Zhou Yuxuan, Zhu Borong, Yang Ting, Liu Yuqing, Zhang Ke-Qin, Liu Jinxin
College of Textile and Clothing Engineering, National Engineering Laboratory for Modern Silk, Soochow University Suzhou 215123 China
China National Textile and Apparel Council Key Laboratory for Silk Functional Materials and Technology, Soochow University Suzhou 215123 China.
RSC Adv. 2023 Sep 11;13(39):27077-27087. doi: 10.1039/d3ra03695b. eCollection 2023 Sep 8.
Nowadays oil pollution poses a serious threat to the environment and people's daily life. As reusable and environmentally friendly materials, fiber-based oil sorption materials can effectively alleviate this phenomenon. However, maintaining a high sorption rate along with improved mechanical properties remains a challenge for oil sorption materials. Herein, we report a novel hollow PET/kapok/hollow PET nonwoven with high porosity and oil retention, outstanding cyclic oil sorption rate and improved mechanical performance using kapok as the oil preserver and hollow PET as the conductor and structure enhancer. Benefiting from the three-layer composite structure fabricated by carding and needle punching reinforcement, the resulting oil sorption materials, with kapok proportion more than or equal to 60%, exhibited high oil sorption rate and oil sorption speed. The materials of 20HP/60K/20HP component content present a high initial oil sorption rate of 28.22 g g, a maximum oil sorption rate of 31.17 g g and a sorption rate constant of the Quasi second-order kinetic equation of 0.067 in plant oil. On the other hand, when the proportion of kapok fiber in the material was below 60%, due to the introduction of hollow PET, the mechanical properties were significantly boosted, and its oil retention and reusability were distinguished, with a reuse rate stabilizing at a relatively high level (>93%) in plant oil after undergoing three oil sorption cycles. The successful fabrication of hollow PET/kapok/hollow PET nonwovens could provide a new approach for the design and development of oil sorption materials.
如今,石油污染对环境和人们的日常生活构成了严重威胁。作为可重复使用且环保的材料,纤维基吸油材料能够有效缓解这一现象。然而,对于吸油材料而言,保持高吸附率并同时改善机械性能仍是一项挑战。在此,我们报道了一种新型的中空PET/木棉/中空PET无纺布,它具有高孔隙率和保油性,出色的循环吸油率以及改善的机械性能,该无纺布以木棉作为油的储存体,中空PET作为导体和结构增强剂。得益于通过梳理和针刺增强工艺制成的三层复合结构,所得的吸油材料,其木棉比例大于或等于60%,表现出高吸油率和吸油速度。组分含量为20HP/60K/20HP的材料在植物油中呈现出28.22 g/g的高初始吸油率、31.17 g/g的最大吸油率以及准二级动力学方程的吸附速率常数0.067。另一方面,当材料中木棉纤维的比例低于60%时,由于中空PET的引入,机械性能得到显著提升,并且其保油性和可重复使用性表现突出,在经过三次吸油循环后,其在植物油中的重复使用率稳定在较高水平(>93%)。中空PET/木棉/中空PET无纺布的成功制备可为吸油材料的设计与开发提供一种新方法。