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首页> 外文期刊>Journal of Hazardous Materials >Facile fabrication of wood-inspired aerogel from chitosan for efficient removal of oil from Water
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Facile fabrication of wood-inspired aerogel from chitosan for efficient removal of oil from Water

机译:从壳聚糖轻松制造仿木气凝胶,可有效去除水中的油

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摘要

Aerogels that derived from biomass have long been attractive as absorbents for oil clean-up. However, it remains a significant challenge to prepare fully bio-based oil absorbents that combines fast oil/water separation capacity, adequate mechanical robustness and easy recyclability through green and facile strategy. Inspired by the fascinating structure of wood, here we report a highly porous and anisotropic bio-based aerogel by taking advantage of the directional freezing technology, followed by a freeze-drying and silylation process. Due to the directional growth of ice crystals along the vertical direction, a special spring like morphology was obtained, which is mainly composed of well aligned low-tortuosity channels that seamlessly connected to bottom layer. Superior mechanical properties that allow for high mechanical compressing and fast elastic recovery were consequently acquired. Moreover, the silylated CS aerogel displays a rather high oil absorption capacity of 63 g g(-1), together with excellent recyclability via simple hand squeezing. By virtue of such hierarchical morphology, a device that could continuously separate oil from water was successfully designed. Given the natural abundance of raw material as well as the easy processability, this work would lay solid foundation for further fabrication of bio-based oil absorbents toward low-cost, high-performance and large-scale commodities.
机译:长期以来,源自生物质的气凝胶一直很有吸引力,可以用作油污净化剂。然而,制备完全基于生物的吸油剂仍然是一项重大挑战,该吸油剂具有快速的油/水分离能力,足够的机械强度以及通过绿色便捷的策略可回收利用的特点。受木材迷人结构的启发,我们在此报告了一种利用定向冷冻技术,随后进行冷冻干燥和甲硅烷基化工艺的,具有高度多孔性和各向异性的生物基气凝胶。由于冰晶沿垂直方向的定向生长,获得了一种特殊的弹簧状形态,它主要由排列整齐的低曲度通道组成,这些通道无缝地连接到底层。因此获得了允许高机械压缩和快速弹性回复的优异机械性能。此外,甲硅烷基化CS气凝胶显示出63 g g(-1)的相当高的吸油量,并且通过简单的手动挤压就具有极好的可回收性。借助于这种分层形态,成功地设计了一种可以将油与水连续分离的装置。考虑到原材料的自然丰富性以及易于加工的特性,这项工作将为进一步向低成本,高性能和大规模商品生产生物基吸油剂奠定坚实的基础。

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