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A Versatile and Scalable Approach toward Robust Superhydrophobic Porous Materials with Excellent Absorbency and Flame Retardancy

机译:一种多功能且可扩展的方法,用于具有优异的吸收性和阻燃性的坚固的超疏水多孔材料

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The frequent oil spillages and the industrial discharge of organic contaminants have not only created severe environmental and ecological crises, but also cause a risk of fire and explosion. These environmental and safety issues emphasize the urgent need for materials that possess superior sorption capability and less flammability and thus can effectively and safely clean up the floating oils and water-insoluble organic compounds. Here we present the successful hydrophobic modification of the flame retardant melamine sponge with a commercial fluorosilicone, by using a facile one-step solvent-free approach and demonstrate that the resultant superhydrophobic sponge not only exhibits extraordinary absorption efficiency (including high capacity, superior selectivity, good recyclability, and simple recycling routes), but also retains excellent flame retardancy and robust stability. In comparison to conventional methods, which usually utilize massive organic solvents, the present approach does not involve any complicated process or sophisticated equipment nor generates any waste liquids, and thus is a more labor-saving, environment-friendly, energy-efficient and cost-effective strategy for the hydrophobic modification. Taking into account the critical role of hydrophobic porous materials, especially in the field of environmental remediation, the approach presented herein would be highly valuable for environmental remediation and industrial applications.
机译:频繁的漏油和有机污染物的工业排放不仅造成了严重的环境和生态危机,而且还引发了火灾和爆炸的危险。这些环境和安全问题强调了对具有优异吸附能力和较少易燃性,因此能够有效,安全地清除浮油和水不溶性有机化合物的材料的迫切需求。在这里,我们通过一种简便的一步式无溶剂方法,成功地将氟化三聚氰胺海绵用市售氟硅氧烷进行了疏水改性,并证明了所得超疏水海绵不仅具有出色的吸收效率(包括高容量,优异的选择性,良好的可回收性和简单的回收途径),而且还保留了出色的阻燃性和稳健性。与通常使用大量有机溶剂的常规方法相比,本方法不涉及任何复杂的过程或复杂的设备,也不产生任何废液,因此更加节省人工,环境友好,节能且成本低廉疏水改性的有效策略。考虑到疏水性多孔材料的关键作用,特别是在环境修复领域,本文提出的方法对于环境修复和工业应用将是非常有价值的。

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