计算嵌入TiO 2的纤维的试样减少的百分比和没有TiO 2的纤维。具有1.0%TiO 2的分段饼派双组分纤维显示出对两种测试细菌的增强的生物活性。

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