首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >An ultralight, elastic, cost-effective, and highly recyclable superabsorbent from microfibrillated cellulose fibers for oil spillage cleanup
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An ultralight, elastic, cost-effective, and highly recyclable superabsorbent from microfibrillated cellulose fibers for oil spillage cleanup

机译:超细,弹性,成本效益好,可回收性强的超原纤化超吸收剂,用于清理漏油

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The fabrication of superabsorbents for oil spillage cleanup is a hot topic today. However, the development of a low cost and highly efficient superabsorbent is still a big challenge. In this paper, we demonstrate a simple method to produce a low-cost, ultralight, elastic, and highly recyclable superabsorbent from renewable cellulose fibers via simple and environmentally friendly microfibrillation treatment and freeze-drying. Since microfibrillation of cellulose fibers resulted in hierarchical fibers that possess both fiber bulk and considerable microfibrils on the fiber surface, hierarchically porous sponges with ultralow density (0.0024 g cm(-3)) and high porosity (up to 99.84%) were obtained after freeze drying. The porous sponges after hydrophobic modification were elastic and exhibited rapid and outstanding absorption performances for various oils and organic solvents. The hydrophobic superabsorbent could selectively absorb oil from an oil-water mixture and showed an ultra-high absorption capacity of 88-228 g g(-1), which is comparable to those of other novel carbon-based superabsorbents. More importantly, the superabsorbent showed excellent flexibility and elasticity, and could be repeatedly squeezed without structure failure (more than 30 times). The absorbed oil could be readily and rapidly recovered by means of simple mechanical squeezing, while the superabsorbent could be reused at once without any other treatment. The superabsorbent showed excellent recyclability and could be reused for at least 30 cycles while still maintaining high oil absorption capacity (137 g g(-1) for pump oil). These advantages make the superabsorbent an ideal alternative for oil spillage cleaning.
机译:制备用于溢油清除的超吸收剂是当今的热门话题。然而,开发低成本和高效的超吸收剂仍然是很大的挑战。在本文中,我们演示了一种简单的方法,该方法可通过简单,环保的微纤化处理和冷冻干燥,从可再生纤维素纤维中生产低成本,超轻,弹性和高度可回收的超吸收剂。由于纤维素纤维的微纤化会导致分层纤维同时具有纤维膨松度和纤维表面上的大量微纤维,因此冷冻后获得了具有超低密度(0.0024 g cm(-3))和高孔隙率(高达99.84%)的分层多孔海绵烘干。疏水改性后的多孔海绵具有弹性,对各种油和有机溶剂显示出快速而出色的吸收性能。疏水性超吸收剂可以选择性地从油水混合物中吸收油,并显示出88-228 g g(-1)的超高吸收能力,可与其他新型碳基超吸收剂相媲美。更重要的是,超吸收剂显示出优异的柔韧性和弹性,并且可以被反复挤压而不会破坏结构(超过30次)。所吸收的油可以通过简单的机械挤压而迅速被回收,而超吸收剂可以立即重复使用而无需任何其他处理。该超强吸收剂具有出色的可回收性,可以重复使用至少30个循环,同时仍保持较高的吸油量(泵油为137 g g(-1))。这些优点使超强吸收剂成为溢油清洁的理想替代品。

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