首页> 外文期刊>Cellulose >Fluorine free TiO2/cyanate ester coated cotton fabric with low surface free energy and rough surface for durable oil-water separation
【24h】

Fluorine free TiO2/cyanate ester coated cotton fabric with low surface free energy and rough surface for durable oil-water separation

机译:氟的TiO2 /氰酸酯涂覆棉织物,具有低表面自由能和粗糙表面,用于耐用的油水分离

获取原文
获取原文并翻译 | 示例
           

摘要

Low cost superhydrophobic cotton fabric was developed using TiO2/cyanate ester coating for the first time. The TiO2/cyanate ester coated cotton fabric displayed superhydrophobic behaviour with water contact angle of 158 degrees, sliding contact angle of 8 degrees and surface free energy of 18.0 mN/m(2). Besides, the TiO2/cyanate ester coated cotton fabric also possesses excellent laundry durability as well as stability against acid, alkali salt solutions and mechanical abrasion. Consequently, the TiO2/cyanate ester coated cotton also delivered superior oil-water separation efficiency with different types of oil/water mixtures that includes engine oil/water, waste engine oil/water, petrol/water and diesel/water. The TiO2/cyanate ester coated cotton fabric shows separation efficiency as high as 98% with flux value of 7200 L/m(2)h for petrol/water mixture. Further, both cyanate ester and TiO2/cyanate ester coated cotton fabric delivers ultra-high UV-resistant ability with Ultraviolet Protection Factor value as high as 500 + . Hence, it is anticipated that the present approach of using cyanate ester can be widely explored further to construct multifunctional fabrics towards excellent self-cleaning as well as oil/water separation with UV and chemical robustness.
机译:首次使用TiO2/氰酸酯涂层开发了低成本超疏水棉织物。TiO2/氰酸酯涂层棉织物表现出超疏水行为,水接触角为158度,滑动接触角为8度,表面自由能为18.0 mN/m(2)。此外,TiO2/氰酸酯涂层棉织物还具有优异的洗衣耐久性,以及耐酸、碱盐溶液和机械磨损的稳定性。因此,TiO2/氰酸酯涂层棉还可通过不同类型的油/水混合物(包括发动机油/水、废发动机油/水、汽油/水和柴油/水)提供优异的油水分离效率。TiO2/氰酸酯涂层棉织物对汽油/水混合物的分离效率高达98%,通量值为7200 L/m(2)h。此外,氰酸酯和TiO2/氰酸酯涂层棉织物都具有超高的抗紫外线能力,紫外线保护系数高达500+。因此,可以预期,目前使用氰酸酯的方法可以进一步广泛探索,以构建多功能织物,实现优异的自清洁以及具有紫外线和化学稳定性的油水分离。

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